首页> 外文期刊>Journal of Cleaner Production >Immobilized Mucor plumbeus on sepiolite support: A potential decolonization agent suitable for batch and continuous mode water treatment
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Immobilized Mucor plumbeus on sepiolite support: A potential decolonization agent suitable for batch and continuous mode water treatment

机译:固定化粘膜米兰肽对海硫酸盐载体:适用于批量和连续模式水处理的潜在脱碎剂剂

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摘要

This study was focused on the design of a new and effective decolorization agent by immobilization of Mucor plumbeus cells on the sepiolite matrix (MPSP). The passive immobilization method was used to attach the microbial cells to sepiolite. Methyl violet (MV) decolorization performance of this immobilized material was examined through batch and dynamic flow sorption studies. Biosorption of MV onto MPSP was characterized by using IR, SEM, EDX, and zeta potential analysis. MPSP achieved 89.60% decolorization performance under the optimum batch conditions. Langmuir isotherm model was found as the best-fitted model for the equilibrium data of MV biosorption. The highest monolayer sorption capacity of MPSP was 187.76 mg g(-1). Sorption kinetics followed the pseudo-second-order model and the highest rate constant was recorded as 2.56 x 10(-4) g mg(-1) min(-1) at 45 degrees C. Gibbs free energy (Delta G degrees) changed from -24.269 to -26.257 kJ mol(-1) when the temperature was increased from 15 to 45 degrees C. Decolorization was identified as exothermic in nature (Delta H degrees = -5.176 kJ mol(-1)) and sorption reaction was accompanied by an increase in entropy (Delta S degrees = 0.066 kJ K-1 mol(-1)). IR analysis indicated that -OH and -C=O groups played a role in the sorption. Fixed bed MPSP column showed almost 100% decolorization yield, good regeneration, and reusability potential. Although there are several studies conducted on the preparation of immobilized sorbent materials, this is the first study of the combined action of sepiolite and M.plumbeus cells for sorption purposes. (C) 2021 Elsevier Ltd. All rights reserved.
机译:本研究专注于通过固定在海硫酸盐基质(MPSP)上的粘膜百脐细胞来设计新的和有效的脱色剂。使用被动固定方法将微生物细胞附着到海硫酸髂骨中。通过分批和动态流吸附研究检查该固定材料的甲基紫(MV)脱色性能。通过使用IR,SEM,EDX和Zeta电位分析,表征MV的生物吸收。 MPSP在最佳批量条件下实现了89.60%的脱色性能。 Langmuir等温模型被发现为MV生物吸附的平衡数据的最佳型号。 MPSP的最高单层吸附能力为187.76mg(-1)。吸附动力学跟随伪二阶模型,最高速率常数记录为2.56×10(-4)毫克(-1)min(-1),在45摄氏度下,吉布斯自由能(Delta G度)变化从-24.269至-26.257 kj mol(-1)当温度从15升至45℃时,鉴定脱色本质上(Delta h = -5.176 kJ mol(-1))和吸附反应伴随着吸附反应通过熵增加(ΔS度= 0.066 kJ k-1mol(-1))。 IR分析表明-OH和-C = O基团在吸附中发挥作用。固定床MPSP柱显示出几乎100%的脱色产量,再生良好,可重用性潜力。虽然在制备固定的吸附剂材料方面进行了几项研究,但这是对海尔米石和M.Plumbeus细胞进行吸附目的的第一次研究。 (c)2021 elestvier有限公司保留所有权利。

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