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Governing factors affecting the impacts of silver nanoparticles on wastewater treatment

机译:影响银纳米颗粒对废水处理影响的控制因素

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Silver nanoparticles (nanosilver or AgNPs) enter municipal wastewater from various sources, raising concerns about their potential adverse effects on wastewater treatment processes. We argue that the biological effects of silver nanoparticles at environmentally realistic concentrations (μg L~(-1) or lower) on the performance of a full-scale municipal water resource recovery facility (WRRF) are minimal. Reactor configuration is a critical factor that reduces or even mutes the toxicity of silver nanoparticles towards wastewater microbes in a full-scale WRRF. Municipal sewage collection networks transform silver nanoparticles into silver(Ⅰ)-complexes/precipitates with low ecotoxicity, and preliminary/primary treatment processes in front of biological treatment utilities partially remove silver nanoparticles to sludge. Microbial functional redundancy and microbial adaptability to silver nanoparticles also greatly alleviate the adverse effects of silver nanoparticles on the performance of a full-scale WRRF. Silver nanoparticles in a lab-scale bioreactor without a sewage collection system and/or a preliminary/primary treatment process, in contrast to being in a full scale system, may deteriorate the reactor performance at relatively high concentrations (e.g., mg L~(-1) levels or higher). However, in many cases, silver nanoparticles have minimal impacts on lab-scale bioreactors, such as sequencing batch bioreactors (SBRs), especially when at relatively low concentrations (e.g., less than 1 mg L~(-1)). The susceptibility of wastewater microbes to silver nanoparticles is species-specific In general, silver nanoparticles have higher toxicity towards nitrifying bacteria than heterotrophic bacteria.
机译:银纳米颗粒(纳米银或AgNPs)从各种来源进入市政废水,引起人们对其潜在对废水处理过程的不利影响的担忧。我们认为,在现实的环境浓度(μgL〜(-1)或更低)下,纳米银颗粒对全尺寸市政水资源回收设施(WRRF)的性能影响很小。反应堆的配置是一个关键因素,它可以降低甚至消除银纳米颗粒在全尺寸WRRF中对废水微生物的毒性。市政污水收集网络将银纳米颗粒转化为具有低生态毒性的银(Ⅰ)-络合物/沉淀物,生物处理设备前的初步/初级处理过程将部分银纳米颗粒去除为污泥。微生物功能冗余和微生物对银纳米粒子的适应性也极大地减轻了银纳米粒子对全尺寸WRRF性能的不利影响。在实验室规模的生物反应器中,没有污水收集系统和/或初级/初级处理过程的银纳米颗粒,与全规模系统相比,在相对较高的浓度(例如,mg L〜(- 1)级别或更高)。然而,在许多情况下,银纳米颗粒对实验室规模的生物反应器(例如分批生物反应器(SBR)的测序)的影响极小,尤其是在浓度相对较低(例如小于1 mg L〜(-1))时。废水微生物对银纳米颗粒的敏感性是特定于物种的。通常,与异养细菌相比,银纳米颗粒对硝化细菌的毒性更高。

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