National Engineering Lab of Textile Fiber Materials & Processing Technology (Zhejiang), Zhejiang Sci-Tech University, Hangzhou, 310018, China.
National Engineering Lab of Textile Fiber Materials & Processing Technology (Zhejiang), Zhejiang Sci-Tech University, Hangzhou, 310018, China; Zhejiang Provincial Innovation Center of Advanced Textile Technology, Shaoxing, 312000, China.
Chemosphere. 2024 Apr;354:141737. doi: 10.1016/j.chemosphere.2024.141737. Epub 2024 Mar 16.
Extracting heavy metal ions from wastewater has significant implications for both environmental remediation and resource preservation. However, the conventional adsorbents still suffer from incomplete ion removal and low utilization efficiency of the recovered metals. Herein, we present an extraction and reutilization method assisted by porous boron nitride (p-BN) containing high-density N atoms for metal recovery with simultaneous catalyst formation. The p-BN exhibits stable and efficient metal adsorption performance, particularly for ultra-trace-level water purification. The distribution coefficients towards Pb, Cd, Co and Fe can exceed 10 mL g and the residual concentrations that reduced from 1 mg L to 0.8-1.3 μg L are much lower than the acceptable limits in drinking water standards of World Health Organization. Meanwhile, the used p-BN after Co ion adsorption can be directly adopted as a high-efficiency catalyst for activating peroxymonosulfate (PMS) in organic pollutant degradation without additional post-treatment, avoiding the secondary metal pollution and the problems of neglected manpower and energy consumption. Moreover, a flow-through multistage utilization system assisted by p-BN/polyvinylidene fluoride (PVDF) membrane is constructed for achieving both metal ion separation and reutilization in the removal of organic pollutants, providing a new avenue for sustainable wastewater remediation.
从废水中提取重金属离子对环境修复和资源保护都具有重要意义。然而,传统的吸附剂仍然存在离子去除不完全和回收金属利用率低的问题。在此,我们提出了一种在多孔氮化硼(p-BN)辅助下的提取和再利用方法,其中 p-BN 含有高密度 N 原子,可用于金属回收和同时形成催化剂。p-BN 表现出稳定而高效的金属吸附性能,尤其适用于超痕量水平的水净化。对 Pb、Cd、Co 和 Fe 的分配系数超过 10 mL/g,且残留浓度从 1 mg/L 降低到 0.8-1.3 μg/L,远低于世界卫生组织饮用水标准的可接受限值。同时,Co 离子吸附后的 p-BN 可直接用作高效催化剂,用于在有机污染物降解中激活过一硫酸盐(PMS),无需额外的后处理,避免了二次金属污染和人力物力消耗的问题。此外,构建了一种基于 p-BN/聚偏二氟乙烯(PVDF)膜的流动式多级利用系统,用于在去除有机污染物的过程中实现金属离子的分离和再利用,为可持续的废水处理提供了新途径。