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Lu, L., Li, Z., Chen, X., Wang, H., Dai, S., Pan, X., Ren, J.Z., Gu, J. Spontaneous solar syngas production from CO2 driven by energetically favorable wastewater microbial anodes. Joule. 2020, 4, 1-13. (SCI, 影响因子 41.248,Cell子刊)
Chen, X., Lobo, F.L., Bian, Y., Lu, L., Chen, X., Tucker, M.P., Wang, Y., Ren, Z.J. Electrical decoupling of microbial electrochemical reactions enables spontaneous H2 evolution. Energy & Environmental Science. 2020, 13: 495-502. (SCI, 影响因子 38.532, JCR及中科院1区)
Wang H., Lu L., Chen H., McKenna A.M., Lu J., Jin S., Zuo Y., Rosario-Ortiz F.L., Ren J.Z., Molecular transformation of crude oil contaminated soil after bioelectrochemical degradation revealed by FT-ICR mass spectrometry. Environmental Science & Technology. 2020, 54, 4, 2500-2509. (SCI, 影响因子 9.028, JCR及中科院1区)
Song, P., Xiao, Y., Ren, J.Z., Brooks, J.P., Lu, L., Zhou, B., Zhou, Y., Freguia, S., Liu, Z., Ning, Z., Yunkai, L. Electrochemical biofilm control by reconstructing microbial community in agricultural water distribution systems. Journal of Hazardous Materials. 2020, 403: 123616. (SCI, 影响因子 10.588, JCR及中科院1区)
Wang, H., Cui, Y., Lu, L., Jin, S., Zuo, Y., Ge, Z., Ren, ZJ. Moisture retention extended enhanced bioelectrochemical remediation of unsaturated soil. Science of The Total Environment. 2020, Accepted. (SCI, 影响因子 7.963, JCR及中科院2区)
Lu, L., Vakki, W., Aguiar, A.J., Xiao, C., Hurst, K., Fairchild, M., Chen, X., Yang, F., Gu, J., Ren, J.Z. Unbiased solar H2 production with current density up to 23 mA/cm2 by swiss-cheese black Si coupled with wastewater bioanode. Energy & Environmental Science. 2019, 12: 1088-1099. (SCI, 影响因子 38.532, JCR及中科院1区)
Lu, L., Gu, J., Ren, Z.J. Comment on “Unbiased solar H2 production with current density up to 23 mA/cm2 by swiss-cheese black Si coupled with wastewater bioanode.” Energy & Environmental Science. 2019, 12: 3412-3414. (SCI, 影响因子 38.532, JCR及中科院1区)
Lu, L., Lobo, F.L., Xing, D., Ren, J.Z. Active harvesting enhances energy recovery and function of electroactive microbiomes in microbial fuel cells. Applied Energy. 2019, 247, 492-502. (SCI, 影响因子 9.746, JCR及中科院1区)
Wang, H., Lu, L.*, Chen, X., Bian, Y., Ren, J.Z. Geochemical and microbial characterizations of flowback and produced water in three shale oil and gas plays in the central and western United States. Water Research. 2019, 164: 114942. (SCI, 影响因子 9.13, JCR及中科院1区)
Wang, H., Lu, L.*, Mao, D., Huang, Z., Cui, Y., Jin, S., Zuo, Y., Ren, J.Z. Dominance of electroactive microbiomes in bioelectrochemical remediation of hydrocarbon-contaminated soils with different textures. Chemosphere. 2019, 235, 776-784. (SCI, 影响因子 7.086, JCR 1区)
Bian, Y., Chen, X., Lu, L., Liang, P., Ren, J.Z. Concurrent nitrogen and phosphorus recovery using flow-electrode capacitive deionization. ACS Sustainable Chemistry & Engineering. 2019, 7, 7844-7850. (SCI, 影响因子 8.198, JCR 1区)
Dudley, H., Lu, L., Ren, J.Z., Bortz, D.M. Sensitivity and bifurcation analysis of a differential-algebraic equation model for a microbial electrolysis cell. SIAM J. Appl. Dyn. Syst., 2019, 18(2), 709–728. (SCI, 影响因子 2.159)
