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21.6 List of rare earth production technical data

2024-07-13View Original

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This post was last edited by Shutong on 2024-7-13 21:10 │ ├─21.6 Rare Earth Production Technology Books │ China Environmental Protection Standards 2010-2011 Last 2011 Edition │ Chinese Association for Science and Technology Discipline Development Research Series Report 2016-2017 Rare Earth Science and Technology Discipline Development Report Editor-in-Chief of the China Association for Science and Technology 2018 Edition │ China Rare Earth Science and Technology Series Rare Earth Mining and Environmental Protection Edited by Yang Zhanfeng, Ma Ying, and Wang Yan 2018 Edition │ Linyi University Doctoral Professor Library Effect of Rare Earth Ions on the Structure and Activity of Bioactive Molecules 2013 Edition │ Chemistry and Physics of Variable Rare Earth Elements (Shi Chunshan, Su Qiang) │ Practical Rare Earth Element Geochemistry │ New Rare Earth Permanent Magnet Materials and Permanent Magnet Motors 2014 │ Inorganic Chemistry Series Volume 7 Scandium Rare Earth Element │ Inorganic Chemistry Series Volume 7 Scandium Rare Earth Element │ Inorganic Chemistry Series Volume 7 Scandium Rare Earth Element │ Non-ferrous Metal Extraction Metallurgy Handbook Rare Earth Metals │ The Legend of Midas Turning Gold Application of Rare Earth Elements edited by Deng Yuliang 2015 Edition │ Modern Metallurgy and Materials Process Engineering Series Rare Earth Material Theory and Application by Wang Changzhen 2016 Edition │ Modern Applied Physics Series Failure and Protection of Rare Earth Permanent Magnetic Materials by Song Zhenlun 2017 Edition │ Synthesis and Application of Rare Earth Upconversion Luminescent Nanomaterials by Wang Meng 2015 Edition │ Application of Rare Earth Catalytic Materials in Environmental Protection 2013 │ Rare Earth Element Geochemistry-Henderson │ Rare earth element geochemistry-Wang Zhonggang│ Rare earth metallurgy│ Rare earth chemistry Su Qiang│ Rare earth engineering series rare earth functional materials Zhang Yin, Li Xia, Xu Jianyi; 2015 edition edited by Zhang Guofang│ Rare earth process mineralogy edited by Qiu Tingsheng and Chen Jiangan 2019 edition│ Rare earth material preparation technology 2015│ Preparation and properties of rare earth fluoride nanocrystals 2015 edition│ Rare earth permanent magnet materials by Hu Boping, Rao Xiaolei, Wang Yizhong 2017 edition│ Rare Earth Permanent Magnet Materials Volume 2, 2017 Edition by Hu Boping, Rao Xiaolei, Wang Yizhong│ Rare Earth Permanent Magnet Motor - Li Zhongming│ Rare Earth Physical and Chemical Constants│ Rare Earth Coordination Chemistry Huang Chunhui│ Rare Earth Metal Organic Chemistry│ The synthesis and performance of rare earth zirconate-based composites are the same as Yuping's 2014 edition│ Interpreting the Earth's Code (26) Industrial vitamin rare earth Guo Jiapeng 2016.06 │ Magnesium-lithium rare earth alloy and its surface corrosion and protection Wang Tao 2016 edition │ ├─21.6 Rare earth production technical standards │ │ DB13T 1699-2013 Vertical axis iron-free core rare earth permanent magnet wind turbine set │ │ DB32T 3492-2019 Rare earth smelting waste residue radioactive exemption requirements │ │ DB32T 4601-2023 General technical conditions for zinc-10% aluminum-rare earth multiple alloy coated steel wires for bridge cables │ │ DB34T 1284.1-2010 Rare earth high-iron aluminum alloy environmentally friendly power cables Part 1 rated voltage 1KV and 3KV cables │ │ DB34T 1284.2-2010 Rare earth high-iron aluminum alloy environmentally friendly power cables Part 2 rated voltage 6kv (Um =7.2kV) and 30kv) (Um = 36 kv) cables│ │ DB34T 1284.3-2010 Rare earth high-iron aluminum alloy environmentally friendly power cables Part 3 rated voltage 35kv (Um = 40.5 kv) cables│ │ DB36 1016-2018 Emission standards for water pollutants from ionic rare earth mines │ │ DB36 1100-2019 Energy consumption limits per unit of products for rare earth smelting and processing enterprises │ │ DB36T 1143-2019 Acceptance requirements for comprehensive management of water and soil conservation in abandoned rare earth mines │ │ DB36T 1158-2019 Specifications for geological exploration of weathered crust ion adsorption rare earth minerals │ │ DB36T 1340-2020 Technical regulations for joint remediation of rare earth tailings with soil conditioners and Pennisetum │ │ DB36T 1588-2022 Water quotas for key rare earth industries │ │ DB36T 1588-2023 Water quotas for key rare earth industries │ │ DB36T 1780-2023 Technical specifications for soil quality investigation and evaluation in abandoned rare earth mining areas with ion adsorption │ │ DB36T 1842-2023 Determination of 16 rare earth elements in soil and sediments, decorations, etc. Microwave digestion-inductively coupled plasma mass spectrometry │ │ DLT 2312-2021 High-definition version Technical conditions for hot-dip galvanized aluminum-magnesium rare earth alloy coating on steel components in power transmission and transformation projects │ │ │ DZT 0204-2022 Mineral Geological Exploration Specifications Rare Earth High-definition Version │ │ DZT 0279.32-2016 Regional Geochemical Sample Analysis Methods Part 32: Determination of rare earth elements by closed acid solution-inductively coupled plasma mass spectrometry │ │ DZT 0279.33-2016 Methods for analysis of regional geochemical samples Part 33: Determination of rare earth element content Alkali fusion-ion exchange-inductively coupled plasma atomic emission spectrometry │ │ │ DZT 0397-2022 Chemical analysis method for tin ore Determination of cobalt, nickel, copper, niobium, tantalum, lead, thorium, uranium and rare earth element content Ammonium iodide tin removal-closed acid lysis-inductively coupled plasma mass spectrometry │ │ DZT 0398-2022 Chemical analysis method of phosphate rock Determination of rare earth element content Mixed acid decomposition-inductively coupled plasma mass spectrometry │ │ GB 26451-2011 Rare earth industrial pollutant emission standards │ │ GB 29435-2012 Energy consumption limit per unit product of rare earth smelting and processing enterprises │ │ GB 39176-2020 