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[专家学者] 东南大学化学化工学院任丽丽

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发表于 2018-6-2 17:28:39 | 只看该作者 回帖奖励 |倒序浏览 |阅读模式
任丽丽                 
博士生导师 化学化工学院                 
联系电话:025-52090619                     
主页网址:http://jszy.seu.edu.cn/_s2589/main.psp                                          
办公地点:化工楼227                                                电子邮箱:liliren@seu.edu.cn                                         
通讯地址:                                                  
研究方向
1.多孔材料的制备。特别是气凝胶的制备;气凝胶(aerogels)是一种以纳米量级超微颗粒相互聚集构成的纳米多孔网络结构,并在网络孔隙中充满了气态分散介质,孔隙率在80%-99.8%,孔径通常在1-100纳米之间,被人们形象地称为“冻烟”。气凝胶能很好地复制液态凝胶的结构,只不过分散介质由液体变为气体,从而决定了其独特的物理化学性质。但在实际干燥过程中,由于气液相表面张力的影响,很难得到表面完好的整块气凝胶,我们课题组长期致力于气凝胶干燥技术的研究,采用独特的有机溶剂升华干燥方法成功制备了一系列无机氧化物气凝胶。
2. 多相催化的研究。1)催化剂的制备研究;2)反应过程研究,主要是污染物的脱除,包括氧化氮的脱除、有机氯化物的脱除和硫化氢的分解;3)反应辅助手段的研究,主要是微波辅助催化。
荣誉奖励
2002年,中国科学院院长优秀奖;
2009年,东南大学青年教师授课三等奖;
2010年,南京新城科技园奖教金;
2011年,东南大学和谐科技奖教金;
2012年,东南大学飞航实业奖教金。
学术成果
发表的代表性论文:
[1]Gao Bingying, Ma Yusha, Mei Jing, Lu Shaoxiang, *Ren Lili. Functional nanocomposite wet gels and aerogels induced by transition/lanthanide metal ions coordination, Chemical Engineering Journal, 331: 597-605, 2018.
[2]Mei Jing, Shao Yamin, Lu Shaoxiang, Ma Yusha, *Ren Lili. Synthesis of Al2O3 with tunable pore size for efficient formaldehyde oxidation degradation performance, Journal of Materials Science, 53: 3375-3387, 2018.
[3]Gao Bingying, Yuan Guojun, *Ren Lili. Polydiacetylene-functionalized alumina aerogels as visually observable sensing materials for detecting VOCs concentration, Journal of Materials Science, 53: 6698-6706, 2018.
[4]*Ren Lili, He He. Effect of the addition of graphite oxide on the morphology of the alumina aerogels, AIP Advances, 8(015208): 1-6, 2018.
[5]Xu Hanghui; Lu Shaoxiang; *Ren Lili, The regulatory effect of polyvinyl pyrrolidone on the microstructure and catalytic activity of nickel phosphides, International Journal of Hydrogen Energy, 42: 18383-18388, 2017.
[6]Lu Shaoxiang, Xu Hanghui, Gao Bingying, *Ren Lili. A simple method to freely adjust the crystalline phase and micro-morphology of NixPy compounds, New Journal of Chemistry, 41: 8497-8502, 2017.
[7]He He, Gao Bingying, *Ren Lili. Effect of the addition of graphite oxide on the morphology of boehmite crystals, Inorganic Chemistry Communications, 83: 20-23, 2017.
[8]Gao Bingying, Lu Shaoxiang, Kalulu Mulenga, Oderinde Olayinka, *Ren Lili. Synthesis of silica aerogel monoliths with controlled specific surface areas and pore sizes,Materials Research Express,  4: 075020, 2017.
[9]Gao Bingying, Kalulu Mulenga, Oderinde Olayinka, Mei Jing, *Ren Lili. Synthesis of three-dimensional graphene architectures by using an environmental-friendly surfactant as a reducing agent,International Journal of Hydrogen Energy, 42: 18196-18202, 2017.
