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Life-Cycle Impact Assessment of Air Emissions from a Cement Production Plant in Cambodia
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作者 Chanto Chea Pinnara Ket +6 位作者 Long Taing Sela Kong Dalin Um Chanreaksmey Taing Chanmoly Or Srean Aun Leakhena Hang 《Open Journal of Air Pollution》 CAS 2022年第4期85-99,共15页
Cement industrial emissions account for 32% of air pollution in Cambodia. With that in mind, we examined the environmental impact of Cambodia’s cement industry and identified ways that it could reduce air pollution. ... Cement industrial emissions account for 32% of air pollution in Cambodia. With that in mind, we examined the environmental impact of Cambodia’s cement industry and identified ways that it could reduce air pollution. The study focused on raw material extraction and preparation, calcination, and cement preparation. Data for the life-cycle inventory were provided by the Kampot Cement Plant. Air emissions were assessed using EMEP/EEA and IPCC criteria, and the impact assessment used ReCiPe (2016). The baseline analysis revealed that calcination contributed the most air pollutants, so mitigation scenarios focused on alternative fuels only during the calcination stage of cement production: 1) 100% coal (S1);2) 93% coal and 7% biomass (S2);3) 85% coal and 15% biomass (S3);4) 70% coal and 30% biomass (S4);and 5) 50% coal and 50% biomass (S5). The results demonstrated that certain mitigation measures reduced major emissions and environmental damage. S5 had the best results, reducing CO<sub>2</sub> by 49.97, NOx by 2.233, and SO<sub>2</sub> by 49.333%;however, it increased PM<sub>2.5</sub> by 19.60% and total heavy metal (Pb, Cd, Hg, As, Cr, Cu, Ni, Se, Zn) output by 28.113%. The results of the study showed reductions in serious health and environmental effects associated with climate change of 48.83%, ozone generation of 9.62%, and particulate matter formation of 28.80%. However, carcinogenic and non-carcinogenic human toxicity increased by 35.66%. Therefore, such mitigation effect would be benefit to carbon reduction target in Cambodia. 展开更多
关键词 Biomass CEMENT CLINKER Environmental impacts European Monitoring and Evaluation Program Life Cycle impact Assessment midpoint impact Endpoint impact
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基于非线性价格冲击的沪市隐性交易成本 被引量:1
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作者 王春峰 崔兰伟 +1 位作者 房振明 张蕊 《系统工程》 CSCD 北大核心 2008年第12期20-25,共6页
综合考虑订单流不平衡和价格冲击的非线性特征,引入一种估计价格冲击的新方法,更准确地估计有效价格和摩擦价差。使用沪市超高频数据进行实证研究的结果表明,本文所定义的有效价差估计值比报价中值更接近有效价格,即以其为基准计算得到... 综合考虑订单流不平衡和价格冲击的非线性特征,引入一种估计价格冲击的新方法,更准确地估计有效价格和摩擦价差。使用沪市超高频数据进行实证研究的结果表明,本文所定义的有效价差估计值比报价中值更接近有效价格,即以其为基准计算得到的摩擦价差更适合表示隐性交易成本的大小,并且发现通过报价中值计算得到的有效价差、报价差和摩擦价差相比明显高估了隐性交易成本。 展开更多
关键词 非线性价格冲击 有效价格 摩擦价差 有效价差 报价中值
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基于确定性的桥梁环境影响中点模型评价 被引量:1
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作者 杜攀 张元恒 +2 位作者 甘又月 吴雨航 曾菲圆 《城市道桥与防洪》 2024年第9期74-77,M0009,共5页
为研究桥梁结构生命周期的环境影响,基于生命周期评价(LCA)方法选取了全球增温潜势(GWP)、初级能源消耗(PED)、非生物资源消耗潜值(ADP)、水资源消耗(WU)、酸化潜值(AP)富营养化潜值(EP)、可吸入无机物(RI)、消耗臭氧潜能值(ODP)、臭氧... 为研究桥梁结构生命周期的环境影响,基于生命周期评价(LCA)方法选取了全球增温潜势(GWP)、初级能源消耗(PED)、非生物资源消耗潜值(ADP)、水资源消耗(WU)、酸化潜值(AP)富营养化潜值(EP)、可吸入无机物(RI)、消耗臭氧潜能值(ODP)、臭氧合成(POFP)等9类环境影响因素,建立基于确定性的桥梁全生命周期环境影响中点模型,并选取1座典型桥梁进行案例分析,研究桥梁在生命周期内基于中点模型的环境影响。结果表明:采用不同建材的桥梁环境影响差异较大,其中混凝土、钢材、沥青等3类建材环境影响最大;在桥梁各生命周期阶段对环境产生的影响不一,其中建筑材料的生产以及桥梁现场施工过程对环境影响最大,其他阶段环境影响相对较少。 展开更多
关键词 桥梁 生命周期评价 环境影响 中点模型
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