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- Storing carbon (C) and offsetting carbon dioxide (CO2) emissions with the use of wood for energy, both of which slow emissions of CO2 into the atmosphere, present significant challenges for forest management (IPCC 2001).AuthorsKenneth E. Skog, Duncan C. McKinley, Richard Birdsey, Sarah J. Hines, Christopher W. W. Woodall, Elizabeth Reinhardt, James VoseSourceIn: Climate Change and United States Forests, Advances in Global Change Research 57 2014; pp. 151-182.Year2014
- There is currently a considerable interest in developing bio-based and green nanocomposites in industrial and technological areas owing to their biodegradability, biocompatibility, and environmental friendliness. In this study, a bio-based nanosized material, cellulose nanocrystals (CNC), extracted from southern pine pulp was employed as a reinforcing agent in a natural rubber (NR) matrix. NR/CNC nanocomposites were prepared by a solution mixing and casting method. The morphology, thermal, and mechanical properties of the nanocomposites were investigated using scanning electron microscopy,...AuthorsYi Dan, Jun Peng, Lih-Sheng Turng, Chunmei Zhang, Ronald C. Sabo, Craig M. ClemonsSourceAdvances in Polymer Technology, Volume 33, Number S1, 2014; 7 p.Year2014
- Root and stem wood anatomy of C. myrianthum (Verbenaceae) from a semideciduous seasonal forest in Botucatu municipality (22º52’20”S and 48º26’37”W), São Paulo state, Brazil, were studied. Growth increments demarcated by semi-ring porosity and marginal bands of axial parenchyma were observed in the wood of both root and stem. Many qualitative features were the same in both root and stem: fine helical thickenings, and simple and multiple perforation plates in vessel elements; large quantities of axial parenchyma in the growth rings, grading from marginal bands and confluent forming irregular...AuthorsCarmen Regina Marcati, Leandro Roberto Longo, Alex C. Wiedenhoeft, Claudia Franca BarrosSourceRodriguésia Volume 65, Number 3, 2014; pp. 567-576.Year2014
- Xylans are the predominant polysaccharides in hemicelluloses and an important potential source of biofuels and chemicals. The ability of Bacillus subtilis subsp. subtilis strain 168 to utilize xylans has been ascribed to secreted glycoside hydrolase family 11 (GH11) and GH30 endoxylanases, encoded by the xynA and xynC genes, respectively. Both of these enzymes have been defined with respect to structure and function. In this study, the effects of deletion of the xynA and xynC genes, individually and in combination, were evaluated for xylan utilization and formation of acidic xylooligosaccha...AuthorsMun Su Rhee, Lusha Wei, Neha Sawhney, John D. Rice, Franz St. John, Jason C. Hurlbert, James F. PrestonSourceApplied and Environmental Microbiology, February 2014 Volume 80 Number 3, 2014; p.917–927.Year2014
- The response and behavior of bamboo green, timber, and yellow of moso bamboo (Phyllostachys heterocycla) to three pretreatments, sulfite (SPORL), dilute acid (DA), and alkali (NaOH), were investigated and compared with varied chemical loadings at 180 °C for 30 min with a 6.25:1 (v/w) liquor-to-bamboo ratio. All the pretreatments improved the enzymatic digestibility of bamboo substrates. Under the investigated conditions, the DA pretreatment achieved better enzymatic digestibility, but had lower sugar recovery yield, and formed more fermentation inhibitors. The results suggested that the...AuthorsZhiqiang Li, Zehui Jiang, Benhua Fei, Zhiyong Cai, Xuejun PanKeywordsSourceBioresource Technology, Volume 151, 2014; pp. 91-99.Year2014
