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Branica, M.: Thalassia Jugoslav. 9 (1973) S. 47. -[71] Sipos, L . ; Valenta, P.; Niirnberg, H . W.; Brunicu, M.: Proc. Int. Expert Disc. Lead-Occurrence, Fate and Pollution in the Marine Environment, Rovinj 1977, Pergamon Press, Oxford 1979. -[72] Sipos, L . ; Raspor, B. ; Niirnberg, H . W. ; Pytkowicz, R . M.: Mar. Chem., in press. -[73] Raspor, B. ; Vulenta, P. ; Nurnberg, H . W.: Resumes Int. Conf. Heavy Metalsin theEnvironment,Toronto 1975,pp.D5. -[74] Raspor,B.; Valenta, P.; Niirnberg, H . W . ; Branica, M.: Sci. Total Environ. 9 (1978) S. 87. -[75] Raspor, B.; Niirnberg, H . W . ; Valentu, P . ; Branica, M.: Proc. Int. Expert Disc. Lead-Occurrence, Fate and Pollution in the Marine Environment, Rovinj 1977, Pergamon Press, Oxford 1979. -[76] Mantouru, R. F . C.; Dickson, A , ; Riley, J . P.: Estuarine Coastal Mar. Sci. 6 (1978) S. 387. -[77] Musani, Lj.; Valenta, P.; Niirnberg, H . W. ; Konrad, Z . ; Branicu, M . : Proc. Int. Expert Disc. Lead-Occurrence, Fate and Pollution in the Marine Environment, Rovinj 1977, Pergamon Press, Oxford 1979. -[78] Musani, Lj. ; Valenta, P.; Niirnberg, H . W . ; Konrad, Z . ; Branicu, M .: Rapp. Comm. Int. Mer Medit., in press. -[79] Raspor, B. ; Vulenta, P. ; Niirnbery, H . W.; Branica, M.: Rapp. Comm. Int. Mer MCdit. 24 (1977) Nr. 8, S. 89. -[SO] Raspor, B.; Valenta, P. ; Niirnberg, H . W . ; Branica, M.: Thalassia Jugosl. 13 (1977)s. 79. -[81] Stoeppler, M . ; Buckhaus, F.: Fresenius 2.
Branica, M.: Thalassia Jugoslav. 9 (1973) S. 47. -[71] Sipos, L . ; Valenta, P.; Niirnberg, H . W.; Brunicu, M.: Proc. Int. Expert Disc. Lead-Occurrence, Fate and Pollution in the Marine Environment, Rovinj 1977, Pergamon Press, Oxford 1979. -[72] Sipos, L . ; Raspor, B. ; Niirnberg, H . W. ; Pytkowicz, R . M.: Mar. Chem., in press. -[73] Raspor, B. ; Vulenta, P. ; Nurnberg, H . W.: Resumes Int. Conf. Heavy Metalsin theEnvironment,Toronto 1975,pp.D5. -[74] Raspor,B.; Valenta, P.; Niirnberg, H . W . ; Branica, M.: Sci. Total Environ. 9 (1978) S. 87. -[75] Raspor, B.; Niirnberg, H . W . ; Valentu, P . ; Branica, M.: Proc. Int. Expert Disc. Lead-Occurrence, Fate and Pollution in the Marine Environment, Rovinj 1977, Pergamon Press, Oxford 1979. -[76] Mantouru, R. F . C.; Dickson, A , ; Riley, J . P.: Estuarine Coastal Mar. Sci. 6 (1978) S. 387. -[77] Musani, Lj.; Valenta, P.; Niirnberg, H . W. ; Konrad, Z . ; Branicu, M . : Proc. Int. Expert Disc. Lead-Occurrence, Fate and Pollution in the Marine Environment, Rovinj 1977, Pergamon Press, Oxford 1979. -[78] Musani, Lj. ; Valenta, P.; Niirnberg, H . W . ; Konrad, Z . ; Branicu, M .: Rapp. Comm. Int. Mer Medit., in press. -[79] Raspor, B. ; Vulenta, P. ; Niirnbery, H . W.; Branica, M.: Rapp. Comm. Int. Mer MCdit. 24 (1977) Nr. 8, S. 89. -[SO] Raspor, B.; Valenta, P. ; Niirnberg, H . W . ; Branica, M.: Thalassia Jugosl. 13 (1977)s. 79. -[81] Stoeppler, M . ; Buckhaus, F.: Fresenius 2.
Growth measurements were made of pentaerythritol crystals in both fluidised beds and stirred suspensions. The measurements were made in both the presence and absence of the two by‐product impurities known to be normally present in the commercial material. Maximum growth rates of the order of 10−9m/s were observed with activation energies of between 100 and 200 kJ/mol depending on the sample tested. The growth rate was second‐order with respect to super‐saturation. The two main impurities were found not to greatly influence the growth rate. There was evidence that a so far undetected third impurity, which was present in only trace amounts, was responsible for the very low growth rates observed.
Growth measurements were made of pentaerythritol crystals in both fluidised beds and stirred suspensions. The measurements were made in both the presence and absence of the two by-product impurities known to be normally present in the commercial material. Maximum growth rates of the order of 10-9m/s were observed with activation energies of between 100 and 200 kJ/mol depending on the sample tested. The growth rate was second-order with respect to supersaturation. The two main impurities were found not to greatly influence the growth rate. There was evidence that a so far undetected third impurity, which was present in only trace amounts, was responsible for the very low growth rates observed.
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