School of Chemical and Biomedical Engineering, Nanyang Technological University , Singapore 637459.
Centre for Antimicrobial Bioengineering, Nanyang Technological University , Singapore 637459.
ACS Nano. 2015 Oct 27;9(10):10142-57. doi: 10.1021/acsnano.5b03763. Epub 2015 Sep 25.
Water disinfection materials should ideally be broad-spectrum-active, nonleachable, and noncontaminating to the liquid needing sterilization. Herein, we demonstrate a high-performance capacitive deionization disinfection (CDID) electrode made by coating an activated carbon (AC) electrode with cationic nanohybrids of graphene oxide-graft-quaternized chitosan (GO-QC). Our GO-QC/AC CDID electrode can achieve at least 99.9999% killing (i.e., 6 log reduction) of Escherichia coli in water flowing continuously through the CDID cell. Without the GO-QC coating, the AC electrode alone cannot kill the bacteria and adsorbs a much smaller fraction (<82.8 ± 1.8%) of E. coli from the same biocontaminated water. Our CDID process consists of alternating cycles of water disinfection followed by electrode regeneration, each a few minutes duration, so that this water disinfection process can be continuous and it only needs a small electrode voltage (2 V). With a typical brackish water biocontamination (with 10(4) CFU mL(-1) bacteria), the GO-QC/AC electrodes can kill 99.99% of the E. coli in water for 5 h. The disinfecting GO-QC is securely attached on the AC electrode surface, so that it is noncontaminating to water, unlike many other chemicals used today. The GO-QC nanohybrids have excellent intrinsic antimicrobial properties in suspension form. Further, the GO component contributes toward the needed surface conductivity of the CDID electrode. This CDID process offers an economical method toward ultrafast, contaminant-free, and continuous killing of bacteria in biocontaminated water. The proposed strategy introduces a green in situ disinfectant approach for water purification.
水消毒材料理想情况下应为广谱活性、不可浸出且对需消毒的液体无污染。在此,我们展示了一种通过在活性炭 (AC) 电极上涂覆阳离子纳米杂化氧化石墨烯接枝季铵化壳聚糖 (GO-QC) 制成的高性能电容去离子消毒 (CDID) 电极。我们的 GO-QC/AC CDID 电极可以使连续流过 CDID 池的水中的大肠杆菌至少达到 99.9999%的杀灭率(即 6 对数减少)。没有 GO-QC 涂层,单独的 AC 电极无法杀死细菌,并且从相同的生物污染水中吸附的细菌数量要小得多(<82.8±1.8%)。我们的 CDID 过程由水消毒的交替循环和电极再生组成,每个循环持续几分钟,因此该水消毒过程可以连续进行,并且只需要较小的电极电压(2 V)。对于典型的咸水生物污染(10(4) CFU mL(-1) 细菌),GO-QC/AC 电极可以在水中杀死 99.99%的大肠杆菌,持续 5 小时。消毒用的 GO-QC 安全地附着在 AC 电极表面上,因此与当今使用的许多其他化学物质不同,它不会对水造成污染。GO-QC 纳米杂化物在悬浮形式下具有优异的固有抗菌性能。此外,GO 成分有助于 CDID 电极所需的表面导电性。该 CDID 过程提供了一种经济的方法,可以快速、无污染且连续地杀死生物污染水中的细菌。所提出的策略为水净化引入了一种绿色的原位消毒方法。