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Electricity generation and demand flexibility in wastewater treatment plants: Benefits for 100% renewable electricity grids

机译:废水处理厂的发电和需求灵活性:100%可再生电网的益处

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In future, the low carbon electricity grid will need an additional potential of energetic flexibility to compensate the variable renewable supply. Wastewater treatment plants have the potential to provide electricity demand and generation flexibility. A novel approach of utilising the energetic flexibility in wastewater treatment plants to optimize the installed capacity of a fully renewable electricity grid in Australia is presented. In this hourly electricity supply simulation, both the electricity generation and demand of wastewater treatment plants are shifted for reducing the required size of 100% renewable electricity grid and achieving perfect supply-demand matching. The electricity demand and dispatchable electricity generation capacity of cogeneration systems in wastewater treatment plants are modelled on a 90 x 110 raster grid. For a 6-hour shift in wastewater treatment plant's electricity demand and it's electricity generation limited to five times the current capacity, a 100% renewable electricity grid would need an installed capacity of around 149 GW to meet the existing reliability standard (6-8 h of power outages per year). The electricity generation cost is around 16 cent/kWh with a capacity factor of 28% and spilt electricity of less than 21%. The electricity generated from sewage methane in wastewater treatment plants is only 1% of the total generation and is utilised along with biomass power plants to plug demand-supply gaps. Our results indicate that a 2% reduction in installed capacity and 11% reduction in levelized cost of electricity is achieved by utilizing the energetic flexibility of wastewater treatment plants.
机译:未来,低碳电网将需要额外的能量灵活性潜力来补偿可变可再生供应。污水处理厂有可能提供电力需求和发电灵活性。提出了一种利用污水处理厂的充满活力灵活性的新方法,以优化澳大利亚全再生电网的装机容量。在本时的电力供应仿真中,污水处理厂的发电和需求都被转移,以降低100%可再生电网所需的规模,实现完美的供需匹配。污水处理厂电产系统的电力需求和调度发电能力在90×110栅格网格上进行建模。在污水处理厂的电力需求方面为6小时班次,它的发电量限制在目前能力的五倍,100%可再生电网需要装机容量约为149 GW,以满足现有的可靠性标准(6-8小时电源推迟每年)。发电成本约为16美分/千瓦时,容量率为28%,溢出的电量小于21%。废水处理厂中污水甲烷产生的电力仅占总成1%,并与生物质发电厂一起使用以堵塞需求差距。我们的研究结果表明,通过利用废水处理厂的能量灵活性,实现了安装能力的2%,降低了电力调平成本的11%。

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