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采用磁性碳纳米点和 B. pseudomycoides MH229766 复合材料对刚果红染料进行可持续修复:机理研究和柱模型研究。

A sustainable remediation of Congo red dye using magnetic carbon nanodots and B. pseudomycoides MH229766 composite: mechanistic insight and column modelling studies.

机构信息

Amity Institute of Biotechnology, Amity University Uttar Pradesh, Sector 125, Noida, Uttar Pradesh, 201313, India.

School of Science, Institute of Technology Sligo, Sligo, Ireland.

出版信息

Environ Sci Pollut Res Int. 2022 Nov;29(53):80088-80108. doi: 10.1007/s11356-022-21180-3. Epub 2022 Jun 8.

DOI:10.1007/s11356-022-21180-3
PMID:35672648
Abstract

In the present investigation, a biocomposite, magnetic carbon nanodot immobilized Bacillus pseudomycoides MH229766 (MCdsIB) was developed and consequently characterized using SEM-EDX, FTIR, XRD, and VSM analyses to effectively biotreat hazardous Congo red (CR) dye present in water bodies. The adsorptive efficiency of MCdsIB for the detoxification of CR from wastewater was investigated both in batch and column schemes. Optimum batch parameters were found as pH 3, 50 mg L dye concentration, 150 min equilibrium time, and 2 g L MCdsIB dosage. The Freundlich isotherm model best fit the experimental data, and the maximum adsorption capacity of MCdsIB was observed as 149.25 mg g. Kinetic data were in accordance with the pseudo-second-order model where the adsorption rate reduced with the rise in the initial concentration of dye. Intra-particle diffusion was discovered as the rate-limiting step following 120 min of the adsorption process. Furthermore, despite being used continually for five consecutive cycles, MCdsIB demonstrated excellent adsorption capacity (> 85 mg g), making it an outstanding recyclable material. The CR dye was efficiently removed in fixed-bed continuous column studies at high influent CR dye concentration, low flow rate, and high adsorbent bed height, wherein the Thomas model exhibited an excellent fit with the findings acquired in column experiments. To summarize, the current study revealed the effectiveness of MCdsIB as a propitious adsorbent for CR dye ouster from wastewater.

摘要

在本研究中,开发了一种生物复合材料,即磁性碳纳米点固定化 Bacillus pseudomycoides MH229766(MCdsIB),并通过 SEM-EDX、FTIR、XRD 和 VSM 分析对其进行了相应的表征,以有效地生物处理水体中存在的危险刚果红(CR)染料。研究了 MCdsIB 在批处理和柱处理方案中从废水中解毒 CR 的吸附效率。发现最佳批处理参数为 pH 3、50mg/L 染料浓度、150min 平衡时间和 2g/L MCdsIB 剂量。实验数据最符合 Freundlich 等温线模型,MCdsIB 的最大吸附容量为 149.25mg/g。动力学数据符合准二级模型,随着染料初始浓度的升高,吸附速率降低。吸附过程进行 120min 后,发现内扩散是限速步骤。此外,尽管在连续五个循环中使用,MCdsIB 仍表现出出色的吸附容量(>85mg/g),使其成为一种优秀的可回收材料。在高进水 CR 染料浓度、低流速和高吸附床层高度的固定床连续柱研究中,有效地去除了 CR 染料,其中 Thomas 模型与柱实验得出的结果具有很好的拟合性。总之,本研究表明 MCdsIB 作为一种从废水中去除 CR 染料的有利吸附剂是有效的。

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