首页
科学研究
研究领域
论文成果
专利
著作成果
科研项目
科研团队
教学研究
教学资源
授课信息
教学成果
获奖信息
招生信息
学生信息
我的相册
教师博客
更多
`
中文
English
董勇
学位:博士生
职称:教授
所在单位:能源与动力工程学院
教师英文名称:
Dong Yong
教师拼音名称:
dongyong
出生日期:
1967-08-26
入职时间:
2004-07-16
所在单位:
能源与动力工程学院
学历:
研究生(博士)毕业
办公地点:
千佛山校区东配楼613
性别:
男
在职信息:
在职
毕业院校:
哈尔滨工业大学
是否在职:
1
博士生导师
硕士生导师
学科:
工程热物理
论文成果
[31] 李玉忠. Mechanism of SO3/H2SO4 transformation and reduction in wet flue gas desulfurization systems. Fuel, 307, 2022.
[32] 张肖宇. Inhibition of coal-fired condensable particulate matter by addition of biomass. Fuel, 310, 2022.
[33] 闫云涛. Fe3+/H2O2 类芬顿降解性能及反应机理. 《高校化学工程学报》, 02, 249, 2022.
[34] 张昊. SO2 removal performance for the solution absorption system applied to coal-fired flue gas. Journal of the Energy Institute, 98, 107, 2021.
[35] 任文. Catalytic performance and reaction mechanism of an iron-loaded catalyst derived from blast furnace slag for the CO-SO2 reaction to produce sulfur. Applied Catalysis A: General, 606, 2020.
[36] 张肖阳. Effects of HCl and O-2 on Hg-0 Oxidation in the SCR Catalyst. ENERGY & FUELS Journal, 35, 11382, 2021.
[37] 张梦泽. Intensification of NOx Conversion over Activated Coke by Ozone Oxidation for Sintering Flue Gas at Low Temperatures. ACS Omega, 6, 13484, 2021.
[38] 朱晓. NO2-NH3 SCR over Activated Carbon: A Combination of NH4NO3 Formation and Consumption. ENERGY & FUELS Journal, 35, 6167, 2021.
[39] 闫云涛. Study on the exothermic characteristics of Fe2+/H2O2 homogeneous Fenton degradation of o-phenylenediamine wastewater. Desalination and Water Treatement, 228, 335, 2021.
[40] 闫云涛. Study on the exothermic characteristics of Fe2+/H2O2 homogeneous Fenton degradation of o-phenylenediamine wastewater. Desalination and Water Treatement, 228, 335, 2021.
[41] 闫云涛. Study on the exothermic characteristics of Fe2+/H2O2 homogeneous Fenton degradation of o-phenylenediamine wastewater. Desalination and Water Treatement, 228, 335, 2021.
[42] 崔琳. Energy conservation and efficiency improvement by coupling wet flue gas desulfurization with condensation desulfurization. Fuel, 285, 2021.
[43] 安东海. Regeneration performance of activated coke for elemental mercury removal by microwave and thermal methods. FUEL PROCESSING TECHNOLOGY Journal, 199, 2020.
[44] 安东海. Investigation on mercury removal and recovery based on enhanced adsorption by activated coke. J. Hazardous Mater. , 384, 2020.
[45] 董言. Mechanism of the rapid mechanochemical degradation of hexachlorobenzene with silicon carbide as an additive.. Journal of Hazardous Materials, 2019.
共182条 3/13
首页
上页
下页
尾页
页
扫一扫用手机查看