Efficiency study of high C/N variation wastewater treatmemt by hybrid membrane bioreactor system

碩士 === 嘉南藥理科技大學 === 環境工程與科學系暨研究所 === 97 === This study was aimed at investigating the performance of a laboratory scale hybrid submerged membrane bioreactor (HMBR) for the co-treatment of septic tank effluent and landfill leachate. Sponge pellets were introduced into MBR tank to conduct a hybrid MBR...

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Main Authors: Chu-Yi Lin, 林居億
Other Authors: none
Format: Others
Language:zh-TW
Published: 2009
Online Access:http://ndltd.ncl.edu.tw/handle/28642758527983659473
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spelling ndltd-TW-097CNUP55150532015-10-13T15:42:17Z http://ndltd.ncl.edu.tw/handle/28642758527983659473 Efficiency study of high C/N variation wastewater treatmemt by hybrid membrane bioreactor system 複合式薄膜生物反應槽處理高變動碳氮比廢水之效能研究 Chu-Yi Lin 林居億 碩士 嘉南藥理科技大學 環境工程與科學系暨研究所 97 This study was aimed at investigating the performance of a laboratory scale hybrid submerged membrane bioreactor (HMBR) for the co-treatment of septic tank effluent and landfill leachate. Sponge pellets were introduced into MBR tank to conduct a hybrid MBR system. The indicators employed for examining the performances of the system were as follows: pH, dissolved oxygen (DO), temperature, mixed liquid suspended solid (MLSS), mixed liquid volatile suspended solid (MLVSS), chemical oxygen demand (COD), total organic carbon (TOC), specific oxygen uptake rate (SOUR), sludge density index (SDI), total dissolved solids (TDS), extracellular polymeric substances (EPS), total Kjeldahl nitrogen (TKN), NH4+-N, Org-N, NO2- -N, NO3- -N, alkalinity, true color (ADMI), turbidity, scanning electron microscope (SEM) analysis, energy dispersive x-ray spectrometer (EDS) analysis, trans-membrane pressure (TMP) and flux. The highest removals of TCOD (94%) and SCOD (84%) were found at stage 2. The removal efficiency increased with the increase of influent levels. For HMBR, the highest TOC removal of 96% was obtained from stage 4. According to the experimental observation, the sludge foaming in the initial stage was serious and most MLSS eventually attached onto the sponge. The results indicated that the introduction of sponge pellets could enhance the removal efficiency and significantly improve the permeability of MBR system for treatment of septic tank effluent/landfill leachate mixed liquid. It also demonstrated that the sponge carrier was with a strong capability to enhance the color removal in a hybrid MBR system. The results showed that the removal efficiencies of metal Mg, Ca, Cr, Fe, Mn, Ni and Ba are 24.2%(43.4-32.9ppm), 36.3 % (44.4-28.3 ppm), 68.8 % (0.77-0.24 ppm), 86.2 %(1.67-0.23 ppm), 75.3 %(0.19-0.047 ppm), 40.5 % (0.153-0.091 ppm), 53.3 %(0.075-0.035 ppm), respectively. none 張家源 2009 學位論文 ; thesis 233 zh-TW
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language zh-TW
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description 碩士 === 嘉南藥理科技大學 === 環境工程與科學系暨研究所 === 97 === This study was aimed at investigating the performance of a laboratory scale hybrid submerged membrane bioreactor (HMBR) for the co-treatment of septic tank effluent and landfill leachate. Sponge pellets were introduced into MBR tank to conduct a hybrid MBR system. The indicators employed for examining the performances of the system were as follows: pH, dissolved oxygen (DO), temperature, mixed liquid suspended solid (MLSS), mixed liquid volatile suspended solid (MLVSS), chemical oxygen demand (COD), total organic carbon (TOC), specific oxygen uptake rate (SOUR), sludge density index (SDI), total dissolved solids (TDS), extracellular polymeric substances (EPS), total Kjeldahl nitrogen (TKN), NH4+-N, Org-N, NO2- -N, NO3- -N, alkalinity, true color (ADMI), turbidity, scanning electron microscope (SEM) analysis, energy dispersive x-ray spectrometer (EDS) analysis, trans-membrane pressure (TMP) and flux. The highest removals of TCOD (94%) and SCOD (84%) were found at stage 2. The removal efficiency increased with the increase of influent levels. For HMBR, the highest TOC removal of 96% was obtained from stage 4. According to the experimental observation, the sludge foaming in the initial stage was serious and most MLSS eventually attached onto the sponge. The results indicated that the introduction of sponge pellets could enhance the removal efficiency and significantly improve the permeability of MBR system for treatment of septic tank effluent/landfill leachate mixed liquid. It also demonstrated that the sponge carrier was with a strong capability to enhance the color removal in a hybrid MBR system. The results showed that the removal efficiencies of metal Mg, Ca, Cr, Fe, Mn, Ni and Ba are 24.2%(43.4-32.9ppm), 36.3 % (44.4-28.3 ppm), 68.8 % (0.77-0.24 ppm), 86.2 %(1.67-0.23 ppm), 75.3 %(0.19-0.047 ppm), 40.5 % (0.153-0.091 ppm), 53.3 %(0.075-0.035 ppm), respectively.
author2 none
author_facet none
Chu-Yi Lin
林居億
author Chu-Yi Lin
林居億
spellingShingle Chu-Yi Lin
林居億
Efficiency study of high C/N variation wastewater treatmemt by hybrid membrane bioreactor system
author_sort Chu-Yi Lin
title Efficiency study of high C/N variation wastewater treatmemt by hybrid membrane bioreactor system
title_short Efficiency study of high C/N variation wastewater treatmemt by hybrid membrane bioreactor system
title_full Efficiency study of high C/N variation wastewater treatmemt by hybrid membrane bioreactor system
title_fullStr Efficiency study of high C/N variation wastewater treatmemt by hybrid membrane bioreactor system
title_full_unstemmed Efficiency study of high C/N variation wastewater treatmemt by hybrid membrane bioreactor system
title_sort efficiency study of high c/n variation wastewater treatmemt by hybrid membrane bioreactor system
publishDate 2009
url http://ndltd.ncl.edu.tw/handle/28642758527983659473
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