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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Treatment of hydroponic wastewater by denitrification filters using plant prunings as the organic carbon source
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Treatment of hydroponic wastewater by denitrification filters using plant prunings as the organic carbon source

机译:用植物修剪作为有机碳源的脱氮滤池处理水培废水

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This study investigated the feasibility of using pre-treated plant liquors as organic carbon sources for the treatment of hydroponic wastewater containing high nitrate-N (> 300 mg N/L). The waste plant material was pre-treated to extract organic carbon-rich liquors. When this plant liquor was used as an organic carbon source in denitrification filters at the organic carbon:nitrogen dose rate of 3C:N, nitrate removal efficiencies were > 95% and final effluent nitrate concentrations were consistently < 20 mg N/L. However, at this dose rate, relatively high concentrations (> 140 mg/L) of organic carbon (fBOD(5)) remained in the final effluents. Therefore, a 'compromise' organic carbon:nitrogen dose rate (2C:N) was trialled, at which nitrate removal efficiencies were maintained at > 85%, final effluent nitrate concentrations were consistently below 45 mg N/L, and effluent fBOD5 concentrations were < 25 mg/L. This study has demonstrated that waste plant material is a suitable carbon source for the removal of nitrate from hydroponic wastewater in a denitrification filter. (c) 2007 Elsevier Ltd. All rights reserved.
机译:这项研究调查了使用预处理的植物液作为有机碳源处理含高硝酸盐氮(> 300 mg N / L)的水培废水的可行性。废弃植物材料经过预处理以提取富含有机碳的液体。当该植物液以3C:N的有机碳:氮剂量率用作反硝化过滤器中的有机碳源时,硝酸盐去除效率> 95%,最终出水硝酸盐浓度始终<20 mg N / L。但是,在此剂量率下,最终出水中仍残留着相对较高浓度(> 140 mg / L)的有机碳(fBOD(5))。因此,尝试了“妥协”有机碳:氮的剂量率(2C:N),在该速率下,硝酸盐去除率保持在> 85%,最终废水中硝酸盐的浓度始终低于45 mg N / L,而废水中fBOD5的浓度为<25毫克/升。这项研究表明,植物废料是一种合适的碳源,可用于从反硝化过滤器中的水培废水中去除硝酸盐。 (c)2007 Elsevier Ltd.保留所有权利。

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