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                中國考研網(wǎng) 考研網(wǎng) » 院校信息 » 蘭州大學 » 研究生導師介紹

                蘭州大學資源環(huán)境學院導師介紹:程修文

                分類:導師信息 來源:中國考研網(wǎng) 2015-07-25 相關院校:蘭州大學

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                姓 名  程修文
                 
                性 別  男
                最高學歷  研究生
                最高學位 博士
                職 務  
                職 稱  副教授
                聯(lián)系方式  chengxw@lzu.edu.cn
                所在部門  環(huán)境工程研究所
                研究方向  廢水處理與資源化/固體廢棄物處理及其資源化技術
                學習經歷 2004.9—2008.7 黑龍江大學化學化工與材料學院環(huán)境科學專業(yè) 理學學士
                2008.9—2011.7 黑龍江大學化學化工與材料學院環(huán)境科學專業(yè) 理學碩士
                2011.9—2014.7 哈爾濱工業(yè)大學市政環(huán)境工程學院環(huán)境科學與工程系 工學博士
                工作經歷 工作經歷 2014.7—至今 蘭州大學資源環(huán)境學院 副教授
                主講課程  
                學術兼職  Journal of Hazardous Materials, Applied Catalysis B: Environmental, Journal of Materials Science, Journal of Alloys and Compounds, Applied Catalysis A: General, Electrochimica Acta等國際期刊特約審稿人
                研究成果  
                獲得榮譽 2014獲哈爾濱工業(yè)大學優(yōu)秀畢業(yè)生
                2014年獲哈爾濱工業(yè)大學市政環(huán)境工程學院“優(yōu)秀共產黨員”
                2013年獲教育部研究生國家獎學金
                2013年獲哈爾濱工業(yè)大學三好學生
                2013年獲哈爾濱工業(yè)大學“周定獎學金”
                2011年獲黑龍江大學碩士優(yōu)秀學位論文
                在研項目  1 參與國家自然科學基金面上項目:量子點修飾TiO2納米管陣列光電極制備及可見光下催化性能與機理研究(51178138)
                2參與國家自然科學基金青年基金項目:漂浮式多孔晶態(tài)TiO2陶瓷膜太陽光催化劑的構筑及其去除浮油機制(21106035)
                3 參與國家創(chuàng)新群體項目:城市水質轉化規(guī)律與保障技術(51121062)
                4 參與環(huán)保部公益項目:微生物制藥菌渣處置和利用過程風險控制技術研究(201209024)
                5 參與中國清潔生產機制贈款項目:黑龍江省2005年和2010年溫室氣體清單編制—廢棄物處理
                6 參與黑龍江省科技廳重點實驗室開放課題項目:CdS量子點修飾TiO2納米管陣列光電極制備及降解有機物機制研究
                7 參與黑龍江省普通高等學校青年學術骨干支持計劃項目:羥基自由基的制備及其降解有機污染物的研究(1151G034)
                8 參與城市水資源與水環(huán)境國家重點實驗室課題:鈀修飾泡沫鎳電極制備及其電催化還原水中氯酚的研究(2010DX03)
                9 參與城市水資源與水環(huán)境國家重點實驗室課題:聚合物修飾復合電極的制備及電催化還原氯酚性能及機理研究(QA201416)
                10 參與企業(yè)委托課題:哈爾濱市生活垃圾填埋場的環(huán)境行為研究
                11 參與企業(yè)委托課題:哈爾濱市餐廚垃圾性能分析
                發(fā)表論文  
                [1] Xiuwen Cheng, Huiling Liu, Qinghua Chen, Junjing Li, Pu Wang, Preparation of graphene film decorated TiO2 nano-tube photoelectrode and its enhanced visible light photocatalytic mechanism, Carbon, 2014, 66: 450-458. (JCR一區(qū), SCI, IF=6.16)
                [2] Xiuwen Cheng, Huiling Liu, Qinghua Chen, Junjing Li, Pu Wang, Preparation and characterization of palladium nano-crystallite decorated TiO2 nano-tubes photoelectrode and its enhanced photocatalytic efficiency for degradation of diclofenac, Journal of Hazardous Materials, 2013, 254-255: 141-148. (JCR一區(qū), SCI, IF=4.331)
                [3] Xiuwen Cheng, Huiling Liu, Qinghua Chen, Junjing Li, Pu Wang, Enhanced photoelectrocatalytic performance for degradation of diclofenac and mechanism with TiO2 nano-particles decorated TiO2 nano-tubes s photoelectrode, Electrochimica Acta, 2013, 108: 203-210. (JCR一區(qū), SCI, IF=4.086).
