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Development and evaluation of a continuous microwave processing system for hydrocarbon removal from solids

机译:开发并评估用于去除固体中碳氢化合物的连续微波处理系统

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摘要

A continuous conveyor-belt processing concept using microwave heating was developed and evaluated. Four hydrocarbon-contaminated soils were used as model feedstocks, and the degree of organic removal was assessed against the power and energy input to the process. The findings of this study at scale (150kg/h) are in direct agreement with data obtained in batch laboratory scale experiments, and show that microwave heating processes are fundamentally scalable. It is shown that there is a trade-off between the efficiency of organic removal and the power distribution, and applying the power in a single stage was found to be 20-30% more energy efficient but the overall degree of organic removal is limited to 60%. 75% removal was possible using two processing steps in series, but the organic removal is ultimately limited by the amount of power that can be safely and reliably delivered to the process material. The concept presented in this work is feasible when 75% organic removal is sufficient, and could form a viable industrial-scale process based on the findings of this study.
机译:开发并评估了使用微波加热的连续皮带输送机加工概念。四种碳氢化合物污染的土壤用作模型原料,并根据过程中输入的功率和能量评估了有机去除的程度。这项研究的规模(150kg / h)的发现与批处理实验室规模的实验数据直接吻合,表明微波加热过程从根本上是可扩展的。结果表明,有机去除的效率与功率分配之间存在一个权衡,发现在单个阶段中施加功率的能源效率要高出20-30%,但有机去除的总体程度仅限于60%。使用两个连续的处理步骤可以实现75%的去除,但是有机去除最终受到可以安全可靠地传递到处理材料的电量的限制。当有机物去除率达到75%时,这项工作中提出的概念是可行的,并且根据这项研究的发现可以形成可行的工业规模过程。

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