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生物炭/无忧树胶/壳聚糖复合材料作为高效吸附剂用于从水介质中去除苯酚。

Biochar/Delonix regia seed gum/chitosan composite as efficient adsorbent for the elimination of phenol from aqueous medium.

机构信息

Department of Chemistry, Faculty of Science, Damanhour University, Damanhour 22511, Egypt.

Chemistry Department, Faculty of Science, King Khalid University, PO Box 9004, Abha, 61413, Saudi Arabia.

出版信息

Int J Biol Macromol. 2024 Jul;273(Pt 1):132771. doi: 10.1016/j.ijbiomac.2024.132771. Epub 2024 May 30.

Abstract

In this study, biochar (BC) from Delonix regia pods peel and gum from Delonix regia seed (SG) were prepared, and also biochar/chitosan composite (BCS) and biochar/Delonix regia seed gum/chitosan composite (BCGS) were fabricated for the efficient adsorption of phenol. Various characterization tools such as SEM, TEM, ATR-FTIR, TGA, zeta potential, and textural investigation were studied to examine the features of the synthetized adsorbents, confirming their positive construction. It was fully studied how necessary factors, comprising pH, dose of adsorbent, contact shaking time, initial phenol concentration, and temperature influenced adsorption behavior. An obvious rise of the adsorption capacity from 60.16 to 165.20 mg/g was achieved by the modification of biochar with Delonix regia seed gum and chitosan under ideal circumstances of 2 h contact duration, pH 7, 15 °C, and a dose of 2.0 g/L. The phenol adsorption was well applied by Langmuir, Temkin, Dubinin-Radushkevich, and Sips isotherms, in addition to nonlinear pseudo-second-order kinetic model. Furthermore, the physisorption, endothermic, and spontaneous process was illustrated by thermodynamic investigation. Additionally, the fabricated adsorbents could be effectively used and regenerated without main losses of only 7.5, 4.6, and 4.0 % for BC, BCS, and BCGS, respectively in the removal percentage after seven cycles of application.

摘要

在这项研究中,制备了来自无忧树豆荚的生物炭(BC)和无忧树种子中的胶(SG),并制备了生物炭/壳聚糖复合材料(BCS)和生物炭/无忧树种子胶/壳聚糖复合材料(BCGS),以有效吸附苯酚。通过 SEM、TEM、ATR-FTIR、TGA、ζ电位和结构研究等各种特征工具来研究合成吸附剂的特征,证实了它们的积极构建。全面研究了包括 pH、吸附剂用量、接触时间、初始苯酚浓度和温度在内的必要因素如何影响吸附行为。在 2 h 接触时间、pH 7、15°C 和 2.0 g/L 剂量的理想条件下,通过用无忧树种子胶和壳聚糖修饰生物炭,吸附容量从 60.16 增加到 165.20 mg/g。苯酚吸附通过 Langmuir、Temkin、Dubinin-Radushkevich 和 Sips 等温线以及非线性伪二阶动力学模型得到了很好的应用。此外,热力学研究表明,该过程是物理吸附、吸热和自发的。此外,在 7 次应用循环后,制备的吸附剂的去除率分别仅损失 7.5%、4.6%和 4.0%,表明它们可以有效地使用和再生,而不会有主要损失。

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