[10]Gao Bingying, He He, Lu Shaoxiang, Kalulu Mulenga, Oderinda Olayinka, *Ren Lili. 1, 2-epoxy propane induced self-assembly of macroscopic graphene with good adsorption, ChemistrySelect, 2: 3860-3865, 2017.
[11]Li Xueai, He He, *Ren Lili. Fabrication and characterization of the monolithic hydrophobic alumina aerogels, Journal of Porous Materials, 24: 679-683, 2017.
[12]Gao Bingying, Mei Jing, Ma Yusha, Yuan Guojun, *Ren Lili. Environmental-friendly assembly of functional graphene hydrogels with excellent antibacterial properties,ChemistrySelect, 2: 7474-7482, 2017.
[13]*Ren Lili. The cooperative effect of Zn on Co/HZSM-5 catalyst for NO reduction with methane, Russian Journal of Physical Chemistry A, 91(5): 866-875, 2017.
[14]*Ren Lili, Li Xueai, He He, Alumina particles are snowballing with propylene oxide–synthesis of alumina aerogels with free adjustable particle and pore sizes, ChemistrySelect, 5: 1072-1075, 2016.
[15]*Ren Lili, Xueai Li, Sumin Cui. Synthesis of Monolithic Fe2O3-Al2O3 Composite Aerogels via Organic Solvent Sublimation Drying, Journal of Nanomaterials, 2016: 8135043, 2016.
[16]Liu Xiaomeng, *Ren Lili, The Influence of Polyethylene Glycol on the Synthesis and Activity of MoP for the Hydrodechlorination of Trichloroethylene, RSC Advances, 6(9): 7413-7418, 2016.
[17]Guo Qinghui, *Ren Lili, Hydrodechlorination of Trichloroethylene over MoP/γ-Al2O3 Catalyst with High Surface Area, Catalysis Today, 264: 158-162, 2016.
[18]Li Xueai, He He, Cui Sumin, *Ren Lili. Synthesis and characterization of the monolithic NiO-Al2O3 aerogels,ECS Journal of Solid State Science and Technology, 5(2): N1-N3, 2016.
[19]Xu Hanghui, Lu Shaoxiang, *Ren Lili. A novel synthetic route to freely adjust the crystal structures of Ni-P compounds, Materials Research Express, 3(10), 105010, 2016.
[20]Cao Fengchao, *Ren Lili, Li Xueai. Synthesis of high strength monolithic alumina aerogels at ambient pressure, RSC Advances, 5(23): 18025-18028, 2015.
[21]*Ren Lili, Sumin Cui, Fengcao Chao, Qinghui Guo. An Easy Way to Prepare Monolithic Inorganic Oxide Aerogels, Angewandte Chemie International Edition, 2014, 53 (38), 10147-10149.
[22]*Ren Lili. The Cooperative Effect of In2O3 and In/HZSM-5 for Reduction of Nitric Oxide with Methane, Journal of Chemistry, 2014: 1-7, 2014.
[23]*Ren Lili, Jin Zhang. Comparison of the Effects of Fluidized-Bed and Fixed-Bed Reactors in Microwave-Assisted Catalytic Decomposition of TCE by Hydrogen, Advances in Materials Science and Engineering, 2012: 1-4, 2012.
[24]*Ren Lili, Xiaomei Pan.Catalysts used for microwave-assisted TCE decomposition by hydrogen, Catalysis Communications. 12: 1366-1369, 2011.
[25]*RenLili, Tao Zhang. Reduction of NO with methane over Fe/ZSM-5 catalysts, Chinese Chemical Letters, 21: 674–677, 2010.
[26]Ren Lili, Tao Zhang et al. The remarkable effect of In2O3 on the catalytic activity of In/HZSM-5 for the reduction of NO with CH4, Topic in Catalysis, 30-31: 55-57, 2004.
