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Does anyone have the electronic versions of these two books "Ethylene Equipment" and "Pipeline Equipment Selection and Engineering Application"

2023-02-28View Original

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Who has the electronic versions of "Ethylene Equipment" and "Pipeline Equipment Selection and Engineering Application"? Please share it, thank you! "Ethylene Equipment" is a book published by Sinopec Press Co., Ltd. in 2020, author: Song Tianmin. This book comprehensively introduces the main equipment for ethylene production, including cracking furnaces, quenching boilers, operations and troubleshooting. book title: Pipeline Equipment Selection and Engineering Application ISBN: 9787511466334Publisher: Sinopec Press publication time: 2022-5 Book Catalog Editing and Broadcast Introduction Chapter 1 Cracking Furnace 1.1 Lummus SRT Cracking Furnace 1.2 Stone-Webster USC Cracking Furnace 1.3 KTI GK Cracking Furnace 1.4 Kellogg Millisecond Furnace 1.5 Linde Pyrocrack Cracking Furnace 1.6 Brown Root HSLR Cracking Furnace 1.7 SL-Ⅰ/Ⅱ cracking furnace 1.8 Domestic CBL cracking furnace 1.9 Auxiliary equipment of cracking furnace 1.9.1 Steam drum 1.9.2 Quenching heat exchanger 1.9.3 Mixer 1.9.4 Cleaning tank 1.10 Automatic control and interlocking of cracking furnace 1.10.1 Automatic control of cracking furnace 1.10.2 Interlocking of cracking furnace 1.10.3 Advanced control of cracking furnace Chapter 2 quenching boiler 2.1 Double-casing quenching boiler 2.1.1 Mitsubishi type quenching boiler 2.1.2 Schmidt type quenching boiler 2.2 Tube type quenching boiler 2.2.1 Vertical quenching boiler 2.2.2 Horizontal quenching boiler 2.2.3 Inclined quenching boiler 2.3 Coil type quenching boiler 2.3.1 Four-head single-layer coil quenching boiler 2.3.2 Four-head double-layer coil quenching boiler Chapter 3 Reactor 3.1 C2 hydrogenation reactor 3.1.1 Structure of C2 hydrogenation reactor 3.1.2 Precautions for use of C2 hydrogenation reactor 3.1.3 Automatic control and interlocking of C2 hydrogenation reactor 3.2 C3 hydrogenation reactor 3.2.1 Structure of C3 hydrogenation reactor 3.2.2 Precautions for use of C3 hydrogenation reactor 3.2.3 Automatic control and interlocking of C3 hydrogenation reactor 3.3 Methanation reactor 3.3.1 Structure of methanation reactor 3.3.2 Precautions for use of methanation reactor 3.3.3 Automatic control and interlocking of methanation reactor 3.4 Arsenic removal reactor 3.4.1 C2 hydrogenation dearsenic reactor 3.4.2 C3 Hydrogenation Dearsenic Reactor 3.5 Waste Alkali Oxidation Reactor Chapter 4 Tower Equipment 4.1 Quenching Tower 4.1.1 Quenching Oil Tower 4.1.2 Quenching Water Tower 4.2 Stripping Tower 4.2.1 Heavy Fuel Oil Stripping Tower 4.2.2 Light Fuel Oil Stripping Tower 4.2.3 Gasoline Stripping Tower 4.2.4 Process Water Stripping Tower 4.3 Distillation Tower 4.3.1 High pressure depropanizer 4.3.2 Low pressure depropanizer 4.3.3 Demethanizer 4.3.4 Deethanizer 4.3.5 Debutanizer 4.3.6 Deoctane tower 4.3.7 Depentanizer 4.3.8 Ethylene distillation tower 4.3.9 Propylene distillation tower 4.4 Washing tower 4.4.1 Alkali washing tower 4.4.2 Waste alkali oxidation water washing tower Chapter 5 Heat exchange equipment 5.1 Heat exchanger 5.1.1 Shell and tube heat exchanger 5.1.2 Shell and tube heat exchanger 5.1.3 Plate heat exchanger 5.1.4 Plate fin heat exchanger 5.2 Cold box 5.2.1 Structure of the cold box 5.2.2 Function of the cold box 5.2.3 Precautions for use of the cold box 5.2.4 Anticorrosion and antifreeze of cold box 5.3 Heater 5.3.1 Fixed tube plate heater 5.3.2 U-shaped tube heater 5.4 Cooler 5.4.1 Fixed tube plate cooler 5.4.2 Floating head cooler 5.4.3 U-shaped tube cooler 5.5 Steam condenser 5.6 Reboiler 5.7 Evaporator 5.7.1 Cold flare discharge vaporizer 5.7.2 Circulating propane evaporator Chapter 6 Tank 6.1 Separation tank 6.1.1 Gas-liquid separation tank 6.1.2 Liquid-liquid separation tank 6.1.3 Hot torch separation tank 6.2 Buffer tank 6.2.1 Horizontal buffer tank 6.2.2 Vertical buffer tank 6.3 Flash tank 6.4 Reflux tank 6.4.1 Vertical reflux tank 6.4.2 Horizontal reflux tank 6.5 Storage tank 6.5.1 Vertical