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Design of Combined Heat and Power for Waste Water Treatment Plant

机译:废水处理厂的综合热量和电力设计

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South Africa is faced with insufficient energy generation to cater for its domestic and industrial needs during peak hours. Waste Water Treatment Plants (WWTPs) have energy intensive operations that consume a lot of electricity as compared to other municipality buildings. WWTPs emits high greenhouse gases (GHG) such as methane, carbon dioxide (CO2), which are very harmful to both human and environment. Among other GHG emitted, methane is the most harmful gas on both human and environment, it is highly flammable, but it is a good source of energy. Consequently, to reduce conventional energy consumption and GHG emissions, WWTPs can be used to generate electricity from its harmful biogas wastes (methane) in order to complement their energy consumption. This project, therefore, proposes to design a co-generation plant known as Combined Heat and Power (CHP) system. This will generate heat (Thermal energy) and clean renewable power (electrical energy) using biogas (methane) from WWTPs. The heat generated will be used in the treatment processes, while the electricity will complement energy consumption of the plant, thereby reducing the operation cost and GHG emission. It is expected that the electricity consumption of the WWTPs will be reduced by 25-40% of the total energy consumption. The CHP system will be built on the WWTPs yard, hence be linked to the existing system on the plant that releases GHG.
机译:南非面临不足的能源生成,以满足其在高峰时段的国内和工业需求。废水处理厂(WWTPS)具有能源密集型操作,与其他市政建筑相比,消耗大量电力。 WWTPS发出高温室气体(GHG),如甲烷,二氧化碳(CO2),对人类和环境非常有害。除了放弃的GHG之外,甲烷是人类和环境中最有害的气体,它是高度易燃的,但它是一种良好的能量来源。因此,为了减少传统的能量消耗和温室气体排放,可以使用WWTP来从其有害的沼气废物(甲烷)产生电力,以便补充它们的能量消耗。因此,该项目建议设计一种称为综合发热和功率(CHP)系统的生成植物。这将产生使用来自WWTP的沼气(甲烷)的热(热能)和清洁可再生能力(电能)。产生的热量将用于处理过程中,而电力将补充植物的能量消耗,从而降低运营成本和温室气体排放。预计WWTP的电力消耗将减少25-40%的能量消耗。 CHP系统将在WWTPS码上构建,因此与释放GHG的工厂的现有系统联系在一起。

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