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아시아인의 제2형 당뇨병 치료를 위한 친수성 고분자를 사용한 메트포르민 염산염-리나글립틴 방출제어형 정제 개발 박선재, 김필윤, 김나은, 송영은, 전가영, 투무르수흐너밍에르덴, 송정은, 강길선 Polymer(Korea), 46(2), 159, 2022 |
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습식 과립을 통해 용해도가 개선된 나프록센 나트륨 제형 설계 이성원, 조훈휘, 김진우, 김남영, 김필윤, 송철의, 이원찬, 최정민, 송정은, 강길선 Polymer(Korea), 45(3), 346, 2021 |
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A review of high shear wet granulation for better process understanding, control and product development Liu BB, Wang JM, Zeng J, Zhao LJ, Wang YJ, Feng Y, Du RF Powder Technology, 381, 204, 2021 |
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Granulation of teawaste and limestone using sodium-based lignosulfonate and DEM simulation of powder mixing Liu JT, Chen HL, Albadarin AB, Mangwandi C Powder Technology, 380, 321, 2021 |
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Development and pharmaceutical performance of a novel co-processed excipient of alginic acid and microcrystalline cellulose Benabbas R, Sanchez-Ballester NM, Bataille B, Sharkawi T, Soulairol I Powder Technology, 378, 576, 2021 |
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A study of wet granule breakage in a breakage -only high -shear mixer Akiti N, Cheong YS, Hapgood KP, Khakhar D Advanced Powder Technology, 31(6), 2438, 2020 |
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Rheological profile in mixer torque rheometer of samples containing furazolidone and different binders Belem BR, Ferraz HG Chemical Engineering Research & Design, 160, 533, 2020 |
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Exploring the wet granulation growth regime map - validating the boundary between nucleation and induction Wade JB, Miesle JE, Auiles SL, Sen M Chemical Engineering Research & Design, 156, 469, 2020 |
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Dimensionless criteria as a tool for creation of a model for predicting the size of granules in high-shear granulation Macho O, Kab?t J, Gabrisov? L, Peciar P, Juriga M, Fekete R, Galbav? P, Blasko J, Peciar M Particulate Science and Technology, 38(3), 381, 2020 |
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Revealing the dependence of graphene concentration and physicochemical properties on the crushing strength of co-granulated fertilizers by wet granulation process Kabiri S, Tran DNH, Baird R, McLaughlin MJ, Losic D Powder Technology, 360, 588, 2020 |