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JOURNAL ARTICLE |
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2015 |
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Na .L., Kakarla. R., Moon. J.M., Min B. Determination of Microbial Growth by Protein Assay in an Air- |
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Cathode Single Chamber Microbial Fuel Cell. Journal of Microbiology and Biotechnology. 25 (7):1114-1118 |
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Kakarla R., Kim J.R., Jeon B.H., Min B. Enhanced performance of an air–cathode microbial fuel cell with |
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oxygen supply from an externally connected algal bioreactor. Bioresource Technology. [In press] |
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Moon. J.M., Kondaveeti S., Lee T.H., Song Y.C., Min. B. Minimum interspatial electrode spacing for |
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optimizing air-cathode microbial fuel cell (MFC) operation with membrane electrode. Bioelectrochemistry. [In press] |
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Moon J.M., Kondaveeti S., Min B. Evaluation of low-cost separators for increased power generation in single |
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chamber microbial fuel cells with membrane electrode assembly. Fuel Cells. 15(1):230-238. |
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Lee S.H., Hwang J.H., Kabra A.N., Abou-Shanab R.A., Kurade M.B., Min B., Jeon B.H. Perchlorate |
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reduction from a highly concentrated aqueous solution by bacterium Rhodococcus sp. YSPW03. Encironmental Science and Pollution Research. [In press] |
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Kumar M.S., Kabra A.N., Min B., El-Dalatony M.M., Xiong J., Thajuddin N., Lee D.S., Jeon B.H. |
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Insecticides induced biochemical changes in freshwater microalga Chlamydomonas Mexicana. Encironmental Science and Pollution Research. [In press] |
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2014 |
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El-Sayed S., Akhil N. K., Ji M.K., Kim J.R., Min B., Jeon B.H. Enhancement of microalgae growth and |
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fatty acid content under the influence of phytohormones. Bioresource Technology. 172:97-103. |
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Kondaveeti S., Lee S.H., Park H.D., Min B. Bacterial communities in a bioelectrochemical denitri-fication |
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system: The effects of supplemental electron acceptors. Water Research 51:25-36. |
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Kondaveeti S., Lee J., Kakarla R., Kim H.S., Min B. Low-cost separators for enhanced power productin |
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and field application of microbial fuel cells (MFCs). Electrochimica Acta. 132:434-440. |
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Kakarla R., Min B. Photoautotrophic microalgae Scenedesmus obliquus attached on a cathode as oxygen |
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producers for microbial fuel cell (MFC) operation. International Journal of Hydrogen Energy. 39:10275-10283. |
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Kakarla R., Min B. Evaluation of microbial fuel cell operation using algae as an oxygen supplier: |
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carbon paper cathode vs. carbon brush cathode. Bioprocess and Biosystem Engineering. In press |
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Kondaveeti S., Choi K.S., Min B. Microalgae Scenedesmus obliquus as renewable biomass feedstock for |
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electricity generation in microbial fuel cells (MFCs). Frontiers of Environmental Science and Engineering. 8(5):784-791. |
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Hur J., Lee B.M., Choi K.S., Min B. Tracking the spectroscopic and chromatographic changes of algae |
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derived organic matter in a microbial fuel cell. Environmental Science and Pollution Research21(3):2230-9. |
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2013 |
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Lee S.H., Kondaveeti S., Min B., Park H.D. Enrichment of Clostridia during the operation of an external |
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powered bio-electrochemical denitrification system.Process Biochemistry. 48:306-311. |
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Kondaveeti S., Min B. Nitrate reduction with biotic and abiotic cathodes at various cell voltages in |
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bioelectrochemical denitrification system. Bioprocess Biosyst. Eng. 36:231-238. |
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Vologni V., Kakarla R., Angelidaki I., Min B. Increased power generation from primary sludge by a |
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submersible microbial fuel cell and optimum operation conditions. Bioprocess Biosyst. Eng. 36(5):635-642. |
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2012 |
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Min B., Poulsen F.W., Thygesen A., Angelidaki I. Electric power generation by a submersible |
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microbial fuel cell equipped with a membrane electrode assembly. Bioresource Technology 118: 412-417. |
