Physicochemical Pretreatment of Landfill Leachate
The objective of the research was to study physicochemical pretreatment to prepare a landfill leachate for further treatment. Leachate samples were subjected to pH adjustment-settling and coagulation-flocculation. The pH adjustment-settling produced the following removals at pH 3: COD 45%, total sus...
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my.utp.eprints.22012017-01-19T08:25:05Z Physicochemical Pretreatment of Landfill Leachate Chaudhuri, M. Elmolla, E. S. Heng, G. C. TD Environmental technology. Sanitary engineering The objective of the research was to study physicochemical pretreatment to prepare a landfill leachate for further treatment. Leachate samples were subjected to pH adjustment-settling and coagulation-flocculation. The pH adjustment-settling produced the following removals at pH 3: COD 45%, total suspended solids 80% and turbidity 59%. Coagulation-flocculation at optimum pH 6 and optimum FeCl3 dosage of 1200 mg/L resulted in COD, total suspended solids and turbidity removal of 65, 72 and 92%, respectively, and biodegradability was 0.18. pH adjustment-settling appears to be an adequate pretreatment for further treatment of the leachate by physicochemical process(es) operating at low pH such as Fenton treatment. Coagulation-flocculation appears to be a suitable pretreatment for further treatment of the leachate by biological process(es). 2009-12 Conference or Workshop Item PeerReviewed application/pdf http://eprints.utp.edu.my/2201/1/Physicochemical_Pretreatment_of_Landfill_Leachate.pdf Chaudhuri, M. and Elmolla, E. S. and Heng, G. C. (2009) Physicochemical Pretreatment of Landfill Leachate. In: Second International Conference on Engineering Technology (ICET 2009), 8-10 December, 2009, Kuala Lumpur. http://eprints.utp.edu.my/2201/ |
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TD Environmental technology. Sanitary engineering Chaudhuri, M. Elmolla, E. S. Heng, G. C. Physicochemical Pretreatment of Landfill Leachate |
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The objective of the research was to study physicochemical pretreatment to prepare a landfill leachate for further treatment. Leachate samples were subjected to pH adjustment-settling and coagulation-flocculation. The pH adjustment-settling produced the following removals at pH 3: COD 45%, total suspended solids 80% and turbidity 59%. Coagulation-flocculation at optimum pH 6 and optimum FeCl3 dosage of 1200 mg/L resulted in COD, total suspended solids and turbidity removal of 65, 72 and 92%, respectively, and biodegradability was 0.18. pH adjustment-settling appears to be an adequate pretreatment for further treatment of the leachate by physicochemical process(es) operating at low pH such as Fenton treatment. Coagulation-flocculation appears to be a suitable pretreatment for further treatment of the leachate by biological process(es). |
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Conference or Workshop Item |
author |
Chaudhuri, M. Elmolla, E. S. Heng, G. C. |
author_facet |
Chaudhuri, M. Elmolla, E. S. Heng, G. C. |
author_sort |
Chaudhuri, M. |
title |
Physicochemical Pretreatment of Landfill Leachate |
title_short |
Physicochemical Pretreatment of Landfill Leachate |
title_full |
Physicochemical Pretreatment of Landfill Leachate |
title_fullStr |
Physicochemical Pretreatment of Landfill Leachate |
title_full_unstemmed |
Physicochemical Pretreatment of Landfill Leachate |
title_sort |
physicochemical pretreatment of landfill leachate |
publishDate |
2009 |
url |
http://eprints.utp.edu.my/2201/1/Physicochemical_Pretreatment_of_Landfill_Leachate.pdf http://eprints.utp.edu.my/2201/ |
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13.214268 |