找回密码
 立即注册

QQ登录

只需一步,快速开始

查看: 2225|回复: 2
打印 上一主题 下一主题

[课题组] 清华大学化工系袁志宏

[复制链接]

54

主题

57

帖子

61

积分

注册会员

Rank: 2

积分
61
跳转到指定楼层
楼主
发表于 2018-3-12 08:11:34 | 只看该作者 |只看大图 回帖奖励 |倒序浏览 |阅读模式
袁志宏清华大学特别研究员。2016年9月底加入清华大学化学工程系,目前为教研系列助理教授(特别研究员)、博士生导师。2008年迄今在AIChE Journal、Chemical Engineering Science、Industrial& Engineering Chemistry Research等传统化工领域三大高影响期刊上以第一作者或通讯作者发表多篇学术论文,相关论文被选为AIChE Journal 封面论文和ACS Editors’Choice paper。获得Most downloaded paper of Computers & Chemical Engineering、Outstanding Reviewer of Computers & Chemical Engineering等多项学术奖项。致力于流程工业智能优化制造和清洁能源生产,目前主要从事过程系统工程和能源系统工程领域的产品/材料-过程集成设计与合成、大数据驱动模型、全流程优化控制与操作、不确定条件下鲁棒优化等研究工作。
袁志宏
教研系列助理教授(特别研究员),博士生导师
办公电话: 010-62796764
办公地址:工物馆347
电子邮件: zhihongyuan@mail.tsinghua.edu.cn
2001年9月~2005年7月,中国石油大学(华东)自动化专业,大学本科
2005年9月~2008年7月,中国石油大学(北京)检测技术与自动化装置专业,硕士
2008年9月~2011年7月,清华大学化学工程系化学工程与技术方向,博士
2011年12月~2014年09月,Department of Chemical Engineering, Carnegie Mellon University,Pittsburgh, Pennsylvania, U.S.A.,Postdoctoral Research Associate
2014年09月~2016年09月,Department of Chemical Engineering, Auburn University,Auburn, Alabama, U.S.A.,Postdoctoral Research Associate
2016年09月~至今,清华大学化学工程系过程系统工程研究所,助理教授,博士生导师


研究方向:过程系统工程、能源系统工程
•        数据驱动建模与优化
•        流程工业智能优化操作与控制
•        化工产品/能源材料—过程多尺度集成优化设计与合成
  
Journal paper (*Corresponding Author)
1.      Zhihong Yuan, Mario R. Eden*. Superstructure optimization of integrated fast pyrolysis-gasification for the production of liquid transportation fuels and propylene. AIChE Journal. 62(2016) 3155-3176. (Invited paper for AIChE Journal Founders Tribute: Roger W. Sargent).
2.      Zhihong Yuan, Mario R. Eden*, Rafiqul Gani*. Toward the large-scale deployment of CO2 capture and conversion processes. Industrial & Engineering Chemistry Research. 55(2016) 3383-3419. (ACS Editors’ Choice paper)
3.      Zhihong Yuan, Mario R. Eden*. Recent advances in optimal design of thermochemical conversion of biomass to chemicals and liquid fuels. Current Opinion in Chemical Engineering. 10(2015) 70-76.
4.      Zhihong Yuan, Ping Wang, Chaohe Yang*, Mario R. Eden*. Systematic control structure evaluation for the two-stage-riser catalytic pyrolysis processes. Chemical Engineering Science. 126(2015) 309-328.
5.      Zhihong Yuan*, Ping Wang, Chaohe Yang. Steady-state multiplicity analysis of two-stage-riser catalytic pyrolysis processes. Computers & Chemical Engineering. 73(2015) 49-63.
6.      Ping Wang, Chaohe Yang*, Zhihong Yuan*. The combination of adaptive Pseudospectral method and structure detection procedure for solving dynamic optimization problems with discontinuous control profiles. Industrial & Engineering Chemistry Research. 53(2014) 7066-7078.
7.      Zhihong Yuan, Bingzhen Chen, Rafiqul Gani*. Applications of process synthesis: moving from conventional chemical processes towards biorenewable conversion processes. Computers & Chemical Engineering. 49(2013) 217-229. (This is one of top-ten highest downloaded paper during 2012.10.01~2013.09.30)
8.      Zhihong Yuan, Bingzhen Chen*. Process synthesis for addressing the sustainable energy systems and environmental issues. AIChE Journal. 58(2012) 3370-3389.(This is the top paper and is given priority in the publication process)
9.      Zhihong Yuan, Nan Zhang, Bingzhen Chen*, Jinsong Zhao. Systematic controllability analysis for chemical processes. AIChE Journal. 58(2012) 3096-3109.
10.  Zhihong Yuan, Bingzhen Chen*, Gürkan Sin, Rafiqul Gani. State-of-the-art and progress in optimization based simultaneous design and control for chemical processes. AIChE Journal. 58(2012) 1640-1659. (Featured on Cover)
11.  Zhihong Yuan, Bingzhen Chen*, Jinsong Zhao. Phase behavior analysis for industrial polymerization reactors. AIChE Journal. 57(2011) 2795-2807.
12.  Zhihong Yuan, Bingzhen Chen*, Jinsong Zhao. An overview on controllability analysis of chemical processes. AIChE Journal. 57(2011) 1185-1201.
13.  Zhihong Yuan, Bingzhen Chen*, Jinsong Zhao. Controllability analysis for the liquid-phase catalytic oxidation of toluene to benzoic acid. Chemical Engineering Science. 66(2011) 5137-5147.
14.  Zhihong Yuan, Bingzhen Chen*, Jinsong Zhao. Effects of manipulated variables selection on the controllability of chemical process. Industrial & Engineering Chemistry Research. 50(2011) 7403-7413.
15.  Zhihong Yuan, Hangzhou Wang, Bingzhen Chen*, Jinsong Zhao. Operating zone segregation of chemical reaction systems based on stability and non-minimum phase behavior analysis. Chemical Engineering Journal. 155(2009) 304-311.
16.  Hangzhou Wang, Zhihong Yuan, Bingzhen Chen*, Jinsong Zhao. Analysis of the stability and controllability of chemical processes. Computers & Chemical Engineering. 35(2011) 1101-1109.