Chen X., Katahira, R., Ge, Z., Lu, L., Hou, D., Peterson, D.J., Tucker, M.P., Chen X., Ren, J.Z. Microbial electrochemical treatment of biorefinery black liquor and resource recovery. Green Chemistry. 2019, 21, 1258-1266. (SCI, 影响因子 10.182, JCR及中科院1区)
Lu, L., Guest, JS., Peters, CA., Zhu, X., Rau, GH., Ren, J.Z. Wastewater treatment for carbon capture and utilization. Nature Sustainability. 2018, 1: 750-758. (SCI, 影响因子 19.346, Nature子刊)
Zhang, B., Qiu, R., Lu, L., Chen, X., He, C., Lu, J., Ren, J.Z. Autotrophic vanadium (V) bio-reduction in groundwater by elemental sulfur and zerovalent iron. Environmental Science & Technology. 2018, 52: 7434-7442. (SCI, 影响因子 9.028, JCR及中科院1区)
Jiang, Y., May, H.D., Lu, L., Liang, P., Huang, X., Ren, J.Z. Carbon dioxide and organic waste valorization by microbial electrosynthesis and electro-fermentation. Water Research. 2018, 149: 42-55. (SCI, 影响因子 11.236, JCR及中科院1区)
Jiang, Y., Lu, L., Wang, H., Shen, R., Ge, Z., Hou, D., Chen, X., Liang, P., Huang, X., Ren, J.Z. Electrochemical control of redox potential arrests methanogenesis and regulates products in mixed culture electro-fermentation. ACS Sustainable Chemistry& Engineering. 2018, 6: 8650–8658. (SCI, 影响因子 8.198, JCR 1区)
Gao, Y., Sun, D., Wang, H., Lu, L., Ma, H., Wang, L., Ren, J.Z., Liang, P., Zhang, X., Chen, X., Huang, X. Urine-powered synergy of nutrient recovery and urine purification in a microbial electrochemical system. Environmental Science: Water Research & Technology. 2018, 4, 1427-1438. (SCI, 影响因子4.251, JCR及中科院1区)
Lu, L., Williams, N., Turner, JA., Maness, PC., Gu, J., Ren, J.Z. Microbial photoelectrosynthesis for self-sustaining hydrogen generation. Environmental Science & Technology. 2017, 51: 13494-13501. (SCI, 影响因子 9.028 JCR及中科院1区)
Chen, X., Gao, Y., Hou, D., Ma, H., Lu, L., Sun, D., Zhang, X., Liang, P., Huang, X., Ren, J.Z. Microbial electrochemical current accelerates urea hydrolysis for nutrient recovery from source-separated urine. Environmental Science & Technology Letters. 2017, 4: 305-310. (SCI, 影响因子 9.027, JCR 1区)
Hou, D., Lu, L., Sun, D., Ge, Z., Huang, X., Cath, T., Ren, J.Z. Microbial electrochemical nutrient recovery in anaerobic osmotic membrane bioreactors. Water Research. 2017, 114: 181-188. (SCI, 影响因子 11.236, JCR及中科院1区)
Huang, Z., Lu, L., Jiang, D., Xing, D., Ren, J.Z. Electrochemical hythane production for renewable energy storage and biogas upgrading. Applied Energy. 2017, 187: 595-600. (SCI, 影响因子 9.746, JCR及中科院1区)
Li, N., An, J., Wang, X., Wang, H., Lu, L., Ren, J.Z. Resin-enhanced rolling activated carbon electrode for efficient capacitive deionization. Desalination. 2017, 419: 20-28. (SCI, 影响因子 9.501, JCR及中科院1区)
Lu, L., Hou, D., Wang, X., Jassby, D., Ren, J.Z. Active H2 harvesting prevents methanogenesis in microbial electrolysis cells. Environmental Science & Technology Letters. 2016, 3: 286-290. (SCI, 影响因子 9.027, JCR 1区)
Lu, L., Fang, Y., Huang, Z., Huang, Y., Ren, J.Z. Self-sustaining carbon capture and mineralization via electrolytic carbonation of coal fly ash. Chemical Engineering Journal. 2016, 306: 330-335. (SCI, 影响因子 13.273, JCR及中科院1区)
Lu, L., Hou, D., Fang, Y., Huang, Y., Ren, J.Z. Nickel based catalysts for highly efficient H2 evolution from wastewater in microbial electrolysis cells. Electrochimica Acta. 2016, 206: 381-387. (SCI, 影响因子 6.215, JCR及中科院1区)
