共 119 条
- [81] GHANBARI H, SAXEN H, GROSSMANN I E., Optimal design and operation of a steel plant integrated with a polygeneration system, AIChE Journal, 59, 10, pp. 3659-3670, (2013)
- [82] SCHMOLE P., The blast furnace-fit for the future? [J], Stahl. und Eisen, 136, pp. 31-40, (2016)
- [83] LI Xiaopeng, SUN Xiaofeng, LI Jian, The primary research on carbon footprint for cement enterprises, China Building Materials Science & Technology, 19, 6, pp. 18-19, (2010)
- [84] JIANG Rui, WANG Hongtao, Life cycle assessment of China's cement industry [J], Chemical Engineering & Equipment, 4, pp. 183-187, (2010)
- [85] BAI Wenqi, DU Qiang, LYU Jing, Et al., Research on the carbon footprint in the production of common Portland cement, Journal of Xi’an Polytechnic University, 27, 4, pp. 472-476, (2013)
- [86] QIN Yuqian, Research on accounting of carbon footprint of cement products, (2020)
- [87] YANG Lining, FU Xiangzhao, A case study of cement carbon footprint in Chongqing [J], China Cement, 27, 8, pp. 87-92, (2016)
- [88] SHEN Weiguo, CAO Liu, LI Qiu, Et al., Is magnesia cement low carbon? Life cycle carbon footprint comparing with Portland cement, Journal of Cleaner Production, 131, pp. 20-27, (2016)
- [89] ZHANG J L, CHENG J C P, LO I M C., Life cycle carbon footprint measurement of Portland cement and ready mix concrete for a city with local scarcity of resources like Hong Kong, The International Journal of Life Cycle Assessment, 19, 4, pp. 745-757, (2014)
- [90] Cement industry energy and CO<sub>2</sub> performance, getting the numbers right. Concrete sustainability initiative, (2009)