Conference paper (*Speaker)
1.      Zhihong Yuan*, Mario R. Eden. Integrated Thermochemical Process for Optimal Co-Production of Liquid Fuels and Chemicals. AIChE annual meeting. San Francisco. Nov. 2016.
2.      Pengcheng Li*, Zhihong Yuan, Mario R. Eden. Process Simulation and Economic Analysis of Producing Liquid Transportation Fuels from Biomass. AIChE annual meeting. San Francisco. Nov. 2016.
3.      Zhihong Yuan*, Mario R. Eden. Integrated biorefinery design for the co-production of premium quality liquid fuels and propylene. 26th European Symposium on Computer Aided Process Engineering. Portoroz, Slovenia. June. 2016.
4.      Pengcheng Li*, Zhihong Yuan, Mario R. Eden. A comparative study of Fischer-Tropsch synthesis for liquid transportation fuels production from biomass. 26thEuropean Symposium on Computer Aided Process Engineering. Portoroz, Slovenia. June. 2016.
5.      Zachary Wilson*, Alison Cozad, Zhihong Yuan, Nick Sahinidis, David C. Miller. A Reduced-order Building Approach to Simulation-based Optimization of Complex Energy Systems. AIChE annual meeting. Salt Lake City. Nov. 2015.
6.      Zhihong Yuan*, Pengcheng Li, Bernardo Lousada, Mario R. Eden. Integrated thermochemical process design for co-producing liquid fuels and propylene. AIChE annual meeting. Salt Lake City. Nov. 2015.
7.      Bernardo Lousada*, Pengcheng Li, Zhihong Yuan, Mario R. Eden. Process design and simulation of methanol and olefins production from biomass. AIChE annual meeting. Salt Lake City. Nov. 2015.
8.      Pengcheng Li*, Zhihong Yuan, Bernardo Lousada, Mario R. Eden. Process Design and Simulation of Producing Liquid Fuels and Chemicals from Biomass. AIChE annual meeting. Salt Lake City. Nov. 2015.
9.      Zhihong Yuan*, Bernardo Lousada, Pengcheng Li, Mario R. Eden. Systematic Design and Synthesis of Integrated Multi-Product Biorefinery Processes. AIChE annual meeting. Salt Lake City. Nov. 2015.
10.  Ping Wang*, Xuemin Tian, Chaohe Yang, Zhihong Yuan. Economic-oriented NMPC of two-stage-riser catalytic pyrolysis processes for maximizing propylene yield. 9th International Symposium on Advanced Control of Chemical Processes. Whistler, Canada. June. 2015
11.  Zhihong Yuan*, Ping Wang, Chaohe yang, Mario Eden. Systematic control structure evaluation for the two-stage-riser catalytic pyrolysis processes. 12thInternational Symposium on Process Systems Engineering and 25th European Symposium on Computer Aided Process Engineering. Copenhagen, Denmark, 31 May – 4 June 2015.
12.  David C. Miller*, Nikolaos V. Sahinidis, Alison L. Cozad, Andrew Lee, Hosoo Kim, Juan Morinelly, John Eslick, Zhihong Yuan. Computational Tools for Accelerating Carbon Capture Process Development. 38th International Technical Conference on Clean Coal & Fuel Systems. Clearwater, FL. June. 2013.
13.  David C. Miller, Nikolaos V. Sahinidis, Hosoo Kim, Andrew Lee, Alison L. Cozad, Zhihong Yuan, Murthy Konda, John Eslick, Juan Morinelly. Synthesis of optimal capture processes using advanced optimization. 11th Annual Conference on Carbon Capture & Sequestration. Pittsburgh, PA. April. 2012.
14.  Zhihong Yuan*, Nick Sahinidis, David Miller. Superstructure Formulation and Optimization for Carbon Capture Process. AIChE annual meeting. San Francisco. Nov. 2013.
15.  Zhihong Yuan*, Alison Cozad, Nick Sahinidis, David Miller. Surrogate Model Based Optimal Synthesis of Solid Sorbent Carbon Capture Process. AIChE annual meeting. Pittsburgh. Oct. 2012.




