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首页> 外文期刊>Journal of King Saud University-Engineering Sciences >Waste-to-energy potential in the Western Province of Saudi Arabia
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Waste-to-energy potential in the Western Province of Saudi Arabia

机译:沙特阿拉伯西部省的垃圾发电潜力

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摘要

Waste-to-energy (WTE) is a viable option for municipal solid waste (MSW) management and a renewable energy source. MSW is a chronic problem in Saudi Arabia and more specifically in Saudi Urban areas. The MSW practices in KSA are simply done by collecting the waste and dumping it in open landfill sites. KSA is considering WTE as a potential renewable energy source that can contribute to electricity demand in the Kingdom. This research aims to assess potential contribution of WTE facility to meet electricity demand in the three main cities in the Western Province of Saudi Arabia and to provide an alternative solution to landfills. Three scenarios for WTE utilization were developed: Mass Burn, Mass Burn with recycling, and refused derived fuel (RDF) with biomethanation. The Mass Burn scenario implies full waste stream incineration; the Mass Burn with recycling scenario considers segregation of reusable materials and the waste leftover for incineration; while RDF with biomethanation considers segregation of general waste stream into inorganic and organic waste and utilizes organic waste for biomethanation and inorganic for RDF. The analyses were completed for Jeddah, Makkah, and Madina cities; with current total population of about 6.3 million. The results show that Jeddah has the potential to produce about 180MW of electricity based on incineration scenario; about 11.25MW based on incineration with recycling scenario; and about 87.3MW based RDF with biomethanation scenario by the year 2032. These values and other two cities values are based on theoretical ideals and they help in identifying the optimal WTE techniques for each city.
机译:废物能源转换(WTE)是城市固体废物(MSW)管理和可再生能源的可行选择。在沙特阿拉伯,更具体地说在沙特城市地区,城市固体废弃物是一个长期问题。在KSA中,MSW的做法很简单,只需收集废物并将其倾倒在开放的垃圾填埋场中即可。 KSA正在考虑将WTE作为一种潜在的可再生能源,可以满足沙特王国的电力需求。这项研究旨在评估WTE设施对满足沙特阿拉伯西部三个主要城市的电力需求的潜在贡献,并为垃圾填埋场提供替代解决方案。开发了三种WTE利用方案:大规模燃烧,具有回收利用的大规模燃烧和具有生物甲烷化的拒绝衍生燃料(RDF)。大规模焚烧场景意味着将废物全部焚化;带有回收方案的“大规模燃烧”方案考虑了将可重复使用的物料与剩余的废物进行焚烧的隔离;而具有生物甲烷化作用的RDF则考虑将一般废物流分为无机废物和有机废物,并利用有机废物进行生物甲烷化,而将无机废物用于RDF。对吉达,麦加和麦地那等城市的分析已经完成;目前的总人口约为630万。结果表明,根据焚烧情景,吉达有潜力生产约180兆瓦的电力。基于焚化和回收方案的约11.25MW;到2032年,约有87.3MW的具有生物甲烷化情景的RDF。这些值和其他两个城市的值均基于理论理想值,有助于确定每个城市的最佳WTE技术。

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