Effects of Mixing Conditions on Floc Properties in Magnesium Hydroxide Continuous Coagulation Process

Magnesium hydroxide continuous coagulation process was used for treating simulated reactive orange wastewater in this study. Effects of mixing conditions and retention time on the coagulation performance and floc properties of magnesium hydroxide were based on the floc size distribution (FSD), zeta...

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Main Authors: Yanmei Ding, Jianhai Zhao, Lei Wei, Wenpu Li, Yongzhi Chi
Format: Article
Language:English
Published: MDPI AG 2019-03-01
Series:Applied Sciences
Subjects:
Online Access:http://www.mdpi.com/2076-3417/9/5/973
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spelling doaj-566e93debec9418e97e9832e6c07aaf12020-11-25T00:13:53ZengMDPI AGApplied Sciences2076-34172019-03-019597310.3390/app9050973app9050973Effects of Mixing Conditions on Floc Properties in Magnesium Hydroxide Continuous Coagulation ProcessYanmei Ding0Jianhai Zhao1Lei Wei2Wenpu Li3Yongzhi Chi4Tianjin Key Laboratory of Aquatic Science and Technology, School of Environmental and Municipal Engineering, Tianjin Chengjian University, Tianjin 300384, ChinaTianjin Key Laboratory of Aquatic Science and Technology, School of Environmental and Municipal Engineering, Tianjin Chengjian University, Tianjin 300384, ChinaTianjin Key Laboratory of Aquatic Science and Technology, School of Environmental and Municipal Engineering, Tianjin Chengjian University, Tianjin 300384, ChinaTianjin Key Laboratory of Aquatic Science and Technology, School of Environmental and Municipal Engineering, Tianjin Chengjian University, Tianjin 300384, ChinaTianjin Key Laboratory of Aquatic Science and Technology, School of Environmental and Municipal Engineering, Tianjin Chengjian University, Tianjin 300384, ChinaMagnesium hydroxide continuous coagulation process was used for treating simulated reactive orange wastewater in this study. Effects of mixing conditions and retention time on the coagulation performance and floc properties of magnesium hydroxide were based on the floc size distribution (FSD), zeta potential, and floc morphology analysis. Floc formation and growth in different reactors were also discussed. The results showed that increasing rapid mixing speed led to a decrease in the final floc size. The floc formation process was mainly carried out in a rapid mixer; a rapid mixing speed of 300 rpm was chosen according to zeta potential and removal efficiency. Reducing retention time caused a relatively small floc size in all reactors. When influent flow was 30 L/h (retention time of 2 min in rapid mixer), the average floc size reached 8.06 μm in a rapid mixer; through breakage and re-growth, the floc size remained stable in the flocculation basin. After growth, the final floc size reached 11.21 μm in a sedimentation tank. The removal efficiency of reactive orange is 89% in the magnesium hydroxide coagulation process.http://www.mdpi.com/2076-3417/9/5/973magnesium hydroxidereactive orangemixingcoagulationfloc size
collection DOAJ
language English
format Article
sources DOAJ
author Yanmei Ding
Jianhai Zhao
Lei Wei
Wenpu Li
Yongzhi Chi
spellingShingle Yanmei Ding
Jianhai Zhao
Lei Wei
Wenpu Li
Yongzhi Chi
Effects of Mixing Conditions on Floc Properties in Magnesium Hydroxide Continuous Coagulation Process
Applied Sciences
magnesium hydroxide
reactive orange
mixing
coagulation
floc size
author_facet Yanmei Ding
Jianhai Zhao
Lei Wei
Wenpu Li
Yongzhi Chi
author_sort Yanmei Ding
title Effects of Mixing Conditions on Floc Properties in Magnesium Hydroxide Continuous Coagulation Process
title_short Effects of Mixing Conditions on Floc Properties in Magnesium Hydroxide Continuous Coagulation Process
title_full Effects of Mixing Conditions on Floc Properties in Magnesium Hydroxide Continuous Coagulation Process
title_fullStr Effects of Mixing Conditions on Floc Properties in Magnesium Hydroxide Continuous Coagulation Process
title_full_unstemmed Effects of Mixing Conditions on Floc Properties in Magnesium Hydroxide Continuous Coagulation Process
title_sort effects of mixing conditions on floc properties in magnesium hydroxide continuous coagulation process
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2019-03-01
description Magnesium hydroxide continuous coagulation process was used for treating simulated reactive orange wastewater in this study. Effects of mixing conditions and retention time on the coagulation performance and floc properties of magnesium hydroxide were based on the floc size distribution (FSD), zeta potential, and floc morphology analysis. Floc formation and growth in different reactors were also discussed. The results showed that increasing rapid mixing speed led to a decrease in the final floc size. The floc formation process was mainly carried out in a rapid mixer; a rapid mixing speed of 300 rpm was chosen according to zeta potential and removal efficiency. Reducing retention time caused a relatively small floc size in all reactors. When influent flow was 30 L/h (retention time of 2 min in rapid mixer), the average floc size reached 8.06 μm in a rapid mixer; through breakage and re-growth, the floc size remained stable in the flocculation basin. After growth, the final floc size reached 11.21 μm in a sedimentation tank. The removal efficiency of reactive orange is 89% in the magnesium hydroxide coagulation process.
topic magnesium hydroxide
reactive orange
mixing
coagulation
floc size
url http://www.mdpi.com/2076-3417/9/5/973
work_keys_str_mv AT yanmeiding effectsofmixingconditionsonflocpropertiesinmagnesiumhydroxidecontinuouscoagulationprocess
AT jianhaizhao effectsofmixingconditionsonflocpropertiesinmagnesiumhydroxidecontinuouscoagulationprocess
AT leiwei effectsofmixingconditionsonflocpropertiesinmagnesiumhydroxidecontinuouscoagulationprocess
AT wenpuli effectsofmixingconditionsonflocpropertiesinmagnesiumhydroxidecontinuouscoagulationprocess
AT yongzhichi effectsofmixingconditionsonflocpropertiesinmagnesiumhydroxidecontinuouscoagulationprocess
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