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          中國考研網(wǎng) 考研網(wǎng) » 院校信息 » 清華大學(xué) » 研究生導(dǎo)師介紹

          清華大學(xué)環(huán)境學(xué)院研究生導(dǎo)師:張瀟源

          分類:導(dǎo)師信息 來源:清華大學(xué)環(huán)境學(xué)院 2019-01-24 相關(guān)院校:清華大學(xué)

          2025考研數(shù)學(xué)全程班 早鳥3班
          26考研全科上岸規(guī)劃營「擇校▪規(guī)劃▪備考」
          清華大學(xué)2025考研專業(yè)課復(fù)習(xí)資料「真題▪筆記▪講義▪題庫」

          姓名張瀟源

          所在單位水環(huán)境保護教研所

          職稱副教授,博士生導(dǎo)師

          郵寄地址 清華大學(xué)環(huán)境學(xué)院,100084

          電子郵箱zhangxiaoyuan@tsinghua.edu.cn

          辦公地點清華大學(xué)中意環(huán)境節(jié)能樓

          教育背景

          2007.9-2012.7 清華大學(xué)環(huán)境學(xué)院,環(huán)境科學(xué)與工程專業(yè),博士

          2003.9-2007.7 中國海洋大學(xué)環(huán)境科學(xué)與工程學(xué)院,環(huán)境工程專業(yè),本科

          工作履歷

          2016.12-今 清華大學(xué)環(huán)境學(xué)院,副教授,博士生導(dǎo)師

          2015.7-2016.12 清華大學(xué)環(huán)境學(xué)院,助理教授,博士生導(dǎo)師

          2014.4-2015.7 清華大學(xué)環(huán)境學(xué)院,講師

          2012.8-2014.4 美國賓夕法尼亞州立大學(xué)土木與環(huán)境工程學(xué)院,博士后

          2008.8-2009.8 美國賓夕法尼亞州立大學(xué)土木與環(huán)境工程學(xué)院,訪問學(xué)者

          學(xué)術(shù)兼職

          ?1. Environmental Science & Technology Letters, Water Research, ChemSusChem, ACS Applied Materials & Interfaces, Scientific Reports, Bioresource Technology, Journal of Power Sources, Journal of Cleaner Production, Electrochemistry Communications, Bioelectrochemistry, Electrochimica Acta, International Journal of Hydrogen Energy, RSC Advances等13個SCI期刊審稿人

          2. 國際水協(xié)會(International Water Association, IWA) 中國青年委員會常務(wù)委員

          3. 國際微生物電化學(xué)技術(shù)協(xié)會(International Society for Microbial Electrochemistry and Technology, ISMET)會員

          4. 國際氫能協(xié)會(International Association for Hydrogen Energy, IAHE)會員

          5. 美國化學(xué)會(American Chemical Society, ACS)會員

          6. 美國環(huán)境工程與科學(xué)教授協(xié)會(Association of Environmental Engineering and Science Professors, AEESP)會員

          7. 中美環(huán)境工程與科學(xué)教授學(xué)者協(xié)會(Chinese-American Professors in Environmental Engineering and Science, CAPEES)會員

          研究領(lǐng)域

          水污染控制技術(shù)

          污水能源化與資源化

          生物電化學(xué)系統(tǒng)

          研究概況

          1. 基于膜生物電化學(xué)系統(tǒng)的污水能量梯級利用與水深度凈化,國家自然科學(xué)基金面上項目,項目負責(zé)人,2018-2021

          2. 膜電極催化臭氧氧化技術(shù),環(huán)境模擬與污染控制國家重點聯(lián)合實驗室聯(lián)合基金,聯(lián)合項目共同負責(zé)人,2018-2020

          3. 界面調(diào)控催化氧化耦合新型生物膜反應(yīng)技術(shù)研發(fā)和示范,國家重點研發(fā)計劃項目子課題,子課題負責(zé)人,2016-2019

          4. 基于污水自持能量的生物電化學(xué)耦合系統(tǒng)污水梯級處理研究,清華大學(xué)自主科研計劃,項目負責(zé)人,2017-2018

          5. 生物電化學(xué)系統(tǒng)新型活性炭空氣陰極開發(fā)與應(yīng)用研究,國家自然科學(xué)基金青年科學(xué)基金項目,項目負責(zé)人,2015-2017

          6. 亞微米級活性炭催化臭氧氧化耦合內(nèi)循環(huán)膜反應(yīng)器的研究,環(huán)境模擬與污染控制國家重點聯(lián)合實驗室專項課題,項目負責(zé)人,2015-2017