Packaging, marking, transportation and storage of rare earth products │ │ GB 5009.94-2012 Rare earth elements in plant foods │ │ GBT 12690.1-2002 Chemical analysis methods for non-rare earth impurities in rare earth metals and their oxides High frequency-infrared absorption method for determination of carbon and sulfur amounts │ │ GBT 12690.10-2003 Chemical analysis method for non-rare earth impurities in rare earth metals and their oxides - Determination of phosphorus content Molybdenum blue spectrophotometry │ │ GBT 12690.11-2003 Chemical analysis method for non-rare earth impurities in rare earth metals and their oxides - Determination of magnesium content Flame atomic absorption spectrometry method │ │ GBT 12690.12-2003 Chemical analysis methods for non-rare earth impurities in rare earth metals and their oxides. Determination of thorium content. Azoarsine III spectrophotometry and inductively coupled plasma mass spectrometry│ │ GBT 12690.13-2003 Chemical analysis methods for non-rare earth impurities in rare earth metals and their oxides. Determination of molybdenum and tungsten content. Inductively coupled plasma optical emission spectrometry and inductively coupled plasma mass spectrometry.│ │ GBT 12690.14-2006 Methods for the chemical analysis of non-rare earth impurities in rare earth metals and their oxides - Determination of the amount of titanium │ │ GBT 12690.15-2006 Methods for the chemical analysis of non-rare earth impurities in rare earth metals and their oxides - Determination of the amount of calcium │ │ GBT 12690.15-2018 Methods for the chemical analysis of non-rare earth impurities in rare earth metals and their oxides Part 15: Determination of calcium content │ │ │ GBT 12690.16-1990 Methods for chemical analysis of rare earth metals and their oxides Determination of calcium content by flame atomic absorption spectrometry │ │ │ GBT 12690.16-2010 Methods for chemical analysis of non-rare earth impurities in rare earth metals and their oxides Part 16: Determination of fluorine content Ion selective electrode method │ │ GBT 12690.17-2010 Methods for chemical analysis of non-rare earth impurities in rare earth metals and their oxides Part 17: Determination of niobium and tantalum content in rare earth metals │ │ GBT 12690.18-1990 Methods for chemical analysis of rare earth metals and their oxides Determination of chlorine content by mercury thiocyanate-iron nitrate spectrophotometry │ │ GBT 12690.19-2018 Methods for chemical analysis of non-rare earth impurities in rare earth metals and their oxides Part 19: Determination of arsenic and mercury │ │ GBT 12690.2-2015 Methods for chemical analysis of non-rare earth impurities in rare earth metals and their oxides Part 2: Gravimetric method for determination of loss on ignition in rare earth oxides │ │ GBT 12690.20-1990 Chemical analysis methods for rare earth metals and their oxides Determination of iron content by potassium thiocyanate and 1,10-phenanthroline spectrophotometry │ │ GBT 12690.21-1990 Chemical analysis methods for rare earth metals and their oxides Determination of phosphorus content by molybdenum blue spectrophotometry │ │ GBT 12690.22-1990 Methods for chemical analysis of rare earth metals and their oxides. Determination of the amount of silicon dioxide in rare earth oxides by molybdenum blue spectrophotometry. │ │ GBT 12690.23-1990 Methods for chemical analysis of rare earth metals and their oxides. Determination of the amount of acid-soluble silicon by molybdenum blue spectrophotometry. │ │ GBT 12690.24-1990 Chemical analysis method of rare earth metals and their oxides AL-CAS-CTMAB- Ethanol quaternary system spectrophotometric method to determine the amount of aluminum │ │ GBT 12690.25-1990 Chemical analysis method of rare earth metals and their oxides Flame atomic absorption spectrometry to determine the amount of magnesium │ │ GBT 12690.26-1990 Chemical analysis method of rare earth metals and their oxides Flame atomic absorption spectrometry to determine the amount of sodium │ │ GBT 12690.27-1990 Chemical analysis method of rare earth metals and their oxides. Determination of ignition loss by gravimetric method│ │ GBT 12690.28-2000 Chemical analysis method of rare earth metals and their oxides. Determination of calcium oxide content in rare earth oxides by inductively coupled plasma emission spectrometry. │ │ GBT 12690.29-2000 Methods for chemical analysis of rare earth metals and their oxides. Determination of the amount of cerium oxide in rare earth oxides by fluorescence photometry. │ │ GBT 12690.3-2015 Methods for chemical analysis of non-rare earth impurities in rare earth metals and their oxides. Part 3: Gravimetric method for determination of moisture content in rare earth oxides │ │ GBT 12690.4-2021 Methods for chemical analysis of non-rare earth impurities in rare earth metals and their oxides Part 4: Determination of oxygen and nitrogen content Pulse-infrared absorption method and pulse-thermal conductivity method │ │ GBT 12690.6-2003 Chemical analysis method of non-rare earth impurities in rare earth metals and their oxides Determination of iron content Potassium thiocyanate, 1,10-phenanthroline spectrophotometry │ │ GBT 12690.7-2021 Methods for chemical analysis of non-rare earth impurities in rare earth metals and their oxides Part 7: Determination of silicon content │ │ GBT 12690.8-2021 Methods for chemical analysis of non-rare earth impurities in rare earth metals and their oxides Part 8: Determination of sodium content │ │ │ GBT 12690.9-2003 Methods for chemical analysis of non-rare earth impurities in rare earth metals and their oxides Determination of chlorine content Silver nitrate turbidimetric method │ │ GBT 13748.8-2013 Methods for chemical analysis of magnesium and magnesium alloys Part 8 Determination of rare earth content Gravimetric method │ │ GBT 14352.20-2021 Methods for chemical analysis of tungsten ores and molybdenum ores Part 20: Determination of the amounts of niobium, tantalum, zirconium, hafnium and 15 rare earth elements by inductively coupled plasma mass spectrometry │ │ GBT 14506.29-2010 Methods for chemical analysis of silicate rocks Part 29: Determination of amounts of 22 elements including