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Affected by environmental regulations and natural gas prices, our company needs to take advantage of the coal resources available within our group to launch a gasification project, which will primarily be used as a heat source for calcination furnaces. We seek guidance from experts; those who are manufacturers or researchers in this field are welcome to offer their assistance. WeChat ID: wyj3239160
For information on industrial gas generation and gasification furnace technologies, please contact Researcher Zhu from the Institute of Engineering Thermophysics, Chinese Academy of Sciences
Affected by environmental concerns and natural gas prices, it is the right approach to utilize coal resources for the production of gasification fuel gas. Carbon molecule vaporization technology can solve your problems, offering significant advantages: The key features of carbon molecule vaporization combustion technology include 1) a simple process, safe operation, and high gas production volume (the vaporization rate at normal pressure is 1,000–2,000 kg/m2•h, which is more than 5 times higher than that of similar technologies), allowing for large-scale application ; 2. Coal gasification has low costs; its power consumption during operation is more than 30% lower than that of chain combustion furnaces. The power consumption per unit of gas produced is 1% of that of fluidized bed and fluidized bed gasifiers both domestically and internationally ; 3. The gasification furnace requires less steel, with steel consumption reduced by over 30% compared to technologies of the same output level ; 4. With the same coal quality and processing method, the gasification reaction is fast and complete, resulting in a high carbon conversion rate; the calorific value of the gas increases by 10% ; The carbon content in the slag is reduced by 10% ; 5. It has wide fuel adaptability, capable of gasifying and burning various types of coal, coke, coal gangue, biomass, and other organic materials (waste) ; 6. Under oxygen-deficient conditions, the Ca/S ratio in the molecular vaporization furnace is close to 1, enabling sulfur removal efficiency of nearly 100% ; 7. For high-temperature gas, combustion is carried out with a low excess air coefficient (α close to 1), resulting in zero chemical incomplete combustion and cleaner emissions ; It is possible to prevent the generation of oxygen-related toxic and harmful substances such as SOx and NOx at the source ; 8, and more importantly: the vaporized combustion of carbon molecules saves over 10% more clean air compared to burning coal directly.