          7. 空氣型微生物燃料電池分隔材料、陰極及構(gòu)型優(yōu)化,教育部博士生學(xué)術(shù)新人獎、清華大學(xué)博士生科研創(chuàng)新基金,項目負責(zé)人,2010-2012

          8. 基于微生物燃料電池的可持續(xù)污水處理技術(shù)研究,美國戰(zhàn)略環(huán)境研究與發(fā)展項目,技術(shù)負責(zé)人,2012-2015

          9. 污水處理系統(tǒng)與農(nóng)業(yè)用水的能源可持續(xù)發(fā)展研究,沙特KAUST項目,參與者,2008-2014

          10. 微生物燃料電池同步產(chǎn)電和處理廢水的關(guān)鍵技術(shù),國家863計劃,參與者,2011-2015

          11. 分級好/缺氧耦合生物陰極型微生物燃料電池產(chǎn)電和脫氮技術(shù),國家863計劃,參與者,2010-2011

          12. 新型污水處理系統(tǒng)微生物燃料電池的構(gòu)型優(yōu)化研究,美國國家科學(xué)基金會項目,參與者,2007-2009

          13. 雙筒型微生物燃料電池污水產(chǎn)電與同時脫氮技術(shù)研究,國家863計劃,參與者,2006-2009

          14. 基于微生物燃料電池的創(chuàng)新性污水凈化與產(chǎn)電技術(shù)研究,科技部國際科技合作項目,參與者,2006-2009

          獎勵與榮譽

          1. 國家自然科學(xué)基金委員會第五屆環(huán)境工程青年論壇最佳報告獎,2017

          2. 清華大學(xué)優(yōu)秀班(級)主任一等獎,2017

          3. 清華大學(xué)大學(xué)生研究訓(xùn)練(SRT)計劃優(yōu)秀指導(dǎo)教師一等獎,2017

          4. Water Research杰出審稿人獎,2017

          5. 清華大學(xué)第35屆“挑戰(zhàn)杯”學(xué)生課外學(xué)術(shù)科技作品競賽優(yōu)秀指導(dǎo)教師,2017

          6. 清華大學(xué)環(huán)境學(xué)院教學(xué)先進個人,2017

          7. 清華大學(xué)大學(xué)生研究訓(xùn)練(SRT)計劃優(yōu)秀指導(dǎo)教師一等獎,2016

          8. 清華大學(xué)第33屆“挑戰(zhàn)杯”學(xué)生課外學(xué)術(shù)科技作品競賽優(yōu)秀指導(dǎo)教師,2015

          9. 清華大學(xué)環(huán)境學(xué)院學(xué)生工作先進個人,2015

          10. 入選清華大學(xué)骨干人才支持計劃,2014

          11. 北京市優(yōu)秀博士論文,2013

          12. 清華大學(xué)優(yōu)秀博士論文一等獎,2012

          13. 清華大學(xué)優(yōu)秀博士畢業(yè)生,2012

          14. 清華大學(xué)特等獎學(xué)金,2011

          15. 清華大學(xué)優(yōu)秀輔導(dǎo)員標兵,2011

          16. 百人會英才獎,2011

          17. 教育部博士研究生學(xué)術(shù)新人獎,2010

          18. 上海同濟高廷耀環(huán)?萍及l(fā)展基金會青年博士生杰出環(huán)保人才獎,2010

          學(xué)術(shù)成果

          ?發(fā)表論文:

          1. Xu, T., Wang, Q., Wu, S., Fu, B., Liang, P., Huang, X., Zhang, X. 2018. A novel filtration composite anode configuration of microbial fuel cell for efficient wastewater treatment and enhanced power generation. Journal of Cleaner Production. 178: 305-313.

          2. Dong, H., Liu, X., Xu, T., Wang, Q., Chen, X., Chen, S., Zhang, H., Liang, P., Huang, X., Zhang, X. 2018. Hydrogen peroxide generation in microbial fuel cells using graphene-based air-cathodes. Bioresource Technology, 247(Supplement C), 684-689.

          3. Chen, T., Gu, W., Li, G., Wang, Q., Liang, P., Zhang, X., Huang, X. 2018. Significant enhancement in catalytic ozonation efficacy: From granular to super-fine powdered activated carbon. Frontiers of Environmental Science & Engineering, 12(1), 6.

          4. Zuo, K., Chen, M., Liu, F., Xiao, K., Zuo, J., Cao, X., Zhang, X., Liang, P., Huang, X. 2018. Coupling microfiltration membrane with biocathode microbial desalination cell enhances advanced purification and long-term stability for treatment of domestic wastewater. Journal of Membrane Science, 547, 34-42.