[27]Hideaki Takashima,RenLili , Yoshinori Kanno. Catalytic decomposition of TCE under microwave, Catalysis Communications, 5: 317-319, 2004.
[28]Tao Zhang, Lili Ren, Liwu Lin.Advances in Selective Catalytic Reduction of NO with Methane, Chinese Journal of Catalysis, 25: 75-83, 2004.
[29]Li Ning, Aiqin Wang, Ren Lili , et al. Pd/Sulfated Alumina—A New Effective Catalyst for the Selective Catalytic Reduction of NO with CH4, Topic in Catalysis, 30-31: 103-105, 2004.
[30]Ning Li, Aiqin Wang, Lin Li, Xiaodong Wang, Ren Lili  and Tao Zhang. NO reduction by CH4 in the presence of excess O2 over Pd/sulfated alumina catalysts, Applied Catalysis B: Enviromental, 50: 1-7, 2004.
[31]Ren Lili, Tao Zhang et al. Promotional effect of colloidal alumina in the activity of the In/HZSM-5 catalyst for the selective reduction of NO with CH4, Applied Catalysis B: environmental, 41: 129-136, 2003.
[32]Ren Lili, Tao Zhang, Dongbai Liang, Changhai Xu, Junwang Tang, Liwu Lin. Effect of addition of Zn on the catalytic activity of a Co/HZSM-5 catalyst for the SCR of NOx with CH4, Applied Catalysis B: environmental, 35: 317-321, 2002.
[33]Jun-wang Tang, Huang-he Yang, Ren Lili  et al. NO decomposition in microwave discharge, Chemical Journal of Chinese University, 23: 632-635, 2002.
[34]Jinfeng Zhao, Xiaodong Wang, Tao Zhang, Junwang Tang, Ren Lili, Lin Li, Liwu Lin. Promotional effect of Indium on dehydroaromatization of methane over Mo/HZSM-5 catalyst without adding oxygen, Chinese Journal of Catalysis, 23: 197-198, 2002.
[35]Ren Lili, Tao Zhang et al. The effect of Fe on the activity of a Co/HZSM-5 catalyst for the SCR of NOx by CH4, Journal of Ningxia University, 22: 162-163, 2001.
[36]Junwang Tang, Tao Zhang, Aiqin Wang, Ren Lili et al. Removal of NO by Microwave Discharge with the Addition of CH4, Chemistry Letters, 2001: 140-141, 2001.
[37]Huanghe Yang, Tao Zhang, Hanjing Tian, Ren Lili, Liwu Lin. Perovskite Type Oxides: A Novel Type of Catalysts Suitable for Hydrogen Peroxide Decomposition, European Space Agency, 484: 197-200, 2001.
授权专利
[1] 任丽丽, 崔素敏. 一种有机溶剂脱水干燥制备无机氧化物气凝胶的方法, 2014. 6, 中国,CN 102826514 B。
[2] 任丽丽, 曹凤朝. 一种常压直接干燥制备无机氧化物气凝胶的方法,2013. 11, 中国,2013105374270。
[3] 任丽丽, 郭庆会. 一种三氯乙烯加氢脱氯的方法,2014. 1, 中国,2014100009699。
[4] 任丽丽, 郭庆会. 一种担载型过渡金属磷化物催化剂的制备方法,2014. 6, 中国,2014102522843。
[5] 任丽丽,李雪爱,一种低密度疏水性Al2O3气凝胶的制备方法,2016.3.7,中国,CN201510061634.2。
研究生培养情况
白建良(在读博士)
高丙莹(在读博士)
袁国钧(在读博士)
卢绍祥(在读硕士)
梅  静(在读硕士)
马玉莎(在读硕士)
陈  许(在读硕士)
崔素敏(已毕业)
曹凤朝(已毕业)
郭庆会(已毕业)
李雪爱(已毕业)
刘晓梦(已毕业)
贺  赫(已毕业)
许杭慧(已毕业)

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