Study on treatment of the-real silk print and dyeing wastewater with the anaerobic biotechnology under ambient temperature

The combined anaerobic reactor was used to deal with low COD concentration wastewater from the real silk print and dyeing industry. When COD in influent was about 300 mg/L, influent color dilution factor was 400, the organic load was less than 1.0 kg COD/(m<sup>3</sup>·d) and 1.5 kg COD/...

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Main Authors: SHEN Dong-sheng, LIU Xin-wen
Format: Article
Language:English
Published: Zhejiang University Press 2005-11-01
Series:浙江大学学报. 农业与生命科学版
Subjects:
Online Access:https://www.academax.com/doi/10.3785/1008-9209.2005.06.0750
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author SHEN Dong-sheng
LIU Xin-wen
author_facet SHEN Dong-sheng
LIU Xin-wen
author_sort SHEN Dong-sheng
collection DOAJ
description The combined anaerobic reactor was used to deal with low COD concentration wastewater from the real silk print and dyeing industry. When COD in influent was about 300 mg/L, influent color dilution factor was 400, the organic load was less than 1.0 kg COD/(m<sup>3</sup>·d) and 1.5 kg COD/(m<sup>3</sup>·d) and the hydraulic retention time was 10.8 hours and 5.5 hours, COD in the effluent was less than 100 mg/L and 150 mg/L, effluent color dilution factor was less than 50 and 80, respectively, which satisfied the national first and second rank discharge standard. It was demonstrated to be feasible by the technological and economical analysis.
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institution Kabale University
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language English
publishDate 2005-11-01
publisher Zhejiang University Press
record_format Article
series 浙江大学学报. 农业与生命科学版
spelling doaj-art-c6ef0d6e6caf489dabbe47531b5bbff92025-08-20T03:34:18ZengZhejiang University Press浙江大学学报. 农业与生命科学版1008-92092097-51552005-11-013175075410.3785/1008-9209.2005.06.075010089209Study on treatment of the-real silk print and dyeing wastewater with the anaerobic biotechnology under ambient temperatureSHEN Dong-shengLIU Xin-wenThe combined anaerobic reactor was used to deal with low COD concentration wastewater from the real silk print and dyeing industry. When COD in influent was about 300 mg/L, influent color dilution factor was 400, the organic load was less than 1.0 kg COD/(m<sup>3</sup>·d) and 1.5 kg COD/(m<sup>3</sup>·d) and the hydraulic retention time was 10.8 hours and 5.5 hours, COD in the effluent was less than 100 mg/L and 150 mg/L, effluent color dilution factor was less than 50 and 80, respectively, which satisfied the national first and second rank discharge standard. It was demonstrated to be feasible by the technological and economical analysis.https://www.academax.com/doi/10.3785/1008-9209.2005.06.0750anaerobic biotreatmentprint and dyeing wastewatercombined anaerobic reactor
spellingShingle SHEN Dong-sheng
LIU Xin-wen
Study on treatment of the-real silk print and dyeing wastewater with the anaerobic biotechnology under ambient temperature
浙江大学学报. 农业与生命科学版
anaerobic biotreatment
print and dyeing wastewater
combined anaerobic reactor
title Study on treatment of the-real silk print and dyeing wastewater with the anaerobic biotechnology under ambient temperature
title_full Study on treatment of the-real silk print and dyeing wastewater with the anaerobic biotechnology under ambient temperature
title_fullStr Study on treatment of the-real silk print and dyeing wastewater with the anaerobic biotechnology under ambient temperature
title_full_unstemmed Study on treatment of the-real silk print and dyeing wastewater with the anaerobic biotechnology under ambient temperature
title_short Study on treatment of the-real silk print and dyeing wastewater with the anaerobic biotechnology under ambient temperature
title_sort study on treatment of the real silk print and dyeing wastewater with the anaerobic biotechnology under ambient temperature
topic anaerobic biotreatment
print and dyeing wastewater
combined anaerobic reactor
url https://www.academax.com/doi/10.3785/1008-9209.2005.06.0750
work_keys_str_mv AT shendongsheng studyontreatmentoftherealsilkprintanddyeingwastewaterwiththeanaerobicbiotechnologyunderambienttemperature
AT liuxinwen studyontreatmentoftherealsilkprintanddyeingwastewaterwiththeanaerobicbiotechnologyunderambienttemperature