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A comprehensive review on electricity generation and GHG emission reduction potentials through anaerobic digestion of agricultural and livestock/slaughterhouse wastes in Iran

机译:厌氧消化伊朗农业和畜牧/屠宰场废物对发电和减少温室气体排放潜力的全面审查

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Agricultural and livestock/slaughterhouse wastes are produced in huge quantities and could be promising sources for electricity generation to partially reduce dependence on fossil-oriented electricity. In light of that, the state of the production for these wastes in different parts of the globe was first presented. Subsequently, various waste-to-energy technologies and their electricity generation feasibility from both environmental and economic perspectives were reviewed. Finally, electricity generation and greenhouse gas (GHG) reduction potentials through anaerobic digestion of the above-mentioned wastes generated in each province of Iran in 2016 were investigated as a case study. Accordingly, Khuzestan province with the highest amount of agro-wastes (7.61 million tons) and Sistan and Baluchestan province with the highest amount of livestock/slaughterhouse wastes (10.69 million tons) had the maximum electricity generation potentials of 82.83 MW and 164.23 MW, respectively. Moreover, the country's total potentials for electricity generation from these wastes was determined at 2848.26 MW. Based on the life cycle assessment (LCA) results, a minimum of 10,693.5 thousand tons CO(2)eq/yr could be avoided by valorizing these wastes into electricity in Iran. This would be translated into 1.5% reduction of Iran's annual GHG emissions; a promising achievement given Iran's international GHGs reduction commitment. Moreover, if a short-term time horizon would be considered for electricity generation from these wastes, the reduction rate could reach 24,153 thousand tons CO(2)eq/yr, i.e., 3.39% reduction of Iran's annual GHG emissions. To the best of our knowledge, this is the first report scrutinizing electricity generation potentials from both agricultural and livestock/slaughterhouse wastes in Iran while assessing the consequent GHG emission reduction potentials. The outcomes of the study could assist policy makers with decisions aimed at taking advantage of these resources while the platform introduced pave the way for other researchers to conduct similar studies in different parts of the world.
机译:农业和牲畜/屠宰场的废物大量产生,可能成为有希望的发电来源,从而部分减少对化石发电的依赖。有鉴于此,首先介绍了全球不同地区这些废物的生产状况。随后,从环境和经济角度审查了各种废物转化能源技术及其发电可行性。最后,作为案例研究,研究了通过厌氧消化伊朗各省在2016年产生的上述废物产生的电力和减少温室气体(GHG)的潜力。因此,农业废物量最高的胡塞斯坦省(761万吨),牲畜/屠宰场废物量最高的西斯坦省和Bal路支斯坦省(1069万吨)分别具有最大的发电潜力,分别为82.83 MW和164.23 MW。 。此外,该国利用这些废物发电的总潜力确定为2848.26兆瓦。根据生命周期评估(LCA)结果,在伊朗将这些废物转化为电能,至少可以避免10,69.35万吨CO(2)eq / yr。这将转化为伊朗年度温室气体排放量减少1.5%;鉴于伊朗对减少国际温室气体的承诺,这是一个有希望的成就。此外,如果考虑从这些废物中发电的短期时间范围,减排率可能达到24,153千吨二氧化碳当量/年,即伊朗年度温室气体排放量减少3.39%。据我们所知,这是第一份报告,其中详细评估了伊朗农业和牲畜/屠宰场废物产生的发电潜力,同时评估了随之而来的温室气体减排潜力。该研究的结果可以帮助决策者做出旨在利用这些资源的决策,而引入的平台则为其他研究人员在世界各地进行类似研究铺平了道路。

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