Lu, L., Ren, J.Z. Microbial electrolysis cells for waste biorefinery: A state of the art review. Bioresource Technology. 2016, 215: 254-264.(SCI, 影响因子 9.642, JCR及中科院1区)
Mao, D., Lu, L., Revil, A., Zuo, Y., Hinton, J., Ren, J.Z. Geophysical monitoring of hydrocarbon-contaminated soils remediated with a bioelectrochemical system. Environmental Science & Technology. 2016, 50: 8205-8213. (SCI, 影响因子 9.028, JCR及中科院1区)
Wang, X., Zhou, L., Lu, L., Lobo, F.L, Li, N., Wang, H., Park, J., Ren, J.Z. Alternating current influences anaerobic electroactive biofilm activity. Environmental Science & Technology. 2016, 50: 9169-9176. (SCI, 影响因子 9.028, JCR及中科院1区)
Hou, D., Lu, L., Ren, J.Z. Microbial fuel cells and osmotic membrane bioreactors have mutual benefits for wastewater treatment and energy production. Water Research. 2016, 98: 183-189. (SCI, 影响因子 11.236, JCR及中科院1区)
Huang, Z., Lu, L., Cai, Z., Ren, J.Z. Individual and competitive removal of heavy metals using capacitive deionization. Journal of Hazardous Materials. 2016, 302: 323-331. (SCI, 影响因子 10.588, JCR及中科院1区,工程领域ESI 1%高引论文)
Huang, Z., Jiang, D., Lu, L., Ren, J.Z. Ambient CO2 capture and storage in bioelectrochemically mediated wastewater treatment. Bioresource Technology. 2016, 215: 380-385. (SCI, 影响因子 9.642, JCR及中科院1区)
Lu, G., Zhu, Y., Lu, L., Xu, K., Wang, H., Jin, Y., Ren, J.Z., Liu, Z., Zhang, W. Iron-rich nanoparticle encapsulated, nitrogen doped porous carbon materials as efficient cathode electrocatalyst for microbial fuel cells. Journal of Power Sources. 2016, 315: 302-307. (SCI, 影响因子9.127, JCR及中科院1区)
Lu, L., Huang, Z., Rau, G., Ren, J.Z. Microbial electrolytic carbon capture for carbon negative and energy positive wastewater treatment. Environmental Science& Technology. 2015, 49: 8193-8201. (SCI, 影响因子 9.028, JCR及中科院1区)
Lu, L., Zeng, C., Wang, L., Yin, X., Jin, S., Lu, A., Ren, J.Z. Graphene oxide and H2 production from bioelectrochemical graphite oxidation. Scientific Reports. 2015, 5: 16242. (SCI, 影响因子 4.29, JCR 1区)
Lu, L., Xing, D., Ren, J.Z. Microbial community structure accompanied with electricity production in a constructed wetland plant microbial fuel cell. Bioresource Technology. 2015, 195: 115-121. (SCI, 影响因子 9.642, JCR及中科院1区)
Wang, H., Lu, L., Liu, D., Cui, F., Wang, P. Characteristic changes in algal organic matter derived from Microcystis aeruginosa in microbial fuel cells. Bioresource Technology. 2015, 195: 25-30. (SCI, 影响因子 9.642, JCR及中科院1区)
Wu, D., Xing, D., Lu, L., Wei, M., Liu, B., Ren, N. Ferric iron enhances electricity generation by Shewanella oneidensis MR-1 in MFCs. Bioresource Technology. 2013, 135: 630-634. (SCI, 影响因子 9.642, JCR及中科院1区)
Lu, L., Huggins, T., Jin, S., Zuo, Y., Ren, J.Z. Microbial metabolism and community structure in response to bioelectrochemically enhanced remediation of petroleum hydrocarbon-contaminated soil. Environmental Science& Technology. 2014, 48: 4021-4029. (SCI, 影响因子 9.028, JCR及中科院1区)
Lu, L., Yazdi, H., Jin, S., Zuo, Y., Fallgren, P., Ren, J.Z. Enhanced bioremediation of hydrocarbon-contaminated soil using pilot-scale bioelectrochemical systems. Journal of Hazardous Materials. 2014, 274: 8-15. (SCI, 影响因子 9.038, JCR及中科院1区)
