Using cement, lignite fly ash and baghouse filter waste for solidification of chromium electroplating treatment sludge

The objective of the study is to use baghouse filter waste as a binder mixed with cement and lignite fly ash to solidify sludge from chromium electroplating wastewater treatment. To save cost of solidification, reducing cement in binder and increasing sludge in the cube were focused on. Minimum perc...

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Main Authors: Wantawin, C., Chobthiangtham, P.
Format: Article
Language:English
Published: Prince of Songkla University 2004-02-01
Series:Songklanakarin Journal of Science and Technology (SJST)
Subjects:
Online Access:http://www.sjst.psu.ac.th/journal/envi/08-solidification.pdf
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spelling doaj-1f177725513a491d97117d5b4c33f3422020-11-24T21:35:45ZengPrince of Songkla UniversitySongklanakarin Journal of Science and Technology (SJST)0125-33952004-02-0126Suppl.7784Using cement, lignite fly ash and baghouse filter waste for solidification of chromium electroplating treatment sludgeWantawin, C.Chobthiangtham, P.The objective of the study is to use baghouse filter waste as a binder mixed with cement and lignite fly ash to solidify sludge from chromium electroplating wastewater treatment. To save cost of solidification, reducing cement in binder and increasing sludge in the cube were focused on. Minimum percent cement in binder of 20 for solidification of chromium sludge was found when controlling lignite fly ash to baghouse filter waste at the ratio of 30:70, sludge to binder ratio of 0.5, water to mixer ratio of 0.3 and curing time of 7 days. Increase of sludge to binder ratio from 0.5 to 0.75 and 1 resulted in increase in the minimum percent cement in binder up to 30 percent in both ratios. With the minimum percent cement in binder, the calculated cement to sludge ratios for samples with sludge to binder ratios of 0.5, 0.75 and 1 were 0.4, 0.4 and 0.3 respectively. Leaching chromium and compressive strength of the samples with these ratios could achieve the solidified waste standard by the Ministry of Industry. For solidification of chromium sludge at sludge to binder ratio of 1, the lowest cost binder ratio of cement to lignite fly ash and baghouse filter waste in this study was 30:21:49. The cost of binder in this ratio was 718 baht per ton dry sludge.http://www.sjst.psu.ac.th/journal/envi/08-solidification.pdfsolidificationchromium sludgecementlignite fly ashbaghouse filter waste
collection DOAJ
language English
format Article
sources DOAJ
author Wantawin, C.
Chobthiangtham, P.
spellingShingle Wantawin, C.
Chobthiangtham, P.
Using cement, lignite fly ash and baghouse filter waste for solidification of chromium electroplating treatment sludge
Songklanakarin Journal of Science and Technology (SJST)
solidification
chromium sludge
cement
lignite fly ash
baghouse filter waste
author_facet Wantawin, C.
Chobthiangtham, P.
author_sort Wantawin, C.
title Using cement, lignite fly ash and baghouse filter waste for solidification of chromium electroplating treatment sludge
title_short Using cement, lignite fly ash and baghouse filter waste for solidification of chromium electroplating treatment sludge
title_full Using cement, lignite fly ash and baghouse filter waste for solidification of chromium electroplating treatment sludge
title_fullStr Using cement, lignite fly ash and baghouse filter waste for solidification of chromium electroplating treatment sludge
title_full_unstemmed Using cement, lignite fly ash and baghouse filter waste for solidification of chromium electroplating treatment sludge
title_sort using cement, lignite fly ash and baghouse filter waste for solidification of chromium electroplating treatment sludge
publisher Prince of Songkla University
series Songklanakarin Journal of Science and Technology (SJST)
issn 0125-3395
publishDate 2004-02-01
description The objective of the study is to use baghouse filter waste as a binder mixed with cement and lignite fly ash to solidify sludge from chromium electroplating wastewater treatment. To save cost of solidification, reducing cement in binder and increasing sludge in the cube were focused on. Minimum percent cement in binder of 20 for solidification of chromium sludge was found when controlling lignite fly ash to baghouse filter waste at the ratio of 30:70, sludge to binder ratio of 0.5, water to mixer ratio of 0.3 and curing time of 7 days. Increase of sludge to binder ratio from 0.5 to 0.75 and 1 resulted in increase in the minimum percent cement in binder up to 30 percent in both ratios. With the minimum percent cement in binder, the calculated cement to sludge ratios for samples with sludge to binder ratios of 0.5, 0.75 and 1 were 0.4, 0.4 and 0.3 respectively. Leaching chromium and compressive strength of the samples with these ratios could achieve the solidified waste standard by the Ministry of Industry. For solidification of chromium sludge at sludge to binder ratio of 1, the lowest cost binder ratio of cement to lignite fly ash and baghouse filter waste in this study was 30:21:49. The cost of binder in this ratio was 718 baht per ton dry sludge.
topic solidification
chromium sludge
cement
lignite fly ash
baghouse filter waste
url http://www.sjst.psu.ac.th/journal/envi/08-solidification.pdf
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