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Lee M.J., Kim T.H., Min B., Hwang S.J. Sodium concentration effects on metabolic pathway |
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and estimation of ATP use in dark fermentation hydrogen production through stoichiometric analysis. Journal of Environmental Management 108: 22-26. |
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Lim J.J., Kim M.H., Kim M.J., Oh T.S., Kang O.Y., Min B., Rao A.S., You C.K. A systematic |
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model calibration methodology based on multiple errors minimization method for the optimal parameter estimation of ASM1. Korean J. Chem. Eng. 29(3):291-303. |
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2011 |
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Thygesen A., Poulsen F.W., Angelidaki I., Min B., Bjerre A.B. Electricity generation by microbial |
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fuel cells fueled with wheat straw hydrolysate. Biomass and Bioenergy 35: 4732-4739. |
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Fang C., Min B., Angelidaki I. Nitrate as an Oxidant in the Cathode Chamber of a Microbial Fuel |
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Cell for Both Power Generation and Nutrient Removal Purposes. Appl. Biochem. Biotechnol 164: 464-474. |
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Peixoto L., Min B., Martins G., Brito A.G., Kroff P., Parpot P., Angelidaki I., Nogueira R. In situ |
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microbial fuel cell-based biosensor for organic carbon. Bioelectro chemistry 81: 99-103. |
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Zhang Y., Min B., Huang L., Angelidaki I. Electricity generation and microbial community |
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response to substrate changes in microbial fuel cell. Bioresources Technology 102(2): 1163-1173. |
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Hwang J.H., Choi J.A., Abou-Shanab R.A.I., Min B., Song H., Kim Y., Lee E.S., Jeon B.H. |
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Feasibility of hydrogen production from ripened fruits by a combined two-stage (dark/dark) fermentation system. Bioresources Technology 102(2): 1051-1058. |
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Kim T.H., Lee M.J., JangH.S., Min B.K., Yoo G.Y., Hwang S.J. Characteristics of N2O |
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release from fluidized media type BNR processes and identifi cation of N2O sources. Desalination and Water Treatment 28: 378-384. |
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Choi J-A., Hwang J.H., Dempsey B.A., Abou-Shanab R.A.I., Min B., Song H., Lee D.S., Kim J.R., |
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Cho Y.C., Hong S., Jeon B.H. Enhancement of fermentative bioenergy (ethanol/hydrogen) production using ultrasonication of Scenedesmus obliquus YSW15 cultivated in swine wastewater effluent. Energy and Environmental Science 4: 3513-3520. |
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Abou-Shanab R.A.I., Hwang J.H., Cho Y., Min B., Jeon B.H. Characterization of microalgal species |
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isolated from fresh water bodies as a potential source for biodiesel production. Applied Energy 88(10): 3300-3306. |
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Hwang J.H., Choi J.A., O Y.K., Abou-Shanab R.A.I., Song H., Min B., Cho Y., Na J.G., Koo J., |
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Jeon B.H. Hydrogen production from sulfate-and ferrous-enriched wastewater. International Journal of Hydrogen Energy 36: 13984-13990 |
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Khan M.A., Ahn Y.T., Kumar M., Lee W., Min B., Kim G., Cho D.W., Park W.B., Jeon B.H. |
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Adsorption studies for the removal of nitrate using modified lignite granular activated carbon. Separation Science and Technology 46(16):2575-2584 |
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2010 |
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Kongjan P., O-Thong S., Kotay M., Min B., Angelidaki I. Biohydrogen production from wheat straw |
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hydrolysate by dark fermentation using extreme thermophilic mixed culture. Biotechnology and Bioengineering 105 (5):899-908. |
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Kumar E., Bhatnagar A., Choi J.A., Kumar Umesh, Min B., Kim Y., Song H., Paeng K.J., |
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Jung Y.M., Abou-Shanab R.A.I., Jeon B.H. Perchlorate Removal from aqueous solutions by granular ferric hydroxide (GFH). Chemical Engineering Journal 159: 84-90. |
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Lee M.J., Kim T.H., You G.Y., Min B., Hwang S.J. Reduction of sewage sludge by ball mill |
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pretreatment and Mn catalytic ozonation. KSCE Journal of Civil Engineering 14(5):693-697. |
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2009 |
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Zhang Y., Min B., Huang L., Angelidaki I. Generation of electricity and analysis of microbial |
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communities of wheat straw biomass- powered microbial fuel cells. Applied and Environmental Microbiology 75(11):3389-3395. |
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Thygesen A., Poulsen F.W., Min B., Angelidaki I., Thomsen A.B. The effect of different substrates |
