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Enhanced denitrification performance of Alcaligenes sp. TB by Pd stimulating to produce membrane adaptation mechanism coupled with nanoscale zero-valent iron

机译:Alcaligenes sp。的反硝化性能增强。通过Pd刺激结核产生与纳米级零价铁耦合的膜适应机制

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摘要

The microbial reduction of nitrate in the presence of nanoscale zero-valent iron (nZVI) was evaluated to assess the feasibility of employing nZVI for biological denitrification treatment. The effect of modified nZVI on the growth, metabolism, and denitrification performance of Alcaligenes sp. TB under aerobic conditions was studied. Results showed that Alcaligenes sp. TB with nZVI/Pd had 31.5% increase in nitrate removal and 18.1% decrease in nitrite accumulation within 28 h. nZVI/Pd exhibited less inhibition on the cell growth (OD_(600) = 0.725), NADH/NAD~+ ratio (86% of control), and electron transfer system activity (68.5% of control). In addition, nZVI/Pd decreased the membrane fluidity by increasing the trans/cis iso-merization ratio (317.7% of control) to enhance the resistance of nZVI. This study underlines the effects of nZVI/Pd on membrane susceptibility via membrane fatty acid transformation during denitrification and suggests the influence of engineered nanomaterials on denitrification.
机译:评估了在纳米级零价铁(nZVI)存在下硝酸盐的微生物还原作用,以评估采用nZVI进行生物反硝化处理的可行性。修饰的nZVI对Alcaligenes sp。的生长,代谢和反硝化性能的影响。对有氧条件下的结核病进行了研究。结果表明,产碱菌。含nZVI / Pd的结核病在28小时内硝酸盐去除量增加了31.5%,亚硝酸盐积累量减少了18.1%。 nZVI / Pd对细胞生长的抑制作用较小(OD_(600)= 0.725),NADH / NAD〜+比(对照的86%)和电子转移系统活性(对照的68.5%)较少。另外,nZVI / Pd通过增加反式/顺式异构化比率(对照的317.7%)降低了膜的流动性,从而增强了nZVI的抗性。这项研究强调了nZVI / Pd在反硝化过程中通过膜脂肪酸转化对膜敏感性的影响,并提出了工程纳米材料对反硝化的影响。

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