Loo Siew-Leng, Krantz William B, Hu Xiao, Fane Anthony G, Lim Teik-Thye
Singapore Membrane Technology Centre, Nanyang Environment and Water Research Institute, Nanyang Technological University, 1 Cleantech Loop, CleanTech One, #05-05, Singapore 637141, Singapore; School of Civil and Environmental Engineering, Nanyang Technological University, Block N1, 50 Nanyang Avenue, Singapore 639798, Singapore.
School of Civil and Environmental Engineering, Nanyang Technological University, Block N1, 50 Nanyang Avenue, Singapore 639798, Singapore; Department of Chemical and Biological Engineering, University of Colorado, Boulder, CO 80309-0424, USA.
J Colloid Interface Sci. 2016 Jan 1;461:104-113. doi: 10.1016/j.jcis.2015.09.007. Epub 2015 Sep 5.
This study investigated the effects of dissolved organic matter (DOM) and various electrolytes commonly found in environmental aqueous matrices on the physicochemical properties and bactericidal efficacy of silver nanoparticles (AgNPs), which are immobilized on cryogels (or PSA/AgNP cryogel). The AgNPs in the PSA/AgNP cryogel that were exposed to different media underwent morphological transformation in terms of particle size and structure. In addition, the presence of DOM and electrolytes increased the release of dissolved Ag. The biological uptake of Ag species (determined as the total Ag in exposed cells) increased in the presence of DOM, but decreased in the presence of electrolytes. The presence of electrolytes did not result in any significant reduction in the bactericidal activity. Although an initial increase of the DOM to 2.5 mg-C L(-1) attenuated the bactericidal efficacy of the immobilized AgNPs, an increase in the DOM concentration beyond 5 mg-C L(-1) enhanced the bactericidal efficacy. This study found that the bactericidal activity of the immobilized AgNPs is less sensitive to the solution chemistry relative to the free AgNPs. This suggests that immobilizing the AgNPs in a supporting material is a good strategy to preserve their efficacy for disinfection in various aqueous matrices.
本研究调查了环境水体基质中常见的溶解有机物(DOM)和各种电解质对固定在冷冻凝胶(或PSA/AgNP冷冻凝胶)上的银纳米颗粒(AgNPs)的物理化学性质和杀菌效果的影响。暴露于不同介质中的PSA/AgNP冷冻凝胶中的AgNPs在粒径和结构方面发生了形态转变。此外,DOM和电解质的存在增加了溶解态银的释放。在DOM存在下,Ag物种的生物吸收(以暴露细胞中的总银量确定)增加,但在电解质存在下减少。电解质的存在并未导致杀菌活性有任何显著降低。虽然将DOM初始增加到2.5 mg-C L(-1)会减弱固定化AgNPs的杀菌效果,但DOM浓度超过5 mg-C L(-1)时杀菌效果增强。本研究发现,相对于游离AgNPs,固定化AgNPs的杀菌活性对溶液化学性质不太敏感。这表明将AgNPs固定在支撑材料中是在各种水体基质中保持其消毒效果的良好策略。