Reviews and Special Topics

Carbon footprint analysis of yellow phosphorus products based on LCA

  • WANG Xuemeng ,
  • AN Yan ,
  • LIU Hai ,
  • TIAN Mengkui
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  • 1. School of Chemistry and Chemical Engineering,Guizhou University,Guiyang 550025,China
    2. State Key Laboratory of Efficient Utilization for Low Grade Phosphate Rock and Associated Resources,Guiyang 550016,China

Received date: 2023-04-17

  Online published: 2023-12-14

Abstract

Yellow phosphorus,as a high energy consumption and high carbon emission product,to find out its carbon emission footprint and promote its low carbon development is of great significance to our “double carbon” strategy.Taking a 50 000 t/a yellow phosphorus enterprise in Guizhou province as an example,Life Cycle Assessment(LCA) was adopted to quantitatively analyze the carbon footprint of yellow phosphorus products in the production process,and proposed corresponding energy-saving and carbon reduction measures for its green and low-carbon development.The research results showed that the carbon footprint of each ton of yellow phosphorus in the production process was 1.580×104 kg CO2.The carbon emissions were concentrated in the two aspects of tail gas treatment and power consumption,which was accounted for 90.08% of the total.Based on its carbon footprint accounting results,it was proposed to adopt green power production,rational use of the geographical advantages of phosphorus resources,strengthen process control,and comprehensive utilization of yellow phosphorus tail gas and other emission reduction measures to reduce the carbon footprint of yellow phosphorus production process.

Cite this article

WANG Xuemeng , AN Yan , LIU Hai , TIAN Mengkui . Carbon footprint analysis of yellow phosphorus products based on LCA[J]. Inorganic Chemicals Industry, 2023 , 55(12) : 36 -42 . DOI: 10.19964/j.issn.1006-4990.2023-0222

