The Experts below are selected from a list of 273 Experts worldwide ranked by ideXlab platform
Syouji Hirota - One of the best experts on this subject based on the ideXlab platform.
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vapor liquid solid equilibria for the system propane or 2 methylpropane Dodecanoic Acid tetradecanoic Acid
Journal of Chemical & Engineering Data, 1997Co-Authors: Hiroyuki Enomoto, Kouji Maeda, And Keisuke Fukui, Syouji HirotaAbstract:Vapor-liquid-solid equilibria for the propane + Dodecanoic Acid + tetradecanoic Acid and 2-methylpropane + Dodecanoic Acid + tetradecanoic Acid systems have been measured. The relationship between the temperature and the pressure of the three-phase equilibria is described. The liquefied gases (propane or 2-methylpropane) decreased the temperatures of solid-liquid equilibrium (SLE) for the Dodecanoic Acid + tetradecanoic Acid system. The effect of the liquefied gas on the SLE for the binary fatty Acids system was presented. The three-phase equilibria could be well correlated by an associated solution model combined with the NRTL equation.
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Vapor−Liquid−Solid Equilibria for the System Propane or 2-Methylpropane + Dodecanoic Acid + Tetradecanoic Acid
Journal of Chemical & Engineering Data, 1997Co-Authors: Hiroyuki Enomoto, Kouji Maeda, And Keisuke Fukui, Syouji HirotaAbstract:Vapor-liquid-solid equilibria for the propane + Dodecanoic Acid + tetradecanoic Acid and 2-methylpropane + Dodecanoic Acid + tetradecanoic Acid systems have been measured. The relationship between the temperature and the pressure of the three-phase equilibria is described. The liquefied gases (propane or 2-methylpropane) decreased the temperatures of solid-liquid equilibrium (SLE) for the Dodecanoic Acid + tetradecanoic Acid system. The effect of the liquefied gas on the SLE for the binary fatty Acids system was presented. The three-phase equilibria could be well correlated by an associated solution model combined with the NRTL equation.
Chengyu Wang - One of the best experts on this subject based on the ideXlab platform.
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corrigendum to synthesis and characterization of hydrophobic calcium carbonate particles via a Dodecanoic Acid inducing process powder technology volume 198 131 134
Powder Technology, 2010Co-Authors: Chengyu Wang, Cheng Piao, Xianglin Zhai, Neal F HickmanAbstract:Corrigendum to “Synthesis and Characterization of Hydrophobic Calcium Carbonate Particles via a Dodecanoic Acid Inducing Process” [Powder Technology Volume (198) 131–134] Chengyu Wang , Cheng Piao , Xianglin Zhai , F. Neal Hickman , Jian Li a,⁎ a College of Materials Science and Engineering, Northeast Forestry University, 26 Hexing Road, Harbin 150040, China b Calhoun Research Station, Louisiana State University AgCenter, 321 Hwy 80 E, Calhoun, LA, 71225, USA
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Synthesis and characterization of hydrophobic calcium carbonate particles via a Dodecanoic Acid inducing process
Powder Technology, 2010Co-Authors: Chengyu Wang, Cheng Piao, Xianglin Zhai, F. Neal HickmanAbstract:Abstract A carbonation route for the synthesis of hydrophobic calcium carbonate was studied. In the process, Dodecanoic Acid was used as an organic substrate to induce the nucleation and growth of calcium carbonate. The calcium carbonate particles were produced by means of carbonation of the mixture of calcium hydroxide and Dodecanoic Acid by bubbling CO2/N2 gas mixture. The operating parameters such as temperature and the concentration of the organic substrate were varied to study their influences on the active ratio and contact angle of calcium carbonate particles. The morphology of the calcium carbonate particles was characterized with scanning electron microscopy (SEM). The synthesized calcium carbonate particles in the presence of the organic substrate are rod-like and ellipse-like particles. The polymorphs were characterized with X-ray diffraction (XRD).
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Corrigendum to “Synthesis and Characterization of Hydrophobic Calcium Carbonate Particles via a Dodecanoic Acid Inducing Process” [Powder Technology Volume (198) 131–134]
Powder Technology, 2010Co-Authors: Chengyu Wang, Cheng Piao, Xianglin Zhai, F. Neal HickmanAbstract:Corrigendum to “Synthesis and Characterization of Hydrophobic Calcium Carbonate Particles via a Dodecanoic Acid Inducing Process” [Powder Technology Volume (198) 131–134] Chengyu Wang , Cheng Piao , Xianglin Zhai , F. Neal Hickman , Jian Li a,⁎ a College of Materials Science and Engineering, Northeast Forestry University, 26 Hexing Road, Harbin 150040, China b Calhoun Research Station, Louisiana State University AgCenter, 321 Hwy 80 E, Calhoun, LA, 71225, USA
Hiroyuki Enomoto - One of the best experts on this subject based on the ideXlab platform.
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vapor liquid solid equilibria for the system propane or 2 methylpropane Dodecanoic Acid tetradecanoic Acid
Journal of Chemical & Engineering Data, 1997Co-Authors: Hiroyuki Enomoto, Kouji Maeda, And Keisuke Fukui, Syouji HirotaAbstract:Vapor-liquid-solid equilibria for the propane + Dodecanoic Acid + tetradecanoic Acid and 2-methylpropane + Dodecanoic Acid + tetradecanoic Acid systems have been measured. The relationship between the temperature and the pressure of the three-phase equilibria is described. The liquefied gases (propane or 2-methylpropane) decreased the temperatures of solid-liquid equilibrium (SLE) for the Dodecanoic Acid + tetradecanoic Acid system. The effect of the liquefied gas on the SLE for the binary fatty Acids system was presented. The three-phase equilibria could be well correlated by an associated solution model combined with the NRTL equation.
