School of Sustainable Engineering and the Built Environment, Arizona State University, Tempe, Arizona 85287, United States.
Engineering Research Center for Nanotechnology-Enabled Water Treatment (NEWT), Arizona State University, Tempe, Arizona 85287, United States.
Environ Sci Technol. 2023 Dec 5;57(48):20410-20420. doi: 10.1021/acs.est.3c06586. Epub 2023 Nov 10.
Carbon block filters, commonly employed as point-of-use (POU) water treatment components, effectively eliminate pathogens and adsorb undesirable tastes, odors, and organic contaminants, all while producing no water waste. However, they lack the capability to remove arsenic. Enabling the carbon block to remove arsenic could reduce its exposure risks in tap water. Inspired by Sous vide cooking techniques, we developed a low-energy, low-chemical method for impregnating commercially available carbon block with titanium (hydr)oxide (THO) in four integrated steps: (1) vacuum removal of air from the carbon block, (2) impregnation with precursors in a flexible pouch, (3) sealing to prevent oxygen intrusion, and (4) heating in a water bath at 80 °C for 20 h to eliminate exposure and reactions with air. This process achieved a uniform 13 wt % Ti loading in the carbon block. Our modified carbon block POU filter efficiently removed both arsenate and arsenite from tap water matrices containing 10 or 100 μg/L arsenic concentrations in batch experiments or continuous flow operations. Surprisingly, the THO-modified carbon block removed arsenite better than arsenate. This innovative method, using 70% fewer chemicals than traditional autoclave techniques, offers a cost-effective solution to reduce exposure to arsenic and lower its overall risk in tap water.
碳块过滤器,通常作为即点即用 (POU) 水处理组件,能有效去除病原体,并吸附不良味道、气味和有机污染物,同时不会产生废水。然而,它们缺乏去除砷的能力。使碳块能够去除砷可以降低自来水中的砷暴露风险。受低温慢煮烹饪技术的启发,我们开发了一种低能耗、低化学试剂的方法,通过四个集成步骤将钛(氢)氧化物 (THO) 浸渍到市售的碳块中:(1) 从碳块中抽真空去除空气,(2) 在柔性袋中用前体浸渍,(3) 密封以防止氧气侵入,(4) 在 80°C 的水浴中加热 20 小时以消除暴露和与空气的反应。该过程实现了碳块中均匀的 13 wt % Ti 负载。我们改良的碳块 POU 过滤器在批处理实验或连续流动操作中,能够有效地从含砷浓度为 10 或 100 μg/L 的自来水中去除砷酸盐和亚砷酸盐。令人惊讶的是,THO 改性的碳块去除亚砷酸盐的效果优于砷酸盐。与传统的高压釜技术相比,这种使用 70% 更少化学试剂的创新方法提供了一种经济有效的解决方案,可以降低砷的暴露风险并降低其在自来水中的总体风险。