References

1 王莹,熊先孝,东野脉兴,等.中国磷矿资源预测模型及找矿远景分析[J].中国地质202249(2):435-454.
  WANG Ying, XIONG Xianxiao, DONGYE Maixing,et al.Prediction model and exploration prospect analysis of phosphate mineral resources in China[J].Geology in China202249(2):435-454.
2 国家发展改革委,工业和信息化部,生态环境部,等.高耗能行业重点领域节能降碳改造升级实施指南(2022年版)[R/OL].(2022-02-15)[2023-04-17].https://www.ndrc.gov.cn/xwdt/ztzl/ghnhyjnjdgzsj/zcwj/202202/t20220217_1315689_ext.html.
3 孙铭蔚,狄飞,李晶莹,等.面向产品制造过程的碳效率评价方法研究[J].机电产品开发与创新202235(3):84-87.
  SUN Mingwei, DI Fei, LI Jingying,et al.Research on carbon efficiency evaluation method for product manufacturing process[J].Development & Innovation of Machinery & Electrical Products202235(3):84-87.
4 李洪丞,曹华军,刘兰微,等.碳达峰碳中和背景下低碳制造研究现状与技术路径研究[J/OL].机械工程学报2023:1-16.[2023-02-24].https://kns.cnki.net/kcms/detail/11.2187.TH.20230223.0907.044.html.
  LI Hongcheng, CAO Huajun, LIU Lanwei,et al.Research status and technology path of low-carbon manufacturing under the background of emission peak and carbon neutrality[J/OL].Journal of Mechanical Engineering2023:1-16.[2023-02-24].https://kns.cnki.net/kcms/detail/11.2187.TH.20230223.0907.044.html.
5 董书恒,逯承鹏,唐呈瑞,等.基于生命周期的原镁生产过程碳足迹分析[J].辽宁大学学报(自然科学版)202047(1):34-41.
  DONG Shuheng, LU Chengpeng, TANG Chengrui,et al.The carbon footprint in the production process of raw magnesium in China[J].Journal of Liaoning University(Natural Sciences Edition)202047(1):34-41.
6 WANG Qiang, GE Shuting.Carbon footprint and water footprint in China:Similarities and differences[J].Science of the Total Environment2020739:140070.
7 WIEDMANN T, MINX J C.A definition of carbon footprint[J].Journal of the Royal Society of Medicine200992(4):193-195.
8 王俊博,李鑫,田继军,等.煤炭开发利用产业碳足迹计算方法及减排措施综述[J/OL].煤炭学报2022:1-13.[2022-05-17].https://kns.cnki.net/kcms/detail/11.2190.TD.20220516.1853.002.html.
  WANG Junbo, LI Xin, TIAN Jijun,et al.Summary of carbon footprint calculation methods and emission reduction measures for coal exploitation and utilization industry[J/OL].Journal of China Coal Society2022:1-13.[2022-05-17].https://kns.cnki.net/kcms/detail/11.2190.TD.20220516.1853.002.html.
9 WANG Haiying, WANG Yue, MI Hong,et al.Analysis of carbon emission energy inventory from refrigerant production and recycling carbon compensation[J].Applied Sciences202112(1).Doi:10.3390/app12010001.
10 CHEN Wei, ZHANG Qian, WANG Chengxin,et al.Environmental sustainability challenges of China’s steel production:Impact-oriented water,carbon and fossil energy footprints assessment[J].Ecological Indicators2022136:108660.
11 孙群,张为民.基于碳足迹的生产过程分级递阶控制技术研究[J].中国机械工程201122(9):1035-1038,1111.
  SUN Qun, ZHANG Weimin.Carbon footprint based multilevel hierarchical production process control[J].China Mechanical Engineering201122(9):1035-1038,1111.
12 陈广卫,张志智.对二甲苯产品的碳足迹与减排措施[J].化工环保202141(6):774-778.
  CHEN Guangwei, ZHANG Zhizhi.Carbon footprint and emission reduction measures of p-xylene products[J].Environmental Protection of Chemical Industry202141(6):774-778.
13 张旭辉,郭欢欢,马宏伟,等.基于生命周期的采煤机绿色评价方法研究及应用[J].煤炭科学技术202149(6):205-212.
  ZHANG Xuhui, GUO Huanhuan, MA Hongwei,et al.Research and application of green evaluation method for shearer based on life cycle[J].Coal Science and Technology202149(6):205- 212.
14 ZHOU Xinying, ZHAI Yijie, REN Ke,et al.Life cycle assessment of polycarbonate production:Proposed optimization toward sustainability[J].Resources,Conservation and Recycling2023189:106765.
15 来鑫,陈权威,顾黄辉,等.面向“双碳”战略目标的锂离子电池生命周期评价:框架、方法与进展[J].机械工程学报202258(22):3-18.
  LAI Xin, CHEN Quanwei, GU Huanghui,et al.Life cycle assessment of lithium-ion batteries for carbon-peaking and carbon-neutrality:Framework,methods,and progress[J].Journal of Mechanical Engineering202258(22):3-18.