rare earths │ │ GBT 14633-2010 Rare earth three-primary color phosphors for lamps │ │ GBT 14634.1-2010 Test methods for rare earth three-primary color phosphors for lamps Part 1: Determination of relative brightness │ │ GBT 14634.2-2010 Test methods for rare earth three-primary color phosphors for lamps Part 2: Determination of main emission peak and chromaticity properties │ │ GBT 14634.3-2010 Test methods for rare earth three-primary color phosphors for lamps Part 3: Determination of thermal stability │ │ │ GBT 14634.4-2002 Test methods for rare earth three-primary color phosphors for lamps Determination of particle size distribution by electrical sensing method │ │ GBT 14634.5-2010 Test methods for rare earth three-primary color phosphors for lamps Part 5: Determination of density │ │ GBT 14634.6-2010 Test methods for rare earth three-primary color phosphors for lamps Part 6: Determination of specific surface area │ │ GBT 14634.7-2010 Test methods for rare earth three-primary color phosphors for lamps Part 7: Determination of thermal quenchability │ │ GBT 14635-2020 Methods for chemical analysis of rare earth metals and their compounds Determination of total rare earth content │ │ GBT 15676-1995 Rare earth terminology │ │ GBT 15676-2015 Rare earth terminology │ │ GBT 16477.4-2010 Chemical analysis methods for rare earth ferrosilicon alloys and magnesium ferrosilicon alloys Part 4: Determination of the amount of silicon │ │ GBT 16479-2020 Light rare earth carbonate │ │ GBT 16484.10-1996 Determination of the amount of manganese oxide by the chemical analysis method of rare earth chloride and rare earth carbonate │ │ GBT 16484.11-1996 Determination of the amount of lead oxide by the chemical analysis method of rare earth chloride and rare earth carbonate │ │ GBT 16484.13-1996 Methods for chemical analysis of rare earth chloride and rare earth carbonate - Determination of ammonium chloride amount │ │ GBT 16484.14-2009 Methods for chemical analysis of rare earth chloride and light rare earth carbonate - Part 14: Determination of phosphate content Antimony phosphomolybdenum blue spectrophotometry │ │ GBT 16484.15-2009 Methods for chemical analysis of rare earth chloride and light rare earth carbonate Part 15: Determination of chlorine content in light rare earth carbonate Silver nitrate turbidimetric method │ │ GBT 16484.16-2009 Chemical analysis methods for rare earth chloride and light rare earth carbonate Part 16: Gravimetric method for determination of water-insoluble matter in rare earth chloride │ │ GBT 16484.23-2009 Methods for chemical analysis of rare earth chloride and light rare earth carbonate Part 23: Gravimetric method for determination of acid-insoluble matter in light rare earth carbonate │ │ GBT 16484.3-2009 Chemical analysis methods for rare earth chloride and light rare earth carbonate Part 3: Determination of 15 rare earth element oxide components by inductively coupled plasma optical emission spectrometry │ │ GBT 16484.4-2009 Chemical analysis methods for rare earth chloride and light rare earth carbonate Part 4: Determination of the amount of thorium oxide Arsenazo III spectrophotometry │ │ GBT 16484.5-1996 Chemical analysis method of rare earth chloride and rare earth carbonate Determination of the amount of barium oxide in rare earth chloride │ │ GBT 16484.6-1996 Chemical analysis method of rare earth chloride and rare earth carbonate Determination of the amount of calcium oxide │ │ GBT 16484.7-1996 Determination of the amount of magnesium oxide by the chemical analysis method of rare earth chloride and rare earth carbonate │ │ GBT 16484.9-1996 Determination of the amount of nickel oxide by the chemical analysis method of rare earth chloride and rare earth carbonate │ │ GBT 17417.1-2010 Chemical analysis method of rare earth ores Part 1: Determination of rare earth components │ │ GBT 17417.2-2010 Chemical analysis methods of rare earth ores Part 2: Scandium content determination │ │ GBT 17803-2015 Rare earth product brand indication method │ │ GBT 18114.1-2010 Chemical analysis method for rare earth concentrates Part 1: Rare earths │ │ GBT 18114.10-2010 Chemical analysis methods for rare earth concentrates Part 10: Gravimetric method for determination of moisture │ │ GBT 18114.11-2010 Methods for chemical analysis of rare earth concentrates Part 11: Determination of fluorine content EDTA titration method │ │ GBT 18114.2-2010 Chemical analysis method of rare earth concentrates Part 2 Determination of thorium oxide content │ │ GBT 18114.3-2010 Chemical analysis methods of rare earth concentrates Part 3 Determination of calcium oxide content │ │ GBT 18114.4-2010 Methods for chemical analysis of rare earth concentrates Part 4 Determination of the amount of niobium oxide, zirconium oxide and titanium oxide Inductively coupled plasma optical emission spectrometry │ │ GBT 18114.5-2010 Methods for chemical analysis of rare earth concentrates Part 5 Determination of the amount of alumina Inductively coupled plasma optical emission spectrometry │ │ GBT 18114.6-2010 Methods for chemical analysis of rare earth concentrates Part 6 Determination of silica content │ │ │ GBT 18114.7-2010 Methods for chemical analysis of rare earth concentrates Part 7 Determination of the amount of iron oxide Potassium dichromate titration method │ │ GBT 18114.8-2010 Methods for chemical analysis of rare earth concentrates Part 8: 15││ GBT 18114.9-2010 Chemical analysis methods for rare earth concentrates Part 9: Pentoxide │ │ GBT 18115.1-2020 Methods for chemical analysis of rare earth impurities in rare earth metals and their oxides Part 1: Determination of the amount of cerium, praseodymium, neodymium, samarium, europium, gadolinium, terbium, dysprosium, holmium, erbium, thulium, ytterbium, lutetium and yttrium in lanthanum │ │ GBT 18115.10-2006 Methods for chemical analysis of rare earth impurities in rare earth metals and their oxides. Determination of the amounts of lanthanum, cerium, praseodymium, neodymium, samarium, europium, gadolinium, terbium, dysprosium, erbium, thulium, ytterbium, lutetium and yttrium in holmium │ │ GBT 18115.11-2006 Methods for chemical analysis of rare earth impurities in rare earth metals and their