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首页> 外文期刊>Practice Periodical of Hazardous, Toxic, and Radioactive Waste Management >Kinetic Model for the Remediation of Soils Contaminated with Hydrocarbons Using Low-Temperature Oxidation
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Kinetic Model for the Remediation of Soils Contaminated with Hydrocarbons Using Low-Temperature Oxidation

机译:低温氧化修复烃类污染土壤的动力学模型

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This paper presents a kinetic model for the remediation of soils contaminated with hydrocarbons by low-temperature oxidation (LTO). The oxidation of hydrocarbons, which consist of a mixture of straight chained, branched and ringed compounds follow a number of complex chain reactions. The investigations into the kinetics of the process are simplified by using pseudocomponents such as maltenes, asphaltenes, and coke. The mechanisms of LTO are divided into four groups: Original maltenes comprised of slow-reacting and volatile maltenes. Slow-reacting maltenes react with oxygen to produce asphaltenes and water. Asphaltenes undergo polymerization and dehydrogenation to form coke, product-volatile maltenes, and hydrogen; the volatile maltenes oxidize to form carbon oxides and water. These proposed mechanisms explain the experimental observations. The kinetic model in conjunction with a heat-transfer model can be used to determine the compositional changes when LTO is applied to remediate soils contaminated with hydrocarbons.
机译:本文提出了一种通过低温氧化(LTO)修复被碳氢化合物污染的土壤的动力学模型。由直链,支链和环状化合物的混合物组成的烃的氧化遵循许多复杂的链反应。通过使用伪组分(如麦芽糖,沥青质和焦炭)简化了对该过程动力学的研究。 LTO的机制分为四类:由缓慢反应的挥发性麦芽汁组成的原始麦芽汁。反应缓慢的麦芽酒与氧气反应生成沥青质和水。沥青质进行聚合和脱氢形成焦炭,产物挥发性麦芽糖和氢气。挥发性麦芽糖氧化形成碳氧化物和水。这些提出的机制解释了实验观察。当将LTO应用于修复被碳氢化合物污染的土壤时,结合传热模型的动力学模型可用于确定成分变化。

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