Bio-reduction of tetrachloroethen using a H2-based membrane biofilm reactor and community fingerprinting

dc.authorid0000-0002-9620-8644
dc.authorid0000-0002-9898-9173
dc.authorid0000-0001-8207-8669
dc.authorid0000-0003-2358-3248
dc.contributor.authorKaratas, Serdar
dc.contributor.authorHasar, Halil
dc.contributor.authorTaskan, Ergin
dc.contributor.authorOzkaya, Bestarnin
dc.contributor.authorŞahinkaya, Erkan
dc.date.accessioned2025-05-10T19:43:52Z
dc.date.issued2014
dc.departmentİMÜ, Fakülteler, Mühendislik ve Doğa Bilimleri Fakültesi, Biyomühendislik Bölümü
dc.description.abstractChlorinated ethenes in drinking water could be reductively dechlorinated to non-toxic ethene by using a hydrogen based membrane biofilm reactor (H-2-MBfR) under denitrifying conditions as it provides an appropriate environment for dechlorinating bacteria in biofilm communities. This study evaluates the reductive dechlorination of perchloroethene (PCE) to non-toxic ethene (ETH) and comparative community analysis of the biofilm grown on the gas permeable membrane fibers. For these purposes, three H-2-MBfRs receiving three different chlorinated ethenes (PCE, TCE and DCE) were operated under different hydraulic retention times (HRTs) and H-2 pressures. Among these reactors, the H-2-MBfR fed with PCE (H-2-MBfR 1) accomplished a complete dechlorination, whereas cis-DCE accumulated in the TCE receiving H-2-MBfR 2 and no dechlorination was detected in the DCE receiving H-2-MBfR 3. The results showed that 95% of PCE dechlorinated to ETH together with over 99.8% dechlorination efficiency. Nitrate was the preferred electron acceptor as the most of electrons generated from H-2 oxidation used for denitrification and dechlorination started under nitrate deficient conditions at increased H-2 pressures. PCR-DGGE analysis showed that Dehalococcoides were present in autotrophic biofilm community dechlorinating PCE to ethene, and RDase genes analysis revealed that pceA, tceA, bvcA and vcrA, responsible for complete dechlorination step, were available in Dehalococcoides strains. (C) 2014 Elsevier Ltd. All rights reserved.
dc.description.sponsorshipScientific and Technological Research Council of Turkey (TUBITAK) [108Y136]
dc.description.sponsorshipThis paper includes Ph.D thesis data of Dr. Serdar Karatas. Authors graceful acknowledge the financial support from The Scientific and Technological Research Council of Turkey (TUBITAK) with the project number of 108Y136.
dc.identifier.doi10.1016/j.watres.2014.03.053
dc.identifier.endpage28
dc.identifier.issn0043-1354
dc.identifier.pmid24731873
dc.identifier.scopus2-s2.0-84898629962
dc.identifier.scopusqualityQ1
dc.identifier.startpage21
dc.identifier.urihttps://doi.org/10.1016/j.watres.2014.03.053
dc.identifier.urihttps://hdl.handle.net/20.500.14730/10759
dc.identifier.volume58
dc.identifier.wosWOS:000337261500003
dc.identifier.wosqualityQ1
dc.indekslendigikaynakWeb of Science
dc.indekslendigikaynakScopus
dc.indekslendigikaynakPubMed
dc.language.isoen
dc.publisherPergamon-Elsevier Science Ltd
dc.relation.ispartofWater Research
dc.relation.publicationcategoryMakale - Uluslararası Hakemli Dergi - Kurum Öğretim Elemanı
dc.rightsinfo:eu-repo/semantics/closedAccess
dc.snmzKA_WOS_20250302
dc.subjectPerchloroethene
dc.subjectReductive dehalogenation
dc.subjectMembrane biofilm reactor
dc.subjectHydrogen
dc.subjectDehalococcoides
dc.titleBio-reduction of tetrachloroethen using a H2-based membrane biofilm reactor and community fingerprinting
dc.typeArticle

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