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Insights into the Sorption Properties of Cutin and Cutan Biopolymers

机译:角质和角质生物聚合物吸附特性的见解

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Plant cuticles have been reported as highly efficient sorbents for organic compounds. The objective of this study was to elucidate the sorption and desorption behavior of polar and nonpolarorganic compounds with the major structural components of the plant cuticle: the biopolymers cutin and cutan. The sorption affinity values of the studied compounds followed the order: phenanthrene > atrazine > chlorotoluron > carbam-azepine. A higher sorption affinity of phenanthrene and atrazine to cutin was probably due to the higher level of amorphous paraffinic carbon in this biopolymer. Phenanthrene exhibited reversible sorption behavior and a high ratio of organic-carbon-normalized distribution coefficient (K_(OC)) to carbon-normalized octanol-water partitioning coefficients (K_(OWC)) with both biopolymers. This suggests that both biopolymers provide phenanthrene with a partition medium for hydrophobic interactions with the flexible long alkyl-chain moieties of the biopolymers. The low K_(OC)/K_(OWC) ratios obtained for the polar sorbates suggest that the polar sites in the biopolymers are not accessible for sorption interactions. Atrazine and carbamazepine exhibited sorption-desorption hysteresis with both sorbents, indicating that both sorbates interact with cutin and cutan via both hydrophobic and specific interactions. In general, the sorptive properties of the studied biopolymers were similar, signifying that the active sorption sites are similar even though the biopolymers exhibit different properties.
机译:据报道,植物角质层是有机化合物的高效吸附剂。这项研究的目的是阐明具有植物表皮主要结构成分的极性和非极性有机化合物的吸附和解吸行为:生物聚合物角质和角质。所研究化合物的吸附亲和力值依次为:菲>阿特拉津>氯甲苯隆>卡巴-氮杂ze。菲和at去津对角蛋白的吸附亲和力较高,可能是由于该生物聚合物中无定形链烷烃碳含量较高。在两种生物聚合物中,菲均具有可逆的吸附行为,并且有机碳归一化分布系数(K_(OC))与碳归一化辛醇-水分配系数(K_(OWC))的比率较高。这表明两种生物聚合物都为菲提供了一种分配介质,用于与生物聚合物的柔性长烷基链部分进行疏水性相互作用。极性吸附物获得的低K_(OC)/ K_(OWC)比表明,生物聚合物中的极性位点无法进行吸附相互作用。阿特拉津和卡马西平对两种吸附剂均表现出吸附-解吸滞后现象,表明这两种吸附剂均通过疏水和特异性相互作用与角质和角质发生相互作用。通常,所研究的生物聚合物的吸附性能相似,这表明即使生物聚合物表现出不同的性能,活性吸附位点也相似。

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  • 来源
    《Environmental Science & Technology》 |2008年第4期|1165-1171|共页
  • 作者

    MICHAL SHECHTER; BENNY CHEFETZ;

  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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