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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >The effects of wavelength and wavelength mixing ratios on microalgae growth and nitrogen, phosphorus removal using Scenedesmus sp. for wastewater treatment
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The effects of wavelength and wavelength mixing ratios on microalgae growth and nitrogen, phosphorus removal using Scenedesmus sp. for wastewater treatment

机译:波长和波长混合比对微藻生长以及使用Scenedesmus sp。去除氮,磷的影响。用于废水处理

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摘要

In wastewater treatment using microalgae, the effects of wavelength and wavelength mixing ratio on microalgae growth and removal of nitrogen and phosphorus were evaluated using LEDs (white light, 670 nm, 450 nm, and 525 nm). Microalgae production rates were enhanced by a maximum of 45% with 400-700 nm white light compared to that of a single wavelength. The phosphorus removal rate was as high as 90% with blue light. When red light and blue light were mixed and supplied, the microalgae production rate was about 50% higher than the rate of the culture with white light. Nitrogen and phosphorus removal rates were as high as approximately 15 mg/L/day at a wavelength mixing ratio of 7 (red light):3 (blue light) and 2.1 mg/L/day at a wavelength mixing ratio of 5 (red light):5 (blue light).
机译:在使用微藻类的废水处理中,使用LED(白光,670 nm,450 nm和525 nm)评估了波长和波长混合比对微藻类生长以及氮和磷去除的影响。与单一波长相比,使用400-700 nm白光时微藻的生产率最高提高了45%。蓝光除磷率高达90%。当将红光和蓝光混合并供给时,微藻的产生率比白光的培养率高约50%。在7(红光):3(蓝光)的波长混合比下,氮和磷的去除率高达约15 mg / L /天,在5(红光)的波长混合比下,氮和磷的去除率高达2.1 mg / L /天。 ):5(蓝灯)。

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