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and humic acids on power generation in microbial fuel cell (MFC) operation. Bioresource Technology 103(3):1186-1191. |
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Hwang J.H., Choi J.A., Abou-Shanab R.A.I., Bhatnagar A., Min B., Song H., Kumar E., Choi J., |
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Lee E. S., Kim Y. J., Um S., Lee D. S., Jeon B.H. Effect of pH and Sulfate concentration on hydrogen production using anaerobic mixed microflora. International Journal of Hydrogen Energy 34(24):9702-9710. |
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Hwang J.H., Cha G.C., Jeong T.Y., Kim D.J., Bhatnagar A., Min B., Song H., Choi J.A., Lee J.H., |
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Jeong D.W., Chung H.K., Choi J., Jeon B.H. Effect of chemical oxygen demand/sulfate ratio and hydraulic retention time (HRT) variation on fermentative hydrogen production. Water Research. 43(14):3525-33. |
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Kongjan P., Min B., Angelidaki I. Bio-hydrogen production from Xylose under |
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hyperthermophilic temperature (70ºC) using mixed cultures. Water Research. 43(5):1414-1424. |
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2008 |
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Liu D., Min B., Angelidaki I. Biohydrogen production from household solid waste (HSW) at |
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hyperthermiphilic temperature (70ºC) – Influence of pH and acetate concentration. International Journal of Hydrogen Energy. 33(23):6985-6992. |
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Bhatnagar A., Minocha A. K., Pudasainee D., Chung H.K., Kim S.H., Kim H.S., Lee G., Min B., |
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Jeon B-H. Vanadium removal from water by waste metal sludge and cement immobilization. Chemical Engineering Journal 144(2):197-204. |
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Min B., Roman O.B., Angelidaki I. Importance of temperature and anodic medium |
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composition on microbial fuel cells (MFC) performance. Biotechnology Letters. 30:1213-1218. |
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Bhatnagar A., Ji M., Choi Y.H., Jung W., Lee S.H., Kim S.J., Lee G., Suk H., Min B., Kim S.H., |
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Jeon B.H., Kang J.W. Removal of nitrate from water by adsorption onto zinc chloride treated activated carbon. Separation Science and Technology. 43 (4):886-907. |
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Min B., Angelidaki I. Innovative microbial fuel cell for electricity production from anaerobic |
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reactors. Journal of Power Sources. 180(1):641-647. |
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2007 |
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Ji M., Choi Y.H., Jung W., Lee S.H., Kim S.J., Min B., Bhatnagar A., Kim S.H., Chung H.K., |
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Jeon B-H., Kang J.W. Adsorption of Nitrate-N onto ZnCl2 – treated Granular Activated Carbon. Geosystem Engineering. 44(6): 492-499. |
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2005 |
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Min B., Kim J., Oh S.E., Regan J.M., Logan B.E. Electricity generation from swine wastewater |
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using microbial fuel cells. Water Research 39(20):4961-4968. |
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Min B., Cheng S., Logan B.E. Electricity generation using salt bridge and membrane |
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microbial fuel cells. Water Research 39(5):942-952. |
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Kim J., Min B., Logan B.E. Evaluation of procedures to acclimate a microbial fuel cell (MFC) |
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for electricity production. Applied Microbiology and Biotechnology. 68(1):23-30. |
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2004 |
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Min B., Logan B.E. Continuous electricity generation from domestic wastewater and |
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pure organic substrates in a flat plate microbial fuel cell (FPMFC). Environ. Sci. Technol. 38(21), 5809 – 5814. |
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Oh S.E., Min B., Logan B.E. Cathode performance as a factor in electricity generation in |
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microbial fuel cells. Environ. Sci. Technol. 38(18), 4900 – 4904. |
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Min B., Evans P.J., Chu A., Logan B.E. Perchlorate removal in sand and plastic media |
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bioreactors. Water Research, 38(1):47-60. |
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Min B., Kohler D., Logan B.E. A simplified HBOD test protocol based on oxygen measurements |
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using a fiber optic (HBOD) probe. Water Environ. Res., 76(1):39-47. |
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2003 |
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Xu J., Song Y., Min B., Steinberg L., Logan B.E. Microbial degradation of perchlorate: |
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principles and applications. Environ. Engin. Sci., 20(5): 405-422. |
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