Study on the Influence of Different Carbon Sources on Nitrogen and Phosphorus Removal with Micro-pressure swirl Reactor

To explore the suitable external carbon sources for Micro-pressure swirl Reactor (MPR), the experiment was run in parallel through two MPRs, using starch and glucose as carbon sources respectively. Research indicated that under the experimental operating conditions, using starch as the carbon source...

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Main Authors: Tian Xi, Li Xuejiao, Lv Yanhong, Dong Penghui, Yang Longfei, Xue Luyao, Bian Dejun
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/37/e3sconf_icemee2021_02046.pdf
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spelling doaj-1cda053f3e284be5ae09eec8914de9ad2021-05-28T14:41:37ZengEDP SciencesE3S Web of Conferences2267-12422021-01-012610204610.1051/e3sconf/202126102046e3sconf_icemee2021_02046Study on the Influence of Different Carbon Sources on Nitrogen and Phosphorus Removal with Micro-pressure swirl ReactorTian XiLi XuejiaoLv YanhongDong PenghuiYang Longfei0Xue Luyao1Bian DejunChangchun Institute of TechnologyChangchun Institute of TechnologyTo explore the suitable external carbon sources for Micro-pressure swirl Reactor (MPR), the experiment was run in parallel through two MPRs, using starch and glucose as carbon sources respectively. Research indicated that under the experimental operating conditions, using starch as the carbon source could more effectively promote the biological denitrification of the MPR system. Due to the structural characteristics of MPR and the slow degradation of starch, the demand for carbon source for denitrification was ensured during the operation cycle, so that the system obtained a better denitrification effect. The test results provided reference for the selection of the external carbon source of the MPR process.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/37/e3sconf_icemee2021_02046.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Tian Xi
Li Xuejiao
Lv Yanhong
Dong Penghui
Yang Longfei
Xue Luyao
Bian Dejun
spellingShingle Tian Xi
Li Xuejiao
Lv Yanhong
Dong Penghui
Yang Longfei
Xue Luyao
Bian Dejun
Study on the Influence of Different Carbon Sources on Nitrogen and Phosphorus Removal with Micro-pressure swirl Reactor
E3S Web of Conferences
author_facet Tian Xi
Li Xuejiao
Lv Yanhong
Dong Penghui
Yang Longfei
Xue Luyao
Bian Dejun
author_sort Tian Xi
title Study on the Influence of Different Carbon Sources on Nitrogen and Phosphorus Removal with Micro-pressure swirl Reactor
title_short Study on the Influence of Different Carbon Sources on Nitrogen and Phosphorus Removal with Micro-pressure swirl Reactor
title_full Study on the Influence of Different Carbon Sources on Nitrogen and Phosphorus Removal with Micro-pressure swirl Reactor
title_fullStr Study on the Influence of Different Carbon Sources on Nitrogen and Phosphorus Removal with Micro-pressure swirl Reactor
title_full_unstemmed Study on the Influence of Different Carbon Sources on Nitrogen and Phosphorus Removal with Micro-pressure swirl Reactor
title_sort study on the influence of different carbon sources on nitrogen and phosphorus removal with micro-pressure swirl reactor
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2021-01-01
description To explore the suitable external carbon sources for Micro-pressure swirl Reactor (MPR), the experiment was run in parallel through two MPRs, using starch and glucose as carbon sources respectively. Research indicated that under the experimental operating conditions, using starch as the carbon source could more effectively promote the biological denitrification of the MPR system. Due to the structural characteristics of MPR and the slow degradation of starch, the demand for carbon source for denitrification was ensured during the operation cycle, so that the system obtained a better denitrification effect. The test results provided reference for the selection of the external carbon source of the MPR process.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/37/e3sconf_icemee2021_02046.pdf
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