Treesearch
Search National Treesearch
Displaying 1,851 - 1,860 of 4,647 Publications
- Sliding friction between cellulose Iß nanocrystals is studied using molecular dynamics simulation. The effects of sliding velocity, normal load, and relative angle between sliding surface are predicted, and the results analyzed in terms of the number of hydrogen bonds within and between the cellulose chains. We find that although the observed friction trends can be correlated with hydrogen bonding, it may not be the most significant factor in determining frictional behavior on cellulose nanocrystal surfaces.AuthorsXiawa Wu, Robert J. Moon, Ashlie MartiniKeywordsSourceTribol Lett Volume 52, 2013; pp. 395-405.Year2013
- Wind-driven rain provides the primary external moisture load for exterior walls.Water absorption by the cladding, runoff, and penetration through the cladding or at details determine how a wall system performs. In this paper we describe a new laboratory facility that can create controlled outdoor and indoor conditions and use it to investigate the water management performance of a typical exterior wall assembly. Specifically we have quantified how much water gets past the cladding and hits the water-resistive barrier under particular conditions for a common lap siding.AuthorsCharles R. Boardman, Samuel V. GlassKeywordsSourcePublished by ASHRE 2013, Thermal Performance of the Exterior Envelopes of Whole Buildings XII International Conference; 2013; 11 p.Year2013
- In spite of the significant potential of cellulose nanocrystals as functional nanoparticles for numerous applications, a fundamental understanding of the mechanical properties of defect-free, crystalline cellulose is still lacking. In this paper, the elasticity matrix for cellulose Iß with hydrogen bonding network A was calculated using ab initio density functional theory with a semi-empirical correction for van der Waals interactions. The computed Young’s modulus is found to be 206 GPa along [001] (c-axis), 98 GPa along [010] (b-axis), and 19 GPa along [100] (a-axis). Full compliance...AuthorsFernando L. Dri, Louis G. Jr. Hector, Robert J. Moon, Pablo D. ZavattieriSourceCellulose, Volume 20, 2013; pp. 2703-2718.Year2013
- The movement of chemicals through wood is necessary for decay and fastener corrosion to occur in forest products. However, the mechanism responsible for the onset of fastener corrosion and decay in wood is not known. The onset occurs before the formation of free water in wood cavities and aqueous chemical transport would be possible. Here, we propose that the onset mechanism is the hemicelluloses going through a moisture induced glass transition. As nm-scale regions of mechanically softened hemicelluloses in cell walls percolate, pathways for chemical transport are created. The ability of...AuthorsJoseph Jakes, Nayomi Plaza, Donald S. Stone, Christopher G. Hunt, Samuel V. Glass, Samuel L. ZelinkaKeywordsSourceJOURNAL OF FOREST PRODUCTS & INDUSTRIES, Volume 2, Number 6, 2013; pp. 10-13.Year2013
- Forest harvest residues can be a cost-effective feedstock for a biorefinery, but the high lignin content of forest residues is a major barrier for enzymatic sugar production. Sulfite pretreatment to overcome strong recalcitrance of lignocelluloses (SPORL) was applied to a Douglas-fir (Pseudotsuga menziesii (Mirb) Franco var. menziesii) forest residue in a range of sulfite and acid loadings at 165 °C for 75 min with liquid to wood ratio of 3:1. Sodium bisulfite and sulfuric acid charge as mass fraction of oven dry biomass of 12% and 2.21%, respectively, was optimal in terms of enzymatic...AuthorsShao-Yuan Leu, Junyong Zhu, Roland L. Gleisner, John Sessions, Gevan MarrsKeywordsSourceBiomass and Bioenergy, Volume 59, 2013; pp. 393-401.Year2013
- Thermochemical pretreatment of lignocellulose is crucial to bioconversion in the fields of biorefinery and biofuels. However, the enzyme inhibitors in pretreatment hydrolysate make solid substrate washing and hydrolysate detoxification indispensable prior to enzymatic hydrolysis. Sulfite pretreatment to overcome recalcitrance of lignocelluloses (SPORL) is a relatively new process, but has demonstrated robust performance for sugar and biofuel production from woody biomass in terms of yield and energy efficiency. This study demonstrated the advantage of SPORL pretreatment whereby the...AuthorsZhaojiang Wang, Junyong Zhu, Yingjuan Fu, Menghua Qin, Zhiyong Shao, Jungang Jiang, Fang YangKeywordsSourceBiotechnology for Biofuels Volume 6, 2013; 10 p.Year2013
- Mountain pine beetle killed Lodgepole pine (Pinus contorta Douglas ex Loudon) wood chips were pretreated using an acidic sulfite solution of approximately pH = 2.0 at a liquor to wood ratio of 3 and sodium bisulfite loading of 8 wt % on wood. The combined hydrolysis factor (CHF), formulated from reaction kinetics, was used to design a scale-up pretreatment on 2000 g wood chips at a relatively low temperature of 165 °C that reduced furan formation and facilitated high solids saccharification and fermentation. The pretreated solids and liquor were disk milled together to result in a biomass...AuthorsHaifeng Zhou, Junyong Zhu, Xiaolin Luo, Shao-Yuan Leu, Xiaolei Wu, Roland L. Gleisner, Bruce S. Dien, Ronald E. Hector, Dongjie Yang, Xueqing Qiu, Eric Horn, Jose NegronKeywordsSourceIndustrial and Engineering Chemistry Research. 52, pp. 16057-16065.Year2013
- Experimental wood–plastic composites (WPCs) were made so that they matched the manufacturing process, dimensions, and water absorption of some commercial decking boards. WPC samples from selected formulations were divided into two identical groups. The first group was exposed in exterior conditions in Vancouver, British Columbia, and Hilo, Hawaii, at sun and shadow sites. Water absorption and biological activity were monitored by field inspection, density change measurement, and optical and scanning electron microscopy. The second group was used for soil block culture testing performed...AuthorsRebecca E. Ibach, Marek Gnatowski, Grace SunKeywordsSourceForest Prod. J. Volume 63, Number 3/4, pp. 76–87.Year2013
- Carbon is continuously cycled among these storage pools and between forest ecosystems and the atmosphere as a result of biological processes in forests (e.g., photosynthesis, respiration, growth, mortality, decomposition, and disturbances such as fires or pest outbreaks) and anthropogenic activities (e.g., harvesting, thinning, clearing, and replanting). As trees photosynthesize and grow, C is removed from the atmosphere and stored in living tree biomass. As trees die and otherwise deposit litter and debris on the forest floor, C is released to the atmosphere and also is transferred to the...AuthorsK. SkogKeywordsSourceIn: Inventory of U.S. greenhouse gas emissions and sinks: 1990-2011. USEPA #430-R-13-001. Wash, DC: 7-13 to 7-25; Annex 3 Section 3.12. 67 pYear2013
- Depending on the duration and temperature, heat can adversely affect structural properties of wood. While severe temperatures will result in damage that is visually obvious, damage to wood in terms of structural performance extends to wood that visually appears to be unaffected or only mildly affected. The loss in structural capacity includes both reductions for the duration of the elevated temperature exposure and reductions that are permanent even after normal temperatures are restored. While extensive work has been done to develop techniques for assessing, using nondestructive evaluation...AuthorsRobert H. White, Brian Kukay, James WackerKeywordsSourceUSDA Forest Service, Forest Products Laboratory, General Technical Report, FPL-GTR-226. pp. 528-535.Year2013