气凝胶
吸附
生物炭
化学工程
水溶液
废水
镉
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
钠
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]
日期:2026-03-16
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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