16 ZHAO Yingxin, YANG Zhifan, NIU Jiaojiao,et al.Systematical analysis of sludge treatment and disposal technologies for carbon footprint reduction[J].Journal of Environmental Sciences2023128:224-249.
17 谢明辉,满贺诚,段华波,等.生命周期影响评价方法及本地化研究进展[J].环境工程技术学报202212(6):2148-2156.
  XIE Minghui, MAN Hecheng, DUAN Huabo,et al.Research progress on the life cycle impact assessment methods and their localization in China[J].Journal of Environmental Engineering Technology202212(6):2148-2156.
18 姜兴宇,刘傲,杨国哲,等.激光增材制造过程低碳建模与工艺参数优化[J].机械工程学报202258(5):223-238.
  JIANG Xingyu, LIU Ao, YANG Guozhe,et al.Low-carbon modeling and process parameter optimization in laser additive manufacturing process[J].Journal of Mechanical Engineering202258(5):223-238.
19 王辛龙,许德华,钟艳君,等.中国磷化工行业60年发展历程及未来发展趋势[J].无机盐工业202052(10):9-17.
  WANG Xinlong, XU Dehua, ZHONG Yanjun,et al.Future trend and development course of phosphorus chemical industry for sixty years in China[J].Inorganic Chemicals Industry202052(10):9-17.
20 孟昊,陆思伟.电炉法生产黄磷安全风险分析与防范[J].无机盐工业201446(6):56-58.
  MENG Hao, LU Siwei.Safety risks analysis and precautions for yellow phosphorus production with electric furnace process[J].Inorganic Chemicals Industry201446(6):56-58.
21 GUI Fangzhi, REN Shedong, ZHAO Yanwei,et al.Activity-based allocation and optimization for carbon footprint and cost in product lifecycle[J].Journal of Cleaner Production2019236:117627.
22 英国标准协会. PAS 2050:2008 商品和服务在生命周期内的温室气体排放评价规范 [S].2008.
23 马越峰,张铭,李建忠.烧结钕铁硼磁性材料碳足迹核算分析[J].稀土202142(1):72-80.
  MA Yuefeng, ZHANG Ming, LI Jianzhong.Assessment of the carbon footprint of sintered PrNdFeB magnetic material based on life cycle assessment[J].Chinese Rare Earths202142(1):72-80.
24 孙志立.黄磷生产的节能途径与措施[J].化肥工业201542(5):10-12,83.
  SUN Zhili.Ways and measures of energy saving in yellow phosphorus production[J].Chemical Fertilizer Industry201542(5):10-12,83.
25 顾志勤.黄磷生产中的能耗和节能措施综述(Ⅰ)[J].硫磷设计与粉体工程2006(1):20-27.
  GU Zhiqin.Overview of energy consumption and energy-saving measures in yellow phosphorus production(Ⅰ)[J].Sulphur Phosphorus & Bulk Materials Handling Related Engineering2006(1):20-27.
26 李枫.黄磷生产的节能途径与措施[J].云南化工201845(3):187-188.
  LI Feng.Energy-saving ways and measures of yellow phosphorus production[J].Yunnan Chemical Technology201845(3):187- 188.
27 孙志立.制磷电炉内电流、热量分布对制磷电炉运行的影响分析[J].磷肥与复肥200924(5):50-54.
  SUN Zhili.Study on the distributions of electric current and heat in phosphorus furnace and its effect on the operation of the furnace[J].Phosphate & Compound Fertilizer200924(5):50-54.
28 孙志立.黄磷生产炭质还原剂的选用[J].武汉工程大学学报201335(9):69-75.
  SUN Zhili.On selection of carbonaceous reductant in yellow phosphorus production[J].Journal of Wuhan Institute of Technology201335(9):69-75.
29 陈善继.磷矿组分对黄磷产品电炉能耗的影响[J].硫磷设计与粉体工程2002(2):13-17.
  CHEN Shanji.The influence of the composition of the phosphate rock on the energy consumption of the electric furnace for phosphorus production[J].Sulphur Phosphorus & Bulk Materials Handling Related Engineering2002(2):13-17.
30 梁志飞,贾旭东.绿电交易关键问题及政策建议[J].中国电力企业管理2022(10):26-29.
  LIANG Zhifei, JIA Xudong.Key problems and policy suggestions of green electricity trading[J].China Power Enterprise Management2022(10):26-29.
31 牟晨璐,丁涛,周郑洋,等.面向碳中和的工业尾气电厂技术综述及其典型案例经济性分析[J].电力自动化设备202141(9):74-84.
  MU Chenlu, DING Tao, ZHOU Zhengyang,et al.Technology review on industrial off-gas power plants for carbon neutral and economic analysis of typical cases[J].Electric Power Automation Equipment202141(9):74-84.
32 彭元洪,万源,刘新坤,等.黄磷尾气蒸汽锅炉新技术[J].无机盐工业201042(8):39-40.
  PENG Yuanhong, WAN Yuan, LIU Xinkun,et al.New steam boiler technology for utilization of yellow phosphorus tail gas[J].Inorganic Chemicals Industry201042(8):39-40.
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