storage tank 6.5.2 Horizontal storage tank 6.5.3 Spherical storage tank Chapter 7 Pump 7.1 Centrifugal pump 7.1.1 Working principle of centrifugal pump 7.1.2 Structure of centrifugal pump 7.1.3 Main components of centrifugal pump 7.1.4 Characteristics of centrifugal pump 7.1.5 Cavitation and installation height of centrifugal pump 7.1.6 Operation of centrifugal pump 7.2 Cold pump 7.2.1 Structure of cold pump 7.2.2 Several special issues of cold pump 7.2.3 Precautions for use of cold pump 7.3 Other pumps 7.3.1 Oil pump 7.3.2 Water pump 7.3.3 Olefin pump 7.3.4 Alkali pump 7.3.5 Lubricating oil pump 7.3.6 Injection pump 7.3.7 Steam injection pump 7.3.8 Canned pump 7.3.9 Magnetic pump 7.3.10 Metering pump Chapter 8 Compressor 8.1 Centrifugal compressor 8.1.1 Working principle of centrifugal compressor 8.1.2 Structure of centrifugal compressor 8.1.3 Main components of centrifugal compressor 8.1.4 Performance of centrifugal compressor 8.1.5 Flow adjustment of centrifugal compressor 8.1.6 Multi-stage centrifugal compressor 8.2 Piston compressor 8.2.1 Working principle of piston compressor 8.2.2 Structure of piston compressor 8.2.3 Main components of piston compressor 8.2.4 Performance parameters of piston compressor 8.2.5 Operation of piston compressor 8.2.6 Common materials for main components of piston compressor 8.3 Pyrolysis gas compressor 8.3.1 Working process of cracked gas compressor 8.3.2 Oil circuit system of cracked gas compressor 8.3.3 Sealing system of cracked gas compressor 8.3.4 Automatic control and interlocking of cracked gas compressor 8.3.5 Maintenance of cracked gas compressor 8.4 Refrigeration compressor 8.4.1 Ethylene refrigeration compressor 8.4.2 Propylene refrigeration compressor 8.4.3 Binary refrigeration compressor 8.4.4 Ternary refrigeration compressor 8.4.5 Methane refrigeration compressor 8.5 Other compressors Chapter 9 Steam turbine 9.1 Working principle of steam turbine 9.1.1 Working principle of steam turbine 9.1.2 Composition of steam turbine 9.1.3 Classification of steam turbine 9.2 Structure of steam turbine 9.2.1 Steam turbine body structure 9.2.2 Steam turbine shell 9.2.3 Steam turbine rotor 9.2.4 Steam turbine condensation equipment 9.3 Steam turbine regulating system 9.3.1 Steam turbine regulating system 9.3.2 Structure of the regulating system Chapter 10 Other equipment 10.1 Expander 10.1.1 Working principle of the expander 10.1.2 Structure of the expander 10.1.3 Cooling capacity adjustment of the expander 10.1.4 Interlocking of the expander 10.1.5 Precautions for operation of the expander 10.2 Dryer 10.2.1 Cracking gas dryer 10.2.2 Liquid dryer 10.2.3 Hydrogen dryer 10.3 Coalescer 10.4 Deaerator 10.5 Special valve 10.5.1 Butterfly valve 10.5.2 Gate valve 10.5.3 Stop valve 10.5.4 Check valve 10.5.5 Plug valve 10.5.6 Safety valve 10.5.7 Trap 10.5.8 Cracking gas valve 10.5.9 Anti-surge valve Chapter 11 Abnormal phenomenon judgment and troubleshooting 11.1 Abnormal phenomenon judgment 11.1.1 Abnormal phenomena of cracking furnace 11.1.2 Abnormal phenomena of quenching system 11.1.3 Abnormal phenomena of compressor 11.1.4 Abnormal phenomena of steam turbine 11.1.5 Abnormal phenomena of alkali washing tower 11.1.6 Abnormal phenomena of separation unit 11.1.7 Abnormal phenomena and treatment of expander 11.1.8 Troubleshooting of centrifugal pumps 11.1.9 Troubleshooting of centrifugal compressors 11.1.10 Troubleshooting and handling of piston compressors 11.2 Emergency shutdown and accident cases 11.2.1 Emergency shutdown handling 11.2.2 Typical accident cases Chapter 12 Safety, environmental protection and energy saving 12.1 Safety 12.1.1 Safety facilities 12.1.2 Monitoring points of key parts 12.2 Environmental protection 12.2.1 Wastewater and waste liquid treatment 12.2.2 Waste gas treatment 12.2.3 Waste residue treatment 12.3 Energy saving measures 12.3.1 Energy saving of cracking furnace 12.3.2 Energy saving of quenching system 12.3.3 Energy saving of compression unit 12.3.4 Energy saving of separation unit 12.3.5 Water saving, emission reduction and condensate reuse 12.3.6 Energy saving reference of rectification tower

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