          5. Chen, X., Zhou, H., Zuo, K., Zhou, Y., Wang, Q., Sun, D., Gao, Y., Liang, P., Zhang, X., Ren, Z.J., Huang, X. 2017. Self-sustaining advanced wastewater purification and simultaneous in situ nutrient recovery in a novel bioelectrochemical system. Chemical Engineering Journal, 330, 692-697.

          6. Zhang, X., Wang, Q., Xia, X., He, W., Huang, X., Logan, B.E. 2017. Addition of conductive particles to improve the performance of activated carbon air-cathodes in microbial fuel cells. Environmental Science: Water Research & Technology, 3(5), 806-810. (Featured as Front Cover, Environmental Science: Water Research & Technology HOT Article)

          7. Chen, X., Gao, Y., Hou, D., Ma, H., Lu, L., Sun, D., Zhang, X., Liang, P., Huang, X., Ren, Z.J. 2017. The Microbial Electrochemical Current Accelerates Urea Hydrolysis for Recovery of Nutrients from Source-Separated Urine. Environmental Science & Technology Letters, 4(7), 305-310.

          8. Liang, P., Zhang, C., Jiang, Y., Bian, Y., Zhang, H., Sun, X., Yang, X., Zhang, X., Huang, X. 2017. Performance enhancement of microbial fuel cell by applying transient-state regulation. Applied Energy, 185, Part 1, 582-588.

          9. Ren, S., Li, M., Sun, J., Bian, Y., Zuo, K., Zhang, X., Liang, P., Huang, X. 2017. A Novel Electrochemical Reactor for Nitrogen and Phosphorus Recovery from Domestic Wastewater. Frontiers of Environmental Science & Engineering, 11(4).

          10. Stager, J.L., Zhang, X., Logan, B.E. 2017. Addition of acetate improves stability of power generation using microbial fuel cells treating domestic wastewater. Bioelectrochemistry, 118, 154-160.

          11. Zhang, S., Chang, J., Lin, C., Pan, Y., Cui, K., Zhang, X., Liang, P., Huang, X. 2017. Enhancement of methanogenesis via direct interspecies electron transfer between Geobacteraceae and Methanosaetaceae conducted by granular activated carbon. Bioresource Technology, 245, 132-137.

          12. Zuo, K., Chang, J., Liu, F., Zhang, X., Liang, P., Huang, X. 2017. Enhanced organics removal and partial desalination of high strength industrial wastewater with a multi-stage microbial desalination cell. Desalination, 423, 104-110.

          13. Zhang, X., He, W., Zhang, R., Wang, Q., Liang, P., Huang, X., Logan, B.E., Fellinger, T.-P. 2016. High-performance carbon aerogel air-cathodes for microbial fuel cells. ChemSusChem, 9(19), 2788-2795. (Featured as ChemSusChem VIP Paper, Front Cover)

          14. Wang, Q., Zhang, X., Lv, R., Chen, X., Xue, B., Liang, P., Huang, X. 2016. Binder-free nitrogen-doped graphene catalyst air-cathodes for microbial fuel cells. Journal of Materials Chemistry A, 4(32), 12387-12391. (Featured as Front Cover)

          15. Zhang, X., He, W., Yang, W., Liu, J., Wang, Q., Liang, P., Huang, X., Logan, B.E. 2016. Diffusion layer characteristics for increasing the performance of activated carbon air cathodes in microbial fuel cells. Environmental Science: Water Research & Technology, 2(2), 266-273. (Featured as Front Cover, Environmental Science: Water Research & Technology Top 10 Most Accessed Article in 2016)

          16. Chen, X., Sun, H., Liang, P., Zhang, X., Huang, X. 2016. Optimization of membrane stack configuration in enlarged microbial desalination cells for efficient water desalination. Journal of Power Sources, 324, 79-85.

          17. Chen, C.-Y., Tang, C., Wang, H.-F., Chen, C.-M., Zhang, X., Huang, X., Zhang, Q. 2016. Oxygen reduction reaction on graphene in an electro-Fenton system: In situ generation of H2O2 for the oxidation of organic compounds. ChemSusChem, 9(10), 1194-1199.

          18. Ailijiang, N., Chang, J., Liang, P., Li, P., Wu, Q., Zhang, X., Huang, X. 2016. Electrical stimulation on biodegradation of phenol and responses of microbial communities in conductive carriers supported biofilms of the bioelectrochemical reactor. Bioresource Technology, 201, 1-7.

