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Large-Scale Membrane- and Lignin-Modified Adsorbent-Assisted Extraction and Preconcentration of Triazine Analogs and Aflatoxins

机译:大规模膜和木质素修饰的吸附剂辅助萃取和预浓缩三嗪类似物和黄曲霉毒素

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摘要

The large-scale simultaneous extraction and concentration of aqueous solutions of triazine analogs, and aflatoxins, through a hydrocarbon-based membrane (e.g., polyethylene, polyethylene/polypropylene copolymer) under ambient temperature and atmospheric pressure is reported. The subsequent adsorption of analyte in the extraction chamber over the lignin-modified silica gel facilitates the process by reducing the operating time. The maximum adsorption capacity values for triazine analogs and aflatoxins are mainly adsorption mechanism-dependent and were calculated to be 0.432 and 0.297 mg/10 mg, respectively. The permeation, and therefore the percentage of analyte extracted, ranges from 1% to almost 100%, and varies among the solvents examined. It is considered to be vapor pressure- and chemical polarity-dependent, and is thus highly affected by the nature and thickness of the membrane, the discrepancy in the solubility values of the analyte between the two liquid phases, and the amount of adsorbent used in the process. A dependence on the size of the analyte was observed in the adsorption capacity measurement, but not in the extraction process. The theoretical interaction simulation and FTIR data show that the planar aflatoxin molecule releases much more energy when facing toward the membrane molecule when approaching it, and the mechanism leading to the adsorption.
机译:据报道,在环境温度和大气压下,通过基于烃的膜(例如,聚乙烯,聚乙烯/聚丙烯共聚物)大规模同时萃取和浓缩三嗪类似物和黄曲霉毒素的水溶液。随后,分析物在木质素改性硅胶上的萃取室中的吸附通过减少操作时间促进了该过程。三嗪类似物和黄曲霉毒素的最大吸附容量值主要取决于吸附机理,经计算分别为0.432和0.297 mg / 10 mg。渗透率以及所提取分析物的百分比范围从1%到几乎100%,并且在所检查的溶剂之间有所不同。它被认为是与蒸汽压和化学极性有关的,因此受到膜的性质和厚度,两种液相之间分析物的溶解度值差异以及吸附剂使用量的很大影响。过程。在吸附容量测量中观察到对分析物尺寸的依赖性,但在萃取过程中未观察到。理论相互作用模拟和FTIR数据表明,平面黄曲霉毒素分子在接近膜分子时会释放更多的能量,并且是导致吸附的机理。

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