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农业废弃物和细菌生物量的混合生物吸附剂用于从水系中分离 Pb(II)离子。

Mixed biosorbent of agro waste and bacterial biomass for the separation of Pb(II) ions from water system.

机构信息

Department of Biotechnology, Rajalakshmi Engineering College, Chennai, 602105, India.

Department of Chemical Engineering, Sri Sivasubramaniya Nadar College of Engineering, Chennai, India, 603110.

出版信息

Chemosphere. 2021 Aug;277:130236. doi: 10.1016/j.chemosphere.2021.130236. Epub 2021 Mar 17.

Abstract

Adsorption of Pb(II) ions in aqueous systems by newly developed mixed biomass has been explored. Mixed biomass was prepared from agro-waste (raw Banyan tree bark, RBTB) and bacterial biomass (Pannonibacter phragmitetus). Chemical modification by sulphuric acid treatment of raw banyan tree bark (SMBTB) was accomplished for the effective separation of toxic Pb(II) ions from the aquatic system. FTIR, SEM and EDX analysis was utilized to deduce sorption characteristics of mixed biomass. Pb(II) ions maximal removal has occurred at pH-6.0, lead (II) ions concentration-25 mg/L, time and mixed biomass dosage (60 min and 3.5 g/L for RBTB - Pannonibacter phragmitetus; 30 min and 1.5 g/L for SMBTB - Pannonibacter phragmitetus) and temperature (30 °C). Data from equilibrium isotherm and kinetic analysis was best suited to the Langmuir model and pseudo-first-order kinetics. The spontaneous and exothermic nature of Pb(II) ions removal was described by thermodynamic parameters. The mixed biomass proved to be an effective and potential mixed biosorbent for toxic lead removal from solutions.

摘要

新型混合生物量对水溶液中 Pb(II)离子的吸附进行了研究。混合生物量由农业废料(原始菩提树树皮,RBTB)和细菌生物质(Pannonibacter phragmitetus)制备。通过硫酸处理原始菩提树树皮(SMBTB)进行化学修饰,以有效从水系统中分离出有毒的 Pb(II)离子。利用 FTIR、SEM 和 EDX 分析来推断混合生物量的吸附特性。在 pH-6.0、铅(II)离子浓度-25 mg/L、时间和混合生物量剂量(RBTB-Pannonibacter phragmitetus 为 60 分钟和 3.5 g/L;SMBTB-Pannonibacter phragmitetus 为 30 分钟和 1.5 g/L)和温度(30°C)下,Pb(II)离子最大去除率发生。平衡等温线和动力学分析的数据最适合 Langmuir 模型和拟一级动力学。热力学参数描述了 Pb(II)离子去除的自发和放热性质。混合生物量被证明是一种有效且有潜力的混合生物吸附剂,可从溶液中去除有毒的铅。

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