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34篇 您的检索式:作者名="Korneel Rabaey"
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1Enhancement of biogas potential of primary sludge by co-digestion with cow manure and brewery sludge显示文摘Anaerobic digestion(AD)has long been used to treat different types of organic wastes especially in the developed world.However,organic wastes are still more often considered as a waste instead of a resource in the developing world,which contributes to environmental pollution arising from their disposal.This study has been conducted at Bugolobi Sewage Treatment Plant(BSTP),where two organic wastes,cow manure and brewery sludge were co-digested with primary sludge in different proportions.This study was done in lab-scale reactors at mesophilic temperature and sludge retention time of 20 d.The main objective was to evaluate the biodegradability of primary sludge generated at BSTP,Kampala,Uganda and enhance its ability of biogas production.When the brewery sludge was added to primary STP sludge at all proportions,the biogas production rate increased by a factor of 3.This was significantly(p<0.001)higher than observed gas yield(337±18)mL/(L·d))in the control treatment containing(only STP sludge).Co-digesting STP sludge with cow manure did not show different results compared to the control treatment.In conclusion,Bugolobi STP sludge is poorly anaerobically degradable with low biogas production but co-digestion with brewery sludge enhanced the biogas production rate,while co-digestion with cow manure was not beneficial.Irene Nansubuga Noble Banadda Mohammed Babu Jo De Vrieze Willy Verstraete Korneel Rabaey 2015International Journal of Agricultural and Biological Engineering2015,8,4:4
2Microbial fuel cells: novel biotechnology for energy generation显示文摘Korneel Rabaey Willy Verstraete 2005Trends in Biotechnology2005,,6:3
3面向有机污染物消除的“微生物、植物、电”多效耦合作用机制及低能耗型修复技术显示文摘中欧合作项目“面向有机污染物消除的‘微生物、植物、电’多效耦合作用机制及低能耗型修复技术”是由中国国家自然科学基金委和欧盟共同资助的重大国际合作项目。该项目研究领域属于环境生物技术,研究团队包括5个中方单位和17个欧方单位,项目主要围绕新有机污染物的生物降解过程和机制、低能耗生物修复技术开展研究工作。项目执行2年来,在降解污染物的微生物资源、弱电介入增效生物降解和强化电子传递、微生物3D打印等方面取得了阶段性成果的同时,项目团队还开展了有效的交流和实质性合作。未来,项目团队将克服新冠疫情影响,强化中欧双方团队内部和团队之间的合作交流,全面实现项目科学目标,圆满完成国际合作任务。刘双江 Philippe F.-X.Corvini Korneel Rabaey 2021生物工程学报2021,37,10:2
4Microbial fuel cells:novel biotechnology for energy generation显示文摘Korneel Rabaey Willy Verstraete 2005Biotechnology2005,23,6:1
5Microbial fuel cells for simultaneous carbon and nitrogen removal显示文摘Bernardino Virdis Korneel Rabaey Zhiguo Yuan Jürg Keller 2008Water Research2008,,12:1
6Sequential anode–cathode configuration improves cathodic oxygen reduction and effluent quality of microbial fuel cells显示文摘Stefano Freguia Korneel Rabaey Zhiguo Yuan Jürg Keller 2007Water Research2007,,6:1
7Biofilm stratification during simultaneous nitrification and denitrification (SND) at a biocathode显示文摘Bemardino Virdis Suzanne T Read Korneel Rabaey 2011Bioresource Technology2011,102,:1
8Electrochemical oxidation of reverse osmosis concentrate on mixed metal oxide (MMO) titanium coated electrodes显示文摘Arseto Y. Bagastyo Jelena Radjenovic Yang Mu René A. Rozendal Damien J. Batstone Korneel Rabaey 2011Water Research2011,,16:1
9Microbial fuel cells:novel biotechnology for energy generation显示文摘Korneel Rabaey Willy Verstraete 2005TRENDS in Biotechnology2005,23,:1
10Tubular microbial fuel ceils for efficient electricity generation 显示文摘KORNEEL RABAEY PETER CLAUWAERT PETFR AELTERMAN 2005Environmental Science and Technology2005,39,:1
