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Experimental research and commercial plant development for harmless disposal and energy utilization of petrochemical sludge by supercritical water oxidation

机译:超临界水氧化对石油化工污泥无害处理及能源利用的实验研究与商业植物开发

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摘要

Petrochemical sludge is difficult to be degraded by traditional methods due to the complex organic pollutants, supercritical water oxidation (SCWO) is a promising technology for treating different industrial wastes. In this article, a comprehensive SCWO plant coupled with ammonia distillation and biochemical treatment with the processing capacity near 50 tons per day is designed. Experiments are conducted to determine the influence of reaction temperature, oxidation coefficient and residence time, meanwhile, the species of organics and the concentration of heavy metals in raw feedstock and products are also analyzed to determine the follow-up process. Furthermore, an indirect heat exchange unit between supercritical fluids, capillary device for pressure regulation, and gas-liquid-solid three-phase separator sealed by spiral are proposed to overcome the corrosion and plugging issues. Moreover, an economic evaluation including investment and running cost and the application prospect of the whole system are also analyzed in detail. These information will be significant for designing and constructing the commercial SCWO plant for other industrial wastes. (C) 2020 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:由于复杂的有机污染物,难以通过传统方法降解石化污泥,超临界水氧化(SCWO)是一种治疗不同工业废物的有希望的技术。在本文中,设计了一种综合的SCWO植物,其与氨蒸馏和生物化学处理相结合,并设计了每天50吨附近的加工能力。进行实验以确定反应温度,氧化系数和停留时间的影响,同时,还分析了原料和产品中重金属的物种和重金属的浓度,以确定后续过程。此外,提出了一种间接热交换单元,在超临界流体,用于压力调节的毛细管装置和被螺旋密封的气体固体三相分离器之间的间接热交换单元,以克服腐蚀和堵塞问题。此外,还详细介绍了包括投资和运营成本的经济评估以及整个系统的应用前景。这些信息对于为其他工业废物设计和构建商业SCWO植物而言是重要的。 (c)2020化学工程师机构。 elsevier b.v出版。保留所有权利。

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