词条 | Klaus-Dieter Hungenberg |
释义 |
}}{{Infobox scientist | name = Klaus-Dieter Hungenberg | image = | birth_date = {{birth date and age|1953|09|14|df=y}} | nationality = German | field = Chemistry | workplaces = Boehringer Mannheim, BASF | alma_mater = University of Essen | known_for = Living anionic polymerization, Living free-radical polymerization, Mathematical model | prizes = Honorary Professor at University of Paderborn (2012) }}Prof. Dr. Klaus-Dieter Hungenberg (born September 14, 1953) is Vice President of Polymer Reaction Engineering at BASF SE,[1] a German chemist and a Professor at the University of Paderborn.[2] He is well recognized for his contribution in the field of reaction kinetics for polymerization processes. He has been honored Professorship for his contributions in the field of reaction chemistry at the Institute for Polymer Material and Process(PMP), University of Paderborn. EducationHungenberg studied Chemistry at the University of Duisburg-Essen and then received his Diploma in Anionic polymerization in 1979. Later, he received his PhD in 1982 in the group of Friedhelm Bandermann at the University of Duisburg-Essen with research projects focusing on anionic living free radical polymerization.[3][4] BiographyFrom 1983-1987 Hungenberg worked in process development for blood diagnostic devices with Boehringer Mannheim GmbH, now Roche Diagnostics. In 1987 he joined BASF’s Polymer research group. Since then, he has led diverse product and process development projects ranging from new PVC modifiers,[5][6][7] polyolefin processes,[8][9] catalysis,[10][11] super absorbent polymers, emulsion polymers[12][13] ABS, polyamides,[14] etc. His main research emphasis is polymer reaction engineering modeling, simulation and optimization of polymer processes.[15][16] He is (co-)author of about 100 scientific articles,[17][18] editorials[19][20] and patents.[21] He is also (co-)author of a book chapter in process modelling and optimization of Styrene polymerization with focus on Polystyrenes and its co-polymers.[18] K. D. Hungenberg has been at different leadership positions in BASF SE for many years. In 2004, he was named Research Director of Polymer Reaction Engineering at BASF SE. In 2010, he was appointed as Vice President Polymer Reaction Engineering in recognition for his achievements. In 2012 Hungenberg received an Honorary Professorship at the institute of Polymer, Materials and Processes (PMP), University of Paderborn. There he regularly gives lectures about Polymer Reaction Engineering and the Modeling of Polymer Processes. He is highly networked in the area of Polymer Reaction Engineering and is known globally for his contributions in this field. Furthermore, he is an Editorial Board member of several international journals and acted as chairman and member for Scientific Committees of various conferences. He is engaged in the IUPAC Working Party "Modeling of Kinetics and Processes of Polymerization",[22] the Working Party “Polymer Reaction Engineering” of EFCE[23] and acts as Deputy Chairman of the DECHEMA Technical Committee "Polyreaktionen".[24] In addition, he is lecturer in Dechema and responsible for the training course "Polymerisationstechnik". Legacy and honorsK.D. Hungenberg has won numerous awards at different talks and conferences during his professional career including honorary professorship at the University of Paderborn. With this appointment, the university paid tribute to his many years of dedication to research and teaching in the field of polymer reaction technology. K. D. Hungenberg had already established initial contacts with Paderborn in the late 1990s in the form of a research co-operations. Since 2004, he has been giving lectures on polymerization techniques and modeling of polymerization processes at the department of Technical Chemistry, University Paderborn. See also
References1. ^{{cite web|title=Top Companies|url=http://www.etcgroup.org/content/world%E2%80%99s-top-10-chemical-companies}} {{authority control}}{{DEFAULTSORT:Hungenberg, Klaus-Dieter}}2. ^{{cite web|title=Professorship at Paderborn|url=http://www.uni-paderborn.de/mitteilung/117691/|accessdate=17 September 2013}} 3. ^{{cite web|url=http://www.uni-due.de/tchem/fb/publik.pdf|title=PhD thesis}} 4. ^{{cite web|url=http://www.uni-due.de/tchem/fb/indexen.htm|title=Group of Prof. Bandermann}} 5. ^{{cite web|title=Patent on two stage emulsion polymerization|url=http://www.google.com/patents/DE4041186A1?cl=en}} 6. ^{{cite web|title=Patent on PVC|url=https://www.google.com/patents/EP0483529B1?cl=fr&dq=EP0483529A1,+HUNGENBERG+KLAUS+DIETER+DR+,+LYNCH+JOHN+DR&hl=en&sa=X&ei=n2A4UoHZCamX4wS9mIDACQ&ved=0CDcQ6AEwAA}} 7. ^{{cite web|title=Patent on PVC process|url=https://www.google.com/patents/EP0483529A1?cl=en&dq=High+impact+PVC+composition+with+good+transparency++hungenberg&hl=en&sa=X&ei=F2E4UqKWJKeI4ATY74CACw&ved=0CDcQ6AEwAA}} 8. ^{{cite web|title=Patent on Polyolefin|url=https://www.google.com/patents/EP0480190B1?cl=en&dq=Polypropylene+wax+with+high+hardness+and+crystallinity+hungenberg&hl=en&sa=X&ei=nGE4Urz-NKHo4QSAv4DgBQ&ved=0CEAQ6AEwAQ}} 9. ^{{cite web|title=Polyolefin process|url=https://www.google.com/patents/EP0463406B1?cl=en&dq=Propylene*+polymers+production+with+broad+mol.wt.