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,2022,49(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 China,2022,49(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,2022,35(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 Products,2022,35(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 Engineering,2023:1-16.[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),2020,47(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),2020,47(1):34-41.
|
6 |
WANG Qiang, GE Shuting.Carbon footprint and water footprint in China:Similarities and differences[J].Science of the Total Environment,2020,739:140070.
|
7 |
WIEDMANN T, MINX J C.A definition of carbon footprint[J].Journal of the Royal Society of Medicine,2009,92(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 Society,2022:1-13.[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 Sciences,2021,12(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 Indicators,2022,136:108660.
|
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,2011,22(9):1035-1038,1111.
|
|
SUN Qun, ZHANG Weimin.Carbon footprint based multilevel hierarchical production process control[J].China Mechanical Engineering,2011,22(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,2021,41(6):774-778.
|
|
CHEN Guangwei, ZHANG Zhizhi.Carbon footprint and emission reduction measures of p-xylene products[J].Environmental Protection of Chemical Industry,2021,41(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,2021,49(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 Technology,2021,49(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 Recycling,2023,189:106765.
|
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,2022,58(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 Engineering,2022,58(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 Sciences,2023,128:224-249.
|
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,2022,12(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 Technology,2022,12(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,2022,58(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 Engineering,2022, 58(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,2020,52(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 Industry,2020,52(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,2014,46(6):56-58.
|
|
MENG Hao, LU Siwei.Safety risks analysis and precautions for yellow phosphorus production with electric furnace process[J].Inorganic Chemicals Industry,2014,46(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 Production,2019,236:117627.
|
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,2021,42(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 Earths,2021,42(1):72-80.
|
24 |
孙志立.黄磷生产的节能途径与措施[J].化肥工业,2015,42(5):10-12,83.
|
|
SUN Zhili.Ways and measures of energy saving in yellow phosphorus production[J].Chemical Fertilizer Industry,2015,42(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 Engineering,2006(1):20-27.
|
26 |
李枫.黄磷生产的节能途径与措施[J].云南化工,2018,45(3):187-188.
|
|
LI Feng.Energy-saving ways and measures of yellow phosphorus production[J].Yunnan Chemical Technology,2018,45(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,2009,24(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 Fertilizer,2009,24(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,2013,35(9):69-75.
|
|
SUN Zhili.On selection of carbonaceous reductant in yellow phosphorus production[J].Journal of Wuhan Institute of Technology,2013,35(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 Engineering,2002(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 Management,2022(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,2021,41(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 Equipment,2021,41(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,2010,42(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 Industry,2010,42(8):39-40.
|