首页> 外文期刊>Journal of environmental monitoring: JEM >Occurrence and removal of titanium at full scale wastewater treatment plants: Implications for TiO_2 nanomaterials
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Occurrence and removal of titanium at full scale wastewater treatment plants: Implications for TiO_2 nanomaterials

机译:大型废水处理厂中钛的存在与去除:对TiO_2纳米材料的影响

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摘要

Titanium dioxide nanoparticles increasingly will be used in commercial products and have a high likelihood of entering municipal sewage that flows to centralized wastewater treatment plants (WWTPs). Treated water (effluent) from WWTPs flows into rivers and lakes where nanoparticles may pose an ecological risk. To provide exposure data for risk assessment, titanium concentrations in raw sewage and treated effluent were determined for 10 representative WWTPs that use a range of unit processes. Raw sewage titanium concentrations ranged from 181 to 1233 g L~(-1) (median of 26 samples was 321 g L~(-1)). The WWTPs removed more than 96% of the influent titanium, and all WWTPs had effluent titanium concentrations of less than 25 g L-1. To characterize the morphology and presence of titanium oxide nanoparticles in the effluent, colloidal materials were isolated via rota-evaporation, dialysis and lyophilization. High resolution transmission electron microscopy and energy dispersive X-ray analysis indicated the presence of spherical titanium oxide nanoparticles (crystalline and amorphous) on the order of 4 to 30 nm in diameter in WWTP effluents. This research provides clear evidence that some nanoscale particles will pass through WWTPs and enter aquatic systems and offers a methodological framework for collecting and analyzing titanium-based nanomaterials in complex wastewater matrices.
机译:二氧化钛纳米颗粒将越来越多地用于商业产品,并且极有可能进入城市污水,并流入集中式废水处理厂(WWTP)。来自污水处理厂的处理后的水(废水)流入河流和湖泊,其中纳米颗粒可能构成生态风险。为了提供暴露数据以进行风险评估,确定了使用一系列单元过程的10个代表性污水处理厂的原污水和处理过的废水中的钛浓度。原始污水中钛的浓度范围为181至1233 g L〜(-1)(26个样品的中位数为321 g L〜(-1))。污水处理厂去除了超过96%的进水钛,所有污水处理厂的出水钛浓度均低于25 g L-1。为了表征流出物中氧化钛纳米颗粒的形态和存在,通过旋转蒸发,透析和冻干分离了胶体材料。高分辨率透射电子显微镜和能量色散X射线分析表明,污水处理厂废水中存在直径为4到30 nm的球形氧化钛纳米颗粒(晶体和无定形)。这项研究提供了明确的证据,表明某些纳米级颗粒将穿过污水处理厂并进入水生系统,并为收集和分析复杂废水基体中的钛基纳米材料提供了一种方法学框架。

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