+ratio++by++hungenberg&hl=en&sa=X&ei=vWI4Uuf5E4324QTyvIH4Aw&ved=0CDcQ6AEwAA}} 10. ^{{cite book|last=Hungenberg|first=K. D.|title=Progress in Gas Phase Polymerization of Propylene with Supported TiCl4 and Metallocene Catalysts|journal=Studies in Surface Science and Catalysis|year=1994|volume=89|pages=373–380|doi=10.1016/s0167-2991(08)63051-7|isbn=9780444986566}} 11. ^{{cite journal|last=Hungenberg|first=K. D.|title=Supported catalysts in stirred bed gas-phase reactors - from wax to ultrahigh-molecular-weight polypropylene|journal=Polymeric Materials Science and Engineering|year=1992|volume=67|series=55|issue=6}} 12. ^{{cite book|last=Hungenberg|first=K. D.|title=Papers of the 6th International Workshop on Polymer Reaction Engineering : Berlin, 5-7 October 1998|year=1998|publisher=Wiley VCH|location=Weinheim [u.a.]|isbn=978-3527102280|pages=295–311|editor=K.-H. Reichert}} 13. ^{{cite web|last=Hungenberg|first=K. D.|title=Production of methyl methacrylate polymer - by bulk polymerisation in a loop system with tube reactors and mixers, etc., at specified temperature and flow rate etc. with initiator|url=https://www.google.com/patents/DE4125477A1?cl=en&dq=Polyvinyl+halide+resin+compositions+-+contg.+two-stages+emulsion+polymer+with+methyl+methacrylate&hl=en&sa=X&ei=92Q4UtXgKKOr7Ab4qYCAAw&sqi=2&pjf=1&ved=0CDcQ6AEwAA}} 14. ^{{cite journal|last=Hungenberg|first=K. D.|title=Preparation and characterization of polyamide-6 with three-branched chains|journal=Journal of Applied Polymer Science|year=2001|volume=82 | issue = 13|pages=3184–3193|doi=10.1002/app.2177}} 15. ^{{cite journal |last1= Gao |first1= J. |last2= Hungenberg |first2= K. D. |last3= Penlidis |first3= A. |title=Process modeling and optimization of styrene polymerization |year=2004 |journal= Macromolecular Symposia |volume= 206 |doi=10.1002/masy.200450239 |pages= 509–522 }} 16. ^{{cite journal|last=Hungenberg|first=K. D.|author2=Schmidt, C.-U. |title=Optimierung der Produktqualitaet von Polymeren im Semibatch-Betrieb / Optimization of product quality of polymers in semibatch operation|journal=CEABA® Chemische Technik und Biotechnologie|year=1999}} 17. ^{{cite web|title=List of publications|url=http://onlinelibrary.wiley.com/advanced/search/results?start=1&resultsPerPage=20}} 18. ^1 {{cite book|last=Hungenberg|first=K. D.|title=Modern styrenic polymers : polystyrenes and styrenic copolymers|year=2003|publisher=John Wiley|location=Chichester|isbn=9780470867211|edition=[Online-Ausg.].|author2=Gao, J. |chapter=5}} 19. ^{{cite web|last=Hungenberg|first=K. D.|title=Editorial|url=http://www.succidia.de/fileadmin/user_upload/cover/chemie_more/cm0113.pdf|accessdate=17 September 2013|archive-url=https://web.archive.org/web/20130921061139/http://www.succidia.de/fileadmin/user_upload/cover/chemie_more/cm0113.pdf|archive-date=2013-09-21|dead-url=yes|df=}} 20. ^{{cite journal|last=Hungenberg|first=Klaus-Dieter|title=New Production and Enabling Technologies in Polymer Reaction Engineering|journal=Macromolecular Reaction Engineering|date=13 July 2009|volume=3|issue=5–6|pages=220|doi=10.1002/mren.200900027}} 21. ^{{cite web|last=Hungenberg|first=K. D.|title=Patents|url=http://patent.ipexl.com/inventor/Hungenberg_Klaus-Dieter_Dr_1.html}} 22. ^{{cite web|last=Hungenberg |first=K. D. |title=IUPAC |url=http://www.iupac.org/nc/home/about/members-and-committees/member-and-people/member-details.html?tx_wfqbe_pi1%5BACT_CONTACTID%5D=E3162330-6D9A-4082-A812-DEACE23D318E |archive-url=https://archive.today/20130917170137/http://www.iupac.org/nc/home/about/members-and-committees/member-and-people/member-details.html?tx_wfqbe_pi1%5BACT_CONTACTID%5D=E3162330-6D9A-4082-A812-DEACE23D318E |dead-url=yes |archive-date=17 September 2013 |accessdate=17 September 2013 |df= }} 23. ^{{cite web|last=Hungenberg|first=K. D.|title=Working group EFCE|url=http://www.efce.info/home.html|accessdate=17 September 2013}} 24. ^{{cite web|last=Hungenberg|first=K. D.|title=Chairman in Dechema|url=http://www.dechema.de/en/Research.html|accessdate=17 September 2013}} 6 : 1953 births|Living people|German chemists|University of Paderborn faculty|University of Duisburg-Essen alumni|BASF people |
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