oxides - Determination of the amounts of lanthanum, cerium, praseodymium, neodymium, samarium, europium, gadolinium, terbium, dysprosium, holmium, thulium, ytterbium, lutetium and yttrium in erbium │ │ GBT 18115.12-2006 Methods for the chemical analysis of rare earth impurities in rare earth metals and their oxides. Determination of the amounts of lanthanum, cerium, praseodymium, neodymium, samarium, europium, gadolinium, terbium, dysprosium, holmium, erbium, thulium, ytterbium and lutetium in yttrium│ │ GBT 18115.13-2010 Methods for the chemical analysis of rare earth impurities in rare earth metals and their oxides Part 13: Determination of the amounts of lanthanum, cerium, praseodymium, neodymium, samarium, europium, gadolinium, terbium, dysprosium, holmium, erbium, ytterbium, lutetium and yttrium in thulium │ │ GBT 18115.14-2010 Methods for chemical analysis of rare earth impurities in rare earth metals and their oxides Part 14: Determination of the amounts of lanthanum, cerium, praseodymium, neodymium, samarium, europium, gadolinium, terbium, dysprosium, holmium, erbium, thulium, lutetium and yttrium in ytterbium │ │ GBT 18115.2-2020 Methods for chemical analysis of rare earth impurities in rare earth metals and their oxides Part 2: Determination of the amount of lanthanum, praseodymium, neodymium, samarium, europium, gadolinium, terbium, dysprosium, holmium, erbium, thulium, ytterbium, lutetium and yttrium in cerium │ │ GBT 18115.3-2006 Methods for chemical analysis of rare earth impurities in rare earth metals and their oxides Determination of the amounts of lanthanum, cerium, neodymium, samarium, europium, gadolinium, terbium, dysprosium, holmium, erbium, thulium, ytterbium, lutetium and yttrium in praseodymium│ │ GBT 18115.4-2021 Methods for chemical analysis of rare earth impurities in rare earth metals and their oxides Part 4: Determination of the amounts of lanthanum, cerium, praseodymium, samarium, europium, gadolinium, terbium, dysprosium, holmium, erbium, thulium, ytterbium, lutetium and yttrium in neodymium │ │ GBT 18115.5-2006 Methods for chemical analysis of rare earth impurities in rare earth metals and their oxides. Determination of the amounts of lanthanum, cerium, praseodymium, neodymium, europium, gadolinium, terbium, dysprosium, holmium, erbium, thulium, ytterbium, lutetium and yttrium in samarium │ │ GBT 18115.8-2006 Methods for chemical analysis of rare earth impurities in rare earth metals and their oxides. Determination of the amounts of lanthanum, cerium, praseodymium, neodymium, samarium, europium, gadolinium, dysprosium, holmium, erbium, thulium, ytterbium, lutetium and yttrium in terbium │ │ GBT 18115.9-2006 Methods for chemical analysis of rare earth impurities in rare earth metals and their oxides. Determination of the amounts of lanthanum, cerium, praseodymium, neodymium, samarium, europium, gadolinium, terbium, holmium, erbium, thulium, ytterbium, lutetium and yttrium in dysprosium │ │ GBT 18882.1-2023 Methods for chemical analysis of ionic rare earth ores and mixed rare earth oxides Part 1: Official version of determination of the proportions of fifteen rare earth element oxides │ │ GBT 18882.2-2017 Chemical analysis method for mixed rare earth oxides of ionic rare earth ores Part 2: Determination of the amount of aluminum oxide │ │ GBT 18882.3-2019 Chemical analysis method for ionic rare earth ores and mixed rare earth oxides Part 3: Determination of silica content │ │ GBT 18916.43-2019 Water intake quota Part 43: Smelting and separation production of ionic rare earth ores │ │ GBT 20165-2012 Rare earth polishing powder │ │ GBT 20166.1-2012 Chemical analysis method of rare earth polishing powder Part 1: Titration method for determination of cerium oxide content │ │ GBT 20166.2-2012 Chemical analysis method for rare earth polishing powder Part 2: Determination of fluorine content Ion selective electrode method │ │ GBT 20167-2012 Test method for physical properties of rare earth polishing powder Gravimetric method for determination of abrasion amount and scratches │ │ GBT 20169-2015 Ionic rare earth ore mixed rare earth oxide │ │ GBT 20170.1-2006 Test methods for physical properties of rare earth metals and their compounds Determination of particle size distribution of rare earth compounds │ │ GBT 20170.2-2006 Test methods for physical properties of rare earth metals and their compounds Determination of specific surface area of rare earth compounds │ │ GBT 20492-2019 Zinc-5% aluminum-mixed rare earth alloy coated steel wire and steel strand │ │ GBT 20975.24-2020 Chemical analysis methods of aluminum and aluminum alloys Part 24: Determination of total rare earth content │ │ │ GBT 223.49-1994 Methods for chemical analysis of steel and alloys Extraction and separation—Azochlorophosphine mA spectrophotometric method Determination of total rare earth content │ │ GBT 23594.1-2009 Methods for chemical analysis of samarium europium and gadolinium enrichments Part 1: Gravimetric method for determination of total rare earth oxides │ │ GBT 23594.2-2009 Methods for chemical analysis of samarium, europium and gadolinium concentrates Part 2: Determination of the proportions of fifteen rare earth element oxides by inductively coupled plasma emission spectrometry │ │ GBT 23595.1-2009 Test method for rare earth yellow phosphors for white LED lamps Part 1: Determination of spectral properties │ │ GBT 23595.2-2009 Test method for rare earth yellow phosphors for white LED lamps Part 2: Determination of relative brightness │ │ GBT 23595.3-2009 Test method for rare earth yellow phosphors for white LED lamps Part 3: Determination of chromaticity coordinates │ │ GBT 23595.4-2009 Test methods for rare earth yellow phosphors for white LED lamps Part 4: Determination of thermal stability │ │ GBT 23595.5-2009 Test methods for rare earth yellow phosphors for white LED lamps Part 5: Determination of pH value │ │ GBT 23595.6-2009 Test methods for rare earth yellow phosphors for white LED lamps Part 6: Determination of electrical conductivity │ │ GBT 23595.7-2010 Test methods for rare earth yellow phosphors for white LED lamps Part 7: Determination of thermal quenching property │ │ GBT 24457-2009 Metal halide lamp (rare earth series) Performance requirements │ │ GBT 26010-2010 Electrical contact silver nickel rare earth material │ │ GBT 26412-2010 Rare earth AB5 type hydrogen storage alloy powder for metal hydride-nickel battery negative electrode │ │ GBT 26413-2010 Heavy rare earth oxide enrichments │ │ GBT 26416.1-2022 Chemical analysis methods for rare earth iron alloys Part 1: Determination of total rare earth content │ │ GBT 26416.2-2022 Chemical analysis method of rare earth iron alloys Part 2: Determination of rare earth impurity content by inductively coupled plasma optical emission spectrometry │ │ GBT 26416.3-2022 Clear version of chemical analysis method for rare earth iron alloys Part 3: Determination of calcium, magnesium, aluminum, nickel and manganese content by inductively coupled plasma optical emission spectrometry │ │ GBT 26416.4-2022 Clear version of chemical analysis method for rare earth iron alloys Part 4: Determination of iron content Potassium dichromate titration method │ │ GBT 26416.5-2022 Clear version of chemical analysis methods for rare earth iron alloys Part 5: Determination of oxygen content by pulse-infrared absorption method │ │ GBT 26416.7-2023 Methods for chemical analysis of rare earth iron alloys Part 7: Determination of carbon and sulfur content by high-frequency-infrared absorption method │ │ GBT 26416.8-2023 Official version of chemical analysis methods for rare earth iron alloys Part 8: Photometric method for determination of silicon content │ │ GBT 26416.9-2023 Official version of chemical analysis methods for rare earth iron alloys Part 9: Determination of phosphorus content Bismuth phosphorus molybdenum blue spectrophotometry │ │ GBT 26416.9-2023 Methods for chemical analysis of rare earth iron alloys Part 9: Determination of phosphorus content Bismuth phosphorus molybdenum blue spectrophotometry │ │ GBT 26417-2010 Chemical analysis method of praseodymium and neodymium alloys and their compounds Determination of rare earth proportions │ │ GBT 28882-2012 Ionic rare earth minerals rare earth carbonate │ │ GBT 29918-2023 Official version of the test method for the pressure-composition isotherm (PCI) of rare earth hydrogen storage alloys │ │ │ GBT 31963-2015 Rare earth magnesium superlattice hydrogen storage alloy powder for negative electrodes of metal hydride-nickel batteries │ │ GBT 31967.1-2015 Test method for the physical properties of rare earth permanent magnet materials Part 1: Determination of magnetic flux temperature characteristics │ │ GBT 31967.2-2015 Test method for physical properties of rare earth permanent magnet materials Part 2: Determination of flexural strength and fracture toughness │ │ GBT 31968-2015 Rare earth composite yttrium-zirconium ceramic powder │ │ GBT 34500.1-2017 Chemical analysis method of rare earth waste residue and wastewater Part 1: Determination of fluoride ion amount ion selective electrode method │ │ GBT 34500.2-2017 Methods for chemical analysis of rare earth waste residues and wastewater Part 2: Determination of chemical oxygen demand (COD) │ │ GBT 34500.3-2017 Chemical analysis methods for rare earth waste residues and wastewater Part 3: Determination of weak radioactivity (total α and β activity) │ │ GBT 34500.4-2017 Chemical analysis methods for rare earth waste residues and wastewater Part 4: Determination of copper, zinc, lead, chromium, cadmium, barium, cobalt, manganese, nickel and titanium by inductively coupled plasma atomic emission spectrometry │ │ GBT 34500.5-2017 Methods for chemical analysis of rare earth waste residues and wastewater Part 5: Determination of ammonia nitrogen content │ │ GBT 34700-2017 Rare earth selective catalytic reduction (SCR) denitration catalyst │ │ GBT 40795.2-2021 Chemical analysis methods for lanthanum and cerium metals and their compounds Part 2: Determination of rare earth content │ │ GBT 40798-2021 Ionic rare earth raw ore chemical analysis method Determination of total rare earth content by inductively coupled plasma mass spectrometry │ │ GBT 40854-2021 Lanthanum cerium metal │ │ GBT 4137-2024 Rare earth ferrosilicon alloy │ │ GBT 4138-2024 Rare earth magnesium ferrosilicon alloy │ │ GBT 4138-2024 Rare earth magnesium ferrosilicon alloy │ │ GBT 4148-2015 Mixed rare earth chloride │ │ GBT 4153-2008 Mixed rare earth metals │ │ GBT 4180-2012 Rare earth cobalt permanent magnet materials │ │ GBT 42656-2023 Official version of the test method for hydrogen absorption and release reaction kinetic properties of rare earth hydrogen storage alloys │ │ GBT 43665-2024 Hot-rolled rare earth steel bars for reinforced concrete │ │ GBT 43750-2024 Method for measuring the magnetic properties of isotropic rare earth bonded permanent magnet powder │ │ GBZ 139-2019 Radiological protection requirements for rare earth production sites │ │ GBZT 300.34-2017 Determination of toxic substances in workplace air Part 34: Rare earth metals and their compounds │ │ GHT 1125-2016 Technical regulations for the control of rare earth content in tea │ │ HGT 2247-2012 Rare earth driers for coatings │ │ HGT 5313-2018 Special catalysts for catalytic cracking to increase the production of isoparaffins and increase propylene production │ │ HGT 5314-2018 Rare earth-containing high liquid yield heavy oil catalytic cracking cocatalyst │ │ HJ 1125-2020 Technical Specification for Application and Issuance of Pollution Emission License Rare Rare Earth Metal Smelting │ │ HJ 1244-2022 Technical Guidelines for Self-Monitoring of Pollution Emission Units Rare Rare Earth Metal Smelting │ │ JBT 4394-2016 Chemical analysis method for total rare earth content, silicon, total magnesium and magnesium oxide in rare earth magnesium silicon alloys│ │ JBT 5400-2015 Cobalt 40 rare earth alloy wire for instrument shaft tip│ │ JBT 8892-2011 Metallographic examination of rare earth eutectic aluminum-silicon alloy pistons for internal combustion engines│ │ JJF 1239-2010 Technical Specifications for Measurement of Magnetic Temperature Coefficient of Rare Earth Permanent Magnets High Definition Version │ │ │ NBSHT 6037-2021 Determination Procedure for the Content of Six Main Rare Earth Elements in Sulfurized Catalytic Cracking Catalysts, Zeolites, Additives and Related