          19. Ailijiang, N., Chang, J., Wu, Q., Li, P., Liang, P., Zhang, X., Huang, X. 2016. Phenol Degradation by Suspended Biomass in Aerobic/Anaerobic Electrochemical Reactor. Water, Air, & Soil Pollution, 227(7), 233.

          20. Chen, X., Liang, P., Zhang, X., Huang, X. 2016. Bioelectrochemical systems-driven directional ion transport enables low-energy water desalination, pollutant removal, and resource recovery. Bioresource Technology, 215, 274-284.

          21. He, W., Wallack, M.J., Kim, K.-Y., Zhang, X., Yang, W., Zhu, X., Feng, Y., Logan, B.E. 2016. The effect of flow modes and electrode combinations on the performance of a multiple module microbial fuel cell installed at wastewater treatment plant. Water Research, 105, 351-360.

          22. He, W., Zhang, X., Liu, J., Zhu, X., Feng, Y., Logan, B.E. 2016. Microbial fuel cells with an integrated spacer and separate anode and cathode modules. Environmental Science: Water Research & Technology, 2(1), 186-195.

          23. Wu, Q., Chang, J., Yan, X., Ailijiang, N., Fan, Q., Wang, S., Liang, P., Zhang, X., Huang, X. 2016. Electrical stimulation enhanced denitrification of nitrite-dependent anaerobic methane-oxidizing bacteria. Biochemical Engineering Journal, 106, 125-128.

          24. Wu, S., Li, H., Zhou, X., Liang, P., Zhang, X., Jiang, Y., Huang, X. 2016. A novel pilot-scale stacked microbial fuel cell for efficient electricity generation and wastewater treatment. Water Research, 98, 396-403.

          25. Yan, X., Wu, Q., Sun, J., Liang, P., Zhang, X., Xiao, K., Huang, X. 2016. Hydrodynamic optimization of membrane bioreactor by horizontal geometry modification using computational fluid dynamics. Bioresource Technology, 200, 328-334.

          26. Zhang, C., Liang, P., Yang, X., Jiang, Y., Bian, Y., Chen, C., Zhang, X., Huang, X. 2016. Binder-free graphene and manganese oxide coated carbon felt anode for high-performance microbial fuel cell. Biosensors and Bioelectronics, 81, 32-38.

          27. Zuo, K., Liu, F., Ren, S., Zhang, X., Liang, P., Huang, X. 2016. A novel multi-stage microbial desalination cell for simultaneous desalination and enhanced organics and nitrogen removal from domestic wastewater. Environmental Science: Water Research & Technology, 2(5), 832-837.

          28. Zhang, X., He, W., Ren, L., Stager, J., Evans, P.J., Logan, B.E. 2015. COD removal characteristics in air-cathode microbial fuel cells. Bioresource Technology, 176, 23-31.

          29. Chen, X., Sun, D., Zhang, X., Liang, P., Huang, X. 2015. Novel self-driven microbial nutrient recovery cell with simultaneous wastewater purification. Scientific Reports, 5, 15744.

          30. Li, P., Ailijiang, N., Cao, X., Lei, T., Liang, P., Zhang, X., Huang, X., Teng, J. 2015. Pretreatment of coal gasification wastewater by adsorption using activated carbons and activated coke. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 482, 177-183.

          31. Wang, S., Liang, S., Liang, P., Zhang, X., Sun, J., Wu, S., Huang, X. 2015. In-situ combined dual-layer CNT/PVDF membrane for electrically-enhanced fouling resistance. Journal of Membrane Science, 491, 37-44.

          32. Zhang, J., Satti, A., Chen, X., Xiao, K., Sun, J., Yan, X., Liang, P., Zhang, X., Huang, X. 2015. Low-voltage electric field applied into MBR for fouling suppression: Performance and mechanisms. Chemical Engineering Journal, 273, 223-230.

          33. Zuo, K., Liang, S., Liang, P., Zhou, X., Sun, D., Zhang, X., Huang, X. 2015. Carbon filtration cathode in microbial fuel cell to enhance wastewater treatment. Bioresource Technology, 185, 426-430.

          34. Zhang, X., Pant, D., Zhang, F., Liu, J., He, W., Logan, B.E. 2014. Long-term performance of chemically and physically modified activated carbons in air cathodes of microbial fuel cells. ChemElectroChem, 1(11), 1859-1866. (Featured as Frontispiece)

          35. Zhang, X., Xia, X., Ivanov, I., Huang, X., Logan, B.E. 2014. Enhanced activated carbon cathode performance for microbial fuel cell by blending carbon black. Environmental Science & Technology, 48(3), 2075-2081.

