剩余污泥碱解上清液作为反硝化碳源的回用量实验研究
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广西环境工程与保护评价重点实验室开放基金(桂科能0704K031)


Recycling Dosage Analysis of AlkalineHydrolysis Supernatant ofWAS as Carbon Source for Denitrification
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    摘要:

    考察剩余污泥碱解上清液作为反硝化碳源的反应速率,并据此初步确定上清液的回用量。对剩余污泥进行碱解发酵,选取SRT=9 d的上清液,采用不同的VFA/N比值进行批式试验,考察其反硝化速率,选择出试验条件下的较优比值,并应用于实际生活污水中,与单纯生活污水脱氮对照,考察回用的可行性以及回用量的确定,提出利用阶段反硝化率粗略估计污泥碱解上清液回用量的思路。结果显示,所有比值的反硝化速率曲线均可分为4段,且随着VFA/N比值的增加,反硝化速率明显增加,pH值的变化趋势也与之对应;以VFA/N=2.47为分界点,比值继续增加,反硝化速率的增长并不大;将上清液以一定比例投入生活污水,反硝化速率明显提高,平行组6 h反硝化量分别达到47.0 mg/L和33.9 mg/L。

    Abstract:

    Reaction rate of alkaline supernatant of waste activated sludge (WAS) as carbon sources for denitrification was investigated to determine the recycling dosage preliminarily. WAS was digested under alkaline conditions and batch tests were carried out under different VFA/N ratio at SRT=9d to examine the denitrification rate and choose the optimal ratio. And then a comparative test was carried out for actual sewage wastewater and pure sewage wastewater to investigate its feasibility in recycle and the recycling dosage. It was found that denitrification curve of all ratios could be divided into four stages and the denitrification rate increased obviously with the increase of VFA/N ratio, which was consistent with that of the pH curve. While as the ratio increased beyond 2.47, the denitrification rate increased slowly. Furthermore, when the supernatant was added to the sewage wastewater to some extent, denitrification rate increased significantly and the removal amount of nitrate in two parallel tests were 47.0 and 33.9 mg/L, respectively.

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曹艳晓,龙腾锐,傅婵媛,龚正.剩余污泥碱解上清液作为反硝化碳源的回用量实验研究[J].土木与环境工程学报(中英文),2010,32(1):125-130. CAO Yanxiao, LONG Tengrui, FU Chanyuan, GONG Zheng. Recycling Dosage Analysis of AlkalineHydrolysis Supernatant ofWAS as Carbon Source for Denitrification[J]. JOURNAL OF CIVIL AND ENVIRONMENTAL ENGINEERING,2010,32(1):125-130.10.11835/j. issn.1674-4764.2010.01.024

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  • 收稿日期:2009-09-21
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