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Assessing the Aflatoxins Mitigation Efficacy of Blueberry Pomace Biosorbent in Buffer, Gastrointestinal Fluids and Model Wine

机译:评估蓝莓POMACE生物吸附剂在缓冲液,胃肠液和模型葡萄酒中的黄曲霉毒素缓解疗效

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Blueberry (BB) and cherry pomace were investigated as new biosorbents for aflatoxins (AFs) sequestration from buffered solutions, gastrointestinal fluids and model wine. Among the tested biosorbents, BB exhibited the maximum adsorption performance for AFs and hence was further selected for the optimization of experimental parameters like pH, dosage, time and initial concentration of AFs. Material characterizations via scanning electron microscopy (SEM), Fourier transform infrared (FTIR) spectroscopy, N 2 adsorption-desorption isothermal studies, thermogravimetric analysis (TGA) and X-ray photon spectroscopy (XPS) techniques revealed useful information about the texture and chemical composition of the biosorbents. The fitting of isothermal data with different models showed the model suitability trend as: Sips model Langmuir model Freundlich model, where the theoretical maximum adsorption capacity calculated from the Sips model was 4.6, 2.9, 2.7 and 2.4 mg/g for AFB1, AFB2, AFG1 and AFG2, respectively. Kinetics study revealed the fast AFs uptake by BB (50–90 min) while thermodynamics studies suggested the exothermic nature of the AFs adsorption from both, single as well as multi-toxin buffer systems, gastrointestinal fluids and model wine. Accrediting to the fast and efficient adsorption performance, green and facile fabrication approach and cost-effectiveness, the newly designed BB pomace can be counted as a promising contender for the sequestration of AFs and other organic pollutants.
机译:蓝莓(BB)和樱桃焊料被研究为来自缓冲溶液,胃肠流体和模型葡萄酒的废酸毒素(AFS)封存的新生物吸水性。在经过测试的生物吸收剂中,BB表现出AFS的最大吸附性能,因此进一步选择用于优化像素,剂量,时间和AFS的初始浓度等实验参数。通过扫描电子显微镜(SEM),傅里叶变换红外(FTIR)光谱,N 2吸附 - 解吸等温研究,热重分析(TGA)和X射线光子光谱(XPS)技术揭示了有关纹理和化学成分的有用信息生物吸收剂。具有不同模型的等温数据的拟合显示,模型适用性趋势为:SIPS型号> Langmuir Model> Freundlich模型,其中来自SIPS模型计算的理论最大吸附容量为4.6,2.9,2.7和2.4 mg / g,用于AFB1,AFB2 ,AFG1和AFG2分别。动力学研究揭示了BB(50-90分钟)的快速AFS摄取,而热力学研究表明,从单一以及多毒素缓冲系统,胃肠流体和模型葡萄酒中的AFS吸附的放热性。对快速高效的吸附性能,绿色和面部的制造方法和成本效益进行了认证,新设计的BB Pomace可以被计算为AFS和其他有机污染物的封存的有希望的伴奏者。

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