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Application of Response Surface Methodology to Analyze the Effects of Soil/Liquid Ratio, pH, and Incubation Time on the Bioaccessibility of PAHs from Soil in In Vitro Method

机译:响应面法在土壤/液比,pH和孵育时间对土壤中PAHs生物利用度影响的体外分析中的应用

摘要

Central composite design using response surface methodology was employed to optimize soil/liquid ratio (S/L), pH, and incubation time for polycyclic aromatic hydrocarbons (PAHs) bioaccessibility from soil in a simulated gastrointestinal tract. The magnitude of PAHs bioaccessibility in intestinal tract was found higher than that in gastric tract. Results showed that S/L had significant negative effects on the bioaccessibility of PAHs in both the gastric and intestinal tracts. The effect of pH on the intestinal tract was significantly negative, while on the gastric tract, it was positive. The incubation time presented an insignificant effect in gastric tract despite its significant positive effect in intestinal tract. The worst-case bioaccessibility conditions for PAHs in the gastric tract were found to be S/L 0.004, pH 2, and incubation time 3 h, with the maximum bioaccessibility of PAHs at 6.0% compared with 41.8% in intestinal tract with S/L 0.004, pH 6.5, and incubation time 6 h.
机译:采用响应表面方法进行的中央复合材料设计可优化土壤/液体比(S / L),pH和模拟胃肠道中土壤中多环芳烃(PAHs)生物可及性的孵育时间。发现肠道中PAHs的生物可及性程度高于胃中。结果表明,S / L对PAHs在胃和肠道中的生物可及性具有明显的负面影响。 pH对肠道的影响显着为负,而对胃的影响为正。尽管在肠道中的潜伏期显着正效应,但其在胃中的潜伏期效应并不显着。发现胃中PAHs的最坏情况生物可及性条件为S / L 0.004,pH 2和孵育时间3 h,其中PAHs的最大生物可及性为6.0%,而S / L的肠道中生物可及性为41.8%。 0.004,pH 6.5,孵育时间6 h。

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