首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >The effect of using pig manure as an internal carbon source in a traditional piggery wastewater treatment system for biological denitrification
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The effect of using pig manure as an internal carbon source in a traditional piggery wastewater treatment system for biological denitrification

机译:使用猪粪作为一种用于生物反硝化的传统猪废水处理系统中的内部碳源

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摘要

Due to a low ratio of chemical oxygen demand (COD) to total nitrogen (TN) and poor biodegradability of digested piggery wastewater, lack of a carbon source in subsequent biological treatment limits denitrification, resulting in an accumulation of NO2-N and NO3-N and a low denitrification efficiency. In this project, combined ultrasonication/alkali treatment of pig manure was used to generate a source of pig manure carbon source (PMC). This report mainly discusses the effects of adding the PMC on subsequent biological denitrification and microbial community changes. The experimental results showed that in subsequent biological treatment with the addition of 1.78% PMC, the effluent NO2-N and NO3-N were 0.02 mg.L-1 and 0.90 mg.L-1, respectively. The TN removal percentage was 72.29%, which was 62.29% higher than that obtained without an added carbon source and 36.74% higher than that obtained with added raw wastewater carbon (RWC). High-throughput sequencing revealed that the relative abundances of the dominant microflora Thauera and Thermomonas, which are related to denitrification, increased from 1.13% and 0.55% to 6.19% and 4.69%, respectively, after the addition of PMC. The addition of PMC improved the denitrification of digested piggery wastewater in subsequent biological treatment, and the denitrification effect was obvious and could enable waste resource utilization.
机译:由于化学需氧量(COD)与总氮(TN)的比率和消化的猪废物废水的差,随后的生物处理中缺乏碳源限制反硝化,导致NO2-N和NO3-N的积累和低脱氮效率。在该项目中,使用猪粪的组合超声/碱处理来产生猪粪碳源(PMC)的来源。本报告主要讨论在随后的生物反硝化和微生物群落变化中添加PMC的影响。实验结果表明,随后的生物处理加入1.78%PMC,流出物NO2-N和NO3-N分别为0.02mg.L-1和0.90mg.L-1。 TN去除率为72.29%,比在没有添加的碳源的情况下获得的62.29%,比加入的原料废水碳(RWC)高出36.74%。高通量测序显示,在添加PMC后,显性微氟氯氯汤和热那亚的相对丰度与反硝化相关的1.13%和0.55%,分别增加到6.19%和4.69%。 PMC的添加改善了随后的生物处理中消化的猪废水的脱氮,脱氮效果明显,可以实现废弃资源利用。

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