• Title/Summary/Keyword: Steaming explosion

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Studies on the Production of Roughages from Hyun-aspen(Populus Alba × P. Glandulosa) by Steaming-Defibration and Steaming-Explosion (열해섬(熱解纖) 및 폭쇄처리에 의한 현사시 나무의 조사료화(粗飼料化) 연구(硏究))

  • Kang, Chin-Ha;Paik, Ki-Hyon
    • Journal of the Korean Wood Science and Technology
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    • v.17 no.4
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    • pp.57-69
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    • 1989
  • Roughage feeds were produced from Hyun-aspen (Populus alba $\times$ p. glandulosa) by steaming-defibration and steaming-explosion. The objectives of this work were to find proper conditions for the treatment of Hyun-aspen by analyzing the compositional change and digestibility and to investigate the change of physical properties of exploded woods. The results of this work were as follows; 1. The method of steaming-de fibration gave the best producing rate of feedstuffs when the chips were steamed (9kg/$cm^2$ under the pressure) for 10 minutes. The yield and the digestibility of feedstuffs were 84.2% and 38.1%, respectively. It is the merit of this method that feedstuffs manufactured by this method was uniformity in particle size, and facilities of fiberboard factory could be used directly, 2. For defibration of the chip by explosion, the proper condition was steamed under the pressure (20kg/$cm^2$) for 4 minutes. The yield and the digestibility of feedstuffs were 93.4% and 68.1%, respectively. The feedstuffs produced under these conditions had higher nutritional quality than rice straw and this method was considered as the best for making feedstuffs from Hyun-aspen chip. But it is defect that exploded feedstuffs was ununiformity in particle size and had unique odor. The physical properties of the feedstuffs were investigated by a light microscope and a TEM. The feedstuffs produced under the low pressure (20 kg/$cm^2$) still maintained the structure of fibers. However, the feedstuffs produced under the high pressure (28 kg/$cm^2$) resulted in higher de fib ration than these prepared under the low pressure. The highly defibrated feedstuffs recombined with solublized lignin. The crystallinity of feedstuffs was increased by 10% and micelle width increased double after treatment.

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Uitlization of Ligno-cellulosic Biomass(I) - Manufacture of Explosion Apparatus and Composition of Explode Wood - (목질계(木質系) Biomass의 이용(利用)(I) - 폭쇄장치(爆碎裝置)의 제작(製作) 및 폭쇄재(爆碎材)의 조성(組成) -)

  • Lee, Jong-Yoon;Park, Sang-Jin;Lee, Seok-Gun;Cho, Nam-Seok;Chang, Jun-Pok;Ann, Byung-Jo
    • Journal of the Korean Wood Science and Technology
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    • v.17 no.2
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    • pp.65-73
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    • 1989
  • Steam explosion process is an efficient pretreatment method for sparating and utilizing wood main components has attracted attention in utilization of ligno-cellulosic biomass. In order to obtain the effective pretreatment condition. this study was made explosion apparatus. examined the composition. extraction of exploded wood. Wood chips of pine(Pinus densiflora oak (Quercus serrata) and birch wood (Belula platyphylla var. japonica) were treated with a high pressure steam(20-30 kg/$cm^2$, 2-6 minutes). The results can be summarized as follow; In analysis of exploded wood(EXW). It was found arabinose residues rapidly decreased with increasing of steaming time and pressure. Extractives of EXW with sodium hydroxide increased with increasing of steaming-time and- pressure especially extractives 1% sodium hydroxide has higher than other extracted method extractives of hard wood(oak, birch) has higher than pine wood. In EXW extracted with sodium hydroxide and methanol lignin was partially delignified alkali extraction was more delignified than methanol extraction hardwood than pine wood.