Lu, L., Xing, D., Ren, N. Bioreactor performance and quantitative analysis of methanogenic and bacterial community dynamics in microbial electrolysis cells during large temperature fluctuations. Environmental Science & Technology. 2012, 46(12): 6874-6881. (SCI, 影响因子 9.028, JCR及中科院1区)
Lu, L., Xing, D., Ren, N., Logan, B. E. Syntrophic interactions drive the hydrogen production from glucose at low temperature in microbial electrolysis cells. Bioresource Technology. 2012, 124: 68-76. (SCI, 影响因子 9.642, JCR及中科院1区)
Lu, L., Xing, D., Ren, N. Pyrosequencing reveals highly diverse microbial communities in microbial electrolysis cells involved in enhanced H2 production from waste activated sludge. Water Research. 2012, 46(7): 2425-2434. (SCI, 影响因子 11.236, JCR及中科院1区, 环境/生态领域ESI 1%高引论文)
Lu, L., Xing, D., Liu, B., Ren, N. Enhanced hydrogen production from waste activated sludge by cascade utilization of organic matter in microbial electrolysis cells. Water Research. 2012, 46(4): 1015-1026. (SCI, 影响因子 11.236, JCR及中科院1区)
Wang, H., Liu, D., Lu, L., Zhao, Z., Xu Y., Cui, F. Degradation of algal organic matter using microbial fuel cells and its association with trihalomethane precursor removal. Bioresource Technology. 2012, 116: 80-85. (SCI, 影响因子 9.642, JCR及中科院1区)
Wang, H., Lu, L., Cui, F. Simultaneous bioelectrochemical degradation of algae sludge and energy recovery in microbial fuel cells. RSC Advances. 2012, 2: 7228-7234. (SCI, 影响因子 3.361, JCR 2区)
Wang, S., Huang, L., Gan, L., Quan, X., Li, N., Chen, G., Lu, L., Xing, D., Yang, F. Combined effects of enrichment procedure and non-fermentable or fermentable co-substrate on performance and bacterial community for pentachlorophenol degradation in microbial fuel cells. Bioresource Technology. 2012, 120: 120-126. (SCI, 影响因子 9.642, JCR及中科院1区)
Zhao, X., Xing, D., Liu, B., Lu, L., Zhao, J., Ren, N. The effects of metal ions and L-cysteine on hydA gene expression and hydrogen production by Clostridium beijerinckii RZF-1108. International Journal of Hydrogen Energy. 2012, 37: 13711-13717. (SCI, 影响因子4.939, JCR 2区)
Lu, L., Ren, N., Zhao, X., Wang, H., Wu, D., Xing, D. Hydrogen production, methanogen inhibition and microbial community structures in psychrophilic single-chamber microbial electrolysis cells. Energy & Environmental Science. 2011, 4: 1329-1336. (SCI, 影响因子 38.532, JCR及中科院1区)
Kang, J.-X., Lu, L., Zhan, W., Li, B., Li, D.-S. Ren, Y.-Z., Liu, D.-Q. Photocatalytic pretreatment of oily wastewater from the restaurant by a vacuum ultraviolet/TiO2 system. Journal of Hazardous Materials. 2011, 186(1): 849-854. (SCI, 影响因子 10.588, JCR及中科院1区)
Lu, L., Xing, D., Xie, T., Ren, N., Logan, B. E. Hydrogen production from proteins via electrohydrogenesis in microbial electrolysis cells. Biosensors and Bioelectronics. 2010, 25(12): 2690-2695. (SCI, 影响因子 10.618, JCR及中科院1区)
Lu, L., Ren, N., Xing, D., Logan, B. E. Hydrogen production with effluent from an ethanol-H2-coproducing fermentation reactor using a single-chamber microbial electrolysis cell. Biosensors and Bioelectronics. 2009, 24(10): 3055-3060. (SCI, 影响因子 10.618, JCR及中科院1区)