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Method for Estimating and Predicting CO_(2e) Emissions: Case Study of an Urban Wastewater System in Suzhou, China

机译:估算和预测CO_(2e)排放的方法:以中国苏州的城市污水处理系统为例

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摘要

As a fundamental infrastructure to sustain human activities and development, urban wastewater systems are becoming more and more important in the context of population growth and business expansion. It is important to analyze and assess environmental impacts of these systems to community development. This paper presents a model developed for estimating carbon dioxide equivalent (CO_(2e)) emissions resulting from urban wastewater systems addressing both construction and operational activities. Construction emissions are divided into three categories: material manufacture, material transportation, and pipe installation. Operational emissions include the following: energy consumption-related emissions and wastewater treatment-related emissions. Emission factors of gasoline, diesel oil, and electricity were calculated. The model was demonstrated by applying it to the wastewater system in the city of Suzhou, China, to quantify CO_(2e) emissions for the period of 2005-2010. The results highlight the high proportion of emissions from material manufacturing during the construction stage and electricity usage during the operational stage. The CO_(2e) emissions in the construction and operational phases were 517.52 t CO_(2e)/km of pipe construction and 0.53 kg • CO_(2e)/t for wastewater treatment, respectively. Finally, a forecasting model was developed to predict future CO_(2e) emissions over a 5-year horizon, which is a contribution to the overall body of knowledge in environmental sustainability.
机译:作为维持人类活动和发展的基本基础设施,城市污水系统在人口增长和业务扩展的背景下变得越来越重要。重要的是分析和评估这些系统对社区发展的环境影响。本文提出了一个模型,用于估算针对建筑和运营活动的城市废水系统产生的二氧化碳当量(CO_(2e))排放。建筑排放物分为三类:材料制造,材料运输和管道安装。运营排放包括:与能源消耗有关的排放和与废水处理有关的排放。计算了汽油,柴油和电力的排放因子。该模型通过将其应用于中国苏州市的废水系统进行了演示,以量化2005-2010年期间的CO_(2e)排放。结果突出表明,在制造阶段,材料制造产生的排放比例很高,而在运营阶段,则消耗大量的电力。在建设和运营阶段,CO_(2e)的排放量分别为517.52 t CO_(2e)/ km的管道建设和0.53 kg•CO_(2e)/ t的废水处理。最后,建立了一个预测模型来预测未来5年内的CO_(2e)排放量,这对环境可持续性的整体知识做出了贡献。

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  • 来源
    《Journal of Architectural Engineering》 |2016年第4期|A4014003.1-A4014003.10|共10页
  • 作者单位

    Dept. of Civil Engineering, Anhui Univ. of Architecture, Hefei City, Anhui 230022, P.R. China Del E. Webb School of Construction, Ira A. Fulton Schools of Engineering, Arizona State Univ., Tempe, AZ 85287;

    Del E. Webb School of Construction, Ira A. Fulton Schools of Engineering, Arizona State Univ., Tempe, AZ 85287-3005;

    Dept. of Construction Management and Real Estate, School of Civil Engineering, Southeast Univ., Nanjing 210096, P.R. China;

    Dept. of Construction Management and Real Estate, School of Civil Engineering, Southeast Univ., Nanjing 210096, P.R. China;

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