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The Separation, Purification and Utilization of Wood Main Components by Steam Explosion in Low Pressure (III) - Characterization and Utilization of Lignin - (저압(低壓) 폭쇄처리(爆碎處理)에 의한 목재주성분(木材主成分)의 분리(分離)·정제(精製) 및 이용(利用) (III) - Lignin의 화학적(化學的) 성상(性狀) 및 이용(利用) -)

  • Eom, Tae-Jin;Eom, Chan-Ho;Lee, Jong-Yoon
    • Journal of the Korean Wood Science and Technology
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    • v.24 no.3
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    • pp.45-50
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    • 1996
  • Wood chips of oak(Quercus mongolica) and larch(Larix leptolepis) were treated with low pressure steaming explosion. Main components of exploded wood were separated with hot water and methanol extraction. Crude lignin separated from those extractives were purified and those chemical characteristics were investigated. And also, lignin adhesive was prepared from crude lignin and studied those chemical characteristics. The results can be summarized as follows ; 1. The purified lignin by Bj$\ddot{o}$kman's method from crude lignin is about 30% in exploded oak wood and is about 11% in exploded larch wood as a low amount. 2. The phenolic hydroxyl groups in the purified lignins are little higher than those of MWL and molecular weight distributions of the purified lignins are some lower than that of MWL. 3. Alkaline nitrobenzene oxidation products are very low in the clude lignin but those are increased in the purified lignin 4. The gravity of lignin resins(1.15 and 1.13) are a little lower than that of phenol resin(1.16) and the compressive shearing strength of lignin resins are higher than those of phenol resin.

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Antioxidant and Safety Test of Natural Extract of Quercus mongolica (신갈나무 추출물의 안전성 및 항산화성)

  • Jung, Ji-Young;Yang, Jae-Kyung;Lee, Won-Hee
    • Journal of the Korean Wood Science and Technology
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    • v.45 no.1
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    • pp.116-125
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    • 2017
  • In this study, natural extract of Ouercus mongolica by steaming explosion treatment were tested for antioxidant activity and safety. To determine the antioxidative properties of the hot water extracts, experiments were carried out by dividing into four groups (10 mice per group) of four-week-old B6C3F1 male mice from Air Logistics, Japan. As safety test, cell viability test, oral toxicity test were done. The activity of peroxidase was increased by more than 29% in the group treated with hydrothermal extract. From 4 kinds of safety tests, toxicity was not observed. From experimental results, natural extract of Ouercus mongolica by steaming explosion treatment showed superb safety and antioxidant effect.

Ethanol Production from Artificial Domestic Household Waste Solubilized by Steam Explosion

  • Nakamura, Yoshitoshi;Sawada, Tatsuro
    • Biotechnology and Bioprocess Engineering:BBE
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    • v.8 no.3
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    • pp.205-209
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    • 2003
  • Solubilization of domestic household waste through Steam explosion with Subsequent ethanol production by the microbial saccharifitation and fermentation of the exploded product was studied. The effects of steam explosion on the changes of the density, viscosity, pH, and amounts of extractive components in artificial household waste were determined. The composition of artificial waste used was similar to leftover waste discharged from a typical home in Japan. Consecutive microbial saccharification and fermentation, and simultaneous microbial saccharification and fermentation of the Steam-exploded product were attempted using Aspergillus awamori, Trichoderma viride, and Saccharomyces cerevisiae; the ethanol yields of each process were compared. The highest ethanol yield was obtained with simultaneous microbial saccharification and fermentation of exploded product at a steam pressure of 2 MPa and a steaming time of 3 min.

Anaerobic Fermentation of Woody Biomass Treated by Various Methods

  • Nakamura, Yoshitoshi;Mtui, Godliving
    • Biotechnology and Bioprocess Engineering:BBE
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    • v.8 no.3
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    • pp.179-182
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    • 2003
  • Anaerobic fermentation was attempted to produce methane from the wood chip (Eucalyptus globulus). By the pretreatment of the wood chip using hot water with high temperature, NaOH, and steam explosion, the production of methane gas was enhanced. The pretreatment using Steam explosion resulted in more amount of methane gas produced than the treatment using either hot water or 1% (w/w) NaOH with high temperature, and the steam explosion at a steam pressure of 25 atm and a steaming time of 3 min was the most effective for the methane production. The amount of methane gas produced depended on the ratio of weight of Klason lignin, a high molecular weight lignin, in the treated wood chip.

