Anaerobic Tratment Kinetics Of Municipal Landfill Leachate

dc.contributor.advisor Öztürk, İzzet tr_TR
dc.contributor.author Timur, Hacer tr_TR
dc.contributor.authorID 66383 tr_TR
dc.contributor.department Kimya Mühendisliği tr_TR
dc.contributor.department Chemical Engineering en_US
dc.date 1997 tr_TR
dc.date.accessioned 2018-07-10T11:38:42Z
dc.date.available 2018-07-10T11:38:42Z
dc.date.issued 1997 tr_TR
dc.description Tez (Doktora) -- İstanbul Teknik Üniversitesi, Fen Bilimleri Enstitüsü, 1997 tr_TR
dc.description Thesis (Ph.D.) -- İstanbul Technical University, Institute of Science and Technology, 1997 en_US
dc.description.abstract Landfill leachate taken from a young municipal landfill site (3.5 years old),containing high organic contaminants (Total Organic Carbon -TOC of about 5000 mg L-1), was treated in bench-scale Anaerobic Sequencing Batch Reactors (ASBR), and an Anaerobic Hybrid Bed Filter (AHBF) at 35oC. 20 months testing program has been conducted at varied influent leachate concentration of 546-4800 mgTOC L-1, Hydraulic Retention Time(HRT) of 10-1.5 days and Solid Retention Time(SRT) of 40-9 days in ASBR's and influent leachate concentration of 1250-4490 mgTOG L-1 , and HRT of 5.1-0.9 days in AHBF ASBR achieved 73.9% TOC removal at maximum organic loading rate of 2.8 kgTOC m-3 d-1 at 1.5 days of HRT and 65.3% at 0.561 kgTOC kgVSS-1 d-1 ofmaximum specific loading rate and 2 days of HRT. The AHBF maintained 74.7% TOC removal at 1.08 kgTOC m-3 d-1 of loading and 2.4 days of HRT. Methane conversion ratio averaged 0.742 m3CH4 kgTOC-1 removed at(STP). Reaction rate constants obtained from ASBR and AHBF data were ko = 483-1480 mg L-1 d-1, k1721/2=10.5-30 mg1/2L-1/2 d-1, k1 = 0.45-1.5 d-1, k2 = 3.5-10.4 d-1. Biomass yield coefficient, Y, and biomass decay coeffiıcient, kd, evaluated from ASBR data are in the range of 0.45-0.3 gVSS gTOC-1 removed and 0.003-0.022 d-1 respectively. In order to select a growth rate model relating specific growth rate, m, to substrate concentration, S, for acclimated sludge, to represent anaerobic leachate degradation, experimental data from ASBR's were fitted to the noninhibitory model (Monod) and four inhibitocy models using least square technique. The range of biokinetic constants were as follows: mm = 0.05-0.142 d-1, K8 = 1500-750 mgTOC L-1, Ki = 685,700-75,000 mgTOC L-1, n = 0.0028-0.0045, Sm, = 7500-5500 mgTOC L-1. Corresponding mm* and S* values were in the range of 0.047-0.118 d-1 and 29,800- 4030 mgTOC L-1 respectively. F-test performed between Monod (the lowest variance) and the inhibition models showed that inhibition models were not different from Monod model at both %5 and %1 significance levels. Kinetic parameters also indicated that, in this study range, anaerobic treatment of leachate presented slight inhibition. en_US
dc.description.degree Doktora tr_TR
dc.description.degree Ph.D. en_US
dc.identifier.uri http://hdl.handle.net/11527/16381
dc.publisher Fen Bilimleri Enstitüsü tr_TR
dc.publisher Institute of Science and Technology en_US
dc.rights Kurumsal arşive yüklenen tüm eserler telif hakkı ile korunmaktadır. Bunlar, bu kaynak üzerinden herhangi bir amaçla görüntülenebilir, ancak yazılı izin alınmadan herhangi bir biçimde yeniden oluşturulması veya dağıtılması yasaklanmıştır. tr_TR
dc.rights All works uploaded to the institutional repository are protected by copyright. They may be viewed from this source for any purpose, but reproduction or distribution in any format is prohibited without written permission. en_US
dc.subject Anaerobik arıtma tr_TR
dc.subject Sızıntı suyu tr_TR
dc.subject Çöp depolama alanları tr_TR
dc.subject Anaerobic treatment en_US
dc.subject Leachate en_US
dc.subject Waste disposal areas en_US
dc.title Anaerobic Tratment Kinetics Of Municipal Landfill Leachate tr_TR
dc.title.alternative Düzenli Çöp Depolama Alanlarinda Oluşan Sizinti Suyunun Havasiz Aritim Kinetiği en_US
dc.type Doctoral Thesis en_US
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