• Title/Summary/Keyword: Cotton waste

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Recycling of the Waste Cellulose ―II. Preparation of Hydroxyethyl Cellulose from Knit-Cotton-Waste― (셀룰로오스계 폐기물의 재활용 ―II. 폐면으로부터 hydroxyethyl cellulose 제조―)

  • Lee, Sung Goo;Ihm, Sung Dam;Kim, Byung Suk;Mun, Sung Phil;Rhee, John Moon
    • Textile Coloration and Finishing
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    • v.7 no.2
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    • pp.32-39
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    • 1995
  • Various grades of hydroxyethyl cellulose (HEC, MS 0.65-3.20) were prepared throngh reaction of the knit-cotton-waste with ethylene oxide(EO). The knit-cotton-waste was composed of 98% of $\alpha$-cellulose and 2% of other components, and the cellulose was highly pure. The molar ratio of EO to knit-cotton-waste and that of NaOH to knit-cotton-waste, and the agitation speed were the important factors determining the molar substitution(MS) during the preparation of HEC. The MS of HEC was remarkably increased with increasing molar ratio of EO' to knit-cotton-waste. When the molar ratio of EO to knit-cotton-waste was 3.5, that of NaOH to knit-cotton-waste was 1.25, and agitation speed was 450rpm, it was possible to prepare HEC of MS 2.5. The structure and crystallinity of HECs prepared were determined by FT-IR and X-ray diffraction.

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Utilization of Electron Beam-Radiated Cotton Waste for Agaric Mushroom Cultivation Bed (전자빔으로 처리한 폐면의 버섯배지효과)

  • Shon, Hyo-Jung;Chung, Sun-Young;Lee, Jong-Shin;Seo, Yung-Bum
    • Journal of Korea Technical Association of The Pulp and Paper Industry
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    • v.41 no.3
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    • pp.71-75
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    • 2009
  • Cotton waste is usually used for cultivating agaric mushroom after outdoor fermentation for a few months. Electron beam was used to break down the polymer chaims of cotton waste for increasing low molecular weight soluble sugars, which may enhance the agaric mushroom cultivation. By increasing electron beam radiation, alpha cellulose content of the cotton waste was decreased while beta cellulose content and hot water solubles were increased. Electron beam radiation over 240 kGy on cotton waste caused significant increase of mushroom yield without lowering mushroom quality.

Development of Cheap Substrate for Fruiting of Pleurotus ostreatus using Paper Sludge (제지 부산물을 이용한 느타리버섯(Pleurotus ostreatus) 자실체 형성용 염가배지개발)

  • Jo, Woo-Sik;Yun, Yeong-Seok;Park, Sun-Do;Choi, Boo-Sull
    • The Korean Journal of Mycology
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    • v.23 no.3 s.74
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    • pp.197-201
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    • 1995
  • For 2 years $(1993{\sim}1994)$, study on development of cheap medium for Pleurotus ostreatus revealed that paper sludge contain more CaO and similar T-C, T-N, $P_2O_5$, MgO but less $K_2O$ than any other medium material in chemical property. Mixed treatment (rice straw + paper sludge 10, 30, 50%, cotton waste + paper sludge 10, 30, 50%, cotton waste + rice hull 20 + paper sludge 10, 30, 50, 70%) is similar or fast a little in mycelial growth and is similar or fast $1{\sim}2$ day in period of primordia formation than cotton waste medium, and in the yield to each medium type also increased but excepted in rice hull 20% + paper sludge 70%, especially mixed medium at 7:3 ratio of cotton waste and paper sludge is best treatment because it is increased to 21%. In economical analysis, mixed medium at 7:3 ratio of cotton waste and paper sludge is increased to 50% compared to cotton waste medium in relative income.

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Studies of Purifying Waste Cotton for Esterification & Molecular Weight Distribution Curve of Cellulose Acetate (落綿의 精製 및 이를 原料로 하는 醋酸纖維素의 分子量 分配曲線에 關한 硏究)

  • Kim, Dong-Il;Noh, Ick-Sam
    • Journal of the Korean Chemical Society
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    • v.4 no.1
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    • pp.38-43
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    • 1957
  • Purified cellulosic materials suitable for the production of cellulose esters can be prepared from waste cotton (carding waste from textile mill). The most desirable conditions in purifying waste cotton were obtained. Waxy materials were removed by boiling in 2-3% soda ash solution for more than 30 minutes in open vessel at atmospheric pressure. As for bleaching, it is desirable to use the bleaching powder solution containing 1%, available chlorine for 60 minutes at 35 deg. C. Purified cellulosic material was acetylated to fibrous cellulose triacetate, which was fractionated in the solution of 70% monochloroacetic acid using water as a precipitant, and the degree of polymerizaion and molecular weight of each fraction were measured viscometrically, thereon, molecular weight distribution curve was drawn. Analyzing the shape of this curve, most of the polymers were concentrated on the part of higher degree of polymerization. Purified waste cotton was also analysed, the result was that this cellulosic material can be used as a raw material for cellulose esters and ethers.

