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Bahir Dar City Municipal Solid Waste Potential Assessment for Clean Energy

机译:巴赫德城市市政府固体废物潜在评估清洁能源

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Nowadays, Carbon-rich fuels are the principal energy supply utilized for powering human society, and it will be continued for the next some decades. Connecting with this, modern energy technologies are very essential to convert the available limited carbon-rich fuels and other green alternative energies into useful energy efficiently with an insignificant environmental impression. Therefore, the main objective of this study is assessing the potential of municipal biomass solid waste for briquette production in Bahir Dar city, Ethiopia. To conduct this research, various data collection instrument tools were used to achieve the intended objectives for instance questionnaire, direct measurement, field observation and related literature based on necessity. Moreover, to confirm the reliability of the information obtained through a questionnaire, a focus group discussion was conducted with different concerned bodies. The main finding of this study shows that Bahir Dar city has the potential to generate 50.19 tons of municipal biomass solid waste per day. The collected waste was characterized as 82.5% of them is organic waste that may be converted in to clean energy (briquette and biogas) based on their sized whereas the remaining 17.5% of them were inorganic (plastics, glass, and metals) that can be resent for recycling and reuse to their original sources. Biomass-related solid municipal waste is a promising potential to utilize as a feedstock for briquette production. Besides, it has a prodigious role to reduce deforestation, land degradation, save foreign currency and reduce greenhouse gas emissions. This is because the demands of household’s energy that was fulfilled with wood charcoals and fossil fuels are substituted with locally available renewable energy sources. The experimental results confirmed that all the physicochemical properties of briquette charcoal that are produced from municipal solid biomass waste were acceptable. Besides, the burning efficiency of the briquette, fanning time and carbon content determination were measured and obtained as adequate results based on the standards. Hence, it will be a possible alternative fuel for household energy using a special design stove that is available in the market. It has also played a great role in waste management and treatment system to achieve sustainable clean city developments.
机译:如今,富含碳燃料是用于为人类社会提供动力的主要能源供应,并将继续在未来几十年中继续。连接到这一点,现代能源技术对于将可用的有限碳富含燃料和其他绿色替代能量转化为有效的能量,以有效地将其与微不足道的环境印象。因此,本研究的主要目的是评估埃塞俄比亚巴希尔达城区煤层生产的市政生物量固体废物的潜力。为了进行这项研究,使用各种数据收集仪器工具来实现基于必要性的提议问卷,直接测量,场观察和相关文献的预期目标。此外,为了确认通过调查问卷获得的信息的可靠性,将与不同的有关机构进行焦点组讨论。本研究的主要发现表明,巴希尔达尔市每天有可能产生50.19吨市政生物量固体垃圾。收集的废物的特征在于它们的82.5%是有机废物,可以基于其大小转换为清洁能量(砾石和沼气),而其中剩余的17.5%是无机(塑料,玻璃和金属)可以是怨恨回收并重新利用原始来源。与生物量相关的固体城市废物是利用作为压块生产原料的有希望的潜力。此外,它有一个令人兴奋的作用,可以减少森林砍伐,土地退化,节约外币,减少温室气体排放。这是因为家用木炭和化石燃料实现的家庭能源的需求由本地可再生能源代替。实验结果证实,来自城市固体生物质废物生产的地块木炭的所有物理化学性质是可接受的。此外,测量煤层,扇形时间和碳含量测定的燃烧效率,并基于标准得到适当的结果。因此,它将是使用市场上可用的特殊设计炉的家用能源可能的替代燃料。它还在废物管理和治疗系统中发挥了巨大作用,以实现可持续的清洁城市发展。

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