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首页> 外文期刊>Science of the total environment >Investigations on the dissolved organic matter leached from oil-contaminated soils by using pyrolysis remediation method
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Investigations on the dissolved organic matter leached from oil-contaminated soils by using pyrolysis remediation method

机译:通过使用热解修复方法对溶解有机物浸出的溶解有机物质的研究

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摘要

Pyrolysis, as a convenient and fast technology, has been proved to be promising in the remediation of oil-contaminated soil. However, little is known about the dissolved organic matter (DOM) associated with pyrolyzed oil-contaminated soil and its environmental impact. Herein, optical spectroscopic techniques (i.e., absorbance and fluorescence) were adopted to reveal the relationship between the pyrolysis temperature and the characteristics of the DOM and the associated phytotoxicity. Results show that one of the main factors determining the properties and phytotoxicity of DOM leached from the pyrolyzed soil is the critical temperature (approximately 325 °C) during pyrolysis. When the temperature was lower than 325 °C, more types and quantities of DOM, mainly fulvic acid-like substances, were desorbed from the soil with the temperature, which have little effect on wheat growth. However, when the temperature was in the range of 325-550 °C, the type and quantity of DOM increased first and then decreased as the temperature increased, during which the organic matter in the soil decomposed. The wheat growth was first inhibited and then promoted. Finally, the correlation between the spectral indices of DOM with the phytotoxicity suggested that fluorescent components identified by parallel factor analysis were positively correlated with phytotoxicity. This study indicates the pyrolytic remediation of oil-contaminated soil should avoid some critical temperature ranges.
机译:热解,作为一个方便,快捷的技术,已被证明在石油污染土壤的修复是有前途。然而,知之甚少与热解油污染的土壤和对环境的影响相关联的溶解的有机物质(DOM)。在此,光学光谱技术(即,吸光度和荧光)获得通过以显示热解温度和DOM的特性和相关的植物毒性之间的关系。结果表明,确定所述特性和DOM的植物毒性的主要因素之一浸出从热解的土壤是在临界温度(约325℃)热解过程中。当温度低于325℃,更类型和DOM的数量时,主要是黄腐酸类物质,是从与温度的土壤中脱离出来,这对小麦生长的影响不大。然而,当温度在325-550℃,类型和DOM的量的范围内增加,然后再下降随着温度的升高,在此期间,在土壤中的有机质分解。小麦生长第一抑制,然后推广。最后,DOM与植物毒性的光谱指数之间的相关性所建议的并行因子分析鉴定出荧光成分与植物毒性呈正相关。这项研究表明石油污染土壤的热解修复应避免一些临界温度范围。

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