                [4] Xiuwen Cheng, Huiling Liu, Qinghua Chen, Junjing Li, Pu Wang, Construction of N, S codoped TiO2 NCs Decorated TiO2 Nano-tubes s Photoelectrode and Its Enhanced Visible Light Photocatalytic Mechanism, Electrochimica Acta, 2013, 103: 134-142. (JCR一區(qū), SCI, IF=4.086).
                [5] Xiuwen Cheng, Guoping Pan, Xiujuan Yu, Tong Zheng, Preparation of CdS NCs Decorated TiO2 Nano-tubes s Photoelectrode and Its Enhanced Photoelectrocatalytic Performance and Mechanism, Electrochimica Acta, 2013, 105: 535-541. (JCR一區(qū), SCI, IF=4.086).
                [6] Xiuwen Cheng, Xiujuan Yu, Zipeng Xing, Characterization and mechanism analysis of Mo-N-co-doped TiO2 nano-photocatalyst and its enhanced visible activity, Journal of Colloid and Interface Science, 2012, 372: 1-5. (SCI, IF=3.17)
                [7] Xiuwen Cheng, Huiling Liu, Xiujuan Yu, Qinghua Chen, Junjing Li, Pu Wang, Ahmad Umar, Qiang Wang, Preparation of Highly Ordered TiO2 Nanotube .Photoelectrode for the Photoelectrocatalytic Degradation of Methyl Blue: Activity and Mechanism Study, Science of Advanced Materials, 2013, 5: 1563-1570. (SCI, IF=2.908)
                [8] Xiuwen Cheng, Huiling Liu, Qinghua Chen, Junjing Li, Xiujuan Yu, Comparative study of photocatalytic performance on different TiO2 nano-tubes s, Journal of Alloys and Compounds, 2013, 566: 120-124. (SCI, IF=2.726)
                [9] Xiuwen Cheng, Xiujuan Yu, Zipeng Xing, Photoelectric properties of cystine-modified nano-TiO2 with visible-light response, Journal of Alloys and Compounds, 2012, 523: 22-24. (SCI, IF=2.39)
                [10] Xiuwen Cheng, Xiujuan Yu, Zipeng Xing, Lisha Yang, Synthesis and Characterization of N-doped TiO2 and Its Enhanced Visible-light Photocatalytic Activity, Arabian Journal of Chemistry , 2012 (in press, SCI, IF=2.684).
                [11] Xiuwen Cheng, Xiujuan Yu, Zipeng Xing, Enhanced photoelectric property and visible activity of nitrogen doped TiO2 synthesized from different nitrogen dopants, Applied Surface Science, 2013, 268: 204-208. (SCI, IF=2.538)
                [12] Xiuwen Cheng, Xiujuan Yu, Zipeng Xing, One-step synthesis of Fe-N-S-tri-doped TiO2 catalyst and its enhanced visible light photocatalytic activity, Materials Research Bulletin, 2012, 47: 3804-3809. (SCI, IF=2.105)
                [13] Xiuwen Cheng, Xiujuan Yu, Zipeng Xing, Characterization and mechanism analysis of N doped TiO2 with visible light response and its enhanced visible activity, Applied Surface Science, 2012, 258: 3244-3248. (SCI, IF=2.112)
                [14] Xiuwen Cheng, Xiujuan Yu, Zipeng Xing, One-step synthesis of visible active C-N-S-tridoped TiO2 photocatalyst from biomolecule cystine, Applied Surface Science, 2012, 258: 7644-7650. (SCI, IF=2.112)
                [15] Xiuwen Cheng, Xiujuan Yu, Zipeng Xing, Biying Li, Lei Yan, Zipeng Xing, Junjing Li, Enhanced visible light activity and mechanism of TiO2 codoped with molybdenum and nitrogen, Materials Science and Engineering B, 2013, 178: 425-430. (SCI, IF=2.122)
                [16] Xiuwen Cheng, Xiujuan Yu, Zipeng Xing, Lisha Yang, Enhanced Visible Light Photocatalytic Activity of Mesoporous Anatase TiO2 Codoped with Nitrogen and Chlorine, International Journal of Photoenergy, 2012, 2012:1-6. (SCI, IF=2.663)
                [17] Xiuwen Cheng, Xiujuan Yu, Synthesis and Characterization of C-N-S-tridoped TiO2 Nano-crystalline Photocatalyst and Its Photocatalytic Activity for Degradation of Rhodamine B, Journal of Physics and Chemistry of Solids, 2013, 74: 684-690. (SCI, IF=1.594)
                [18] Xiuwen Cheng, Guoping Pan, Xiujuan Yu, Tong Zheng, Ahmad Umar, Qiang Wang, Effect of Post-annealing Treatment on Photocatalytic and Photoelectrocatalytic Performances of TiO2 Nano-tube s Photoelectrode, Journal of Nanoscience and Nanotechnology, 2013, 13: 5580-5585 (SCI, IF=1.339).
