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Effect of 818A and 827N flocculants on seawater magnesia process (CROSBI ID 89866)

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Petric, Nedjeljka ; Martinac, Vanja ; Labor, Miroslav ; Jurin, Oliver Effect of 818A and 827N flocculants on seawater magnesia process // Kovine zlitine tehnologije, 33 (1999), 6; 473-478-x

Podaci o odgovornosti

Petric, Nedjeljka ; Martinac, Vanja ; Labor, Miroslav ; Jurin, Oliver

engleski

Effect of 818A and 827N flocculants on seawater magnesia process

Possibilities for the application of the anionic 818A flocculant (polyacrilamide) produced by the Dutch firm Hercules have been studied in order to increase the settling rate of magnesium hydroxide from seawater and to define the optimum conditions during the precipitation process. The efficiency of the 818A flocculant has been compared to the nonionic 827N flocculant. Examinations were carried out with different degrees of completeness of precipitation and with different quantities of the 818A flocculant. The dependence obtained was described by the appropriate analytical expression. The study has shown that the settling rate is higher during nonstoichiometric precipitation, i.e. precipitation when the quantity added is lower than the stoichiometrically required quantity of the precipitation agent. This has been explained by the Mg(OH)_2 particle model. In order to interpret the experimental data obtained by batch-settling tests a calculation of a continuous thickener was made applying the Kynch theory. It was observed that at 100 percentage precipitation the quantity of the precipitate obtained was 23.05 kgh^-1, while that obtained at 80 percentage precipitation was 52.69 kgh^-1, which indicates a considerable increas in the thickener productive capacity. Thus, it could be seen that the settling rate of the magnesium hydroxide slurry was very important in computing the thickening area required.

Magnesium hydroxide from seawater; Settling rate; Nonstoichiometric precipitation; Effect of flocculant

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Podaci o izdanju

33 (6)

1999.

473-478-x

objavljeno

1318-0010

Povezanost rada

Kemijsko inženjerstvo