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韩向新    
副教授    
    
办公电话    
021-34206769
通讯地址    
机动大楼A313
电子邮件    
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教育背景
时间
毕业院校
学历
2004―2007
上海交通大学
博士
1999―2002
东北电力大学
硕士
1993―1997
东北电力大学
学士
工作经历
2009―目前,上海交通大学/机械与动力工程学院/热能工程研究所,副教授;
2007―2009,上海交通大学/机械与动力工程学院,博士后(师资);
2002―2004,中国运载火箭技术研究院/北京航天动力研究所,工程师;
1997―1999,阜新发电厂,助理工程师。
出访及挂职经历
2012―2013,Brown University, USA,Visiting Associate Professor。
研究方向
1、油页岩基础特性与高效、清洁综合利用技术;
2、市政污泥、油页岩半焦等固体废弃物污染控制与资源化利用;
3、水煤浆燃烧理论与循环流化床燃烧技术开发。
科研项目
2013―2016,上海市自然科学基金项目“油页岩内油母质热化学转化过程的量子化学原理”,项目负责人;
2010―2012,国家自然科学基金青年基金项目“氮、硫元素在油页岩干馏/焚烧一体化综合利用系统中迁移过程的量子化学原理”,负责人;
2009―2011,中国博士后科学基金特别资助基金,负责人;
2007―2009,中国博士后科学基金一等资助项目“重金属元素在市政污泥脱水/干化/焚烧一体化处理系统中的迁移规律与减排措施”,负责人;
2011.01—2012.06,煤燃烧国家重点实验室开放基金"油页岩半焦循环流化床燃烧过程中氮氧化物的形成与转化机理",负责人;
2011.01—2012.06,国家油页岩综合利用示范基地"十二五"建设可研与总体规划,负责人;
2010.06—2015.12,水煤浆流化悬浮高效洁净燃烧技术成果应用,分项负责人;
2007.12—2010.11,国家863目标导向类课题“油页岩高效清洁综合利用系统关键技术的研究”,第2完成人;
2005.01—2007.12,国家自然科学基金面上项目“油页岩循环流化床燃烧N2O生成机理与排放特性研究”,第2完成人;
代表性论文专著
2013年学术论文:
[1]Mengting Niu, Sha Wang, Xiangxin Han(通讯作者), et al. Yield and characteristics of shale oil from the retorting of oil shale and fine oil-shale ash mixtures. Applied Energy, 2013, 111(11): 234-239.
[2]Jianhui Tong, Jianguo Liu, Xiangxin Han, et al. Characterization of nitrogen-containing species in Huadian shale oil by electrospray ionization Fourier transform ion cyclotron resonance mass spectrometry. Fuel, 2013, 104(C): 365–371.
[3]Junwei Yan, Xiumin Jiang, Xiangxin Han, Jianguo Liu. A TG-FTIR investigation to the catalytic effect of mineral matrix in oil shale on the pyrolysis and combustion of kerogen. Fuel, 2013.104(0): 307–317.
[4]Jianhui Tong, Jiaxun Liu, Xiangxin Han, et al. Influence of heating rate on basic nitrogen-containing species content in shale oil studied by positive-ion electrospray ionization FT-ICR mass spectrometry. Oil shale, 2013, 30(1): 76-89.

2012年学术论文:
[1]Xiangxin Han, Mengting Niu, Xiumin Jiang, and Jianguo Liu. Combustion characteristics of sewage sludge in a fluidized bed. Industrial & Engineering Chemistry Research, 2012, 51(2): 10565–10570.
[2]Sha Wang, Xiumin Jiang, Xiangxin Han, etc. Investigation of Chinese oil shale resources comprehensive utilization performance. Energy, 2012, 42(1):224-232.

