Tertiary Treatment Process of Preserved Wastewater

The effects of the composite coagulants on coagulation sedimentation for the preserved wastewater was investigated by changing the composite coagulant dosages, and the coagulant was composed of polymeric ferric sulfate (PFS), polyaluminium chloride (PAC), and polyaluminum ferric silicate (PAFSC), wh...

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Main Authors: Wang Qingyu, Zhang Yongli, Lin Kai, Chen Xiaolang
Format: Article
Language:English
Published: EDP Sciences 2016-01-01
Series:MATEC Web of Conferences
Subjects:
Online Access:http://dx.doi.org/10.1051/matecconf/20166707018
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spelling doaj-1fdec089049646ddb94f9bad05c5bb542021-02-02T01:02:00ZengEDP SciencesMATEC Web of Conferences2261-236X2016-01-01670701810.1051/matecconf/20166707018matecconf_smae2016_07018Tertiary Treatment Process of Preserved WastewaterWang Qingyu0Zhang Yongli1Lin Kai2Chen Xiaolang3School of Chemical and Environmental Engineering, Hanshan Normal UniversitySchool of Chemical and Environmental Engineering, Hanshan Normal UniversitySchool of Chemical and Environmental Engineering, Hanshan Normal UniversitySchool of Chemical and Environmental Engineering, Hanshan Normal UniversityThe effects of the composite coagulants on coagulation sedimentation for the preserved wastewater was investigated by changing the composite coagulant dosages, and the coagulant was composed of polymeric ferric sulfate (PFS), polyaluminium chloride (PAC), and polyaluminum ferric silicate (PAFSC), while the effect of the tertiary treatment process on the preserved wastewater was tested, which was exceeded the standard seriously. The results showed that 400 mg/L was the optimum composite coagulant dosage. The removal rates of salt and sugar were as high as 99.1% and 99.5% respectively, and the removal rates of CODCr and SS were 99.3% and 96.0%, respectively after the preserved wastewater was treated by the tertiary treatment technology, which both reached the primary standard of “The Integrated Wastewater Discharge Standard” (GB8978-1996).http://dx.doi.org/10.1051/matecconf/20166707018tertiary treatment processpreserved wastewatercomposite coagulantsalt removal ratesugar removal rateCODCr removal rateSS removal rate
collection DOAJ
language English
format Article
sources DOAJ
author Wang Qingyu
Zhang Yongli
Lin Kai
Chen Xiaolang
spellingShingle Wang Qingyu
Zhang Yongli
Lin Kai
Chen Xiaolang
Tertiary Treatment Process of Preserved Wastewater
MATEC Web of Conferences
tertiary treatment process
preserved wastewater
composite coagulant
salt removal rate
sugar removal rate
CODCr removal rate
SS removal rate
author_facet Wang Qingyu
Zhang Yongli
Lin Kai
Chen Xiaolang
author_sort Wang Qingyu
title Tertiary Treatment Process of Preserved Wastewater
title_short Tertiary Treatment Process of Preserved Wastewater
title_full Tertiary Treatment Process of Preserved Wastewater
title_fullStr Tertiary Treatment Process of Preserved Wastewater
title_full_unstemmed Tertiary Treatment Process of Preserved Wastewater
title_sort tertiary treatment process of preserved wastewater
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2016-01-01
description The effects of the composite coagulants on coagulation sedimentation for the preserved wastewater was investigated by changing the composite coagulant dosages, and the coagulant was composed of polymeric ferric sulfate (PFS), polyaluminium chloride (PAC), and polyaluminum ferric silicate (PAFSC), while the effect of the tertiary treatment process on the preserved wastewater was tested, which was exceeded the standard seriously. The results showed that 400 mg/L was the optimum composite coagulant dosage. The removal rates of salt and sugar were as high as 99.1% and 99.5% respectively, and the removal rates of CODCr and SS were 99.3% and 96.0%, respectively after the preserved wastewater was treated by the tertiary treatment technology, which both reached the primary standard of “The Integrated Wastewater Discharge Standard” (GB8978-1996).
topic tertiary treatment process
preserved wastewater
composite coagulant
salt removal rate
sugar removal rate
CODCr removal rate
SS removal rate
url http://dx.doi.org/10.1051/matecconf/20166707018
work_keys_str_mv AT wangqingyu tertiarytreatmentprocessofpreservedwastewater
AT zhangyongli tertiarytreatmentprocessofpreservedwastewater
AT linkai tertiarytreatmentprocessofpreservedwastewater
AT chenxiaolang tertiarytreatmentprocessofpreservedwastewater
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