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리그노셀룰로오스 물질의 추출을 위한 공융용매 탐색(2) : 리그닌 및 셀룰로오스 표준물질의 추출률 분석 = Exploring deep eutectic solvents for the extraction of lignocellulosic materials(2) : extraction tests for lignin- and cellulose-based standard materials / 최경화 ; 이철우 ; 이광섭 ; 류정용 1

ABSTRACT 1

1. 서론 2

2. 재료 및 방법 2

2.1. 공시재료 2

2.2. 실험방법 3

3. 결과 및 고찰 4

3.1. 공융용매의 pH 및 전기전도도 분석 결과 4

3.2. 리그닌 및 셀룰로오스 표준물질의 추출률 분석 결과 5

4. 결론 6

Literature Cited 6

권호기사

권호기사 목록 테이블로 기사명, 저자명, 페이지, 원문, 기사목차 순으로 되어있습니다.
기사명 저자명 페이지 원문 목차
Introduction to the novel plate for manufacturing thermomechanical pulp Jeong-Heon Ryu, Chul-Hwan Kim, Byeong-Gul Min, Min-Seok Lee, Ho-Kyung Goo, Chang-Yeong Lee, Jin-Hwa Park p. 3-14

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글리콜 에테르 용제를 이용한 단순화된 바이오매스의 아세틸화 = Facile acetylation of woody biomass using a glycol ether solvent 이윤지, 김동현, 엄태진, 이중명, 김강재 p. 15-22

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삼국유사 목판본 인출용 먹의 특성 분석. Analysis of ink for the woodblock printing of Samguk Yusa. 1, ink with low solid content / 1, 낮은 고형분 함량의 먹물 김강재, 엄태진 p. 23-28

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리그노셀룰로오스 물질의 추출을 위한 공융용매 탐색. Exploring deep eutectic solvents for the extraction of lignocellulosic materials. 2, extraction tests for lignin- and cellulose-based standard materials / 2, 리그닌 및 셀룰로오스 표준물질의 추출률 분석 최경화, 이철우, 이광섭, 류정용 p. 29-35

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New eco-friendly coating formulations to improve strength and physical properties of recycled paper boards for sustainable packaging applications Ramnath Shenoy, Prakasha Shetty, Shivananda Wagle p. 36-48

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고분자전해질에 의해 양이온화된 셀룰로오스 나노섬유가 종이 물성에 미치는 영향 = Effect of polyelectrolyte-cationized cellulose nanofibril on the properties of paper 이재영, 조해민, 이연희, 이지영 p. 49-56

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참고문헌 (19건) : 자료제공( 네이버학술정보 )

참고문헌 목록에 대한 테이블로 번호, 참고문헌, 국회도서관 소장유무로 구성되어 있습니다.
번호 참고문헌 국회도서관 소장유무
1 Lee, Y. R., Lee, Y. J., and Row, K. H., Extraction of caffeic acid and rosmarinic acid from Zostera marina based on ionic liquids and deep eutectic solvent, Korean Chemical Engineering Research 52(4):481-485 (2014). 미소장
2 Yinzhe, J. and Row, K. H., Adsorption isotherm of ibuprofen on molecular imprinted polymer, Korean Journal of Chemical Engineering 22(2):264-267 (2005). 미소장
3 Francisco, M., van den Bruinhorst, A., and Kroon, M. C., New natural and renewable low transition temperature mixtures (LTTMs):Screening as solvents for lignocellulosic biomass processing, Green Chemistry 14:2153-2157 (2012). 미소장
4 Kroon, M. C., Francisco, M., and van den Bruinhorst, A., Pretreatment of lignocellulosic biomass and recovery of substituents using natural deep eutectic solvents/compound mixures with low transition temperatures, US 14/391,165 (2014). 미소장
5 Kumar, A. K., Parikh, B. S., and Pravakar, M., Natural deep eutectic solvent mediated pretreatment of rice straw: Bioanalytical characterization of lignin extract and enzymatic hydrolysis of pretreated biomass residue, Online version, Environmental Science and Pollution Research (2015). 미소장
6 Domínguez de María, P., Recent trends in (ligno)cellulose dissolution using neoteric solvents:Switchable, distillable, and bio-based ionic liquids, Journal of Chemical Technology and Biotechnology 89(1):11-18 (2014). 미소장
7 Zhang, Q., Benoit, M., De Oliverial Vigier, K., Barrault, J., and Jérôme, F., Green and inexpensive choline-derived solvent for cellulose decrystallization, Chemistry-A European Journal 18(4):1043-1046 (2012). 미소장
8 Jablonskẏ, M., Škulcová, A., Kamenská, L., Vrška, M., and Šima, J., Deep eutectic solvents:Fractionation of wheat straw, BioResoureces 10(4):8039-8047 (2015). 미소장
9 Choi, K. H., Lee, C. W., Lee, M. K., and Ryu, J. Y, A study for evaluating applicability of deep eutectic solvent in a lignin extraction, Proceedings of Spring Conference of the Korea Technical Association of the Pulp and Paper Industry:22 (2018). 미소장
10 Lee, C. W., Choi, K. H., and Ryu, J. Y, Exploration of deep eutectic solvents for the extraction of lignocellulosic materials, Journal of Korea TAPPI 52(1):5-10 (2020). 미소장
11 Yoshihara, K., Kobyahshi, T., Fujii, T., and Akamatsu, I., A novel modification of Klason lignin quantitative method, JTAPPI Journal 38(4):466-475 (1984). 미소장
12 Torres, P. Balcells, M., Cequier, E., and Canela-Garayoa, R., Effect of four novel bio-based DES (deep eutectic solvents) on hardwood fractionation, Molecules 25(2157):1-14 (2020). 미소장
13 Ünlü, A. E. and Takaç, S., Chapter 6. Use of deep eutectic solvents in the treatment of agro-industrial lignocellulosic wastes for bioactive compounds, In Agroecosystems, Larramendy, M. L. (ed.), IntechOpen (2021). 미소장
14 Chen, Y. and Mu, T., Application of deep eutectic solvents in biomass pretreatment and conversion, Green Energy & Environment 4:95–115 (2019). 미소장
15 Marino, D. D., Stöckmann, D., Kriescher, S., Stiefel, S., and Wessling, M., Electrochemical depolymerisation of lignin in a deep eutectic solvent, Green Chemistry 18:6021-6028(2016). 미소장
16 Gabriele, F., Chiarini, M., Germani, R., Tiecco, M., and Spreti, N., Effect of water addition on choline chloride/glycol deep eutectic solvents:Characterization of their structural and physicochemical properties, Journal of Molecular Liquids 291(111301):1-7 (2019). 미소장
17 Hwang, B. H., Yoon, B. H., Cho, N. S., and Lee, J. Y., Recent Wood Chemistry, SeonJin MunHwaSa, GoYang, Korea. 미소장
18 Sixta, H., Part I Chemical Pulping, in Handbook of Pulp, Sixta, H. (ed.), WILEY-VCH Verlag GmbH &Co. KGaA, Weinheim, pp. 109-1067 (2006). 미소장
19 Jablonsky, M., Majova, V., Ondrigova, K., and Sima, J., Preparation and characterization of physicochemical properties and application of novel ternary deep eutectic solvents, Cellulose 26:3031-3045 (2019). 미소장