  声明:本网部分文章和图片来源于网络,发布的文章仅用于材料专业知识和市场资讯的交流与分享,不用于任何商业目的。任何个人或组织若对文章版权或其内容的真实性、准确性存有疑义,请第一时间联系我们,我们将及时进行处理。
分享到:  QQ好友和群QQ好友和群 QQ空间QQ空间 腾讯微博腾讯微博 腾讯朋友腾讯朋友
收藏收藏 转播转播 分享分享 分享淘帖
回复

使用道具 举报

49

主题

92

帖子

120

积分

注册会员

Rank: 2

积分
120
沙发
发表于 2019-11-14 17:16:52 | 只看该作者
2019自然科学基金项目-甲醇制烯烃反应过程鲁棒动态优化的理论及方法研究
批准号        21978150       
学科分类        化工过程模拟、优化与控制 ( B080603 )
项目负责人        袁志宏       
依托单位        清华大学
资助金额        65.00万元       
项目类别        面上项目       
研究期限        2020 年 01 月 01 日 至2023 年 12 月 31 日

回复 支持 反对

使用道具 举报

160

主题

194

帖子

307

积分

中级会员

Rank: 3Rank: 3

积分
307
板凳
发表于 2023-5-4 16:47:45 | 只看该作者
近日,化工系袁志宏副教授课题组牵头开发完成的“橡胶促进剂2-巯基苯并噻唑(MBT)连续化清洁生产关键技术”和“百万吨级甲醇制烯烃反应-再生系统数字化模拟优化及工业应用”顺利通过了中国石油和化学工业联合会组织的科技成果鉴定。
       3月28日,由中国工程院院士、东北大学副校长唐立新和中国石化管理干部学院党委书记李德芳领衔的专家组采用线上线下方式听取并审查了由清华大学、江苏斯尔邦石化有限公司共同完成的“百万吨级甲醇制烯烃反应-再生系统数字化模拟优化及工业应用”的技术报告、工作报告、工业应用报告及查新报告等内容。
       经过四年攻关,项目组在国际上率先开发了甲醇制烯烃MTO反应再生系统专用流程模拟及操作优化软件,并成功应用于全球单套甲醇处理量最大的240万吨/年工业MTO反应-再生系统的优化运行。甲醇平均单耗降低0.68%,催化剂平均单耗降低5.84%,极大地提升了装置综合经济效益。经讨论,专家组认为成果整体达到国际先进水平,其中MTO反应-再生模拟与操作优化技术居于国际领先水平。
         4月15日,由中国工程院院士、复旦大学教授陈芬儿,中国工程院院士、华南理工大学校长张立群,中国橡胶工业协会橡胶助剂专业委员会名誉理事长许春华领衔的专家组听取并审查了由清华大学、山东尚舜化工有限公司和大连理工大学共同开发完成的MBT连续化清洁生产关键技术的研发报告、工作报告、示范装置运行报告及查新报告等内容。
         与现有间歇酸碱法工艺相比,MBT连续化清洁生产关键技术的成功开发使得反应收率提高了5个百分点,废盐排放量减少了90%以上,废水排放量减少了80%以上,每吨产品成本降低了1000元以上。经质询、答辩和认真讨论,专家组认为该技术成果居于国际领先水平。
         袁志宏课题组以多学科交叉为研究特色,以流程工业智能优化决策为主要研究方向,发展复杂制造环境下流程工业鲁棒智能优化决策理论方法,创建混合整数数学规划高效求解算法群,开发自主可控的优化决策软件平台。所研发的相关理论方法已在催化裂化、甲醇制烯烃MTO、促进剂2-巯基苯并噻唑等石化化工领域成功实现了产业化应用,取得了显著的经济和社会效益。

回复 支持 反对

使用道具 举报

小黑屋|手机版|Archiver|版权声明|一起进步网 ( 京ICP备14007691号-1

GMT+8, 2024-5-7 11:58 , Processed in 0.091258 second(s), 37 queries .

Powered by Discuz! X3.2

© 2001-2013 Comsenz Inc.

快速回复 返回顶部 返回列表