2011年学术论文:
[1]Xiangxin Han, Xiumin Jiang, Zhigang Cui, et al. Effects of retorting factors on combustion properties of shale char. 2. Pore structure. Energy & Fuel, 2011, 25(1): 97–102.
[2]X.X. Han, X.M. Jiang, Z.G. Cui, et al. Effects of retorting factors on combustion properties of shale char.4. Combustion characteristics. Journal of Thermal Analysis and Calorimetry, 2011, 104(2): 771–102.
[3]Jianhui Tong, Xiangxin Han, Sha Wang, Xiumin Jiang. Evaluation of Structural Characteristics of Huadian Oil Shale Kerogen Using Direct Techniques (Solid-State 13C NMR, XPS, FT-IR and XRD). Energy & Fuel, 2011, 25(9): 4006–4013.
[4]Jianguo Liu, Xiumin Jiang, Xiangxin Han. Devolatilization of oil sludge in a lab-scale bubbling fluidized bed.Journal of Hazardous Materials, 2011, 185(2-3): 1205-1213.

2010年学术论文:
[1]Xiangxin Han, Xiumin Jiang, Zhigang Cui, et al. Effects of retorting factors on combustion properties of shale char. 3. Distribution of residual organic matters. Journal of Hazardous Materials, 2010, 175(1-3): 445-451.
[2]Jianguo Liu, Junwei Yan, Xiangxin Han, Xiumin Jiang. Study on the anisotropy of mass transfer for oxygen in the ash layer of shale char particles. Energy & Fuels, 2010, 24(6): 3488–3497.
[3]Xiumin Jiang, Xiangyong Huang, Jiaxun Liu, Xiangxin Han. NOx emission of fine-and superfine-pulverized coal combustion in O2/CO2 atmosphere. Energy and Fuels, 2010, 24(12): 6307-6313.

2009年学术论文:
[1]Xiangxin Han, Xiumin Jiang. Studies of the effect of retorting factors on the yield of shale oil for a new comprehensive utilization technology of oil shale. Applied Energy, 2009, 86(11): 2381–2385.
[2]Xiangxin Han, Xiumin Jiang. Effects of retorting factors on combustion properties of shale char: 1. pyrolysis characteristics. Energy & Fuels, 2009, 23(2): 677–682.
[3]Shuang Wang, Xiuming jiang, Xiangxin Han, et al. A Study on Combustion Characteristics of seaweed biomass.Part 1: Combustion characteristics of Enteromorpha clathrata and Sargassum natans. Energy & Fuels, 2009, 23(10): 5173–5178.
[4]Jianguo Liu, Xiangxin Han, Xiumin Jiang, et al. Thermal expansion characteristics of quartzite particles up to 1600℃. Chemical Engineering and Processing: Process Intensification, 2009, 48(4): 885-891.

2008年学术论文:
[1]Xiangxin Han, Xiumin Jiang, Zhigang Cui. Study of the combustion mechanism of oil shale semicoke in a thermogravimetric analyzer. Journal of Thermal Analysis and Calorimetry, 2008, 92(2): 595–600.
[2]Xiangxin Han, Xiumin Jiang, Zhigang Cui. Change of Pore Structure of Oil Shale Particles during Combustion. 2. Pore Structure of Oil-Shale Ash. Energy & Fuels, 2008, 22(2): 972–975.
[3]Xiangyong Huang, Xiumin Jiang, Xiangxin Han, et al. Combustion characteristics of fine- and micro-pulverized coal in the mixture of O2/CO2. Energy & Fuels, 2008, 22(6), 3756–3762.
[4]S. Wang, X.M. Jiang, X.X. Han, et al. Fusion characteristic study on seaweed biomass ash. Energy & Fuels, 2008, 22(4): 2229–2235.

2007年学术论文:
[1]Xiangxin Han, Zhigang Cui, Xiumin Jiang, et al. Regulating characteristics of loop seal in a 65t/h oil shale-fired circulating fluidized bed boiler. Powder Technology, 2007, 178(2): 114–118.
[2]X. M. Jiang, X. X. Han(通讯作者), Z. G. Cui. Progress and recent utilization trends in combustion of Chinese oil shale. Progress in Energy and Combustion Science, 2007, 33(6): 552-575.
[3]Xiumin Jiang, Xiangxin Han(通讯作者), Zhigang Cui. New technology for comprehensive utilization of oil shale resources. Energy, 2007,32(5):772-777.