Substances Inductively Coupled Plasma Emission Spectrometry │ │ TCAOE 61-2023 Guidelines for Exploration of Deep Sea Rare Earth-Rich Sediment Resources │ │ TCNMMIA 010-2021 Heavy calcium carbonate for rare earth separation and saponification │ │ TCSTM 01159-2023 Rare earth cis-polybutadiene rubber (NdBR) │ │ TDT 1070.6-2022 Technical Specification for Mine Ecological Restoration Part 6: Rare earth mine clear version │ │ TGDCKCJH 027-2020 Test method for light absorption and fluorescence properties of rare earth doped laser glass │ │ TREIANM 0102-2022 Product life cycle assessment technical specification rare earth hydrogen storage alloy │ │ YBT 010-1992 Mixed rare earth metal wire, rod │ │ YBT 048-1993 Rare earth rod hanging method in steel ingot mold│ │ YBT 049-1993 Rare earth wire feeding method in continuous casting mold│ │ YBT 183-2017 Rare earth zinc aluminum alloy coated steel strand wire │ │ YBT 184-2017 Rare earth zinc aluminum alloy coated steel wire for steel core aluminum stranded wire │ │ YBT 4729-2019 Zinc-10% aluminum mixed rare earth alloy coated steel cable for construction engineering │ │ YST 1265-2018 Rare earth zirconate powder │ │ YST 309-2012 Aluminum rare earth alloy ingots for remelting │ │ YST 575.14-2020 Methods of chemical analysis of bauxite ores Part 14: Determination of rare earth oxide content │ │ YST 746.16-2010 Chemical analysis method for lead-free tin-based solder Part 16: Determination of rare earth content azoarsine III spectrophotometry│ │ │ └─XB Rare earth industry standard of the People's Republic of China│ XB 504-2008 Citric acid rare earth complex feed additive│ XBT 101-2011 High rare earth iron ore│ 209-2012 Light rare earth fluoride│ XBT 235-2020 Ionic rare earth ore mixed rare earth chloride solution│ XBT 401-2010 Light rare earth composite inoculant│ 606.1-1995 Chemical analysis method of rare earth products Determination of fluorine content by thorium nitrate volumetric method│ XBT 606.3-1995 Chemical analysis method of rare earth products Determination of moisture│: Determination of the total amount of rare earth oxides│ XBT 612.2-2019 Chemical analysis method of NdFeB waste Part 2: Determination of the proportions of fifteen rare earth element oxides by inductively coupled plasma atomic emission spectrometry │ XBT 612.3-2013 Chemical analysis method for NdFeB waste Part 3: Determination of boron, cobalt, aluminum, copper, chromium, nickel, manganese, titanium, calcium and magnesium content by inductively coupled plasma atomic emission spectrometry│ XBT 614.1-2011 Chemical analysis method for gadolinium-magnesium alloys Part 1: Gravimetric method for determination of total rare earth content│ XBT 614.2-2011 Chemical analysis method for gadolinium-magnesium alloys Part 2: Determination of magnesium content EDTA titration method│ XBT 614.3-2011 Chemical analysis method of gadolinium-magnesium alloy Part 3: Determination of Carbon Content High Frequency-Infrared Absorption Method│ XBT 614.4-2011 Chemical Analysis Methods for Gadolinium-Magnesium Alloys Part 4: Determination of fluorine content Steam distillation spectrophotometry│ XBT 614.5-2011 Methods for chemical analysis of gadolinium-magnesium alloys Part 5: Determination of rare earth impurity content │ XBT 614.6-2011 Chemical analysis method of gadolinium-magnesium alloy Part 6: Determination of the amount of aluminum, calcium, copper, iron, nickel and silicon by inductively coupled plasma atomic emission spectrometry│: Gravimetric method for determination of total rare earth content│ XBT 616.2-2012 Chemical analysis method for gadolinium-iron alloys Part 2: Determination of rare earth impurity content by inductively coupled plasma atomic emission spectrometry│ XBT 616.3-2012 Methods for chemical analysis of gadolinium-iron alloys Part 3: Determination of calcium, magnesium, aluminum and manganese amounts by inductively coupled plasma atomic emission spectrometry│ XBT 616.5-2012 Methods for chemical analysis of gadolinium-iron alloys Part 5: Determination of Silicon Content Silicon Molybdenum Blue Spectrophotometry│ XBT 617.1-2014 Chemical Analysis Method for NdFeB Alloys Part 1: Determination of total rare earth content by oxalate gravimetric method │ XBT 617.2-2014 Chemical analysis method of neodymium iron boron alloy Part 2: Determination of the amounts of fifteen rare earth elements│ XBT 617.3-2014 Chemical analysis method of NdFeB alloy Part 3: Determination of amounts of boron, aluminum, copper, cobalt, magnesium, silicon, calcium, vanadium, chromium, manganese, nickel, zinc and gallium by inductively coupled plasma atomic emission spectrometry │ XBT 617.4-2014 Chemical analysis method for neodymium iron boron alloys Part 4: Determination of iron content by potassium dichromate titration│ XBT 617.5-2014 Chemical analysis method of neodymium iron boron alloy Part 5: Determination of the amounts of zirconium, niobium, molybdenum, tungsten and titanium by inductively coupled plasma atomic emission spectrometry│ XBT 617.6-2014 Methods for chemical analysis of neodymium iron boron alloys Part 6: Determination of carbon content by high-frequency-infrared absorption method│: Determination of the total amount of rare earth oxides │ XBT 620.2-2015 Chemical analysis method of waste rare earth phosphors Part 2: Determination of lead, cadmium and mercury content by inductively coupled plasma optical emission spectrometry│ XBT 620.3-2015 Chemical analysis method of waste rare earth phosphors Part 3: Determination of the amount of yttrium oxide, lanthanum oxide, cerium oxide, europium oxide, gadolinium oxide, terbium oxide and dysprosium oxide by inductively coupled plasma atomic emission spectrometry│ XBT 621.1-2016 Chemical analysis method of holmium iron alloy Part 1: Gravimetric method for determination of total rare earth content│ XBT 621.2-2016 Chemical analysis method for holmium iron alloys Part 2: Determination of rare earth impurity content by inductively coupled plasma atomic emission spectrometry│ XBT 622.1-2017 Chemical analysis method of rare earth hydrogen storage alloys Part 1: Determination of total rare earth content by oxalate gravimetric method│ XBT 622.2-2017 Chemical analysis method of rare earth hydrogen