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Life cycle assessment of ammonia synthesis in China
by
Li, Junjie
, Tian Yajun
, Liu, Huan
, Deng Yelin
, Xu, Deping
, Liu, Shuqin
, Miao Xiaopeng
, Xie Kechang
, Zhang, Yueling
in
Acidification
/ Air pollution
/ Ammonia
/ Ammonia industry
/ Chemical industry
/ Coal
/ Coal gasification
/ Coke oven gas
/ Coke ovens
/ Depletion
/ Emissions
/ Energy conservation
/ Energy consumption
/ Environmental impact
/ Environmental performance
/ Greenhouse effect
/ Greenhouse gas emissions
/ Greenhouse gases
/ ISO standards
/ Life cycle analysis
/ Life cycle assessment
/ Life cycles
/ Natural gas
/ Parameter identification
/ Parameter sensitivity
/ Process parameters
/ Raw materials
/ Resource consumption
/ Sensitivity analysis
/ Slurries
/ Sustainable development
2022
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Life cycle assessment of ammonia synthesis in China
by
Li, Junjie
, Tian Yajun
, Liu, Huan
, Deng Yelin
, Xu, Deping
, Liu, Shuqin
, Miao Xiaopeng
, Xie Kechang
, Zhang, Yueling
in
Acidification
/ Air pollution
/ Ammonia
/ Ammonia industry
/ Chemical industry
/ Coal
/ Coal gasification
/ Coke oven gas
/ Coke ovens
/ Depletion
/ Emissions
/ Energy conservation
/ Energy consumption
/ Environmental impact
/ Environmental performance
/ Greenhouse effect
/ Greenhouse gas emissions
/ Greenhouse gases
/ ISO standards
/ Life cycle analysis
/ Life cycle assessment
/ Life cycles
/ Natural gas
/ Parameter identification
/ Parameter sensitivity
/ Process parameters
/ Raw materials
/ Resource consumption
/ Sensitivity analysis
/ Slurries
/ Sustainable development
2022
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Do you wish to request the book?
Life cycle assessment of ammonia synthesis in China
by
Li, Junjie
, Tian Yajun
, Liu, Huan
, Deng Yelin
, Xu, Deping
, Liu, Shuqin
, Miao Xiaopeng
, Xie Kechang
, Zhang, Yueling
in
Acidification
/ Air pollution
/ Ammonia
/ Ammonia industry
/ Chemical industry
/ Coal
/ Coal gasification
/ Coke oven gas
/ Coke ovens
/ Depletion
/ Emissions
/ Energy conservation
/ Energy consumption
/ Environmental impact
/ Environmental performance
/ Greenhouse effect
/ Greenhouse gas emissions
/ Greenhouse gases
/ ISO standards
/ Life cycle analysis
/ Life cycle assessment
/ Life cycles
/ Natural gas
/ Parameter identification
/ Parameter sensitivity
/ Process parameters
/ Raw materials
/ Resource consumption
/ Sensitivity analysis
/ Slurries
/ Sustainable development
2022
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Journal Article
Life cycle assessment of ammonia synthesis in China
2022
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Overview
PurposeSynthetic ammonia is not only the basis of the fertilizer industry in China but also has the highest energy consumption and pollution emissions in the chemical industry. The objective of this study was to conduct a cradle-to-gate life cycle assessment (LCA) of ammonia production based on different raw materials to identify the crucial processes and parameters and to provide suggestions for clean and sustainable development of the ammonia industry in China.MethodsBased on actual industrial data, this study comprehensively evaluated the resource consumption and pollution emissions caused by different raw material routes and coal-to-ammonia technologies from a life cycle perspective according to the LCA standards ISO 14040 series and using the CML 2001 method and identified the key environmental impact categories and stage contributions. In addition, the effects of various input parameters on the environmental burden were specified through sensitivity analysis. Accordingly, suggestions for improving the environmental performance of ammonia production are proposed.ResultsThe environmental burdens of the coal-based and coke oven gas-based routes were 1.43 and 1.7 times higher than that of the natural gas-based route, respectively. The significant differences were mainly reflected in the greenhouse effect, acidification, and fossil energy depletion. Advanced coal-to-ammonia technology, represented by coal water slurry gasification, showed a lower environmental burden than the traditional intermittent gasification technology, especially in terms of greenhouse gas (GHG) emissions and energy consumption. The GHG emissions involved in producing ammonia decreased from 3.88 to 2.18 kg per 1 kg of ammonia, and energy consumption decreased by approximately 17%, from 5.69 to 4.71 MJ.ConclusionsCoal is the main raw material used for ammonia production in China, and the results showed that the application of advanced coal gasification with energy-saving technologies can effectively improve the environmental performance of synthetic ammonia production in China.
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