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首页> 外文期刊>Science of the total environment >A framework for assessing the retardation of organic molecules in groundwater: Implications of the species distribution for the sorption-influenced transport
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A framework for assessing the retardation of organic molecules in groundwater: Implications of the species distribution for the sorption-influenced transport

机译:评估地下水中有机分子阻滞的框架:物种分布对吸附影响的运输的影响

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The pH-dependent molecule speciation (charge state) in solution strongly influences the transport of ionizable organic compounds in the aquatic environment Therefore, the sorption behavior is complex and reliable predictions only based on physico-chemical sorbate, sorbent and solution properties are challenging. A short overview of underlying sorption processes causing retardation during the solute transport in aquifers is completed by a description of approaches for estimating respective sorption coefficients/retardation factors and discussed together with their limitations. Based on these initial considerations, a systematic framework is proposed, which allows the assessment of transport properties of organic molecule species by their chemical nature (neutral, acidic, basic, ampholytic). As a result, the transport properties of many (ionizable) organic molecules of interest can be assessed and even first presumptions for the sorption behavior of new and not yet investigated molecules can be derived.
机译:溶液中依赖于pH的分子形态(电荷状态)强烈影响可水化环境中可电离的有机化合物的运输。因此,仅基于理化吸附物,吸附剂和溶液性质的吸附行为是复杂且可靠的预测。通过描述估算各自的吸附系数/延迟因子的方法,并简要讨论了引起吸附剂在含水层中迁移过程中引起阻滞的潜在吸附过程的简短概述,并对其限制进行了讨论。基于这些最初的考虑,提出了一个系统框架,该框架允许通过其化学性质(中性,酸性,碱性,两性)评估有机分子物质的传输性质。结果,可以评估许多感兴趣的(可电离的)有机分子的传输性质,甚至可以得出关于新的和尚未研究的分子的吸附行为的第一个假设。

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