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Kenaf Is the Key to Go Green in the Era of Environmental Crisis: A Review 원문보기

韓國資源植物學會誌 = Korean journal of plant resources, v.35 no.6, 2022년, pp.820 - 824  

In-Sok Lee (Jeollabuk-do Agricultural Research & Extension Services) ,  Yu-Rim Choi (Jeollabuk-do Agricultural Research & Extension Services) ,  Ju Kim (Jeollabuk-do Agricultural Research & Extension Services)

Abstract AI-Helper 아이콘AI-Helper

Ecologically sustainable means of development is the point to support environmental homeostasis. One of our roles is to find bio-degradable resources that can be substituted for petroleum-based products to effectively abide by the natural viability. To counter the issues of deforestation and preserv...

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참고문헌 (29)

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  2. Alexopoulou, E. and A. Monti. 2013. Kenaf: a multi-purpose crop for several industrial applications. In Alexopoulou, E., Y. Papatheohari, M. Christou and A. Monti (eds.), Origin, Description, Importance, and Cultivation Area of Kenaf, Springer-Verlag, United Kingdom. pp. 1-154. 

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  12. Lee, B.H., H.M. Lee, D.C. Chung and B.J. Kim. 2021. Effect of mesopore development on butane working capacity of biomass-derived activated carbon for automobile canister. Nanomaterials 11(3):673-684. 

  13. Lee, B.H., V.T. Trinh and C.H. Jeon. 2021. Effect of torrefaction on thermal and kinetic behavior of kenaf during its pyrolysis and CO 2 Gasification. ACS Omega. 6:9920-9927. 

  14. Li, D. and S. Huang. 2013. The breeding of kenaf. In Monti A. and E. Alexopouiou. (eds.), Kenaf: A Multi- Purpose Crop for Several Industrial Applications. Springer, UK. pp. 45-58. 

  15. Mariod, A.A., S.F. Fathy and M. Ismail. 2010. Preparation and characteristion of protein concentrates from defatted kenaf seed. Food Chem. 123:747-752. 

  16. Meryemoglu, B., A. Hasanoglu, S. Irmak and O. Erbatu. 2014. Biofuel production by liquefaction of kenaf (Hibiscus cannabinus L.) biomass. Bioresour. Technol. 151:278-283. 

  17. Nadzri, S.N.Z.A., M.T.H. Sultan, A.U.M. Shah, S.N.A. Safri and A.A Basri. 2020. A review on the kenaf/glass hybrid composites with limitations on mechanical and low velocity impact properties. Polymers 12(6):1285-1298. 

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  19. Park, H.Y., M.H. Huang, T.H. Yoon and K.H Song. 2021. Electrochemical properties of kenaf-based activated carbon monolith for supercapacitor electrode applications. RSC Advances 11:38515-38522. 

  20. Ryu, J.H., S.J. Kwon, J.W. Jo, Y.D. Ahn, S.H. Kim, S.W. Jeong, M.K. Lee, J.B. Kim and S.Y. Kang. 2017. Phytochemicals and antioxidant activity in the kenaf plant (Hibiscus cannabinus L.). J. Plant Biotechnol. 44:191-202. 

  21. Saba, N., M.T. Paridah and M. Jawaid. 2015. Mechanical properties of kenaf fibre reinforced polymer composite: a review. Constr. Build. Mater. 76(1):87-96. 

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  24. Shamsudin, R., H. Abdullah and A. Kamari. 2016. Application of kenaf bast fiber to adsorb Cu(II), Pb(II) and Zn(II) in aqueous solution: single-and multi-metal systems. Int. J. Environ. Sci. Dev. 7(10):715-723. 

  25. Silva, T.T., P.H.P.M. Silveira, M.P. Ribeiro, M.F. Lemos, A.P. Silva, S.N. Monteiro and L.F.C Nascimento. 2021. Thermal and chemical characterization of kenaf fiber (Hibiscus cannabinus L.) reinforced epoxy matrix composites. Polymers 13(12):1-15. 

  26. Tan, J.Y., S.Y. Low, Z.H. Ban and P. Siwayanan. 2021. A review on oil spill clean-up using bio-sorbent materials with special emphasis on utilization of kenaf core fibers. BioResources 16(4):8394-8416. 

  27. Taylor, C.S. 1993. Kenaf: an emerging new crop industry. In Janick, J. and J.E. Simon (eds.), New Crops. Wiley, NY (USA). pp. 402-407. 

  28. Uddin, N., W.U. Zaman, M. Rahman, S. Islam and S. Islam. 2016. Phytoremediation potentiality of lead from contaminated soils by fibrous crop varieties. Am. J. Appl. Sci. Res. 2(5):22-28. 

  29. Webber, C.L.III, H.L. Bhardwaj and V.K. Bledsoe. 2002. Kenaf production: fiber, feed, and seed. In Janick, J. and A. Whipkey (eds.), Trends in New Crops and New Uses. ASHS Press, VA (USA). pp. 327-339. 

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