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Determination of potassium permanganate demand variation with depth for oxidation-remediation of soils from a PAHs-contaminated coking plant

机译:Determination of potassium permanganate demand variation with depth for oxidation-remediation of soils from a paHs-contaminated coking plant

摘要

Bench-scale experiments were conducted to investigate the potassium permanganate demand, a key parameter for in situ chemical oxidation (ISCO) system design, and its variation with depth in PAHs-contaminated site of a coking plant. The concentrations of permanganate decreased rapidly during the first 8 d of the reaction process. The reaction follows first order kinetics, with rate constant ranging from 0.01 to 0.3/h. The total oxidant demand (TOD) is significantly higher for clayey silt fill than for soils of other lithology. The typical TOD is about 50 g MnO(4)(-)/kg soil for clayey silt fill, 20-40g MnO(4)(-)/kg soil for silt, silty clay and 1-7 g MnO(4)(-)/kg soil for fine sand. Statistical analysis revealed that TOD was positively correlated with total organic carbon (TOC) content, clay content and PAHs concentrations, besides sand content, meanwhile TOC was the parameter with the strongest influence on oxidant demand. After 32 d duration of oxidation, PAHs in all tested soils were effectively removed, with total removal percent ranging from 78% to 99%, and small molecular weight PAHs were removed to a greater extent than high molecular weight PAHs. Parameters obtained in this study, combined with soil bulk density, soil porosity and soil moisture, can be used for full-scale ISCO system design and application in coking contaminated site. (C) 2011 Elsevier B.V. All rights reserved.
机译:进行了基准规模的实验,以研究高锰酸钾需求量,原位化学氧化(ISCO)系统设计的关键参数及其在焦化厂受PAHs污染的场地中随深度的变化。高锰酸盐浓度在反应过程的前8天迅速下降。该反应遵循一级动力学,速率常数为0.01至0.3 / h。黏土淤泥填充物的总氧化剂需求量(TOD)明显高于其他岩性土壤。典型的TOD是约50 g MnO(4)(-)/ kg土用于淤泥淤积,20-40g MnO(4)(-)/ kg土用于淤泥,粉质粘土和1-7 g MnO(4)( -)/ kg土壤中的细沙。统计分析表明,TOD与总有机碳(TOC)含量,粘土含量和PAHs浓度呈正相关,除砂含量外,TOC是对氧化剂需求影响最大的参数。氧化32天后,所有测试土壤中的PAHs均被有效去除,总去除率在78%到99%之间,小分子量PAHs的去除程度比高分子量PAHs大。这项研究获得的参数,结合土壤容重,土壤孔隙度和土壤湿度,可用于焦化污染场地的全面ISCO系统设计和应用。 (C)2011 Elsevier B.V.保留所有权利。

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