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Competitive sorption-desorption behavior of triazine herbicides with plant cuticular fractions

机译:三嗪类除草剂与植物表皮成分的竞争吸附-解吸行为

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Sorption interactions of plant cuticular matter with organic compounds are not yet fully understood. The objective of this study was to examine the competitive sorption-desorption interactions of the triazine herbicides (atrazine and ametryn) with cuticular fractions isolated from tomato fruits and leaves of Agave americana. The 13C NMR data suggest a rubber-like nature for the cutin. This biopolymer exhibited reversible and noncompetitive sorption. Enhanced desorption of atrazine was recorded in the bi-solute system with bulk and dewaxed A. americana cuticles. 13C NMR analyses of these samples suggested that the sorbed competitor ametryn facilitated a physical phase transition of rigid paraffinic sorption domain to mobile and flexible domain during sorption process. We suggest that the different sorption-desorption behavior obtained for the two cuticles is related to the higher content of waxes (14% vs 2.6%) and lower content of cutin (46% vs 75%) in the A. americana versus tomato fruit cuticle.
机译:植物表皮物质与有机化合物的吸附相互作用尚不完全清楚。这项研究的目的是检查三嗪除草剂(阿特拉津和atricn)与从龙舌兰番茄果实和叶片中分离出的表皮部分的竞争性吸附-解吸相互作用。 13 C NMR数据表明角质具有橡胶样性质。这种生物聚合物表现出可逆的和非竞争性的吸附。在散装和脱蜡的美国表皮角质层的双溶质体系中,阿特拉津的解吸增强。这些样品的13 C NMR分析表明,被吸附的竞争者ametricn在吸附过程中促进了刚性链烷烃吸附域向移动域和柔性域的物理相转变。我们认为,两个角质层获得的不同的吸附-解吸行为与美国水果对番茄果实角质层中蜡含量较高(14%比2.6%)和角质含量较低(46%比75%)有关。 。

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