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Hydrophobic-modified metal-hydroxide nanoflocculants enable one-step removal of multi-contaminants for drinking water production

机译:疏水性改性的金属 - 氢氧化物纳米絮凝剂使多污染物的一步取出用于饮用水生产

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摘要

Flocculation is a mainstream technology for the provision of safe drinking water but is limited due to the ineffectiveness of conventional flocculants in removing trace low-molecular-weight emerging contaminants. We described a synthesis strategy for the development of high-performance nanoflocculants (hydrophobic-organic-chain-modified metal hydroxides [HOC-M]), imitating surfactant-assembling nano-micelles, by integration of long hydrophobic chains with traditional inorganic metal (Fe/Al/Ti)-based flocculants. The core-shell nanostructure was highly stable in acidic stock solution and transformed to meso-scale coagulation nuclei in real surface water. In both jar and continuous-flow tests, HOC-M was superior over conventional flocculants in removing many contaminants (turbidity, UV254, and DOC: >95%; TP and NO3-N: >90%; trace pharmaceuticals [initial concentration: 100 ng/L]: >80%), producing flocs with better structural and dewatering properties, and lowering the environmental risk of metal leaching. The rationally designed nanoflocculants have large application potential, as a solution to increasing public concern about micro-pollutants and increasing water quality requirements.
机译:絮凝是一种用于提供安全饮用水的主流技术,但由于常规絮凝剂的无效性而受到限制,因此在除去痕量的低分子量新兴污染物中。我们描述了一种用于开发高性能纳米絮凝剂的合成策略(疏水性 - 有机链改性金属氢氧化物[HOC-M]),通过与传统无机金属(Fe)的长疏水链(Fe)的长疏水链(Fe)的疏水链(Fe)的含量涂覆表面活性剂组装纳米胶束。 / Al / Ti)基于絮凝剂。核 - 壳纳米结构在酸性储备溶液中具有高度稳定的,并在真实地水中转化为中间型凝固核。在JAR和连续流动测试中,HOC-M在常规絮凝剂上优于去除许多污染物(浊度,UV254和DOC:> 95%; TP和NO3-N:> 90%;追踪药物[初始集中:100 Ng / L]:> 80%),生产具有更好的结构和脱水性能的絮状物,降低金属浸出的环境风险。理性设计的纳米纤维素具有大的应用潜力,作为增加公众对微污染物和水质要求的担忧的解决方案。

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