Three-Dimensional Aerogel Beads Based on Magnesium-Modified Biochar and Sodium Alginate: A Sustainable High-Performance Adsorbent for Efficient Removal of Cadmium from Wastewater

气凝胶 吸附 生物炭 化学工程 水溶液 废水 朗缪尔吸附模型 化学 等温过程 复合数 制浆造纸工业 材料科学 污水处理 废物管理 色谱法 朗缪尔 工业废水处理 废物处理 农业废弃物
作者
Sheng He,G. Chen,Kaixin Liu,Zhicheng Xie,Zhang Chen,Zhixian Li,Jianlin Zhou
出处
期刊:Langmuir [American Chemical Society]
卷期号:42 (12): 8785-8798 被引量:1
标识
DOI:10.1021/acs.langmuir.5c06565
摘要

The difficulty in recovering powdered biochar and its limited adsorption capacity are the main obstacles restricting the application of agricultural waste in cadmium (Cd 2+ ) adsorption. To address these issues, magnesium-modified biochar (MBC)/alginate sodium (SA) aerogel beads were prepared through in situ cross-linking-gelation and freeze-drying techniques for the removal of Cd 2+ from wastewater. The MBC/SA composite aerogel beads with excellent performance can be easily separated from the aqueous solution, avoiding the secondary pollution and equipment blockage caused by powdered adsorbents. The adsorption capacity of MBC/SA aerogel beads for Cd 2+ under different conditions was analyzed and optimized. Additionally, the maximum adsorption capacity of Cd 2+ by MBC/SA aerogel beads reached 289.6618 mg·g –1, which fitted well with the Langmuir isothermal model ( R 2 = 0.9911). Moreover, it was found that the adsorption process of Cd 2+ on MBC/SA aerogel beads was spontaneous and endothermic, following pseudo-second-order kinetics ( R 2 = 0.9935). Furthermore, even after 7 repeatable usage cycles, the adsorption efficiency of MBC/SA aerogel beads remained around 29.3%. This work proposes a simple and scalable manufacturing strategy to convert agricultural waste into an efficient adsorbent for wastewater treatment, adhering to the principle of sustainable development.
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