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- Copper-tolerant brown-rot decay fungi exploit intricate mechanisms to neutralize the efficacy of copper-containing preservative formulations. The production and accumulation oxalate is the most widely recognized theory regarding the mechanism of copper-tolerance in these fungi. The role of oxalate, however, may be only one part of a series of necessary components required for this complex mechanism. Annotation of the Fibroporia radiculosa genes involved in copper-tolerance characterized a subset of proteins, three copper-transporting ATPase pumps, which regulate copper concentrations...AuthorsKatie M. Ohno, C.A. Clausen, Frederick Green, G. StanoszKeywordsSourceThe International Research Group on Wood Protection, section 1, Biology, IRG/WP 16-10859.Year2016
- Understanding what makes a good wood adhesive is difficult since the type of adhesive, wood species, bonding process, and resultant products vary considerably. Wood bonds are subjected to a variety of tests that reflect the different product performance criteria in diverse countries. The most common tests involve some type of moisture resistance; both wood and adhesive factors influence this moisture related failure. Models have been developed to explain the adhesive performance. The proper microscopic and spectroscopic techniques can lead to a better understanding of the failure mechanism...AuthorsCharles R. Frihart, James BeecherKeywordsSourceWorld Conference on Timber Engineering, WCTE 2016, August 22-25, 2016, Vienna, Austria.Year2016
- Many technologies can be demonstrated in the laboratory to give products that meet performance standards, but there are many hurdles to overcome before these products are commercially viable. Demonstrating performance under simulated commercial processes conditions is the first key step to be accomplished through using appropriate adhesive application, furnish selection, and bonding conditions. Then, after evaluation of economic feasibility, comes the need to scale up adhesive production on a consistent basis. With this accomplished, the adhesive needs to be applied and bonded in a...AuthorsCharles R. Frihart, Michael J. BirkelandKeywordsSourceWorld Conference on Timber Engineering, WCTE 2016, August 22-25, 2016, Vienna, Austria.Year2016
- EcoSmartFire is a Windows program that models heat damage and piloted ignition of structures from radiant exposure to discrete landscaped tree fires. It calculates the radiant heat transfer from cylindrical shaped fires to the walls and roof of the structure while accounting for radiation shadowing, attenuation, and ground reflections. Tests of litter burn, a 0.6 m diameter fire up to 250 kW heat release under a Heat Release Rate (HRR) hood, with Schmidt-Boelter heat flux sensors in the mockup wall receiving up to 5kW/m2 radiant flux, in conjunction with Fire Dynamic Simulator (FDS)...AuthorsMark A. Dietenberger, Charles R. BoardmanKeywordsSourceFire TechnologyYear2016
- Soy wood adhesive bond strengths reported in different literature studies are difficult to compare because a variety of temperatures and other conditions have been used for the bonding and testing step. Some reports have indicated bond strengths are sensitive to bonding temperature, but the reason(s) for this has not been intensively investigated. Although these prior studies differ in other ways (such as type of soy, wood species, and test method), the effect of bonding temperature has not been clearly examined, which is important for focusing commercial applications. A tensile shear test...AuthorsCharles R. Frihart, Thomas Coolidge, Chera Mock, Eder ValleKeywordsSourcePolymers 2016, 8, 394:1-10Year2016
- Sustainable, non-halogenated flame retardants are desired for a variety of industry applications. Lignin, as an industrially processed wood derivative, has been examined as a potential sustainable flame retardant additive to polymer systems. Here, the lignin is phosphorylated using a pyridine-catalysed esterification reaction with diphenyl phosphoryl chloride to improve its char-forming abilities. The chemical modification of the lignin was characterized by nuclear magnetic resonance spectroscopy and showed the formation of phosphorylated structures on the lignin. The thermal decomposition...AuthorsGamini P. Mendis, Sydney G. Weiss, Matthew Korey, Charles R. Boardman, Mark A. Dietenberger, Jeffrey P. Youngblood, John A. HowarterKeywordsSourceGreen MaterialsYear2016
- Size reduction homogenizes the bulk biomass and facilitates downstream feedstock handling, transportation, and storage. Effects of feeding rate, mill-type (hammer and knife mill), screen size, and moisture content on comminution energy consumption of commercial Douglas-fir (Pseudotsuga menziesii) pulp chips were quantified. The resulting particles were characterized by geometric mean diameter, size distribution, aspect ratio and bulk density. We also employed scanning electron microscopy (SEM) to visualize the dominant fracture surface features. A linear regression was used to describe the...AuthorsYalan Liu, Jinwu Wang, Michael P. WolcottKeywordsSourceIndustrial Crops and Products Vol. 94: 394-400.Year2016
- The molecular structure and properties of four sodium lignosulfates (LSs) derived from pulping or bioethanol production were evaluated and compared. SXP and SAL were produced by sulfite pulping and sulfonation reaction of lignin from alkali pulping of poplar, respectively. LS-180 and LS-150 were from sulfite pretreatment to overcome recalcitrance of lignocelluloses (SPORL) pretreatment of lodgepole pine for bioethanol production. The molecular weights of the two LSs from SPORL were much smaller than those from pulping. However, LS-180 and LS-150 had higher sulfur content, especially...AuthorsHaifeng Zhou, Dongjie Yang, Junyong ZhuKeywordsSourceJournal of Dispersion Science and Technology, 37(2): 296-303Year2016
- With the arising of global climate change and resource shortage, in recent years, increased attention has been paid to environmentally friendly materials. Trees are sustainable and renewable materials, which give us shelter and oxygen and remove carbon dioxide from the atmosphere. Trees are a primary resource that human society depends upon every day, for example, homes, heating, furniture, and aircraft. Wood from trees gives us paper, cardboard, and medical supplies, thus impacting our homes, school, work, and play. All of the above-mentioned applications have been well developed over the...AuthorsHongli Zhu, Wei Luo, Peter N. Ciesielski, Zhiqiang Fang, Junyong Zhu, Gunnar Henriksson, Michael E. Himmel, Liangbing HuKeywordsSourceChemical Reviews, Vol. 116(16): 9305-9374Year2016
- Continuous fibers are commonly manufactured for a wide variety of uses such as filters, textiles, and composites. For example, most fibrous reinforcements (e.g., carbon fiber, glass fiber) for advanced composites are continuous fibers or yarns, fabrics, and preforms made from them. This allows broad flexibility in design and manufacturing approaches by controlling fiber orientation and architecture. However, there has been growing interest in preparing continuous fibers from biobased materials such as plants. Of particular recent interest are nanocelluloses, which are projected to be less...AuthorsCraig M. ClemonsSourceJournal of Renewable Materials, Vol. 4(5): 327-339Year2016