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用于去除阳离子甲基紫2B染料的食品级藻类改性席夫碱-壳聚糖苯甲醛复合材料:响应面法统计参数优化

Food-grade algae modified Schiff base-chitosan benzaldehyde composite for cationic methyl violet 2B dye removal: RSM statistical parametric optimization.

作者信息

Agha Hasan M, Abdulhameed Ahmed Saud, Jawad Ali H, Sidik Norrizah Jaafar, Aazmi Shafiq, Wilson Lee D, ALOthman Zeid A

机构信息

Advanced Biomaterials and Carbon Development Research Group, Faculty of Applied Sciences, Universiti Teknologi MARA, Shah Alam, Selangor, Malaysia.

Department of Pharmaceutical Chemistry, College of Pharmacy, University of Anbar, Ramadi, Iraq.

出版信息

Int J Phytoremediation. 2024;26(4):459-471. doi: 10.1080/15226514.2023.2246596. Epub 2023 Aug 15.

Abstract

This work aims to apply the use of food-grade algae (FGA) composited with chitosan-benzaldehyde Schiff base biopolymer (CHA-BD) as a new adsorbent (CHA-BA/FGA) for methyl violet 2B (MV 2B) dye removal from aqueous solutions. The effect of three processing variables, including CHA-BA/FGA dosage (0.02-0.1 g/100 mL), pH solution (4-10), and contact duration (10-120 min) on the removal of MV 2B was investigated using the Box-Behnken design (BBD) model. Kinetic and equilibrium dye adsorption profiles reveal that the uptake of MV 2B dye by CHA-BA/FGA is described by the pseudo-second kinetics and the Langmuir models. The thermodynamics of the adsorption process (ΔG°, ΔH°, and ΔS°) reveal spontaneous and favorable adsorption parameters of MV 2B dye onto the CHA-BA/FGA biocomposite at ambient conditions. The CHA-BA/FGA exhibited the maximum ability to absorb MV 2B of 126.51 mg/g (operating conditions: CHA-BA/FGA dose = 0.09 g/100 mL, solution pH = 8.68, and temperature = 25 °C). Various interactions, including H-bonding, electrostatic forces, π-π stacking, and n-π stacking provide an account of the hypothesized mechanism of MV 2B adsorption onto the surface of CHA-BA/FGA. This research reveals that CHA-BA/FGA with its unique biocomposite structure and favorable adsorption properties can be used to remove harmful cationic dyes from wastewater.

摘要

本研究旨在应用食品级藻类(FGA)与壳聚糖-苯甲醛席夫碱生物聚合物(CHA-BD)复合而成的新型吸附剂(CHA-BA/FGA),从水溶液中去除甲基紫2B(MV 2B)染料。采用Box-Behnken设计(BBD)模型,研究了三个工艺变量,即CHA-BA/FGA用量(0.02 - 0.1 g/100 mL)、溶液pH值(4 - 10)和接触时间(10 - 120 min)对MV 2B去除效果的影响。动力学和平衡染料吸附曲线表明,CHA-BA/FGA对MV 2B染料的吸附符合准二级动力学和朗缪尔模型。吸附过程的热力学(ΔG°、ΔH°和ΔS°)表明,在环境条件下,MV 2B染料在CHA-BA/FGA生物复合材料上的吸附参数具有自发性和良好的吸附性能。CHA-BA/FGA对MV 2B表现出最大吸附能力为126.51 mg/g(操作条件:CHA-BA/FGA剂量 = 0.09 g/100 mL,溶液pH = 8.68,温度 = 25°C)。包括氢键、静电力、π-π堆积和n-π堆积在内的各种相互作用解释了MV 2B吸附在CHA-BA/FGA表面的假设机制。本研究表明,具有独特生物复合结构和良好吸附性能的CHA-BA/FGA可用于去除废水中的有害阳离子染料。

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