storage alloys Part 2: Determination of proportions of nickel, lanthanum, cerium, praseodymium, neodymium, samarium, yttrium, cobalt, manganese, aluminum, iron, magnesium, zinc and copper│ XBT 622.3-2017 Chemical analysis method of rare earth hydrogen storage alloys Part 3: Determination of the amount of iron, magnesium, zinc and copper by inductively coupled plasma atomic emission spectrometry│ XBT 622.4-2017 Chemical analysis method of rare earth hydrogen storage alloys Part 4: Determination of Silicon Content Silicon Molybdenum Blue Spectrophotometry│ XBT 622.5-2017 Chemical Analysis Methods for Rare Earth Hydrogen Storage Alloys Part 5: Determination of carbon content High-frequency combustion infrared absorption method│ XBT 622.6-2017 Chemical analysis method of rare earth hydrogen storage alloys Part 6: Determination of oxygen content by pulse heating infrared absorption method│ XBT 622.7-2017 Chemical analysis method of rare earth hydrogen storage alloys Part 7: Determination of lead and cadmium amounts │ XBT 623.1-2018 Chemical analysis method of ferrocerium alloys Part 1: Determination of rare earth impurity content by inductively coupled plasma atomic emission spectrometry │ XBT 623.2-2018 Chemical analysis method for ferrocerium alloys Part 2: Determination of aluminum, silicon and nickel content by inductively coupled plasma atomic emission spectrometry│ XBT 624.1-2018 Chemical analysis method of yttrium-iron alloy Part 1: Determination of the amount of rare earth impurities by inductively coupled plasma atomic emission spectrometry│ XBT 624.2-2018 Chemical analysis method of yttrium-iron alloys Part 2: Determination of calcium, magnesium, aluminum and manganese content Inductively coupled plasma atomic emission spectrometry│ Methods for chemical analysis of thulium, ytterbium, and lutetium enrichments. Determination of the proportions of fifteen rare earth element oxides. Inductively coupled plasma atomic emission spectrometry│ XBT 628-2020 Chemical analysis methods for high purity rare earth metals. Determination of trace element content. Glow discharge mass spectrometry.: Determination of the amount of rare earth elements│ XBT 629.2-2020 Chemical analysis method for rare earth aluminum master alloys Part 2: Determination of total rare earth content│ XBT 801-1993 Energy consumption of rare earth smelting products│: Recycling Technology of Rare Earths in Used Displays│ XBT 802.1-2015 Recycling and Treatment of Used Rare Earths Part 1: Technical requirements for recycling rare earths in waste displays│ XBT 802.2-2015 Recycling and treatment of waste rare earths Part 2: Recycling Technology of Rare Earths in Waste Fluorescent Lamps│ XBT 802.2-2015 Recycling and Treatment of Waste Rare Earths Part 2: Technical requirements for the recovery of rare earths in waste fluorescent lamps│ XBT 803-2021 Green factory evaluation guidelines for the rare earth mining, dressing and smelting industry│ Technical Specifications for Recycling and Utilization of Rare Earth Elements from NdFeB Production and Processing Recycled Materials│ XBT 807-2021 Technical Specifications for Recycling of Waste and Used Sintered NdFeB Magnets│ Safety production specifications for in-situ leaching mining of ionic rare earth ores │ ├─21.6 Rare earth production technology papers │ Research on the rare earth, boron, chromium and aluminum co-infiltration process of 45 steel solid powder method │ Research on the optimal rare earth content in Cu-P rare earth weathering steel │ Research on the determination method of total rare earth oxides in rare earth ores by ICP-AES │ Determination of rare earth elements in rare earth concentrates by X-ray fluorescence spectrometry │ Research on the extraction of rare earths from phosphoric acid leachate enriched with rare earths │ Experimental research on the recovery of rare earths from a rare earth tailings │ Experimental research on the extraction of rare earths from sediments of rare earth smelting wastewater │ Experimental research on the enrichment of rare earths from rare earth grouping liquids and acid recovery │ Experimental research on the recovery and preparation of rare earth oxides from rare earth wastewater │ Experimental study on the recovery of rare earths from rare earth polishing powder waste │ Empirical analysis of the impact of public environmental management on the development of the rare earth industry - taking Baotou Steel Rare Earth as an example │ Research on the process of using mixed rare earths to prepare rare earth permanent magnets │ Using rare earths to control metal corrosion │ My opinion on strengthening rare earth resource management - rare earth resource protection │ Research on the separation of rare earths in apatite concentrates containing rare earths │ Geochemical characteristics of rare earth elements and trace elements in Sichuan rare earth mine tailings and their development and utilization significance│ Geochemical characteristics of rare earth elements and trace elements in Sichuan rare earth mine tailings and their development and utilization significance│ The largest ionic rare earth separation enterprise group in China, Minmetals Rare Earth Co., Ltd. was established in Jiangxi│ Current status and prospects of rare earth ferrosilicon alloys in China│ Effect of extended rare earth penetration on the corrosion resistance of 1Cr18Ni9 steel│ Dysprosium-free rare earth permanent magnet motors│ Brief discussion on the application of rare earth NdFeB permanent magnet motors in railway electric drive systems│ Effect of mixed rare earths on the structure and electrochemical properties of A2B7 hydrogen storage alloy│ Energy spectrum analysis of rare earth enriched phases on the working surface of mixed rare earth doped cemented carbide tools│ Research on the leaching of rare earths in weathered crust leaching rare earth ores by mixed ammonium salts│ Microstructure and properties of laser-deposited cobalt-based rare earth alloys│ Leaching rare earths from waste rare earth phosphors with sulfuric acid│ Determination of total rare earth content in Baotou rare earth mines by inductively coupled plasma emission spectrometry│ Determination of rare earth elements in rare earth