Fariborz Maseeh Department of Civil, Architectural and Environmental Engineering, University of Texas, Austin, Texas 78712, United States.
Navajo Nation, Tuba City Chapter, Tuba, Arizona 86045, United States.
Environ Sci Technol. 2023 Nov 7;57(44):17132-17143. doi: 10.1021/acs.est.3c03462. Epub 2023 Oct 23.
Point-of-use treatment technologies can increase access to safe drinking water in rural areas. Sustained use of these technologies is uncommon due to oversight of community needs, user-perceived risks, long-term maintenance, and conflict with traditional practices. Nanosilver-enabled ceramic water filters are unique due to the use of locally sourced materials available at or near the target community; however, technical limitations persist (e.g., nanosilver's uncontrolled release and passivation from sulfide or chloride). This work aims to overcome these limitations by impregnating nanosilver onto ceramics with a Navajo pottery rosin, collected from pinyon trees with a third-generation artisan. Here, we investigate this sustainable and novel material for drinking water treatment; the study ranges from a proof of concept to testing under realistic conditions. Results show that when embedded in a thin film, the biopolymer controlled ionic silver dissolution and prevented silver passivation from sulfide and chloride. When applied to ceramic filters, the biopolymer effectively immobilized nanosilver in a range of waters. Over a 25 day study to emulate household-use conditions, this coating method sustained disinfection of a coculture of Gram-positive and Gram-negative bacteria while controlling biofouling. Overall, the use of this Navajo pottery material can facilitate adoption while providing the needed technological advancement to these widely used treatment devices.
就地处理技术可以增加农村地区获得安全饮用水的机会。由于对社区需求、用户感知风险、长期维护以及与传统做法的冲突等方面的监督不足,这些技术的持续使用并不常见。基于纳米银的陶瓷水过滤器具有独特性,因为它们使用了在目标社区或附近可获得的本地材料;然而,技术限制仍然存在(例如,纳米银不受控制的释放和由于硫化物或氯化物而发生的钝化)。这项工作旨在通过用一种源自于本地的、由三代手工艺人采集的、来自于松树的派尤特松脂来浸渍纳米银,从而克服这些限制。在这里,我们研究了这种可持续且新颖的饮用水处理材料;这项研究的范围从概念验证到在实际条件下进行测试。结果表明,当嵌入薄膜中时,生物聚合物控制了离子银的溶解,并防止了银由于硫化物和氯化物而发生钝化。当应用于陶瓷过滤器时,生物聚合物有效地将纳米银固定在多种水中。在为期 25 天的模拟家庭使用条件的研究中,这种涂层方法在控制生物污垢的同时,持续对革兰氏阳性和革兰氏阴性细菌的共培养物进行消毒。总的来说,这种纳瓦霍陶器材料的使用可以促进这些广泛使用的处理设备的采用,同时提供所需的技术进步。