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Eco-energetic feasibility study of using grid-connected photovoltaic system in wastewater treatment plant

机译:使用污水处理厂基准光伏系统的生态能源可行性研究

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摘要

The industrial activities intensification has inevitably caused an excessive use of underground waters and fossils energies, and severe environmental pollution with dire consequences for water resources. This situation intensifies in populated arid regions. In this context, wastewater treatment is a reliable source of water and nutrients for agricultural production. This study aims at treating wastewater using photovoltaic energy, to reduce conventional electricity demand. This paper studies energy and economic feasibility of grid-connected photovoltaic systems (GCPVS) in wastewater treatment plants (WWTPs). The optimization is based on: energy balance, installation surface area and levelized cost of energy (LCOE). Results show GCPVS installed in the northwest of Algeria, can cover 53% of WWTP electrical load and inject 510 MWh/year into grid representing 65% of the load. The regional energy consumption can be reduced by 2% in daytime. LCOE is estimated around 09.14 centUS$/kWh, which is lower than conventional electricity cost 10.17 centUS$kWh. The benefit-cost ratio is estimated around 0.69 Million US$ (33%). This plant provides 4800 m~3/day of agricultural irrigation, where treatment energy cost is decreased from 3.4 centUS$/m~3 to 2.3 centUS$/m~3. The WWTP fertilize 300 ha of soil per year. This work highlights the efficiency of self-sufficient WWTPs in northern Africa region.
机译:工业活动强化不可避免地引起了地下水域和化石能量的过度使用,以及对水资源的可怕后果的严重环境污染。这种情况加剧了人口稠密的干旱地区。在这种情况下,废水处理是农业生产的可靠水和营养素来源。本研究旨在处理使用光伏能量的废水,以减少传统的电力需求。本文研究了废水处理厂(WWTPS)中网格连接光伏系统(GCPV)的能量和经济可行性。优化基于:能量平衡,安装表面积和能量的调整成本(LCoE)。结果显示在阿尔及利亚西北安装的GCPV,可以覆盖53%的WWTP电负载,并将510毫巴/年注入载体,表示65%的负载。白天可以减少2%的区域能源消耗。 LCoE估计左右09.14厘米/千瓦时,低于传统的电力成本10.17厘米。盈利成本比率估计约为690万美元(33%)。该工厂提供4800米〜3日农业灌溉,其中治疗能源成本从3.4厘米/米〜3至2.3厘米$ / m〜3减少。 WWTP每年施肥300公顷土壤。这项工作突出了北非地区的自给自足WWTP的效率。

著录项

  • 来源
    《Energy》 |2021年第1期|119217.1-119217.14|共14页
  • 作者

    M. Bey; A. Hamidat; T. Nacer;

  • 作者单位

    Departement des Sciences et Technologie AMC BP 48 Cherchell Terre 42006 Tipaza Algeria Unite de Recherche Materiaux et Energies Renouvelables (URMER) Universite de Tlemcen BP 119 Tlemcen 13000 Algeria;

    Centre de Developpent des Energies Renouvelables CDER BP.S2 Route de L'Observatoire Bouzareah 16340 Algiers Algeria;

    Unite de Recherche Materiaux et Energies Renouvelables (URMER) Universite de Tlemcen BP 119 Tlemcen 13000 Algeria;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Grid-connected photovoltaic; Energetic cost; Wastewater treatment plant; Irrigation water supply; Carbon dioxide emissions;

    机译:网格连接的光伏;精力充沛的成本;污水处理厂;灌溉供水;二氧化碳排放量;

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