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首页> 外文期刊>Journal of material cycles and waste management >Waste to energy: power generation potential of putrescible wastes by anaerobic digestion process at Hyderabad, Pakistan
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Waste to energy: power generation potential of putrescible wastes by anaerobic digestion process at Hyderabad, Pakistan

机译:废物转化为能源:巴基斯坦海得拉巴厌氧消化工艺产生的可腐烂废物的发电潜力

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Power generation from municipal solid waste plays significant role to mitigate the environmental pollution. The power generation potential of putrescible wastes (fruit, vegetable and yard wastes) was investigated at Hyderabad, Pakistan. In the first phase, methane potential of fruit, vegetable and yard wastes mixing at different ratios was determined to optimize best of one. In the second phase, methane potential of optimized ratio was further investigated through continuous stirrer tank reactor at hydraulic retention time of 20 days by using organic loading rate from 3 to 5% total solids (1.5-2.5 kg VS/m(3)/day). In the third phase of study, power generation potential of selected waste was estimated. The maximum methane potential (643 NmL/gVS, p E, 0.05) was obtained from fruit, vegetable and yard wastes when mixed at (1:1:1) by biochemical methane potential test system. Results of continuous digestion revealed that methane yield increased as organic loading rate was increased and obtained maximum methane yield of 525 NmL/gVS at 5% total solids (2.5 kg VS/m(3)/day). Moreover, from the results and findings of the study, it was estimated that about 907 MW/year power can be generated through anaerobic digestion of putrescible waste in Pakistan.
机译:城市生活垃圾发电在减轻环境污染方面起着重要作用。在巴基斯坦海得拉巴,研究了易腐烂垃圾(水果,蔬菜和庭院垃圾)的发电潜力。在第一阶段中,确定了以不同比例混合的水果,蔬菜和庭院废物的甲烷潜力,以优化其中一种。在第二阶段中,通过使用3%至5%总固体含量(1.5-2.5 kg V​​S / m(3)/天)的有机负荷率,通过连续搅拌罐反应器在20天的水力停留时间进一步研究了最佳比例的甲烷潜力。 )。在研究的第三阶段,估计了选定废物的发电潜力。通过生化甲烷电势测试系统以(1:1:1)混合时从水果,蔬菜和庭院废物中获得最大的甲烷电势(643 NmL / gVS,p E,0.05)。连续消化的结果表明,随着有机负载量的增加,甲烷的收率增加,在总固含量为5%(2.5 kg V​​S / m(3)/ day)下,甲烷的最大产量为525 NmL / gVS。此外,从研究结果和调查结果来看,估计巴基斯坦厌氧消化可腐烂废物可产生约907兆瓦/年的电力。

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