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Enhancement of Galactose Uptake fromKappaphycus alvareziiUsingSaccharomyces cerevisiaethrough Deletion of Negative Regulators ofGALGenes Sunwoo IY, Sukwong P, Park YR, Jeong DY, Kim SR, Jeong GT, Kim SK Applied Biochemistry and Biotechnology, 193(2), 577, 2021 |
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Bioethanol Production fromAzolla filiculoidesbySaccharomyces cerevisiae,Pichia stipitis,Candida lusitaniae, andKluyveromyces marxianus Chupaza MH, Park YR, Kim SH, Yang JW, Jeong GT, Kim SK Applied Biochemistry and Biotechnology, 193(2), 502, 2021 |
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Enhancement of Galactose Uptake fromKappaphycus alvareziiHydrolysate UsingSaccharomyces cerevisiaeThrough Overexpression of Leloir Pathway Genes Sunwoo IY, Sukwong P, Park YR, Jeong DY, Kim SR, Jeong GT, Kim SK Applied Biochemistry and Biotechnology, 193(2), 335, 2021 |
4 |
Methanesulfonic acid-mediated conversion of microalgae Scenedesmus obliquus biomass into levulinic acid Jeong GT, Kim SK Journal of Industrial and Engineering Chemistry, 104, 85, 2021 |
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Platform chemicals production from lipid-extracted Chlorella vulgaris through an eco-friendly catalyst Jeong GT, Kim SK Korean Journal of Chemical Engineering, 38(5), 997, 2021 |
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Enhanced Bioethanol Fermentation by Sonication Using Three Yeasts Species and Kariba Weed (Salvinia molesta) as Biomass Collected from Lake Victoria, Uganda Kityo MK, Sunwoo I, Kim SH, Park YR, Jeong GT, Kim SK Applied Biochemistry and Biotechnology, 192(1), 180, 2020 |
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Chitosan으로부터 균일 산 촉매를 이용한 Ethyl Levulinate의 합성 정귀택, 김성구 Korean Chemical Engineering Research, 58(2), 266, 2020 |
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Ferric chloride를 이용한 Eucheuma spinosum으로부터 플렛폼 케미컬의 생산 정귀택, 김성구 Korean Chemical Engineering Research, 58(2), 293, 2020 |
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Efficient conversion of glucosamine to ethyl levulinate catalyzed by methanesulfonic acid Jeong GT, Kim SK Korean Journal of Chemical Engineering, 37(10), 1743, 2020 |
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Improvement of bioethanol production by Saccharomyces cerevisiae through the deletion of GLK1, MIG1 and MIG2 and overexpression of PGM2 using the red seaweed Gracilaria verrucosa Sukwong P, Sunwoo IY, Jeong DY, Kim SR, Jeong GT, Kim SK Process Biochemistry, 89, 134, 2020 |