Shear Strength Property of Wood Treated by Steam Treatment at High Temperature (고온수증기처리 목재의 전단강도 특성)

  • Kim, Jung-Hwan;Lee, Weon-Hee;Kim, Jong-Man
    • Journal of the Korean Wood Science and Technology
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    • v.29 no.4
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    • pp.9-15
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    • 2001
  • This study deals with shear strength test for Pinus densiflora and Pinus radiata treated at above $100^{\circ}C$ by heat steam. Treatment conditions of this experiment were operated at regular intervals of $20^{\circ}C$ at temperatures up to $200^{\circ}C$ for 5, 10, 20 and 30 minutes by using the steam-explosion apparatus. It was examined, at high temperatures, degradation of some compounds from wood composition could lead to reduced the shear strength through heat steaming processes and play a large part in the plastic process of solid wood materials. It could be estimated that the shear strength of woods were gradually reduced by heat steaming time. Remarkable reduction of shear strength of woods was observed with increasing steaming temperatures above 10 minutes steaming time. Furthermore, this phenomenon shows a tendency to increase with higher temperatures. Therefore, it was considered that the softening by steaming treatment at high temperatures is necessary for the improvement on the wood processing ability.

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The Separation, Purification and Utilization of Wood Main Components by Steam Explosion in Low Pressure (I) -Low Pressure Steaming Explosion and Separation of Wood Main Components- (저압(低壓) 폭쇄처리(爆碎處理)에 의한 목재주성분(木材主成分)의 분리(分離)·정제(精製) 및 이용(利用)(I) -저압폭쇄처리(低壓爆碎處理) 및 목재주성분(木材主成分)의 분리(分離)-)

  • Eom, Chan-Ho;Eom, Tae-Jin;Lee, Jong-Yoon
    • Journal of the Korean Wood Science and Technology
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    • v.21 no.3
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    • pp.30-36
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    • 1993
  • Wood chips of oak (Quercus mongolica) and larch (Larix leptolepis) were treated with a relatively low pressure steam(10~20 kg/$cm^2$) for 10~20 min (first-stage),and then increased pressure up to 30kg/$cm^2$ for 30 second (second-stage), and steam pressure was released intentionally to air. Main components of exploded wood were separated with 1% NaOH and hot water-methanol. In this work, the more effective low pressure explosion condition and separation method of wood main component were investigated. The results can be summarized as follows; 1. The yields of exploded wood were generally decreased with increasing steam pressure and reaction time. 2. The proper condition of steam explosion in low pressure for the separation of wood main components was 15kg/$cm^2$-10 min, in oak wood and 20kg/$cm^2$-10 min., then 30kg/$cm^2$-0.5 min, in larch wood. 3. The 23% of elude hemicellulose was obtained from the exploded oak wood which was treated with optimal condition. 4. In the case of hot water-methanol extraction, the ratio of delignification was 14~23% in the exploded larch wood and 42~55% in the exploded oak wood. 5. The methanol was more effective than 1% sodium hydroxide solution for extraction of lignin from exploded wood.

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Effect of Low Pressure Steam Explosion Treatment on Prevention of Resin Exudation from Wood under High Temperature Surroundings (저압증기폭쇄(低壓蒸氣爆碎)처리가 고온영역(高溫領域)하에서의 목재(木材) 수지삼출(樹脂渗出) 예방에 미치는 영향)

  • Lee, Nam-Ho;Park, Hee-Jun;Li, Chengyuan;Jin, Young-Moon
    • Journal of the Korean Wood Science and Technology
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    • v.32 no.2
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    • pp.9-18
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    • 2004
  • This study was carried out to find the efficient methods for preventing resin exudation from spruce board during high temperature environment service.In the dry-air oven test, in-use temperature related to resin exudation of 110℃ could be obtained by the appropriate kiln drying without any special treatment, and the in-use temperature of the radio-frequency/vacuum (RF/V)-dried boards was about 20℃ higher than that of the conventional kiln-dried boards.In the autoclave test, resin exudation was not found from any board dried in the conventional kiln and in the RF/V kiln after the low pressure steam explosion (SE) treating, while for the control resin exudations were more severe in the autoclave test above 130℃ than in the dry-air oven test. It, therefore, would be suggested that resin exudation during high temperature service condition can be prevented more effectively by super-heated steaming green boards than by high-temperature drying boards with low moisture.