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Multi-criteria decision analysis of waste-to-energy technologies for municipal solid waste management in Sultanate of Oman

机译:阿曼苏丹国城市固体废物管理中废物转化能源技术的多标准决策分析

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摘要

The Sultanate of Oman faces challenges, like rapid growth of waste generation, which calls for an optimum waste management strategy. Oman has witnessed the production of 1.5m t of municipal solid waste in 2012, which is expected to elevate to 1.89m t in 2030. This rapid increase needs to be tackled to reduce the generation rates along with the environmental impacts. Currently, there are no treatment facilities in Oman other than limited recycling, and therefore dumping waste into the landfill is the only ultimate way to dispose solid waste. Hence, this study is an initiative to improve the waste managing system in Oman by proposing optimum waste-to-energy technology using an analytical hierarchy process, manually and through expect choice software as well. In the present study, the identified important parameters were considered in an analytical hierarchy process model to rank the waste-to-energy technology alternatives. Based on the survey conducted, the most important criteria were environmental and economic, with the local priority vector of 0.400 and 0.277, respectively. This research concludes that the most suitable waste-to-energy technology for Oman, on the basis of the identified criteria, is anaerobic digestion followed by fermentation and incineration, which will help to reduce the amount of waste, greenhouse gas emissions and developing and maintaining costs of landfills.
机译:阿曼苏丹国面临着各种挑战,例如废物产生的迅速增长,这就要求采取最佳的废物管理策略。阿曼目睹了2012年150万吨城市固体废物的产生,预计到2030年将增加到189万吨。这一快速增长的问题需要解决,以减少产生率以及对环境的影响。目前,阿曼除了有限的回收利用外,没有其他处理设施,因此,将废物倾倒至垃圾填埋场是处置固体废物的唯一最终方法。因此,这项研究是通过使用分析层次结构过程,手动地以及通过期望选择软件提出最佳废物转化为能源技术的建议,以改善阿曼的废物管理系统。在本研究中,在分析层次过程模型中考虑了确定的重要参数,以对废物能源技术的替代方案进行排名。根据进行的调查,最重要的标准是环境和经济,本地优先级向量分别为0.400和0.277。这项研究得出的结论是,在确定的标准基础上,最适合阿曼的废物转化为能源的技术是厌氧消化,然后进行发酵和焚化,这将有助于减少废物量,温室气体排放以及开发和维护垃圾掩埋场的成本。

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