首页|苏州某污水处理厂GHG排放综合分析及减排路径

苏州某污水处理厂GHG排放综合分析及减排路径

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以江苏省苏州市某生活污水处理厂为例,采用碳元素平衡法和排放因子法核算了污水处理系统中产生的温室气体(GHG)排放量。采用生命周期评价法、成本效益法和数据包络分析模型对污水处理厂不同处理单元的环境影响和经济性作出分析,并提出减排路径。结果表明,苏州某生活污水处理厂GHG排放总量(以CO2计)为6 653。08 kg·(104 m3)-1,其中直接、间接GHG排放量分别占29。22%和74%,尾水回用实现了 3。3%的减排。生物处理阶段和污泥处理阶段为苏州某污水处理厂GHG排放源的主要影响环节,其中生物处理阶段中的大功率设备鼓风机消耗的电力和污泥处理阶段中聚合硫酸铁药剂的使用是GHG排放的主要因素。由生命周期评价分析可知,污水厂的电耗、直接排放的CO2、出水的污染物浓度以及化学药剂的使用会对全球变暖、大气酸化和水体富营养化产生负面影响。经计算,污水处理厂每处理10 000 m3的污水可获得13 630元的净效益,但2023年4~5月污水处理厂的规模效益小于1,表明期间污水厂产出增加的比例少于投入增加的比例,投入产出的结构不合理。6月份后通过提高整体运行负荷,推进技术改进和管理工作,实现了规模效益的最优化。苏州某生活污水处理厂可通过安装高效能的泵和风机、利用太阳能光伏和水源热泵系统、工艺改进等措施实现污水处理厂"绿色低碳"的目标。
Comprehensive Analysis and Emission Reduction Pathway of GHG Emissions at a Wastewater Treatment Plant in Suzhou
Taking a sewage treatment plant in Suzhou City,Jiangsu Province,as an example,the greenhouse gas(GHG)emissions generated in the sewage treatment system were calculated using the carbon balance method and the emission factor method.The environmental impacts and economic aspects of different treatment units in wastewater treatment plants were analyzed using life cycle assessment,cost-benefit analysis,and data envelopment analysis models,and emission reduction pathways were proposed.The results indicated that the total GHG emissions(in terms of CO2)from a certain municipal wastewater treatment plant in Suzhou were 6 653.08 kg·(104 m3)-1,with direct and indirect GHG emissions accounting for 29.22%and 74%,respectively.The reuse of treated effluent achieved a reduction of 3.3%in emissions.The biological treatment phase and the sludge treatment phase were the main impact stages for GHG emissions at a certain wastewater treatment plant in Suzhou,where the high-power equipment,specifically the blowers used in the biological treatment phase,and the use of polymeric ferric sulfate agents in the sludge treatment phase were the primary factors contributing to GHG emissions.Life cycle assessment analysis revealed that electricity consumption,direct CO2 emissions,pollutant concentration in the effluent,and the use of chemical agents at wastewater treatment plants had negative impacts on global warming,atmospheric acidification,and eutrophication of water bodies.Calculations indicated that for every 10 000 m3 of wastewater treated,the sewage treatment plant achieved a net benefit of 13 630 RMB.However,from April to May 2023,the scale efficiency of the sewage treatment plant was less than 1.This indicates that during this period,the proportion of output increase was less than that of input increase,demonstrating an irrational structure of input-output.After June,through enhancing the overall operational load,advancing technical improvements,and management efforts,the optimization of scale efficiency was achieved.A sewage treatment plant in Suzhou could achieve the goal of being"green and low-carbon"by installing high-efficiency pumps and fans,utilizing solar photovoltaic and water source heat pump systems,and making process improvements.

wastewater treatment plantsgreenhouse gases(GHG)environmental impactseconomicsreduction pathway

黄来来、郜龙威、李瀚翔、李祎頔、李勇

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苏州科技大学环境科学与工程学院,苏州 215011

江苏省环境科学与工程重点实验室,苏州 215011

污水处理厂 温室气体(GHG) 环境影响 经济性 减排路径

2025

环境科学
中国科学院生态环境研究中心

环境科学

北大核心
影响因子:1.913
ISSN:0250-3301
年,卷(期):2025.46(1)