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Studies on the Media Development of Pleurotus ostreatus by Waste Cotton Stuff (느타리버섯 배지개발을 위한 폐면포 이용에 관한 연구)

  • Ryu, Jeong;Lee, Gong-Joon;Jung, Gi-Tai;Na, Jong-Seong;Hwang, Chang-Ju
    • The Korean Journal of Mycology
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    • v.24 no.3 s.78
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    • pp.176-179
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    • 1996
  • Media development of Pleurotus ostreatus were analyzed to recognize the compositional differences depending on rice straw and waste cotton stuff media. Yields of add the rice bran 20% to the waste cotton stuff were increment 11% as compared with rice straw media. Crude protein of products to the waste cotton stuff media on Pleurotus ostreatus was a much and crude ash was less than of rice straw media. Glutamic acid was most and cystine was lowest among the amino acids of Pleurotus ostreatus. Total amino acids and essential amino acids of waste cotton stuff were much than of rice straw media.

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Effects on Mechanical Strength Improvement of Liner Paper using Recycled Fibres from Waste Cotton Clothes (폐 면직물 재활용 섬유를 이용한 라이너지의 강도개선 효과)

  • Hong, Seok-Jun;Park, Jung-Yoon;Kim, Hyoung-Jin
    • Journal of Korea Technical Association of The Pulp and Paper Industry
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    • v.46 no.6
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    • pp.94-102
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    • 2014
  • The physical and chemical properties of recycled fibers from mixed waste paper are more and more deteriorated because of unknown history of recycling times. In order to improve the mechanical properties of liner paper, the recycled fibers from wasted cotton clothes were used in papermaking process, and their applicabilities were evaluated in several points of fiber modification. Thus, two kinds of fiberizing methods from waste cotton clothes were considered by using rotary sandpaper and grinder mill. Finally, the rotary sandpaper method was relatively desirable in preserving longer fiber length and fibrillated fiber surface. The recycled cotton fibers by swelling treatment with NaOH and bleaching with reductive chemicals were mixed with OCC fibers, and the handsheets were prepared to basis weight of $80g/m^2$ and evaluated the mechanical properties of paper. The fibrous properties showed outstanding results in freeness and WRV improvements by alkali treatment and high brightness by reductive bleaching treatment. The physical and mechanical properties of sheet by mixing OCC fibers and recycled cotton fibers were also highly improved in tensile, burst strength and specially folding resistance.

Effects of the Quantities of Substrate on the Yield of Oyster mushroom Pleurotus ostreatus (느타리버섯 재배에 있어서 배지량이 자실체 수량에 미치는 영향)

  • Yun, Young-Seok;Rew, Young-Hyun;Park, Sun-Do;Choi, Boo-Sull
    • The Korean Journal of Mycology
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    • v.24 no.2 s.77
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    • pp.89-92
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    • 1996
  • This study were carried out to evaluate the effect of quantities of substrate on the yields for 2 years $(1993{\sim}1994)$. The substrates are cotton waste, rice straw and rice hull. It were revealed that cotton waste mixed rice straw was the best yield of fruit body. It gave more increased $(10{\sim}22%)$ than other substrates $(7{\sim}15%)$ when increasing the quantities of substrate. And cotton waste mixed with rice hull was most fast for first pinhead formation.

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The Adsorption Properties of Heavy Metal Ions on to Cotton Fabrics Treated with Reactive Anionic Agent (반응형 음이온화제 처리 면직물에 대한 중금속 이온의 흡착특성)

  • Kim Mi-Kyung;Yoon Seok-Han;Kim Tae-Kyeong;Lim Yong-Jin
    • Textile Coloration and Finishing
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    • v.17 no.1
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    • pp.20-29
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    • 2005
  • Cotton fabric was treated with a reactive anionic agent in order to have anionic sites(-S03-) on it, which made it possible for the fabric to adsorb various cationic materials. In this study, the adsorptivity of various heavy metal ions such as Pb(II), Cd(II), Cr(III), Co(II), Cu(II), Ni (II) and Cr(VI) on the cotton fabrics treated with anionic agent was examined at the various conditions; concentrations of heavy metal ions, pHs of solution, reaction time and temperature. As a result, the adsorptivity of the heavy metal ions on the cotton fabrics treated with the anionic agent was highly increased comparing to that of untreated cotton fabrics. The order of the adsorptivity was as follows: $Pb(II)>Cd(II)>Cu(II)\geqNi(II)\geqCo(II)>Cr(III)\ggCr(VI)$. The adsorption amounts of most heavy metal ions were increased in weak alkaline conditions and were reached to an adsorption equilibrium within 10 ~ 30 minutes. The maximum adsorption ratios of Pb(II) and Cd(II) were respectively 99% and 80% of the initial concentration of heavy metal ions. Therefore the anionized cotton fabrics seem to be utilized as an adsorption fabrics for the removal of heavy metal ions in the waste water.

Estimate of Substrate Requirement by Mushroom Production Amounts (버섯 생산량에 의한 배지 소요량 추정)

  • Chang, Hyun-You
    • Journal of Practical Agriculture & Fisheries Research
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    • v.11 no.1
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    • pp.159-171
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    • 2009
  • Required total substrates amounts for mushroom production are 212,186M/T in Korea. 80% of these total substrates amounts, 169,748 M/T is used for main substrates. Also 20%of these total substrates amounts, 42,438 M/T is used for additives. Main substrates 169,748 M/T is composed of sawdust, waste cotton, cotton seed hull, straw and com cob etc.. Additives 42,438 M/T is composed of rice bran, wheat bran and beet pulp etc. In the mushroom management, the cost of substrates purchase is composed for the most of management. Substrates amount is limited to supply, and the demand of mushroom substrates is on the increase continuously. So there is nothing but the cost of substrates are raising. Therefore the most important thing must develop the cheap substrates for the mushroom production.