Recycling alkali lignin-derived biochar with adsorbed cadmium into cost-effective CdS/C photocatalyst for methylene blue removal.

IF 3.7 4区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL Waste Management & Research Pub Date : 2025-01-01 Epub Date: 2024-02-23 DOI:10.1177/0734242X241231394
Peng Yu, Ronghao Zhuang, Hui Liu, Zhiguo Wang, Chun Zhang, Qiongchao Wang, Hongyu Sun, Wei Huang
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Abstract

Cadmium (Cd)-enriched adsorbents wastes possess great environmental risk due to their large-scale accumulation and toxicity in the natural environment. Recycling spent Cd-enriched adsorbents into efficient catalysts for advanced applications could address the environmental issues and attain the carbon neutral goal. Herein, a facile strategy is developed for the first time to reutilize the alkali lignin (AL)-derived biochar (ALB) absorbed with Cd into cadmium sulphide (CdS)/C composite for the efficient methylene blue (MB) removal. The ALB is initially treated with Cd-containing solution, then the recycling ALB samples with adsorbed Cd are converted to the final CdS/C composite using NaS2 as the sulphurizing reagent for vulcanization reaction. The optimal ALB400 demonstrates a high adsorption capacity of 576.0 mg g-1 for Cd removal. Then the converted CdS/C composite shows an efficient MB removal efficiency of 94%. The photodegradation mechanism is mainly attributed to carbon components in the CdS/C composite as electron acceptor promoting the separation of photoelectrons/holes and slowing down the abrasion of CdS particles. The enhanced charge transfer and contact between the carrier and the active site thus improves the removal performance and reusability. This work not only develops a method for removing Cd from wastewater effectively and achieving the waste resource utilization but also further offers a significant guidance to use other kinds of spent heavy metal removal adsorbents for the construction of low-cost and high value-added functional materials.

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将吸附了镉的碱木质衍生生物炭回收利用为具有成本效益的 CdS/C 光催化剂,用于去除亚甲基蓝。
富镉(Cd)吸附剂废物在自然环境中的大规模积累和毒性具有极大的环境风险。将废弃的富镉吸附剂回收利用,制成先进应用的高效催化剂,可以解决环境问题,实现碳中和目标。本文首次开发了一种简便的策略,将吸收了镉的碱木素(AL)衍生生物炭(ALB)重新利用为硫化镉(CdS)/C 复合材料,用于高效去除亚甲基蓝(MB)。首先用含镉溶液处理 ALB,然后用 NaS2 作为硫化试剂进行硫化反应,将吸附了镉的回收 ALB 样品转化为最终的 CdS/C 复合材料。最佳 ALB400 对镉的吸附能力高达 576.0 mg g-1。转化后的 CdS/C 复合材料对甲基溴的去除率高达 94%。光降解机制主要归因于 CdS/C 复合材料中的碳成分作为电子受体,促进了光电子/空穴的分离,减缓了 CdS 粒子的磨损。载流子与活性位点之间的电荷转移和接触增强,从而提高了去除性能和可重复使用性。这项工作不仅开发了一种有效去除废水中镉的方法,实现了废物资源化利用,还为利用其他种类的废重金属去除吸附剂构建低成本、高附加值的功能材料提供了重要指导。
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来源期刊
Waste Management & Research
Waste Management & Research 环境科学-工程:环境
CiteScore
8.50
自引率
7.70%
发文量
232
审稿时长
4.1 months
期刊介绍: Waste Management & Research (WM&R) publishes peer-reviewed articles relating to both the theory and practice of waste management and research. Published on behalf of the International Solid Waste Association (ISWA) topics include: wastes (focus on solids), processes and technologies, management systems and tools, and policy and regulatory frameworks, sustainable waste management designs, operations, policies or practices.
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