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Plasma gasification of two waste streams: Municipal solid waste and hazardous waste from the oil and gas industry

机译:两种废物流的等离子体气化:来自石油和天然气工业的城市固体废物和危险废物

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This study assesses the practicality of plasma co-gasification of municipal solid waste (MSW) and hazardous carbonaceous waste of the oil and gas industry. Various studies have shown that plasma gasification could be regarded as an efficient energy recovery method for both MSW and carbonaceous waste. As the economy of the Gulf states is driven by oil and gas industry, Petroleum Hazardous Waste (PHW) produced in the area has a huge environmental footprint aside from the MSW, and thus the Emirate of Abu Dhabi is taken here as a case study. A plasma gasification simulation model is developed within the environment of Aspen Plus comprising the gasifier and the entire power plant of an integrated plasma gasification combined cycle (IPGCC). Given the feedstock distribution and characteristics in the Emirate of Abu Dhabi, various parametric studies subjected to different co-gasification of MSW and PHC fractions ~ are considered under different plasma gases, being air, oxygen, and steam. The results revealed that 81 MW of electric power could be generated at an efficiency of 33.63% by processing 1,338 tons per day of mixed waste consisting of 90% MSW and 10% PHW. The results showed efficiency higher than the common incineration waste to energy technologies with the additional flexibility to accommodate various types of waste. Moreover, the IPGCC plant efficiency is significantly increased by co-gasifying PHW with MSW.
机译:本研究评估了石油和天然气工业的城市固体废物(MSW)和危险碳质荒的血浆协同气化的实用性。各种研究表明,血浆气化可以被认为是MSW和碳质废物的有效能量回收方法。由于海湾国家的经济由石油和天然气行业推动,该地区生产的石油危险废物(PHW)除了MSW之外的环境足迹,因此Abu Dhabi的酋长国是案例研究。在Aspen Plus的环境中开发了一种等离子体气化模拟模型,包括气化器和集成等离子体气化组合循环(IPGCC)的整体电厂。鉴于阿布扎比酋长国的原料分布和特征,在不同的等离子体气体下考虑对MSW和PHC级分的不同协同气化的各种参数研究,是空气,氧气和蒸汽。结果表明,通过处理由90%MSW和10%PHW​​的混合废物处理1,338吨,可以以33.63%的效率产生81mW的电力。结果表明效率高于常见焚烧浪费对能源技术的额外灵活性,以适应各种类型的废物。此外,通过使用MSW共同气化PHW,IPGCC植物效率显着增加。

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