- Several years ago the Laplace transform solutions of Luikov’s differential equations were presented for one-dimensional heat and moisture transfer in porous hydroscopic orthotropic materials for the boundary condition of a gradual heat pulse applied to both surfaces of a flat slab. This paper presents calibration methods and data for the K-tester 637 (Lasercomp), allowing use of the mathematical solutions to measure material properties. The K-tester supplies a quasi-heat-pulse to both sides of a 2-ft-square specimen and records signals as function of time from surface thermocouples and...AuthorsMark A. Dietenberger, Charles R. BoardmanSourceIn: NATAS North American Thermal Analysis Society, September 14-17, 2014, Santa Fe, New Mexico Technical Program of the 42nd NORTH AMERICAN THERMAL ANALYSIS SOCIETY CONFERENCE, paper 135, 2014; 12 p.Year2014
- Basidiomycota (basidiomycetes) make up 32% of the described fungi and include most wood-decaying species, as well as pathogens and mutualistic symbionts. Wood-decaying basidiomycetes have typically been classified as either white rot or brown rot, based on the ability (in white rot only) to degrade lignin along with cellulose and hemicellulose. Prior genomic comparisons suggested that the two decay modes can be distinguished based on the presence or absence of ligninolytic class II peroxidases (PODs), as well as the abundance of enzymes acting directly on crystalline cellulose (reduced in...AuthorsRobert Riley, Asaf A. Salamov, Daren W. Brown, Laszlo G. Nagy, Dimitrios Floudas, Benjamin W. Held, Anthony Levasseur, Vincent Lombard, Emmanuelle Morin, Robert Otillar, Erika A. Lindquist, Hui Sun, Kurt M. LaButti, Jeremy Schmutz, Dina Jabbour, Hong Luo, Scott E. Baker, Antonio G. Pisabarro, Jonathan D. Walton, Robert A. Blanchette, Bernard Henrissat, Francis Martin, Daniel Cullen, David S. Hibbett, Igor V. GrigorievKeywordsSourcePNAS, July 8, 2014, Volume 111, Number 27, 2014; pp.9923-9928.Year2014
- Extracellular peroxide generation, a key component of oxidative lignocellulose degradation, has been attributed to various enzymes including the copper radical oxidases. Encoded by a family of structurally related sequences, the genes are widely distributed among wood decay fungi including three recently completed polypore genomes. In all cases, core catalytic residues are conserved, but five subfamilies are recognized. Glyoxal oxidase, the most intensively studied representative, has been shown physiologically connected to lignin peroxidase. Relatively little is known about structure–funct...AuthorsPhilip J. Kersten, Daniel CullenKeywordsSourceFungal Genetics and Biology, Volume 72, 2014; pp. 124-130.Year2014
- The white-rot basidiomycetes efficiently degrade all wood cell wall polymers. Generally, these fungi simultaneously degrade cellulose and lignin, but certain organisms, such as Ceriporiopsis subvermispora, selectively remove lignin in advance of cellulose degradation. However, relatively little is known about themechanismof selective ligninolysis. To address this issue, C. subvermispora was grown in liquidmediumcontaining ball-milled aspen, and nano-liquid chromatography-tandemmass spectrometry was used to identify and estimate extracellular protein abundance over time. Several manganese...AuthorsChiaki Hori, Jill Gaskell, Kiyohiko Igarashi, Philip J. Kersten, Michael Mozuch, Masahiro Samejima, Daniel CullenKeywordsSourceAppl. Environ. Microbiol. 2014, Volume 80, Number 7, pp. 2062-2070.Year2014
- We examined gene expression patterns in the lignin-degrading fungus Phanerochaete chrysosporium when it colonizes hybrid poplar (Populus alba tremula) and syringyl (S)-rich transgenic derivatives. Acombination ofmicroarrays and liquid chromatography- tandem mass spectrometry (LC-MS/MS) allowed detection of a total of 9,959 transcripts and 793 proteins. Comparisons of P. chrysosporium transcript abundance in medium containing poplar or glucose as a sole carbon source showed 113 regulated genes, 11 of which were significantly higher (> 2-fold, P < 0.05) in transgenic line 64...AuthorsJill Gaskell, Amber Marty, Michael Mozuch, Philip J. Kersten, Sandra Splinter Bondurant, Grzegorz Sabat, Ali Azarpira, John Ralph, Oleksandr Skyba, Shawn D. Mansfield, Robert A. Blanchette, Daniel CullenKeywordsSourceAppl. Environ. Microbiol. 2014, Volume 80, Number 18, 2014; pp. 5828-5835.Year2014