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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >The exploration of monochromatic near-infrared LED improved anoxygenic photosynthetic bacteria Rhodopseudomonas sp for wastewater treatment
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The exploration of monochromatic near-infrared LED improved anoxygenic photosynthetic bacteria Rhodopseudomonas sp for wastewater treatment

机译:单色近红外LED改进anoxygenic光合菌罗达多麦豆浆废水处理的探索

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摘要

The future wastewater treatment requires high-efficiency and energy-saving technology. Anoxygenic photosynthetic bacteria (APB) is deemed as an eco-friendly microorganism, which could be employed in wastewater treatment. Here, monochromatic near-infrared (MNIR) light emitting diode (LED) was used, and three key factors (light quality, light intensity and photoperiod) of it were analyzed by a response surface methodology (RSM) in APB wastewater treatment. The results showed that light quality was the biggest impact factor in APB wastewater treatment, and nearly 58.07% of NH4+-N and 70.62% of chemical oxygen demand (COD) could be removed based on 46.4% of that theoretically possible. The light quality's study revealed that APB had the highest NH4+-N and COD removal, biomass production, and bacteriochlorophyll a production with 850 nm IR LED. Moreover, the application of optimal MNIR LED could not only save energy, but also avoid algae bloom of photo-bioreactors (PBR). (C) 2017 Elsevier Ltd. All rights reserved.
机译:未来的废水处理需要高效率和节能技术。 anoxygenic光合细菌(APB)被认为是一种生态友好的微生物,可用于废水处理中。这里,使用单色近红外(Mnir)发光二极管(LED),并通过APB废水处理中的响应面方法(RSM)分析了三个关键因素(光质,光强度和光周期)。结果表明,光质质量是APB废水处理中最大的影响因子,占46.4%理论上可能的46.4%,可以除去近58.07%的NH4 + -N和70.62%的化学需氧量(COD)。轻质质量的研究表明,APB具有最高的NH4 + -N和COD去除,生物质生产和具有850nm IR LED的生物氯化术。此外,最佳Mnir LED的应用不仅可以节省能量,还可以避免光生物反应器(PBR)的藻类绽放。 (c)2017 Elsevier Ltd.保留所有权利。

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