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Investigation of biogas production potential from mechanical separated municipal solid waste as an approach for developing countries (case study: Isfahan-Iran)

机译:从机械分离城市固体废物作为发展中国家的方法调查沼气生产潜力(案例研究:伊斯法罕 - 伊朗)

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One of the most used methods for municipal solid waste (MSW) management is recovering energy from the organic fraction of municipal solid waste (OFMSW) through anaerobic digestion (AD) system. Not only in developed countries (with high source separation), but also in developing countries (with poor source separation), this energy recovery technology can be interested. In many countries with mixed MSW like Iran, a mechanical separation (trommel screen, magnet, etc.) is used as a simple and efficient method to separate OFMSW. In this study, three main goals are followed; firstly, Selection of a suitable AD system (wet anaerobic digestion (WAD) or dry anaerobic digestion (DAD) and mesophilic or thermophilic)) according to physical and chemical composition of under-screen fraction of MSW and climate conditions. Secondly, evaluation of biogas energy potential of under-screen fraction of Isfahan municipal solid waste (USFIMSW), as one of the major cities of Iran is followed. Finally, it offers to use the results obtained in other developing countries with similar conditions in Isfahan. The physical analysis shows that about 70% of Isfahan MSW consists of the organic fraction (OF) which can be used in the AD system. Also, the value of total solid (TS), volatile solid (VS) and thereby VS/TS for the under-screen fraction of MSW changes seasonally between about 29% and 35.5%, 21%-25.5% and 64%-84%, respectively. The results show that in cities with a low source separation (due to the presence of hazardous materials in the under-screen fraction of MSW), high TS and dry climate like Isfahan, the use of DAD is more appropriate. According to bio-methane potential (BMP), TS and VS analysis, the average amount of methane yield, without purification of USFSMSW, is about 322.7 Nm(/)(3)t VS which can be increased by various steps in pre-treatment, feedstock preparation and co-substrate.
机译:城市固体废物(MSW)管理的最多使用方法之一是通过厌氧消化(AD)系统从城市固体废物(OFMSW)的有机分数中恢复能量。不仅在发达国家(具有高来源分离),而且在发展中国家(源源分离不佳),这种能源恢复技术可能有兴趣。在许多不同的MSW等国家,如伊朗,机械分离(肩胛屏,磁铁等)用作分离MSW的简单有效的方法。在这项研究中,遵循三个主要目标;首先,根据MSW和气候条件的筛选分数的物理和化学组成,选择合适的AD系统(湿厌氧消化(WAD)或干燥的厌氧消化(爸爸)和嗜热或嗜热或嗜热或嗜热或嗜热)。其次,作为伊斯法罕市固体垃圾(USFIMSW)下屏幕下列部分的沼气能源潜力的评价,作为伊朗的主要城市之一。最后,提供在其他发展中国家获得的结果,在伊斯法罕的类似条件下。物理分析表明,大约70%的Isfahan Msw由可用于广告系统中使用的有机级分(OF)组成。此外,总固体(TS),挥发性固体(Vs)的值,​​从而用于筛选的MSW的筛选部分的Vs / Ts稳定地变化在约29%和35.5%之间,21%-25.5%和64%-84% , 分别。结果表明,在低源分离的城市(由于存在危险物质在MSW的屏幕下的有害物质),高TS和干燥的气候,如伊斯法罕,使用爸爸更合适。根据生物 - 甲烷电位(BMP),TS和VS分析,无需纯化USFSMSF的甲烷产率的平均量约为322.7nm(/)(3)吨,可以通过预处理中的各个步骤增加,原料制备和共衬底。

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