Production and Evaluation of Immobilized Cells for Biological Wastewater Denitrification

碩士 === 東南科技大學 === 防災科技研究所 === 101 === Abstract This research combine the immobilization technology anaerobic ammonium oxidation (ANAMMOX) process for nitrogen removal from synthetic wastewater.immobilization has several advantages,such as bacteria protection,avoid bacteria washing out,easy for separ...

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Main Authors: JIANG, YI- CHUN, 江逸羣
Other Authors: HO, CHUN-MING
Format: Others
Language:zh-TW
Published: 2013
Online Access:http://ndltd.ncl.edu.tw/handle/13894813431039907462
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spelling ndltd-TW-101TNIO06530122016-03-23T04:14:08Z http://ndltd.ncl.edu.tw/handle/13894813431039907462 Production and Evaluation of Immobilized Cells for Biological Wastewater Denitrification 廢水除氮固定化細胞之製作與評估 JIANG, YI- CHUN 江逸羣 碩士 東南科技大學 防災科技研究所 101 Abstract This research combine the immobilization technology anaerobic ammonium oxidation (ANAMMOX) process for nitrogen removal from synthetic wastewater.immobilization has several advantages,such as bacteria protection,avoid bacteria washing out,easy for separatition of solid and liquid.Therefore,usually be used in waste water.treatmrent Previous research results indicated that ths ANAMMOX bacteria was damaged during immobilization,Therefore,it mast be overcome for actual application.This research results indicute that it is possible to immobilize Ammonia-oxidizing bacteria (AOB) and ANAMMOX for simultaneously nitrification and denitrification.In addition,after a long acclimation of the immobilized cells cotaining AOB or Activated sludge(AS),ANAMMOX occurred in 168 days.The acclimation period divided into three stages.During the first stage,Nitrite was as the electron acceptor for denitrification bg the immobilized cells.Then,no obvious biological reaction was occured during he second stage,Finally,ANAMMOX occurred in the third stage.Whereas the immobilized cells containing ANAMMOX didn't have ANAMMOX reaction even affer along period of acclimation. HO, CHUN-MING 何俊明 2013 學位論文 ; thesis 115 zh-TW
collection NDLTD
language zh-TW
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description 碩士 === 東南科技大學 === 防災科技研究所 === 101 === Abstract This research combine the immobilization technology anaerobic ammonium oxidation (ANAMMOX) process for nitrogen removal from synthetic wastewater.immobilization has several advantages,such as bacteria protection,avoid bacteria washing out,easy for separatition of solid and liquid.Therefore,usually be used in waste water.treatmrent Previous research results indicated that ths ANAMMOX bacteria was damaged during immobilization,Therefore,it mast be overcome for actual application.This research results indicute that it is possible to immobilize Ammonia-oxidizing bacteria (AOB) and ANAMMOX for simultaneously nitrification and denitrification.In addition,after a long acclimation of the immobilized cells cotaining AOB or Activated sludge(AS),ANAMMOX occurred in 168 days.The acclimation period divided into three stages.During the first stage,Nitrite was as the electron acceptor for denitrification bg the immobilized cells.Then,no obvious biological reaction was occured during he second stage,Finally,ANAMMOX occurred in the third stage.Whereas the immobilized cells containing ANAMMOX didn't have ANAMMOX reaction even affer along period of acclimation.
author2 HO, CHUN-MING
author_facet HO, CHUN-MING
JIANG, YI- CHUN
江逸羣
author JIANG, YI- CHUN
江逸羣
spellingShingle JIANG, YI- CHUN
江逸羣
Production and Evaluation of Immobilized Cells for Biological Wastewater Denitrification
author_sort JIANG, YI- CHUN
title Production and Evaluation of Immobilized Cells for Biological Wastewater Denitrification
title_short Production and Evaluation of Immobilized Cells for Biological Wastewater Denitrification
title_full Production and Evaluation of Immobilized Cells for Biological Wastewater Denitrification
title_fullStr Production and Evaluation of Immobilized Cells for Biological Wastewater Denitrification
title_full_unstemmed Production and Evaluation of Immobilized Cells for Biological Wastewater Denitrification
title_sort production and evaluation of immobilized cells for biological wastewater denitrification
publishDate 2013
url http://ndltd.ncl.edu.tw/handle/13894813431039907462
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