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Vapor−Liquid−Solid Equilibria for the System Propane or 2-Methylpropane + Dodecanoic Acid + Tetradecanoic Acid
Journal of Chemical & Engineering Data, 1997Co-Authors: Hiroyuki Enomoto, Kouji Maeda, And Keisuke Fukui, Syouji HirotaAbstract:Vapor-liquid-solid equilibria for the propane + Dodecanoic Acid + tetradecanoic Acid and 2-methylpropane + Dodecanoic Acid + tetradecanoic Acid systems have been measured. The relationship between the temperature and the pressure of the three-phase equilibria is described. The liquefied gases (propane or 2-methylpropane) decreased the temperatures of solid-liquid equilibrium (SLE) for the Dodecanoic Acid + tetradecanoic Acid system. The effect of the liquefied gas on the SLE for the binary fatty Acids system was presented. The three-phase equilibria could be well correlated by an associated solution model combined with the NRTL equation.
F. Neal Hickman - One of the best experts on this subject based on the ideXlab platform.
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Synthesis and characterization of hydrophobic calcium carbonate particles via a Dodecanoic Acid inducing process
Powder Technology, 2010Co-Authors: Chengyu Wang, Cheng Piao, Xianglin Zhai, F. Neal HickmanAbstract:Abstract A carbonation route for the synthesis of hydrophobic calcium carbonate was studied. In the process, Dodecanoic Acid was used as an organic substrate to induce the nucleation and growth of calcium carbonate. The calcium carbonate particles were produced by means of carbonation of the mixture of calcium hydroxide and Dodecanoic Acid by bubbling CO2/N2 gas mixture. The operating parameters such as temperature and the concentration of the organic substrate were varied to study their influences on the active ratio and contact angle of calcium carbonate particles. The morphology of the calcium carbonate particles was characterized with scanning electron microscopy (SEM). The synthesized calcium carbonate particles in the presence of the organic substrate are rod-like and ellipse-like particles. The polymorphs were characterized with X-ray diffraction (XRD).
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Corrigendum to “Synthesis and Characterization of Hydrophobic Calcium Carbonate Particles via a Dodecanoic Acid Inducing Process” [Powder Technology Volume (198) 131–134]
Powder Technology, 2010Co-Authors: Chengyu Wang, Cheng Piao, Xianglin Zhai, F. Neal HickmanAbstract:Corrigendum to “Synthesis and Characterization of Hydrophobic Calcium Carbonate Particles via a Dodecanoic Acid Inducing Process” [Powder Technology Volume (198) 131–134] Chengyu Wang , Cheng Piao , Xianglin Zhai , F. Neal Hickman , Jian Li a,⁎ a College of Materials Science and Engineering, Northeast Forestry University, 26 Hexing Road, Harbin 150040, China b Calhoun Research Station, Louisiana State University AgCenter, 321 Hwy 80 E, Calhoun, LA, 71225, USA
Cheng Piao - One of the best experts on this subject based on the ideXlab platform.
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corrigendum to synthesis and characterization of hydrophobic calcium carbonate particles via a Dodecanoic Acid inducing process powder technology volume 198 131 134
Powder Technology, 2010Co-Authors: Chengyu Wang, Cheng Piao, Xianglin Zhai, Neal F HickmanAbstract:Corrigendum to “Synthesis and Characterization of Hydrophobic Calcium Carbonate Particles via a Dodecanoic Acid Inducing Process” [Powder Technology Volume (198) 131–134] Chengyu Wang , Cheng Piao , Xianglin Zhai , F. Neal Hickman , Jian Li a,⁎ a College of Materials Science and Engineering, Northeast Forestry University, 26 Hexing Road, Harbin 150040, China b Calhoun Research Station, Louisiana State University AgCenter, 321 Hwy 80 E, Calhoun, LA, 71225, USA
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Synthesis and characterization of hydrophobic calcium carbonate particles via a Dodecanoic Acid inducing process
Powder Technology, 2010Co-Authors: Chengyu Wang, Cheng Piao, Xianglin Zhai, F. Neal HickmanAbstract:Abstract A carbonation route for the synthesis of hydrophobic calcium carbonate was studied. In the process, Dodecanoic Acid was used as an organic substrate to induce the nucleation and growth of calcium carbonate. The calcium carbonate particles were produced by means of carbonation of the mixture of calcium hydroxide and Dodecanoic Acid by bubbling CO2/N2 gas mixture. The operating parameters such as temperature and the concentration of the organic substrate were varied to study their influences on the active ratio and contact angle of calcium carbonate particles. The morphology of the calcium carbonate particles was characterized with scanning electron microscopy (SEM). The synthesized calcium carbonate particles in the presence of the organic substrate are rod-like and ellipse-like particles. The polymorphs were characterized with X-ray diffraction (XRD).
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Corrigendum to “Synthesis and Characterization of Hydrophobic Calcium Carbonate Particles via a Dodecanoic Acid Inducing Process” [Powder Technology Volume (198) 131–134]
Powder Technology, 2010Co-Authors: Chengyu Wang, Cheng Piao, Xianglin Zhai, F. Neal HickmanAbstract:Corrigendum to “Synthesis and Characterization of Hydrophobic Calcium Carbonate Particles via a Dodecanoic Acid Inducing Process” [Powder Technology Volume (198) 131–134] Chengyu Wang , Cheng Piao , Xianglin Zhai , F. Neal Hickman , Jian Li a,⁎ a College of Materials Science and Engineering, Northeast Forestry University, 26 Hexing Road, Harbin 150040, China b Calhoun Research Station, Louisiana State University AgCenter, 321 Hwy 80 E, Calhoun, LA, 71225, USA