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- The mechanism of wood bonding failure when exposed to wet conditions or wet/dry cycles is not fully understood and the role of the resulting internal stresses exerted upon the wood-adhesive bondline has yet to be quantitatively determined. Unlike previous modeling this study has developed a new two-dimensional internal-stress model on the basis of the mechanics of layered composites. Plywood panel is regarded as a multi-layered composite material where each layer (including bonding line) has different properties. When the plywood panel experiences moisture changes through its thickness,...AuthorsZhiyong CaiKeywordsPlywood, moisture, adhesives, adhesion, glue, mechanical properties, gluing, strains, stresses, models, elasticity, engineering models, wood deterioration, deterioration, composite materials, modulus of elasticity, orientation, density, wood bonding, moisture content, flexibility, failure, bonding, durability, bond strength, failures in wood, bondline, Poisson's ratio, linear expansion coefficientSourceWood Adhesives 2009 [electronic resource]. FPS proceedings no. 7216-09. Madison, WI : Forest Products Society, c2010 [1 CD-ROM]: p. 235-239: ISBN: 9781892529572: 1892529572.Year2010
- This work evaluated the use of conventional tests to show beneficial attributes of z-direction fiber orientation (ZDFO) for structural paperboards. A survey of commercial linerboards indicated the presence of ZDFO in one material that had higher Taber stiffness, out-of-plane shear strength, directional dependence of Scott internal bond strength and directional brightness. Laboratory handsheets were made with a specialized procedure to produce ZDFO. Handsheets with ZDFO had higher out-of-plane shear strength than handsheets formed conventionally. Materials with high out-of-plane shear...AuthorsJohn M. Considine, David W. Vahey, Roland L. Gleisner, Alan W. Rudie, Sabine Rolland du Roscoat, Jean-Francis BlochKeywordsOrientation, fibers, testing, shear, optical measurements, fiberboard, mechanical properties, paperboard, optical properties, Eucalyptus, paper, strength, dimensional stability, stiffness, pulp, fiber analysis, shear strength, fiber orientation, fiber properties, z-direction, microfibril angle, linerboards, bonding, bond strength, compressive strength, Taber stiffness, brightnessSourceTappi journal. Vol. 9, no. 10 (Oct. 2010): p. 25-32.Year2010
- Safer, highly effective biocides providing long-term protection of mold growth on wood-based materials is of interest to the wood protection industry. Moldicide formulations containing synergistic combinations of ingredients derived from natural sources are commonly recognized as a promising approach for the next generation of wood protectants. Although fatty acid (FA)–based chemistry has had some development in food sanitation and agriculture, little exploration relating to new mold inhibitors for wood and wood products has occurred. Low molecular weight, saturated monocarboxylic acids...AuthorsCarol A. Clausen, Robert D. Coleman, Vina YangKeywordsBiodegradation, molds, fungi, prevention, wood deterioration, wood-decaying fungi, wood biodegradation, wood preservatives, testing, fungicides, antifungal agents, fatty acids, pressure treatment, preserved wood, molds, blue stain, wood-staining fungi, biocides, decay fungi, mold prevention, wood decay, resistance to decay, preservatives, preservative treated wood, treated wood, ASTM D4445 standard, mold controlSourceForest products journal. Vol. 60, no. 3 (May 2010): p. 301-304.Year2010
- Fungal peroxygenases have recently been shown to catalyze remarkable oxidation reactions. The present study addresses the mechanism of benzylic oxygenations catalyzed by the extracellular peroxygenase of the argic basidiomycete Agrocybe aegerita. The peroxygenase oxidized toluene and 4-nitrotoluene via the corresponding alcohols and aldehydes to give benzoic acids. The reactions proceeded stepwise with total conversions of 93% for toluene and 12% for 4-nitrotoluene. Using H218O2 as the co-substrate, we show here that H2O2 is the source of the oxygen introduced at each reaction step. A....AuthorsMatthias Kinne, Christian Zeisig, Rene Ullrich, Gernot Kayser, Kenneth E. Hammel, Martin HofrichterKeywordsWood-decaying fungi, biodegradation, oxidation, chemical reactions, hydrogen peroxide, enzymes, biotechnology, industrial applications, Basidiomycetes, catalysis, fungi, oxygenases, peroxidase, toluene, benzaldehyde, alcohol, aldehydes, benzoic acid, hydroxylation, Agrocybe cylindracea, peroxygenase, decay fungi, wood decay, 4-nitrotoluene, P-450, benzylic hydroxylationSourceBiochemical and biophysical research communications. Vol. 397, no. 1 (June 18, 2010): p. 18-21.Year2010
- High yields of hemicellulosic and cellulosic sugars are critical in obtaining economical conversion of agricultural residues to ethanol. To optimize pretreatment conditions, we evaluated oxalic acid loading rates, treatment temperatures and times in a 23 full factorial design. Response-surface analysis revealed an optimal oxalic acid pretreatment condition to release sugar from the cob of Zea mays L. ssp. and for Pichia stipitis CBS 6054. To ferment the residual cellulosic sugars to ethanol following enzymatic hydrolysis, highest saccharification and fermentation yields were obtained...AuthorsJae-Won Lee, Rita C.L.B. Rodrigues, Hyun Joo Kim, In-Gyu Choi, Thomas W. JeffriesKeywordsOxalic acid, alcohol, fermentation, corncobs, corn, residues, pretreatment, biomass, biomass energy, fungi, biotechnology, yeast fungi, enzymes, cellulase, hemicellulose, industrial applications, factorial experiment design, temperature, Pichia stipitis, hydrolysis, lignin, biodegradation, glucose, ethanol, saccharification, response surface methodology, biomass fuel, biorefining, bioconversion, corn as fuel, xylan, decay fungiSourceBioresource technology. Vol. 101, no. 12 (June 2010): p. 4379-4385.Year2010
Second generation bioethanol production from Saccharum spontaneum L. ssp. aegyptiacum (Willd.) Hack.
