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Deciphering Biomass Fragmentation Using Millisecond Micro-reactor Kinetics

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개인저자Maduskar, Saurabh.
단체저자명University of Minnesota. Chemical Engineering.
서명/저자사항Deciphering Biomass Fragmentation Using Millisecond Micro-reactor Kinetics.
발행사항[S.l.] : University of Minnesota., 2018
발행사항Ann Arbor : ProQuest Dissertations & Theses, 2018
형태사항134 p.
소장본 주기School code: 0130.
ISBN9780438169173
일반주기 Source: Dissertation Abstracts International, Volume: 79-12(E), Section: B.
Adviser: Paul J. Dauenhauer.
요약Pyrolytic conversion of lignocellulosic biomass utilizes high temperatures to thermally fragment biopolymers to volatile organic compounds. The complexity of the degradation process includes thousands of reactions through multiple phases occurri
요약Current research of complex chemical systems, including biomass pyrolysis, requires analysis of large analyte mixtures (>100 compounds). Quantification of each carbon-containing analyte by existing methods (flame ionization detection) requires e
요약The requirements are established for measuring the reaction kinetics of high temperature (>400 째C) biomass pyrolysis in the absence of heat and mass transfer limitations. Experimental techniques must heat and cool biomass samples sufficiently fa
요약Levoglucosan (LGA), a six-carbon oxygenate, is the most abundant primary product from cellulose pyrolysis with LGA yields reported over a wide range of 5--80 percent carbon (%C). In this study, the variation of the observed yield of LGA from cel
요약PHASR experiments were performed to measure apparent kinetic parameters of cellulose fragmentation. The LGA formation step was decoupled from the initiation reactions by identifying cellobiosan as a chemical surrogate for cellulose pyrolysis int
일반주제명Chemical engineering.
언어영어
기본자료 저록Dissertation Abstracts International79-12B(E).
Dissertation Abstract International
대출바로가기http://www.riss.kr/pdu/ddodLink.do?id=T14998764

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