11Electrochemically assisted production of biogenic palladium nanoparticles for the catalytic removal of micropollutants in wastewater treatment plants effluent显示文摘Biogenic palladium nanoparticles(bio-Pd NPs)are used for the reductive transformation and/or dehalogenation of persistent micropollutants.In this work,H2(electron donor)was produced in situ by an electrochemical cell,permitting steered production of differently sized bio-Pd NPs.The catalytic activity was first assessed by the degradation of methyl orange.The NPs showing the highest catalytic activity were selected for the removal of micropollutants from secondary treated municipal wastewater.The synthesis at different H2 flow rates(0.310 L/hr or 0.646 L/hr)influenced the bio-Pd NPs size.The NPs produced over 6 hr at a lowH2 flow rate had a larger size(D50=39.0 nm)than those produced in 3 hr at a high H2 flow rate(D50=23.2 nm).Removal of 92.1%and 44.3%of methyl orange was obtained after 30 min for the NPs with sizes of 39.0 nm and 23.2 nm,respectively.Bio-Pd NPs of 39.0 nm were used to treat micropollutants present in secondary treated municipal wastewater at concentrations ranging fromμg/L to ng/L.Effective removal of 8 compounds was observed:ibuprofen(69.5%)94.3%)90%efficiency.Overall,these data indicate that the size,and thus the catalytic activity of the NPs can be steered and that the removal of challengingmicropollutants at environmentally relevant concentrations can be achieved through the use of bio-Pd NPs.Cindy Ka Y Law Kankana Kundu Luiza Bonin Lorena Peñcoba-Antona Eduardo Bolea-Fernandez Frank Vanhaecke Korneel Rabaey Abraham Esteve-Nez Bart De Gusseme Nico Boon 2023Journal of Environmental Sciences2023,,6:1
12Ele ctrochemical oxidation of electrodialysed reverse osmosis concentrat e on Ti/Pt-IrOz,Ti/SnO2-Sb and boron-doped diamond electrodes显示文摘Arseto Y Bagastyo Damien J Batstone Korneel Rabaey 2013water research2013,47,1:1
13Microbial fuel cells: novel biotechnology for energy generation显示文摘Korneel Rabaey Willy Verstraete 2005Trends in Biotechnology2005,,6:1
14A microbial fuel cell capable of converting glucose to electricity at high rate and efficiency显示文摘Korneel Rabaey Geert Lissens Steven D Siciliano 2003Biotechnology Letters2003,25,:1
15A microbial fuel cell capable of converting glucose to electricity at high rate and efficiency显示文摘Korneel Rabaey Geert Lissens Steven D. Siciliano Willy Verstraete 2003Biotechnology Letters2003,,18:1
16A microbial fuel cell capable of converting glucose to electricity at high rate and efficiency显示文摘Korneel Rabaey Geert Lissens Steven D. Siciliano Willy Verstraete 2003Biotechnology Letters2003,,18:1
17A microbial fuel cell capable of converting glucose to electricity at high rate and efficiency显示文摘Korneel Rabaey Greert Lissens Steven D 2003Biotechnology2003,25,:1
18A microbial fuel cell capable of converting glucose to electricity at high rate and efficiency显示文摘Korneel Rabaey Geert Lissens Steven D. Siciliano Willy Verstraete 2003Biotechnology Letters2003,,18:1
19Simultaneous nitrification, denitrification and carbon removal in microbial fuel cells显示文摘Bernardino Virdis Korneel Rabaey René A. Rozendal Zhiguo Yuan Jürg Keller 2010Water Research2010,,9:1
20Biofuel cells select for microbial consortia that self-mediate electron transfer显示文摘Rabaey Korneel Boon Nico Siciliano Steven D 2004Applied and Environmental Microbiology2004,70,9:1
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