面向低碳转型的农村综合能源系统的污染减排效果

Zhang Zhixia, Yao Yongge, Jiang Mingming, Pan Yingyue, Yang Jing, Song Wehai
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摘要

随着中国环境空气质量的逐渐下降,传统的农村能源利用方式因能耗低、污染大而逐渐被淘汰。寻找一种适合农村地区的低碳、环保的能源供应方式迫在眉睫。本文以低碳环保为目标,分析农村自然资源,提出以光伏、风电、地源热泵、秸秆固化燃料为农村能源,充分利用农村丰富的生物质和闲置土地,满足农村居民的冷、热、电需求的适合农村的综合能源体系。本文以污染排放因子模型为主要计算参考,对能源系统的污染排放进行研究,初步采用全生命周期方法对光伏、风电设备的污染排放进行计算。考虑用户的灵活消费和运营商的主动性,以低碳减排为目标,考虑经济约束,选择供能设备的容量。在充分考虑区域差异的情况下,比较了三种不同能源供应方式的低碳减排效果。以山东省某农村为例,CO2、SO2、NOX、PM2.5的减排比例分别为95.41%、97.51%、90.31%、97.40%。减排效果显著。
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Pollution Reduction Effect of Rural Integrated Energy System Oriented to Low-Carbon Transformation
with the gradual decline of environmental air quality in China, the traditional way of energy use in rural areas has been gradually outlawed due to low energy consumption and high pollution. It is urgent to find a low-carbon and environmentally friendly energy supply method suitable for rural areas. Based on low carbon environmental protection as the goal, this paper analyzed the natural resources in the rural areas and proposed a comprehensive energy system suitable to rural area, which composed of the photo voltaic, wind power, ground source heat pump, straw curing fuel for rural energy, can make full use of abundant biomass and idle land in rural area and satisfy rural residents’ demand for cold, heat, electricity. With the pollution emission factor model as the main calculation reference, this paper studies the pollution emission of energy system, and initially adopts the full life cycle method to calculate the pollution emission of photo voltaic and wind power equipment. Considering the flexible consumption of users and the initiative of operators, the capacity of energy supply equipment is selected with the goal of low carbon emission reduction and considering economic constraints. Taking full account of regional differences, the low-carbon emission reduction effects of three different energy supply modes are compared. Taking a rural area in shandong province as an example, the proportion of CO2, SO2, NOX, PM2.5 that can reduce emission is 95.41%, 97.51%, 90.31% and 97.40%, respectively. The emission reduction effect is remarkable.
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