          36. Hoskins, D.L., Zhang, X., Hickner, M.A., Logan, B.E. 2014. Spray-on polyvinyl alcohol separators and impact on power production in air-cathode microbial fuel cells with different solution conductivities. Bioresource Technology, 172, 156-161.

          37. Liu, J., Zhang, F., He, W., Zhang, X., Feng, Y., Logan, B.E. 2014. Intermittent contact of fluidized anode particles containing exoelectrogenic biofilms for continuous power generation in microbial fuel cells. Journal of Power Sources, 261(0), 278-284.

          38. Luo, X., Zhang, F., Liu, J., Zhang, X., Huang, X., Logan, B.E. 2014. Methane production in microbial reverse-electrodialysis methanogenesis cells (MRMCs) using thermolytic solutions. Environmental Science & Technology, 48(15), 8911-8918.

          39. Ren, L., Zhang, X., He, W., Logan, B.E. 2014. High current densities enable exoelectrogens to outcompete aerobic heterotrophs for substrate. Biotechnology and Bioengineering, 111(11), 2163-2169.

          40. Zhang, X., Liang, P., Shi, J., Wei, J., Huang, X. 2013. Using a glass fiber separator in a single-chamber air-cathode microbial fuel cell shortens start-up time and improves anode performance at ambient and mesophilic temperatures. Bioresource Technology, 130(0), 529-535.

          41. Zhang, X., Shi, J., Liang, P., Wei, J., Huang, X., Zhang, C., Logan, B.E. 2013. Power generation by packed-bed air-cathode microbial fuel cells. Bioresource Technology, 142(0), 109-114.

          42. Luo, X., Nam, J.-Y., Zhang, F., Zhang, X., Liang, P., Huang, X., Logan, B.E. 2013. Optimization of membrane stack configuration for efficient hydrogen production in microbial reverse-electrodialysis electrolysis cells coupled with thermolytic solutions. Bioresource Technology, 140(0), 399-405.

          43. Xia, X., Zhang, F., Zhang, X., Liang, P., Huang, X., Logan, B.E. 2013. Use of pyrolyzed iron ethylenediaminetetraacetic acid modified activated carbon as air–cathode catalyst in microbial fuel cells. ACS Applied Materials & Interfaces, 5(16), 7862-7866.

          44. Chen, X., Liang, P., Wei, Z., Zhang, X., Huang, X. 2012. Sustainable water desalination and electricity generation in a separator coupled stacked microbial desalination cell with buffer free electrolyte circulation. Bioresource Technology, 119(0), 88-93.

          45. Luo, X., Cao, X., Mo, Y., Xiao, K., Zhang, X., Liang, P., Huang, X. 2012. Power generation by coupling reverse electrodialysis and ammonium bicarbonate: Implication for recovery of waste heat. Electrochemistry Communications, 19(0), 25-28.

          46. Zhang, X., Cheng, S., Liang, P., Huang, X., Logan, B.E. 2011. Scalable air cathode microbial fuel cells using glass fiber separators, plastic mesh supporters, and graphite fiber brush anodes. Bioresource Technology, 102(1), 372-375.

          47. Zhang, X., Sun, H., Liang, P., Huang, X., Chen, X., Logan, B.E. 2011. Air-cathode structure optimization in separator-coupled microbial fuel cells. Biosensors and Bioelectronics, 30(1), 267-271.

          48. Wang, X., Cheng, S., Zhang, X., Li, X.-y., Logan, B.E. 2011. Impact of salinity on cathode catalyst performance in microbial fuel cells (MFCs). International Journal of Hydrogen Energy, 36(21), 13900-13906.

          49. Zhang, X., Cheng, S., Huang, X., Logan, B.E. 2010. The use of nylon and glass fiber filter separators with different pore sizes in air-cathode single-chamber microbial fuel cells. Energy & Environmental Science, 3(5), 659 - 664.

          50. Zhang, X., Cheng, S., Huang, X., Logan, B.E. 2010. Improved performance of single-chamber microbial fuel cells through control of membrane deformation. Biosensors and Bioelectronics, 25(7), 1825-1828.

          51. Zhang, X., Cheng, S., Wang, X., Huang, X., Logan, B.E. 2009. Separator characteristics for increasing performance of microbial fuel cells. Environmental Science & Technology, 43(21), 8456-8461.

          52. Cao, X., Huang, X., Liang, P., Boon, N., Fan, M., Zhang, L., Zhang, X. 2009. A completely anoxic microbial fuel cell using a photo-biocathode for cathodic carbon dioxide reduction. Energy & Environmental Science, 2(5), 498-501.

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