By Allan S. Myerson, Ken Toykura
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Solubilities in multicomponent platforms / Jaroslav Nývlt and Jiří Stávek --
Hardness of salts utilized in business crystallization / J. Ulrich and M. Kruse --
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Sucrose crystal development : concept, test, and commercial purposes / D. Aquilano, M. Rubbo, G. Mantovani, G. Vaccari, and G. Sgualdino --
components affecting the purity of L-isoleucine recovered via batch crystallization / Ronald C. Zumstein, Timothy Gambrel, and Ronald W. Rousseau --
Light-scattering measurements to estimate kinetic parameters of crystallization / W.R. Witkowski, S.M. Miller, and J.B. Rawlings --
Double draw-off crystallizer : significant participant within the acid rain video game? / Alan D. Randolph, S. Mukhopadhyay, B.C. Sutradhar, and Ross Kendall --
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In situ commentary of p-xylene crystal development via controlling strain / Masato Moritoki and Nobuhiko Nishiguchi --
Solute move in quarter refining of eutectic-forming combinations / George C. Yeh --
Purity lessen of L-threonine crystals in optical solution by way of batch preferential crystallization / Masakuni Matsuoka, Hirokazu Hasegawa, and Koichi Ohori --
Semi-batch cooling crystallization of quizalofop-ethyl with polymorphism / Akihiro Shiroishi, Isao Hashiba, Ryo Kokubo, Kazuo Miyake, and Yuji Kawamura --
development fee of S-carboxymethyl-D-cysteine and its optical answer / M. Yokota, T. Oguchi, ok. Arai, Ken Toyokura, C. Inoue, and H. Naijyo --
commentary of high-pressure crystallization of benzene from benzene-cyclohexane combination / Hideo Narahara, Kenji Yamada, Ken Toyokura, Masato Moritoki, and Nobuhiko Nishiguchi --
Crystallization of gypsum from phosphoric acid ideas / E.T. White and S. Mukhopadhyay --
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Freeze focus of aqueous suggestions / Tasoula C. Kyprianidou-Leodidou and Gregory D. Botsaris --
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Extra resources for Crystallization as a Separations Process
XQ(T) ... t ^ etc. Both the dependencies are depicted schematically i n "Figure 2". +Xg) are found from the triangular diagram. Further, the t g value i s plotted on the graph on the v e r t i c a l l i n e constructed through the point x = 1. The l i n e connecting points t„ with point t , located on trie v e r t i c a l l i n e passing through point x = x ( S ) , determines the length of segment KL = t^g. An a r b i t r a r y t,j, value i s selected and the appropriate segment i s plotted on the v e r t i c a l l i n e passing through point x~ = 1 , a l i n e i s drawn p a r a l l e l to straight l i n e t g - L and the intercept of t h i s l i n e with curve t ( x ) y i e l d s the x (T) value, corresponding to the isotherm i n "Figure 1".
1987, 22, 1205. Plendl, J . ; Gielisse, P. ; Mansur, L. ; Mitra, S. ; Tarte, P. C. Applied Optics 1971, 10, 1129. Chin, G. Y. Trans. Amerc. Crystall. Asso. 1975, 11, 1. Ridgway In Crystallization; Mullin, J . ; Butterworths: London, 1972 Goldschmidt, V. M. ; Zimmermann, L. Z. physik. Chem. 1922, 102, 298. Friedrich, E. Fortschr. Chem. Phys. phys. Chem. 1926, 18, 1. Wolff, G. ; Toman, L . ; Field, N. ; Clark, J . C. , Braunschweig, 1958, p 463. ; Kruse, M. Cryst. Res. Technol. 1989, 24, 181. ; Kruse, M.
NaCl, CaF , S i , Ge. 2 In Table 2 the r e s u l t s are shown f o r the c a l c u l a t e d volumetric cohensive energies of c r y s t a l s with NaCl-type s t r u c t u r e and t h e i r measured Vickers hardness. 7 This l a s t model The hardness H properties. C l a r g e s t common unit charge and of the hardness i s modified and given i n Equation 6. i s according to (21) a function of several p h y s i c a l i s the constant defined i n Equation 7, Z i s the valency of the atoms, f i s the f o r c e constant per r represents the interatomic distance.