                [19] 程修文, 劉惠玲, 李君敬, 陳清華, 于秀娟, 潘國平. Pd納米晶修飾TiO2納米管陣列光電極的制備及性能, 哈爾濱工業(yè)大學學報, 2013, 45: 36-40.(EI)
                [20] 程修文, 于秀娟. C-N-S-TiO2光催化劑的制備、表征及其性能, 應用化學, 2013, 29 (3): 291-296.
                [21] 程修文,劉惠玲,王璞,陳清華,張健. 石墨烯薄膜修飾TiO2納米管光電極制備及性能,哈爾濱工業(yè)大學學報,2014, 6: 30-33.(EI)
                [22] Qi Zhao, Xiuwen Cheng, Juan Wu, Xiujuan Yu, Sulfur-free exfoliated graphite with large exfoliated volume: preparation, characterization and its adsorption performance, Journal of Industrial and Engineering Chemistry, 2014, 20: 598-605. (SCI, IF=2.145, 共同第一作者)
                [23] 于秀娟, 程修文. 胱氨酸改性TiO2可見光下催化活性及催化機理. 無機化學學報,2010, 26(12):2150-2154. (SCI, IF=0.628)
                [24] 于秀娟, 程修文, 楊莉莎. TiO2-N-S光催化劑的制備、表征及性能研究, 功能材料,2011, 42(增刊): 11-14. (EI)
                [25] 李碧瑩, 程修文, 閆雷,于秀娟, Mo-N-TiO2光催化劑的制備、表征及其活性提高機制, 環(huán)境工程學報, 2012, 6(8): 2517-2521.
                [26] Biying Li, Xiuwen Cheng, Xiujuan Yu, Lei Yan, Zipeng Xing, Synthesis and Characterization of Fe-N-S-tri-Doped TiO2 Photocatalyst and Its Enhanced Visible Light Photocatalytic Activity, Advances in Materials Science and Engineering, 2012, 2012: 1-5. (SCI, IF=0.5)
                [27] 潘國平, 程修文,于秀娟, 鄭彤, TiO2納米管光電極的制備及其光電催化性能研究,稀有金屬材料科學與工程, 2014, 43(7): 1713-1716.(SCI, IF=0.164)
                [28] 于秀娟, 楊麗莎, 程修文, N-Cl-C共摻雜TiO2可見光催化劑的制備及催化機理,材料科學與工程學報, 2012, 30(6): 810-814.(中文核心)
                [29] Junjing Li, Huiling Liu, Xiuwen Cheng, Yanjun Xin, Wenxian Xu, Zhenpeng Ma, Jun Ma, Nanqi Ren, Qing Li, Stability of Palladium-Polypyrrole-Foam Nickel Electrode and Its Electrocatalytic Hydrodechlorination for Dichlorophenol Isomers, Industrial & Engineering Chemistry Research, 2012, 51: 15557-15563. (SCI, IF=2.237)
                [30] Junjing Li, Huiling Liu, Xiuwen Cheng, Qinghua Chen, Yanjun Xin, Zhenpeng Ma, Wenxian Xu, Jun Ma, Nanqi Ren, Preparation and characterization of palladium/polypyrrole/foam nickel electrode for electrocatalytic hydrodechlorination, Chemical Engineering Journal, 2013, 225: 489-498. (SCI, IF=4.058)
                [31] 李君敬, 劉惠玲, 程修文, 陳清華, 王執(zhí)偉. PPY摻雜離子對用于電催化脫氯的Pd/PPY/Ni電極的影響, 哈爾濱工業(yè)大學學報, 2013, 45: 48-52. (EI)
                [32] 李君敬, 劉惠玲, 程修文. 氯酚廢水處理方法研究進展, 工業(yè)水處理, 2013 33(9): 1-5.
