Systematic evaluation of soil-based zeolite materials for the remediation of metal(loid)-contaminated water bodies

环境修复 沸石 污染 环境化学 环境科学 土壤污染 重金属 土壤修复 金属 废物管理 化学 土壤水分 冶金 材料科学 土壤科学 工程类 生态学 催化作用 生物 生物化学
作者
Zheting Chu,Huan Tang,Jiaxin Liang,Jing Li,Dazhong Yang,Ranhao Wang,Hong Chen
标识
DOI:10.1016/j.seh.2025.100143
摘要

The synthesis of a diverse framework structure of zeolite materials using abundant natural soils as raw materials showcases the implementation of green chemistry principles and their feasibility for environmental engineering. However, no systematic evaluation of the soil-based zeolite materials for the remediation of metal(loid)-contaminated water bodies has been conducted. Herein, using the widely spread Chinese red soil and loess as raw materials, we have successfully synthesized eight zeolite materials and established a novel soil-based zeolite library. All eight zeolite types had different adsorption capacity for 10 metal(loid) ions, including As(III), As(V), Cd, Cr(III), Cr(VI), Cu, Hg, Ni, Pb, and Zn. The selectivity regarding different metal(loid) ions of zeolites was influenced by their framework structures, pH, speciation, and concentration of coexisting ions. A mechanism study revealed that ion exchange, electrostatic attraction, and chemical precipitation synergistically contribute to the interactions between soil-based zeolite materials and metal(loid)s. This work demonstrated the construction of a soil-based zeolite library from natural soils in line with green chemistry principles. Systematic metal(loid) adsorption data for diverse water bodies were presented, including deionized, tap, sea and river water. The information is important for future engineering application of soil-based zeolites in metal(loid)-contaminated water or soil remediation. • A green avenue for synthesizing zeolites from natural soils was demonstrated. • A soil-based zeolite library was created to remediate heavy metal(loid)-contaminated water. • Systematic heavy metal(loid) adsorption data under various water bodies was provided. • The adsorption performance of zeolites for ten heavy metal(loid)s was evaluated.
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