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Environmental evaluation of the electric and cogenerative configurations for the energy recovery of the Turin municipal solid waste incineration plant

机译:都灵城市固体垃圾焚烧厂的能源回收利用的热电联产配置的环境评估

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Given the desirability of reducing fossil fuel consumption, together with the increasing production of combustible solid wastes, there is clearly a need for waste treatment systems that achieve both volume reduction and energy recovery. Direct incineration method is one such system. The aim of this work was to analyze the municipal solid waste incineration plant currently under construction in the province of Turin (Piedmont, North Italy), especially the potential for energy recovery, and the consequent environmental effects. We analyzed two kinds of energy recovery: electric energy (electrical configuration) only, and both electric and thermal energy (cogenerative configuration), in this case with a different connection hypothesis to the district heating network. After we had evaluated the potential of the incinerator and considered local demographic, energy and urban planning effects, we assumed different possible connections to the district heating network. We computed the local and global environmental balances based on the characteristics of the flue gas emitted from the stack, taking into consideration the emissions avoided by the substituted sources. The global-scale results provided relevant information on the carbon dioxide emissions parameter. The results on the local scale were used as reference values for the implementation of a Gaussian model (Aermod) that allows evaluation of the actual concentration of the pollutants released into the atmosphere. The main results obtained highlight the high energy efficiency of the combined production of heat and electricity, and the opportunity to minimize the environmental impact by including cogeneration in a district heating scheme.
机译:鉴于希望减少化石燃料的消耗,以及增加可燃固体废物的产生,显然需要同时实现体积减少和能量回收的废物处理系统。直接焚烧方法就是这样一种系统。这项工作的目的是分析都灵省(意大利北部皮埃蒙特)目前正在建设的市政固体废物焚烧厂,尤其是能源回收的潜力以及由此带来的环境影响。我们分析了两种能源回收:仅电能(电配置),以及电能和热能(蓄热配置),在这种情况下,区域供热网络的连接假设不同。在评估了焚化炉的潜力并考虑了当地人口,能源和城市规划的影响之后,我们假定了与区域供热网络的不同连接方式。我们根据烟囱排放的烟道气特性计算了当地和全球环境平衡,同时考虑了替代源避免的排放。全球范围的结果提供了有关二氧化碳排放参数的相关信息。以当地规模的结果作为实施高斯模型(Aermod)的参考值,该模型可以评估释放到大气中的污染物的实际浓度。获得的主要结果凸显了热电联产的高能效,以及通过将热电联产纳入区域供热计划中来最大程度减少环境影响的机会。

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