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Evaluation of the performance of an agricultural residue-based activated carbon aiming at removal of phenylalanine from aqueous solutions.

机译:评估旨在从水溶液中去除苯丙氨酸的农残基活性炭的性能。

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摘要

Phenylalanine removal is a necessary step for production of protein hydrolysates appropriate for consumption by phenylketonuria patients. In this study, the feasibility of employing an agricultural residue as precursor material in the production of adsorbents for phenylalanine removal from model solutions was studied. The adsorbent was prepared by treatment of the residue (defective coffee press cake) with H3PO4 and activation at 350 degrees C. Batch adsorption studies were conducted at 25, 35 and 45 degrees C. Distinct mechanisms were observed for adsorption of phenylalanine onto the prepared adsorbent depending on the solution pH. Hydrophobic interactions between carbon rings at the adsorbent surface and phenyl rings of the adsorbate molecules was deemed the predominant mechanism. Adsorption kinetics was satisfactorily described by a pseudo-second-order model and Langmuir model provided the best-fit for equilibrium description. Maximum uptake capacity of phenylananine was comparable to values encountered in the literature for synthetic adsorbents. The results show that agricultural residues present potential as materials for production of adsorbents for phenylalanine removal from aqueous solutions. All rights reserved, Elsevier.
机译:苯丙氨酸的去除是生产适合于苯丙酮尿症患者食用的蛋白质水解产物的必要步骤。在这项研究中,研究了使用农业残留物作为前体材料生产从模型溶液中去除苯丙氨酸的吸附剂的可行性。通过用H 3 PO 4 处理残留物(有缺陷的咖啡滤饼)并在350℃下活化来制备吸附剂。在25、35进行批量吸附在45℃和45℃下观察到不同的机理。取决于溶液的pH,苯丙氨酸吸附在制备的吸附剂上。吸附剂表面的碳环与被吸附物分子的苯环之间的疏水相互作用被认为是主要的机理。拟二级模型令人满意地描述了吸附动力学,Langmuir模型为平衡描述提供了最佳拟合。苯丙氨酸的最大吸收能力与合成吸附剂文献中所遇到的值相当。结果表明,农业残留物作为生产从水溶液中去除苯丙氨酸的吸附剂的材料具有潜力。保留所有权利,Elsevier。

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