[污水处理厂污染与减碳协同性能评价]。

Q2 Environmental Science
Yue-Ming Gao, Jian-Tong Wang, Wei Zhang, Lei Zhang, Yu Cai, Hong-Qiang Jiang, Wei-Jing Liu
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引用次数: 0

摘要

随着城市化进程的不断推进,中国的污水处理厂建设发展迅速,但缺乏污水处理厂污染与碳减排的协同研究。为量化污染与碳减排的协同效应,构建了污水处理厂污染与碳减排协同绩效评价体系。采用耦合协调模型计算了污染物减排、碳减排和成本控制系统的协同指数,对中国南方640个污水处理厂的污染减排和碳减排的协同效应进行了评价。最后,利用Spearman相关系数进一步研究污染物与碳减排协同指数的影响因素。结果表明:①采用A2/O工艺的污水处理厂污染物减量效果最好,单位出水污染物减量较高;采用A2/O工艺和sbr型工艺的污水处理厂单位出水碳排放强度较低,碳减排效果较好;5万t·d-1以上规模的污水处理厂单位出水处理成本最低,成本控制能力较强。其次,近80%的污水处理厂实现了较好的污染减排和碳协同效应,达到了高度的协调水平,特别是具有A2/O工艺的污水处理厂。污水处理厂规模越大,污染与减碳协同效应越强。协同效应指数与污染物指标正相关,与碳排放强度和成本指标负相关。单位废水污染物综合减量是最强烈的正相关指标,而单位废水处理成本是最强烈的负相关指标。研究表明,污水处理厂迫切需要在污染物排放标准的基础上,在碳排放和成本控制方面制定节能绿色转型路径和措施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Evaluation of the Synergistic Performance of Wastewater Treatment Plants for Pollution and Carbon Reduction].

With the continuous advancement of urbanization, the construction of wastewater treatment plants (WWTPs) in China is developing rapidly, but there is a lack of synergistic research on pollution and carbon reduction in WWTPs. To quantify the synergistic effect of pollution and carbon reduction, a synergistic performance evaluation system for pollution and carbon reduction at WWTPs was constructed. The coupled coordination model was used to calculate the synergy index of pollutant reduction, carbon emission reduction, and cost control system, and the synergistic effect of pollution and carbon reduction of 640 WWTPs in southern China was evaluated. Finally, the influencing factors of the synergy index of pollutant and carbon reduction were further investigated by Spearman's correlation coefficient. The results firstly showed that WWTPs with the A2/O process performed best in terms of pollutant reduction, with higher pollutant reduction per unit of effluent; WWTPs with the A2/O process and SBR-type process had lower carbon emission intensity per unit of effluent, demonstrating a good carbon emission reduction; and WWTPs with a scale of more than 50 000 t·d-1 had the lowest cost per unit of effluent treatment, showing strong cost control ability. Secondly, nearly 80% of WWTPs had realized a better pollution reduction and carbon synergy effect, reaching a highly coordinated level, especially the WWTPs with the A2/O process. The pollution and carbon reduction synergy effect improved as the scale of the WWTPs became larger. Thirdly, the synergy index was positively correlated with pollutant indicators, but it was negatively correlated with carbon emission intensity and cost indicators. The comprehensive reduction of pollutants per unit of wastewater was the most strongly positively correlated indicator, while the cost of treatment per unit of wastewater was the most strongly negatively correlated indicator. The study showed that WWTPs should urgently develop energy-saving green transformation paths and measures in carbon emission and cost control on the basis of pollutant emission standards.

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来源期刊
环境科学
环境科学 Environmental Science-Environmental Science (all)
CiteScore
4.40
自引率
0.00%
发文量
15329
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