发文时间:2020-09-04 撰稿人:

Shi, C., Hu, Y., Kobayashi, T., Zhang, N., Kuramochi, H., Zhang, Z., Xu, K.Q., 2019a. Anaerobic degradation of deca-brominated diphenyl ether contaminated in products: Effect of temperature on degradation characteristics. Bioresource technology 283, 28-35.(Impact Factor =5.807)

Shi, C., Hu, Y., Kobayashi, T., Zhang, N., Zhang, Z., Kuramochi, H., Matsukami, H., Zhang, Z., Xu, K.Q., 2019b. Distribution characteristics of poly-brominated diphenyl ethers between water and dissolved organic carbon from anaerobic digestate: Effects of digestion conditions. Chemosphere 223, 358-365.(Impact Factor =4.427)

Shi, C., Zang, G.-L., Zhang, Z., Sheng, G.-P., Huang, Y.-X., Zhao, G.-X., Wang, X.-K., Yu, H.-Q., 2014. Synthesis of Layered MnO2 Nanosheets for Enhanced Oxygen Reduction Reaction Catalytic Activity. Electrochimica Acta 132, 239-243.(Impact Factor =5.116)

Hu, Y., Shi, C., Kobayashi, T., Xu, K.Q., An integrated anaerobic system for on-site treatment of wastewater from food waste disposer, Environmental Science and Pollution Research, accepted, 2019. (Impact Factor = 2.914)

Han, H.X., Shi, C., Zhang, N., Yuan, L., Sheng, G.P., 2018. Visible-light-enhanced Cr(VI) reduction at Pd-decorated silicon nanowire photocathode in photoelectrocatalytic microbial fuel cell. Science of the total environment 639, 1512-1519.(Impact Factor = 5.589)

Han, H.-X., Shi, C., Yuan, L., Sheng, G.-P., 2017. Enhancement of methyl orange degradation and power generation in a photoelectrocatalytic microbial fuel cell. Applied Energy 204, 382-389.(Impact Factor = 7.900)

Zhang, N., Zang, G.L., Shi, C., Yu, H.Q., Sheng, G.P., 2016. A novel adsorbent TEMPO-mediated oxidized cellulose nanofibrils modified with PEI: Preparation, characterization, and application for Cu(II) removal. Journal of hazardous materials 316, 11-18.(Impact Factor = 7.910)

Zang, G.-L., Sheng, G.-P., Shi, C., Wang, Y.-K., Li, W.-W., Yu, H.-Q., 2014. A bio-photoelectrochemical cell with a MoS3-modified silicon nanowire photocathode for hydrogen and electricity production. Energy & Environmental Science 7, 3033-3039.(Impact Factor = 33.250)

Zang, G.L., Sheng, G.P., Li, W.W., Tong, Z.H., Zeng, R.J., Shi, C., Yu, H.Q., 2012. Nutrient removal and energy production in a urine treatment process using magnesium ammonium phosphate precipitation and a microbial fuel cell technique. Physical chemistry chemical physics: PCCP 14, 1978-1984.(Impact Factor = 3.567)

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