Saccharum (Saccharum spontaneum L. ssp. aegyptiacum (Willd.) Hack.), is a rapidly growing, wide ranging high-yield perennial, suitable for second generation bioethanol production. This study evaluated oxalic acid as a pretreatment for bioconversion. Overall sugar yields, sugar degradation products, enzymatic glucan hydrolysis and ethanol production were studied as effects of temperature (150-190 °C), reaction time (10-40 min) and oxalic acid concentration (w/w). Time and temperature were combined into a: single parameter, Severity Factor (SF) [Log (Ro)], and related to oxalic acid using a...AuthorsDanilo Scordia, Salvatore L. Consentino, Thomas W. JeffriesKeywordsAlcohol, oxalic acid, fermentation, Saccharum spontaneum, pretreatment, biomass utilization, biomass energy, fungi, biotechnology, yeast fungi, hemicellulose, temperature, industrial applications, Pichia stipitis, enzymes, hydrolysis, sugars, Saccharomyces cerevisiae, cellulose, cellulase, ethanol, saccharification, biomass fuel, biorefining, bioconversion, decay fungi, hydrolysates, biofuels, pretreatment, hemicellulose hydrolysate, simultaneous saccharificationSourceBioresource technology. Vol. 101, no. 14 (July 2010): p. 5358–5365.Year2010- Unsaturated fatty acids have been proposed to mediate the oxidation of recalcitrant, non-phenolic lignin structures by fungal manganese peroxidases (MnP), but their precise role remains unknown. We investigated the oxidizability of three fatty acids with varying degrees of polyunsaturation (linoleic, linolenic, and arachidonic acids) by measuring conjugated dienes formation when lipid peroxidation was initiated either by MnP in the presence of Mn(II) or by chelated Mn(III). An inverse relationship between the degree of fatty acid unsaturation and the rate of peroxidation was found in both...AuthorsAlexander N. Kapich, Tatyana V. Korneichik, Annele Hatakka, Kenneth E. HammelKeywordsBiodegradation, enzymes, biotechnology, Basidiomycetes, wood-decaying fungi, fungi, industrial applications, lignin, lipids, fatty acids, peroxidation, oxidation, chemical reactions, linoleic acid, linolenic acids, arachidonic acid, manganese, Phanerochaete chrysosporium, manganese peroxidase, wood decay, white rot, decay fungiSourceEnzyme and microbial technology. Vol. 46, no. 2 (Feb. 5, 2010): p. 136-140.Year2010
- The wood industry can expand into new sustainable markets with the formation of a new class of composites with the marriage of the wood industry and the plastics industry. The wood component, usually a flour or fiber, is combined with a thermoplastic to form an extrudable, injectable or thermoformable composite that can be used in many non-structural applications.AuthorsDaniel F. Caulfield, Craig M. Clemons, Roger M. RowellKeywordsWood-plastic composites, thermoplastic composites, extrusion process, injection molding of plastics, composite materials, moisture, wood flour, fiber-reinforced plastics, fibrous composites, cellulose fibers, plant fibers, fibers, forest products industry, economic aspects, forest products, sustainable forestry, mechanical properties, weathering, thermal properties, marketing, market surveys, wood-plastic materialsSourceSustainable development in the forest products industry, Chapter 6. Porto, Portugal : Universidade Fernando Pessoa, 2010: p. 141-161: ISBN: 9789896430528.Year2010
- In this study, the effects of microwave radiation intensity, radiation time and initial wood moisture content (MC) on the properties of temperature development in Eucalyptus urophylla wood samples during the microwave explosion pretreatment have been investigated using a new microwave pretreatment equipment. The results show that 1) with the increase of microwave radiation intensity and a decrease in initial wood MC, both the average temperature and its rate of increase in wood rise rapidly; 2) with an increase in microwave radiation time, the average temperature of wood clearly increases,...AuthorsXian-jun Li, Ke-yang Lu, Lan-ying Lin, Yong-dong Zhou, Zhiyong Cai, Feng FuKeywordsSourceForestry studies in China. Vol. 12, no. 1 (Mar. 2010): p. 9-13.Year2010
- The objective is to evaluate the primary mechanical and physical properties of particleboard made from hammer-milled rice straw particles of six different categories and two types of resins. The results show the performance of straw particleboards is highly dependent upon the straw particle size controlled by the opening size of the perforated plate inside the hammer-mill. The static bending and internal bonding strength of polymeric diphenylmethane diisocyanate (pMDI) resin-bonded boards initially increase then: decrease with decreased particle size. The thickness swelling, water absorptio...AuthorsXianjun Li, Zhiyong Cai, Jerrold Winandy, Altaf H. BastaKeywordsParticle board, mechanical properties, elasticity, bending, composite materials, gums, resins, urea-formaldehyde resins, water absorption, water adsorption, adhesives, rice, residues, rice straw, strength, physical properties, bond strength, diphenylmethane diisocyanate, particle size, bending strength, swellingSourceBioresource technology. Vol. 101, no. 12 (June 2010): p. 4662-4666.Year2010