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Short-Term Effects of Tourmaline on Nitrogen Removals and Microbial Communities in a Sequencing Batch Reactor at Low Temperatures

机译:电气石对低温下测序间歇反应器中氮去除和微生物群落的短期影响

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Tourmaline is a ring borosilicate with unique pyro-electricity and piezoelectricity values. Non-gem tourmaline is usually used as an environmental material. The short-term effects of ultrafine tourmaline particles on nitrogen removal performs microbial population dynamics. Key functional species in a sequencing batch reactor were investigated at 9 ± 1 °C. The investigation results showed that 1 g·L ?1 ultrafine tourmaline particles could resist the effect of temperature shock on the metabolism of NH 4 + -N and were beneficial to the restoration of the metabolism capacity of NH 4 + -N. 1 g·L ?1 ultrafine tourmaline particles, which increased the oxidation rate of NH 4 + -N in the aerobic phase, the formation rate of NO 3 ? -N in the aerobic phase, and the denitrification rate in the hypoxia phase at low temperatures. However, the community richness or diversities were not changed after short-term exposure to 1 g·L ?1 ultrafine tourmaline particles at low temperatures and 1 g·L ?1 ultrafine tourmaline particles could not change the relative abundances of functional microbes except nitrite oxidizing bacteria.
机译:电气石是具有独特的热电和压电值的环硼硅酸盐。非宝石电气石通常用作环境材料。电气石超细颗粒对脱氮的短期影响可实现微生物种群动态。在9±1°C下研究了间歇式测序反应器中的关键功能物质。研究结果表明,1 g·L?1的电气石超细颗粒可以抵抗温度冲击对NH 4 + -N代谢的影响,有利于恢复NH 4 + -N的代谢能力。 1 g·L?1的超细电气石颗粒,提高了好氧相中NH 4 + -N的氧化速率,增加了NO 3的生成速率。好氧阶段为-N,低温下为缺氧阶段的反硝化率。但是,在低温下短期暴露于1 g·L?1的超细电气石颗粒后,群落的丰富度或多样性没有改变,而1 g·L?1的超细电气石颗粒除了亚硝酸盐氧化外,不能改变功能微生物的相对丰度菌。

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