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Adsorption of phenol and bisphenol A on river sediments: Effects of particle size, humic acid, pH and temperature

吸附 苯酚 化学 双酚A 环境化学 沉积物 腐植酸 污染物 粒径 粒子(生态学) 有机化学 地质学 环氧树脂 古生物学 物理化学 肥料 海洋学
作者
Xueping Wang,Aixia Chen,Bei Chen,Lingqing Wang
出处
期刊:Ecotoxicology and Environmental Safety [Elsevier BV]
卷期号:204: 111093-111093 被引量:56
标识
DOI:10.1016/j.ecoenv.2020.111093
摘要

Phenolic Endocrine Disrupting Chemicals (EDCs) have drawn more and more interest due to their prevalence and persistence in aquatic environment. To study the adsorption of various phenolic EDCs on river sediments under natural conditions, we first sought to analyze the distribution characteristics of phenol and bisphenol A (BPA) in sediment from the Bahe River. The static adsorption experiments contained either single- or dual-contaminant of phenol and/or BPA in the system; they were conducted to characterize the adsorption of these two pollutants in the surface sediments and the main factors affecting the adsorption processes of the dual-contaminant system, including particle size, humic acid (HA) concentration, pH, and temperature. Results showed that in certain seasons, there was a significant correlation between the levels of phenol and BPA in Bahe sediments. When comparing the adsorption behaviors of phenol and BPA on sediments in single- and dual-contaminant systems, we found that the phenol adsorption behavior varied, while that of BPA remained consistent across the different systems. Moreover, different effects were observed with regards to a single factor and the interaction of multiple factors on the adsorption of pollutants. Of the four single factors, only HA concentration had a significant effect on the phenol adsorption in sediment. When considering the interaction of multiple factors, the interaction between HA concentration and temperature significantly promoted the adsorption of phenol. The influence of factors on the adsorption of BPA was in the following order: particle size > HA concentration > pH > temperature. Particle size significantly inhibited BPA adsorption in the sediment, while the interaction between particle size and pH increased BPA adsorption.
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