3兆兆瓦特能源利用甲烷替代能源的潜力

Royend F. Samosir, Johni Jonatan Numberi, Enos Karapa, Herbert Innah, Yane Ansanay, Prihananto Setiadji, Tiper K. M. Uniplaita
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引用次数: 0

摘要

随着城市、地区或省的时间、人口和经济增长,垃圾的数量将继续增加。查亚普拉市,作为巴布亚的经济中心,也是如此。查亚普拉市的高屋古索TPA管理系统目前是垃圾填埋控制系统,即在TPA收集的垃圾用层层土壤堆积起来,使堆的数量日益增加,造成甲烷气体、二氧化碳等气体污染空气和有限的土地等问题,从而减少TPA高屋古索查亚普拉市的年龄。这项研究的目的是通过使用Landgem软件对甲烷气体进行建模,以及可以产生的电能的潜在容量,来确定甲烷气体的潜在含量。结果表明,Landgem模拟产生的甲烷气体潜在含量为13134026 m3/年,即8762吨/年,产生的电能潜在容量为2797.22 kW,即2.8 MW。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Potensi Pemanfaatan Sumber Energi Alternatif Gas Metana untuk Pembangkit Listrik 3 MW Menggunakan Pemodelan Landgem (Studi Kasus: TPA Koya Koso Kota Jayapura)
The volume of waste will continue to increase with increasing time, population, and economic growth in a city, district, or province. The city of Jayapura, as the center of the economy of the land of Papua, is the same way. The Koya Koso TPA management system for Jayapura City is currently landfill control, where the waste that has been collected at the TPA is stockpiled using layers of soil so that the piles are increasing in number day by day and causing problems including air pollution by methane gas, CO2, and other gases and limited land, thereby reducing the age of TPA Koya Koso Jayapura City. This study aims to determine the potential content of methane gas by modeling it using Landgem software and the potential capacity of electrical energy that can be generated. The results showed that the potential content of methane gas generated from Landgem modeling is 13,134,026 m3/year, or 8,762 tons/year, resulting in a potential capacity of electrical energy of 2,797.22 kW, or 2.8 MW.
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