raw materials by inductively coupled plasma emission spectrometry│ Study on the distribution characteristics of rare earth associated thorium resources in Bayan Obo rare earth deposits│ Behavior of rare earth Ce in Cu-Ni, Cu-B alloy│ Effect of rare earth Ce on the structure and properties of 5CrMnMo steel│ Effect of rare earth La on the structure and mechanical properties of powder metallurgy titanium alloy│ Effect of rare earth Sc and Zr on the structure and mechanical properties of cast Zn-43Al-1.6Cu alloy│ Effect of rare earth and heat treatment on the mechanical properties of high chromium cast iron parts│ Microstructure and mechanical properties of rare earth low alloy wear-resistant steel welding rod deposited metal │ Effect of rare earth element La on the forged structure and mechanical properties of powder metallurgy titanium alloy │ Effect of rare earth element yttrium on the microstructure of V-5Cr-5Ti alloy prepared by powder metallurgy │ Research on the recovery of rare earth and extractant from rare earth smelting separation wastewater │ Effect of rare earth addition process on rare earth and sulfur distribution in steel.doc │ Rapid determination of the total amount of rare earths in rare earth ignition materials │ Effects of rare earth and boron refinement treatment on the structure and dezincification corrosion properties of cast lead brass │ Comparative analysis of the effects of rare earths and rare earth oxides on the properties of tungsten copper electrical contact materials │ Historical review and current situation of the application of rare earths in steel │ Determination of the total amount of rare earth oxides in rare earth mineral samples │ Effect of rare earths on the conductivity of 6063 aluminum alloy │ Effect of rare earth on antimony alloying corrosion behavior of aluminum-based materials│ Effect of rare earth on the performance of iridium methanol carbonylation catalytic system│ Effect of rare earth on caustic soda corrosion resistance of nickel-copper alloy cast iron│ Research progress on rare earth isoprene rubber catalyst activity│ Research progress on rare earth doped red long afterglow luminescent materials│ Research on rare earth improving the erosion and wear resistance of 40cr steel nitride layer│ Effect of rare earth oxides on the microstructure and properties of nano-alumina ceramic coating for casting│ Effect of demagnetization of rare earth permanent magnet synchronous motor on motor loss│ Application and control of rare earth permanent magnet synchronous motor for winch drive│ Research on application of rare earth permanent magnet motor in crane industry│ Cyclic leaching of sulfuric acid from rare earth phosphate concentrate│ Research on application of rare earth heat-resistant steel on the radiant section furnace tube of ethylene cracking furnace│ Rare earth wear-resistant alloy pipeline welding process │ Analysis of the impact of rare earth resource tax reform on the cost and benefit of rare earth enterprises in my country │ New technology for anti-corrosion surface treatment of rare earth passivated metals │ Research on the electrical properties of rare earth aluminum alloys │ Production test of rare earth cast steel valves │ Analysis of casting defects of rare earth magnesium ductile iron flange │ Research on the determination method of neodymium content in rare earth butadiene rubber pilot production wastewater │ The impact of resource development on the soil environment of the cultivated layer and available rare earths in rare earth mining areas│ Catalytic performance of Cu-ZnO-Al2O3 catalyst modified with light rare earth elements for the hydrogenation of CO2 to methanol reaction│ Separation of rare earth lanthanum and cerium by acid fractional crystallization method│ Application practice of yttrium-based heavy rare earths in the production of chromium-based casting grinding balls│ Preliminary study on the wear resistance of iron-nickel rare earth alloy powder materials│ Aluminum rare earth co-infiltrated steel and its corrosion resistance │ The effect of non-rare earth impurities on the emulsification formation and elimination of naphthenic acid extraction of rare earths │ └─21.6 Rare earth production technology courseware 4.4 Rare earth compound separation method PPT 108 Chapter 6 Application of rare earths in material anti-corrosion 16.ppt Chapter 6 Application of rare earths in material anti-corrosion 27 pages.ppt
Reply #22024-07-13
Thanks, Mr. Dong, let’s learn together* , make progress together!
Reply #32024-07-13
Big treasure house, 6666, Teacher Dong, the most powerful
Reply #42024-07-13
There is a golden house in the book. Thank you, Teacher Dong, for sharing it! ! ! !
Reply #52024-07-13
Shutong, Teacher Dong: Your sharing is like spring rain that moistens things and opens my heart. Your generosity is like the shining moonlight, warming my heart. Your wisdom, like the twinkling stars, guides me. Your sharing is as intoxicating as fine wine, making me have endless aftertaste. Your selflessness is like a long river flowing in an endless stream. Your sharing is like a painting, colorful and colorful. Haichuan spirit: Learn together * , improve together! Happy communication, happy sharing!
Reply #62024-07-13
There are roads in the mountain of books, and hard work is the path; there is no limit to the sea of ​​learning, and hard work is the boat
Reply #72024-07-13
The book has its own golden house, and the book has its own beauty like jade! Thanks to Teacher Dong for sharing
Reply #82024-07-13
There is a road to the mountain of books, and diligence is the path, and there is no limit to the sea of ​​learning. Thank you for sharing, teacher!
Reply #92024-07-13
Thank you to Shutong Database and Teacher Dong for your selfless sharing!
Reply #102024-07-13
If you don’t do anything useless or harmful, it will be beneficial, and the merit will be achieved.; If foreign things are not expensive and useful things are cheap, the people will be satisfied.
Reply #112024-07-13
Teacher Dong has shared a new post. Those who are diligent should act quickly to participate in the activity of replying to the post and receiving wealth!

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