生态环境分区管控减污降碳协同试点实践探索以广州市增城区为例

Pilot practical exploration of coordinated pollution reduction and carbon reduction based on ecological environment zoning control: a case study in Zengcheng District, Guangzhou City

  • 摘要: 开展生态环境分区管控减污降碳协同试点是将碳达峰碳中和要求融入生态环境分区管控制度的重要举措,对推动绿色低碳发展具有重要意义。以广州市增城区为例,在生态环境分区管控技术方法和成果基础上,基于GIS空间统计方法构建了大气污染物和CO2排放清单,使用产排污系数法核算大气污染物和CO2的减排量,使用减污降碳协同效应相对程度评估方法评估了措施协同性,构建了本地化的减污降碳措施库,使用CMAQ模型评估了措施优化后带来的空气质量改善效益,并提出相应的政策建议。结果表明:1)减污降碳协同管控重点区域位于增城区南部,重点行业包括热电联产、汽车整车制造、汽车零部件及配件制造、摩托车整车制造等。2)基于产排污系数法、减污降碳协同效应相对程度评估指数等方法,定量评估了措施的协同减排量和协同性,构建了12项本地化的减污降碳措施,其中工业绿色低碳微电网建设、涂装工艺升级、低氮分级燃烧改造、超低排放改造等措施展现出较好的综合减排效益。3)基于GIS空间映射识别方法,识别了5个有待优化的环境管控单元,重点和一般管控单元分别为3个、2个。4)通过CMAQ模型对清单优化前后进行对比分析,评估了纳入减污降碳协同管控措施后的直接减排效益和间接的空气质量改善效益。SO2、NOx、颗粒物以及VOCs的减排量分别为76、288、58、139 t,CO2减排量为53万t。空气中PM2.5、SO2、NO2浓度分别下降了0.254、1.844和2.893 μg/m3。研究结果可为下一步开展生态环境分区管控促进减污降碳协同管控提供参考。

     

    Abstract: Carrying out a pilot project of coordinated pollution reduction and carbon reduction based on ecological environment zoning control (EEZC) is an important measure to integrate the requirements of carbon peak and carbon neutrality into EEZC system, which is of great significance to promoting green and low-carbon development. Taking Zengcheng District, Guangzhou City as an example and based on the technical methods and achievements of EEZC, an inventory of air pollutants and CO2 emissions was constructed based on GIS spatial statistical methods. The generation and emission coefficient method was used to calculate the reduction of air pollutants and CO2 emissions, and the relative degree assessment method of the synergistic effect of pollution reduction and carbon reduction was used to evaluate the synergistic effect of the measures. In addition, a localized pollution reduction and carbon reduction measures library was constructed, and the CMAQ model was used to evaluate the benefits of air quality improvement by optimizing the measures. Finally, corresponding policy recommendations were put forward. The result showed that: (1) The key areas for coordinated control of pollution reduction and carbon reduction were located in the southern part of Zengcheng, and the key industries included cogeneration, automobile manufacturing, automobile parts and accessories manufacturing, and motorcycle manufacturing. (2) According to the evaluation of the coordinated emission reduction and the synergy of the measures, 12 localized pollution reduction and carbon reduction measures were constructed. Among these measures, industrial green and low-carbon microgrid construction, coating process upgrading, low-nitrogen staged combustion transformation, and ultra-low emission transformation showed good comprehensive emission reduction benefits. (3) Based on the GIS spatial mapping identification method, 5 EEZC units to be optimized were identified, including 3 key and 2 general control units. (4) The CMAQ model was used to compare and analyze the inventories before and after optimization, and the direct emission reduction and indirect air quality improvement benefits after the inclusion of coordinated control measures for pollution reduction and carbon reduction were evaluated. The emission reduction of SO2, NOx, PM and VOCs was 76, 288, 58, and 139 t, respectively, and the emission reduction of CO2 was 530 000 t. The concentration of PM2.5, SO2 and NO2 decreased by 0.254, 1.844 and 2.893 μg/m3, respectively. This study can provide a reference for the next step of EEZC and promote coordinated control of pollution reduction and carbon reduction.

     

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