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Organic Pollutant Penetration through Fruit Polyester Skin: A Modified Three-compartment Diffusion Model

机译:通过水果聚酯皮肤渗透有机污染物:修正的三室扩散模型。

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The surface of plants is covered by a continuous but heterogeneous cuticular membrane (CM). Serving as the first protective barrier, the uptake and transport behavior of organic pollutants at this interface continue to engage the research efforts of environmental chemist. To date, the contributions of cuticular components as a defense against the organic pollutants penetration remain unresolved. In this study, the unsteady-state penetration characteristics of phenanthrene (PHE) through isolated fruit CM was investigated. PHE penetration was differentiated by three cuticular compartments: epicuticular waxes (EW), cuticle proper (CP) and cuticular layer (CL). The driving force for PHE penetration was ascribed to the sharp concentration gradient built up endogenously by cuticular compartments with different lipophilic affinities. A modified penetration model was established and verified in terms of its general suitability for the hydrophobic chemicals and CMs of various plant species (apple, tomato and potato). The new three-compartment model demonstrates much higher accuracy in characterizing the uptake and transport behavior of semivolatile chemicals with fewer limitations in terms of environmental conditions and complexity (e.g., coexisting contaminants and temperature). This model could contribute to a more comprehensive understanding on the role of polymeric lipids in the organic pollutant sorption and transport into plants.
机译:植物的表面被连续但异质的表皮膜(CM)覆盖。作为第一道防护屏障,该界面上有机污染物的吸收和运输行为继续引起环境化学家的研究努力。迄今为止,尚未解决表皮成分对防止有机污染物渗透的作用。在这项研究中,菲通过分离的水果CM的非稳态渗透特性进行了研究。 PHE的渗透分为三个表皮区室:表皮蜡(EW),固有表皮(CP)和表皮层(CL)。 PHE渗透的驱动力归因于具有不同亲脂亲和力的表皮区隔内源性建立的尖锐浓度梯度。建立了改进的渗透模型,并根据其对各种植物物种(苹果,番茄和马铃薯)的疏水性化学品和CM的一般适用性进行了验证。新的三室模型在表征半挥发性化学物质的吸收和运输行为方面显示出更高的准确性,而对环境条件和复杂性(例如,污染物和温度共存)的限制较少。该模型可以有助于更全面地了解聚合物脂质在有机污染物吸附和运输到植物中的作用。

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