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

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...

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Veröffentlicht in:International journal of environmental research and public health 2018-06, Vol.15 (6), p.1280
Hauptverfasser: Han, Yahong, Qiu, Shan, Zeng, Hongyun, Ma, Fang, Wang, Jue, Qiu, Yilun, An, Xuedi
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Sprache:eng
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Zusammenfassung: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 ultrafine tourmaline particles could resist the effect of temperature shock on the metabolism of NH₄⁺-N and were beneficial to the restoration of the metabolism capacity of NH₄⁺-N. 1 g·L ultrafine tourmaline particles, which increased the oxidation rate of NH₄⁺-N in the aerobic phase, the formation rate of NO₃ -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 ultrafine tourmaline particles at low temperatures and 1 g·L ultrafine tourmaline particles could not change the relative abundances of functional microbes except nitrite oxidizing bacteria.
ISSN:1660-4601
1661-7827
1660-4601
DOI:10.3390/ijerph15061280