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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Metal oxide nanoparticles resonate to ammonium removal through influencing Mg2+ absorption by Pseudomonas putida Y-9
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Metal oxide nanoparticles resonate to ammonium removal through influencing Mg2+ absorption by Pseudomonas putida Y-9

机译:金属氧化物纳米粒子通过影响Mg2 +通过Pseudomonas vida y-9的吸收来共振以铵去除

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摘要

Most metal oxide nanoparticles (NPs) can impact ammonium removal, but the underlying mechanism remains unclear. In this study, high doses of NiO, CuO, ZnO and TiO2 (> 1 mg/L) inhibited the ammonium removal performance of Pseudomonas putida Y-9. Interestingly, low levels of CuO NPs (0.1, 0.5 mg/L) and NiO NPs (0.1 mg/L) enhanced ammonium removal efficiency. Moreover, a decrease in Mg2+ levels was significantly positively correlated with ammonium removal efficiency, while negatively correlated with the Ti2+, Zn2+, and Cu2+ release of NPs. Further research on effect of NPs and their corresponding cations on ammonium removal revealed that four NPs affected Mg2+ absorption in Y-9 via different routes, thus impacting NH4+ removal efficiency, i.e., the effect of NiO NPs was caused by itself, TiO2 NPs' impact was solely due to the release Ti4+, while the influence of CuO NPs and ZnO NPs was based on both the particles and released ions.
机译:大多数金属氧化物纳米颗粒(NPS)都可以冲击去除铵,但下面的机制仍然不清楚。 在该研究中,高剂量的NiO,CuO,ZnO和TiO 2(> 1mg / L)抑制了假单胞菌普赖达Y-9的铵去除性能。 有趣的是,低水平的CuO NPS(0.1,0.5mg / L)和NiO NPS(0.1mg / L)增强了铵去除效率。 此外,Mg2 +水平的降低与铵去除效率显着呈正相关,同时与Ti2 +,Zn2 +和NPS的释放呈负相关。 进一步研究NPS及其相应阳离子对铵去除的影响显示,通过不同的途径,4个NPS影响MG2 +在Y-9中吸收,从而影响NH4 +去除效率,即NiO NPS的作用,TiO2 NPS的影响 仅是由于释放Ti4 +,而CuO NPS和ZnO NPS的影响基于颗粒和释放离子。

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