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首页> 外文期刊>Journal of Central South University of Technology >Life cycle inventory analysis of CO_2 and SO_2 emission of imperial smelting process for Pb-Zn smelter
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Life cycle inventory analysis of CO_2 and SO_2 emission of imperial smelting process for Pb-Zn smelter

机译:铅锌冶炼厂帝国冶炼过程CO_2和SO_2排放的生命周期清单分析

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摘要

Based on the principle of life cycle assessment, CO_2 and SO_2 emission of Imperial Smelting Process in a certain zinc-lead smelter was analyzed by life cycle inventory method. According to the system expansion and substitution method, the environmental impacts of co-products were allocated among the main products of zinc, lead and sulfuric acid. The related impacts were assessed by use of Global Warming Potential (GWP) and Acidification Potential (ACP). The results show that the GWP index from 1998 to 2000 is 11. 53, 11. 65, 10. 93 tCO_2-eq/tZn respectively, the ACP index decreases from 14. 88 kgSO_2-eq/tZn in 1998 to 10. 99 kgSO_2-eq/tZn in 2000. Power and electricity generation, followed by smelting and zinc distillation, are mainly responsible for GWP. Sintering individually affects ACP. Reduction in greenhouse gas emissions of the ISP may come from energy conservation measures rather than from technological developments. And recycling more secondary Pb and Zn materials effectively treated by ISP, and reducing the amount of primary metal are the main ways to put SO_2 emission under control.
机译:根据生命周期评估的原理,采用生命周期清单法对某铅锌冶炼厂的帝国冶炼过程中CO_2和SO_2的排放进行了分析。根据系统扩展和替代方法,将副产品对环境的影响分配到锌,铅和硫酸的主要产品中。通过使用全球变暖潜势(GWP)和酸化潜势(ACP)评估了相关影响。结果表明,1998-2000年全球升温潜能值指数分别为11、53、11、65、10、93 tCO_2-eq / tZn,ACP指数由1998年的14. 88 kgSO_2-eq / tZn下降到10。99 kgSO_2 -eq / tZn(2000年)。电力和发电,然后是冶炼和锌蒸馏,是造成全球升温潜能值的主要因素。烧结会单独影响ACP。 ISP温室气体排放量的减少可能来自节能措施,而不是技术发展。回收更多经过ISP有效处理的二次Pb和Zn材料以及减少一次金属的含量是控制SO_2排放的主要方法。

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