1 |
Hydrodynamics of solid and liquid phases in a mixing tank containing high solid loading slurry of large particles via tomography and computational fluid dynamics Kazemzadeh A, Ein-Mozaffari F, Lohi A Powder Technology, 360, 635, 2020 |
2 |
Spray performance and steadiness of an effervescent atomizer and an air-core-liquid-ring atomizer for application in spray drying processes of highly concentrated feeds Wittner MO, Karbstein HP, Gaukel V Chemical Engineering and Processing, 128, 96, 2018 |
3 |
Effect of oil type on stability of high internal phase water-in-oil emulsions with super-cooled internal phase Masalova I, Tshilumbu NN, Mamedov E, Sanatkaran N Chemical Engineering Communications, 205(1), 1, 2018 |
4 |
Towards high-performance dual-graphite batteries using highly concentrated organic electrolytes Heckmann A, Thienenkamp J, Beltrop K, Winter M, Brunklaus G, Placke T Electrochimica Acta, 260, 514, 2018 |
5 |
Critical evaluation of the stability of highly concentrated LiTFSI - Acetonitrile electrolytes vs. graphite, lithium metal and LiFePO4 electrodes Nilsson V, Younesi R, Brandell D, Edstrom K, Johansson P Journal of Power Sources, 384, 334, 2018 |
6 |
Solvation structure in dilute to highly concentrated electrolytes for lithium-ion and sodium-ion batteries Flores E, Avall G, Jeschke S, Johansson P Electrochimica Acta, 233, 134, 2017 |
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Integration highly concentrated photovoltaic module exhaust heat recovery system with adsorption air-conditioning module via phase change materials Zhang SL, Wu W, Wang SF Energy, 118, 1187, 2017 |
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A new model for the viscosity of highly concentrated multi-sized particulate Bingham slurries Assefa KM, Kaushal DR Particulate Science and Technology, 35(1), 77, 2017 |
9 |
평판-평판 레오미터에서 고농축 현탁계의 벽면 No-slip 층 효과 홍영기, 최종한, 이상묵, 이재욱 Polymer(Korea), 41(1), 47, 2017 |
10 |
Influence of salt concentration on DCMD performance for treatment of highly concentrated NaCl, KCl, MgCl2 and MgSO4 solutions Guan YS, Li JF, Cheng FQ, Zhao J, Wang XM Desalination, 355, 110, 2015 |