                [33] Qinghua Chen, Huiling Liu, Yanjun Xin, Xiuwen Cheng, Junjing Li, Enhanced photoelectrochemical and photocatalytic performance of single- crystalline anatase TiO2 (101) nanobelts s originating from nanotubes s, Applied Surface Science, 2013, 264: 476-484. (SCI, IF=2.538).
                [34] 薛鵬琦, 劉惠玲, 張健, 程修文, 鄧慧娟. Ni-Fe/泡沫鎳催化還原體系脫氯工藝參數(shù)的優(yōu)化及表征,環(huán)境保護科學, 2013, 39: 14-17.
                [35] Xiujuan Yu, Juan Wu, Qi Zhao, Xiuwen Cheng, Preparation and characterization of sulfur-free exfoliated graphite with large exfoliated volume, Materials Letters, 2012, 73: 11-13. (SCI, IF=2.307).
                [36] Qinghua Chen, Huiling Liu, Yanjun Xin, Xiuwen Cheng, Jian Zhang, Junjing Li, Pu Wang, Huijuan Li, Controlled  anodic  growth of TiO2 nanobelts and assessment of photoelectrochemical and   photocatalytic properties, Electrochimica  Acta, 2013, 99: 152-160. (JCR一區(qū), SCI, IF=4.086).
                [37] Qinghua Chen, Huiling Liu, Yanjun Xin, Xiuwen Cheng, TiO2 nanobelts – Effect of calcination temperature on optical,photoelectrochemical and photocatalytic properties, Electrochimica  Acta, 2013, 111: 284-291. (JCR一區(qū), SCI, IF=4.086).
                [38] Qinghua Chen, Huiling Liu, Yanjun Xin, Xiuwen Cheng, Coupling immobilized TiO2nanobelts and Au nanoparticles for enhanced photocatalytic and photoelectrocatalytic activity and mechanism insights , Chemical Engnieering Journal, 2014, 241: 145-154.  (SCI, IF=4.058)
                [39] Xiujuan Yu, Yuhang Zhang, Xiuwen Cheng, Preparation and photoelectrochemical performance of expanded graphite/TiO2 composite, Electrochimica Acta, 2014, 137: 668-675.
                [40] Pu Wang, Huiling Liu, Huan Fu, Xiuwen Cheng, Bing Wang, Qinghua Cheng, Jian Zhang, Effect of Heat Treatments on Stability of Penicilling in Waste Penicillium Chrysogenum, Advances in Chemical Science, 2013, 2: 79-82.
                [41]于秀娟, 李顯偉, 萬家峰, 程修文, Fe3O4@TiO2-膨脹石墨的制備及其光催化性能研究, 工業(yè)水處理, 2014, 34(3): 68-70.
                [42] Xiuwen Cheng, Huiling Liu, Qinghua Chen, Junjing Li, Xiujuan Yu, Preparation and photoelectrocatalytic performance of TiO2 nano-tubes s electrode, 2013 International conference on Nanotechnology and Future Material Engineering, Jan 19-20, 2013, Wuhan, China. (Published by Advanced Materials Research and Indexed by EI)
                [43] Xiuwen Cheng, Xiujuan Yu, Zipeng Xing, Jiafeng Wan, Enhanced Photocatalytic Activity of Nitrogen Doped TiO2 Anatase Nano-Particle under Simulated Sunlight Irradiation, International Conference on Future Energy, Environment and Materials, Apr 12-13, 2013, Hong Kong, China. (Published by Energy Procedia and Indexed by ISTP)
                [44] Jiafeng Wan, Xiuwen Cheng, Xiujuan Yu, Zipeng Xing, Preparation and Characterization of Visible-light Responsible N-S-codoped TiO2 Photocatalyst and its Photocatalytic Activity, The 9th China International Nanoscience and Technology Xi’an Symposium, November 15-19, 2010, Xi’an, China. (Oral Presentation)
                [45] Xiujuan Yu, Juan Wu, Qi Zhao, Xiuwen Cheng, Study on the sorption of exfoliated graphite prepared by microwave irradiation, International Conference on Energy and Environmental Technology, Oct 16-18, 2009, Guilin, China. (Published by Advanced Materials Research and Indexed by EI and ISTP)
                [46] Li Junjing, Liu Huiling, Wang Zhiwei, Cheng Xiuwen, Study on morphologies of palladium coated foam nickel cathodes for dechlorination of 2, 4-dichlorophenol, International Meeting on Opto-Electronics Engineering and Materials Research (OEMR 2012), Jul 27-29, 2012, Shenyang, China. (Published by Advanced Materials Research and Indexed by EI)

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