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- In this work, we evaluate the impact of nanocellulose reinforcement on transparent composite properties. Due to the small diameter, high modulus, and high strength of cellulose nanocrystals, transparent composites that utilize these materials should show improvement in bulk mechanical performances without a corresponding reduction in optical properties. In this study composites were reinforced using dispersed nanoparticles as well as continuous architecture developed from hydrogel-based processes. Poly(methyl methacrylate) and Bisphenol F resin systems were integrated with nanocellulose of...AuthorsJoshua Steele, Hong Dong, James F. Snyder, Josh A. Orlicki, Richard Reiner, Alan W. RudieKeywordsSourceIn: Proceedings of SAMPE, Baltimore, MD. 21-24 May 2012.Year2012
- Semi-interpenetrating network hydrogel films were prepared using hemicellulose and chemically crosslinked chitosan. Hemicellulose was extracted from aspen by using a novel alkaline treatment and characterized by HPSEC, and consisted of a mixture of high and low molecular weight polymeric fractions. HPLC analysis of the acid hydrolysate of the hemicellulose showed that its major constituent sugar was xylose. X-ray analysis showed that the relative crystallinity of hydrogels increased with increasing hemicellulose content up to 31.3%. Strong intermolecular interactions between chitosan and...AuthorsMuzaffer Ahmet Karaaslan, Mandla A. Tshabalala, Gisela Buschle-DillerKeywordsSourceJournal of Applied Polymer Science, Volume 124, pp. 1168-1177; 2012.Year2012
- In the research, thermogravimetry (TG), a combination of thermogravimetry and Fourier transform infrared spectrometer (TG–FTIR) and X-ray diffraction (XRD) were used to investigate pyrolysis characteristics of moso bamboo (Phyllostachys pubescens). The Flynn–Wall–Ozawa and Coats–Redfern (modified) methods were used to determine the apparent activation energy (Ea). The TG curve indicated that the pyrolysis process of moso bamboo included three steps and the main pyrolysis occurred in the second steps with temperature range from 450 K to 650 K and over 68.69% mass was degraded. TG–FTIR...AuthorsZehui Jiang, Zhijia Liu, Benhua Fei, Zhiyong Cai, Yan Yu, Xing’e LiuKeywordsSourceJournal of Analytical and Applied Pyrolysis, 94 (2011) 48-52.Year2012
- In Scheffersomyces (Pichia) stipitis and related fungal species the genes for L-rhamnose catabolism RHA1, LRA2, LRA3 and LRA4 but not LADH are clustered. We find that located next to the cluster is a transcription factor, TRC1, which is conserved among related species. Our transcriptome analysis shows that all the catabolic genes and all genes of the cluster are up-regulated on L-rhamnose. Among genes that were also upregulated on L-rhamnose were two transcription factors including the TRC1. In addition, in 16 out of the 32 analysed fungal species only RHA1, LRA2 and LRA3 are physically...AuthorsOuti M. Koivistoinen, Mikko Arvas, Jennifer R. Headman, Martina Andberg, Merja Penttilä, Thomas W. Jeffries, Peter RichardSourceGene, 492 (2012) 177-185Year2012
- Fermentation of cellulosic and hemicellulosic sugars from biomass could resolve food-versus-fuel conflicts inherent in the bioconversion of grains. However, the inability to coferment glucose and xylose is a major challenge to the economical use of lignocellulose as a feedstock. Simultaneous cofermentation of glucose, xylose, and cellobiose is problematic for most microbes because glucose represses utilization of the other saccharides. Surprisingly, the ascomycetous, beetle-associated yeast Spathaspora passalidarum, which ferments xylose and cellobiose natively, can also coferment these...AuthorsYi-Kai Su, Jennifer Headman, Alan Higbee, Laura B. Willis, Tanya M. Long, Thomas W. JeffriesSourceApplied and Environmental Microbiology p. 5492–5500 August 2012 Volume 78 Number 16; 2012.Year2012
- Response surface methodology (RSM), based on a 22 full factorial design, evaluated the moisture effects in recovering xylose by diethyloxalate (DEO) hydrolysis. Experiments were carried out in laboratory reactors (10 mL glass ampoules) containing corn stover (0.5 g) properly ground. The ampoules were kept at 160 °C for 90 min. Both DEO concentration and corn stover moisture content were statistically significant at 99% confidence level. The maximum xylose recovery by the response surface methodology was achieved employing both DEO concentration and corn stover moisture at near their...AuthorsRita C.L.B. Rodrigues, William R. Kenealy, Diane Dietrich, Thomas W. JeffriesKeywordsSourceBioresource Technology, 108 (2012) 134-139.Year2012
- Industrial biotechnology aims to develop robust microbial cell factories, such asAuthorsGionata Scalcinati, Jose´ Manuel Otero, Jennifer R.H. Van Vleet, Thomas W. Jeffries, Lisbeth Olsson, Jens NielsenKeywordsSourceFEMS Yeast Res (2012) pp. 1–16; 2012.Year2012
- The objective of this study was to evaluate the production of ethanol by Scheffersomyces (Pichia) stipitis CBS6054, a native xylose fermenting yeast, from sugars contained in the giant reed (Arundo donax L.) hemicellulosic hydrolysate.AuthorsDanilo Scordia, Salvatore L. Cosentino, Jae-Won Lee, Thomas W. JeffriesKeywordsSourceBiomass and Bioenergy, 39 (2012) 296-305Year2012
- To investigate chemical and color changes of the polymeric constituents of black locust (Robinia pseudoacacia) wood during heat treatment, extractive-free wood flour was conditioned to 30% initial moisture content (MC) and heated for 24 h at 120 °C in either an oxygen or nitrogen atmosphere. The color change was measured using the CIELAB color system. Chemical changes of the wood components were determined by means of solid state cross-polarization/magic angle spinning 13C-nuclear magnetic resonance (CPMAS-13C-NMR), Fourier transform infrared (FTIR), diffuse reflectance UV-Vis (DRUV)...AuthorsJianmin Gao, Yao Chen, Yongming Fan, Mandla A. Tshabalala, Nicole M. StarkKeywordsSourceBioResources Volume 7, Number 2, 2236-2248; 2012Year2012
- Paenibacillus sp. strain JDR-2, an aggressively xylanolytic bacterium isolated from sweetgum (Liquidambar styraciflua) wood, is able to efficiently depolymerize, assimilate and metabolize 4-O-methylglucuronoxylan, the predominant structural component of hardwood hemicelluloses. A basis for this capability was first supported by the identification of genes and characterization of encoded enzymes and has been further defined by the sequencing and annotation of the complete genome, which we describe. In addition to genes implicated in the utilization of β-1,4-xylan, genes have also been...AuthorsVirginia Chow, Guang Nong, Franz St. John, John D. Rice, Ellen Dickstein, Olga Chertkov, David Bruce, Chris Detter, Thomas Brettin, James Han, Tanja Woyke, Sam Pitluck, Matt Nolan, Amrita Pati, Joel Martin, Alex Copeland, Miriam L. Land, Lynne Goodwin, Jeffrey B. Jones, Lonnie O. Ingram, Keelnathan T. Shanmugam, James F. PrestonKeywordsSourceStandards in Genomic Sciences (2012) 6:1-10.Year2012