气凝胶
Mercury(编程语言)
复合数
环境科学
废物管理
环境化学
材料科学
化学
复合材料
计算机科学
工程类
程序设计语言
作者
Armanbek Nursharip,Chingis Daulbayev,Jakpar Jandosov,Joseph C. Bear,Rosa Busquets,Vassilis J. Inglezakis,Alzhan Baimenov
标识
DOI:10.1016/j.mtsust.2025.101132
摘要
Mercury is a major global health concern; it is widespread across all environmental media and it affects all forms of life. There is strong interest in materials that can effectively remove Hg from water. This study investigates a novel and sustainable approach for mercury removal that consist of macroporous aerogel composite derived from rice husk lignin and modified with MXene. The composite developed high specific surface area (320 m 2 /g) and remarkable potential for Hg 2+ removal. Notably, 20 wt.% MXene modification increased the maximum adsorption capacity of the bare sorbent (lignin aerogel) from (82.4 mg Hg 2+ /g) to 135.8 mg Hg 2+ /g, which surpasses commercial adsorbents. The composite effectively removed Hg 2+ even from tap water spiked with high metal concentrations (10 mg/L). These findings highlight the significance of lignin-MXene aerogels for real-world application in water purification and environmental remediation.
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