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Sorption behaviour of pentachlorophenol in sub-Saharan tropical soils: soil types sorption dynamics

机译:五氯酚在撒哈拉以南热带土壤中的吸附行为:土壤类型的吸附动力学

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摘要

In order to predict exposure risks as well as appropriate remediation strategies for pesticides in soils, knowledge of pesticides sorption processes onto various representative soils is vital. Hence, laboratory batch experiments were carried out to study sorption of a pesticide, pentachlorophenol (PCP), on five soils obtained from different sub-Saharan agro-ecological zones (AEZs) in order to understand sorption equilibrium, kinetics, and thermodynamics. Experimental data showed that sorption equilibrium was attained within 24 h. The fitting of kinetic results and equilibrium data to different models suggested partly surface adsorption and partly partitioning of PCP within voids of the various soil components. Sorption was mainly attributed to sharing or exchange of valence electrons between negatively charged PCP molecules and positively charged soil sorption sites. The sorption process was spontaneous and accompanied by decreased entropy, but was pH and temperature dependent, reducing with increase in pH and temperature. The various soils' PCP sorption capacities were directly proportional to their cation exchange capacities. The low PCP sorption observed in these soils suggested high risk of PCP being present in soil water solution, especially at higher temperatures, which can lead to contamination of the aquifer. This risk may be higher for soils obtained from AEZs with warmer natural temperatures.
机译:为了预测土壤中农药的暴露风险以及适当的补救策略,了解农药在各种代表性土壤上的吸附过程至关重要。因此,进行了实验室分批实验,研究了五种从撒哈拉以南非洲农业生态区(AEZ)获得的土壤上五氯酚(PCP)农药的吸附,以了解吸附平衡,动力学和热力学。实验数据表明,在24 h内达到了吸附平衡。将动力学结果和平衡数据拟合到不同模型表明,PCP的部分表面吸附和部分分配在各种土壤组分的空隙内。吸附主要归因于带负电的PCP分子与带正电的土壤吸附位之间的价电子共享或交换。吸附过程是自发的,并伴随着熵的降低,但与pH和温度有关,随pH和温度的升高而降低。各种土壤对PCP的吸附能力与它们的阳离子交换能力成正比。在这些土壤中观察到的低PPC吸附表明,土壤水溶液中存在高PPC的风险,尤其是在较高温度下,可能导致含水层的污染。对于自然温度较高的AEZ而言,这种土壤的风险可能更高。

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