2006年学术论文:
[1]Xiangxin Han, Xiumin Jiang, Lijun Yu, et al. Change of pore structure of oil shale particles during combustion: Part 1. Evolution mechanism. Energy & Fuels, 2006, 20(6): 2408–2412.
[2]X. X. Han, X. M. Jiang, Z. G. Cui. Mathematical model of oil shale particle combustion. Combustion Theory and Modelling, 2006,10(1):145-154.
[3]Xiangxin Han, Xiumin Jiang, Hui Wang, et al. Study on design of Huadian oil shale-fired circulating fluidized bed boiler. Fuel Processing Technology, 2006,87(4):289-295.
[4]Xiangxin Han, Xiumin Jiang, Zhigang Cui. Flow structure and combustion characteristic of 65t/h oil shale-fired circulating fluidized bed riser: 2. Dilute phase. Chemical Engineering Science, 2006, 61(8):2533-2539.
[5]X. X. Han, X. M. Jiang, Z. G. Cui. Thermal analysis studies on combustion mechanism of oil shale. Journal of Thermal Analysis and Calorimetry, 2006, 84(3): 631-636.
[6]Xiangxin Han, Xiumin Jiang, Jianguo Liu, et al. Grey relational analysis of N2O Emission from Oil Shale-fired Circulating Fluidized Bed. Oil Shale, 2006,23(2):99-109.
[7]Xiumin Jiang, Xiangxin Han(通讯作者), Zhigang Cui, et al. Flow structure and combustion characteristic of 65t/h oil shale-fired circulating fluidized bed riser: 1. Dense phase. Industrial & Engineering Chemistry Research, 2006,45(12):4329-4334.
[8]X. M. Jiang, X. X. Han(通讯作者), Z. G. Cui. Mechanism and mathematical model of Huadian oil shale pyrolysis Journal of Thermal Analysis and Calorimetry, 2006,86(2):457-462.
教学工作
课程名称:Circulating Fluidized Bed Combustion; 授课对象:硕士研究生; 学时数:36.
课程名称:动力工程; 授课对象:本科生; 学时数:48; 学分:3.  
软件版权登记及专利
[1]韩向新, 姜秀民, 于立军, 等. 油页岩的气热电三联供应用系统. 国家发明专利, 专利号: ZL 200510025253.5.
[2]韩向新, 姜秀民, 王辉, 等. 气固两相热交换器. 国家发明专利, 专利号: ZL 200510023293.6.
[3]韩向新, 姜秀民, 王辉, 等. 以湿油页岩半焦为燃料的循环流化床焚烧系统. 国家发明专利,专利号: ZL 200710047696.3.
[4]姜秀民, 韩向新, 于立军, 等. 油污泥的异密度循环流化床燃烧处理方法. 国家发明专利, 专利号: ZL 200410089304.6.
[5]姜秀民, 于立军, 韩向新, 等. 油页岩综合利用的方法. 国家发明专利,专利号: ZL 200510024417.2.
[6]王爽, 姜秀民, 韩向新, 等. 海藻生物质的异密度循环流化床燃烧处理方法. 国家发明专利, 专利号: ZL 200710172603.X.
[7]韩向新, 姜秀民, 刘建国, 等. 油页岩流化床干馏系统. 国家发明专利, 专利号: ZL 200810204396.6.
[8]韩向新, 姜秀民, 刘建国, 王莎. 油页岩干馏、半焦焚烧一体化系统. 国家发明专利, 专利号: ZL 201010179437.8.
[9]姜秀民, 王爽, 韩向新, 等. 海藻生物质综合利用的方法. 国家发明专利, 专利号: ZL 200910045965.1.
[10]王爽, 姜秀民, 韩向新, 等. 利用海藻与陆上生物质共同热解制取生物油的方法. 国家发明专利, 申请号: 200810041468.X.
学术兼职
1、国际期刊《Fuel》、《Energy & Fuels》、《Journal of Thermal Analysis and Calorimetry》、《Applied Thermal Engineering》等审稿人;
2、国家油页岩综合利用示范基地技术研发中心委员。
荣誉奖励
2011年第六届上海市发明创造专利发明专利二等奖,第3完成人;
2010年上海交通大学优秀博士后奖励基金一等奖;
2009年上海市技术发明二等奖,第3完成人。 
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