Mutual Effect of Steelmaking Slag Layer Depth and Diameter on Alkali Elution Rate in Open Channel Vessels with Straightened Seawater Flow
Autor: | Go Takeuchi, Md. Azhar Uddin, Eiji Kiso, Katsunori Takahashi, Yoshiei Kato, Hironori Tamaki |
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Rok vydání: | 2016 |
Předmět: |
010302 applied physics
Elution rate business.industry Elution Chemistry Metallurgy Metals and Alloys Analytical chemistry Reynolds number 02 engineering and technology Environmental Science (miscellaneous) Alkali metal 01 natural sciences Steelmaking 020501 mining & metallurgy Open-channel flow symbols.namesake Effective mass (solid-state physics) 0205 materials engineering Mechanics of Materials 0103 physical sciences symbols Seawater business |
Zdroj: | Journal of Sustainable Metallurgy. 3:459-468 |
ISSN: | 2199-3831 2199-3823 |
DOI: | 10.1007/s40831-016-0107-z |
Popis: | The mutual effect of steelmaking slag layer depth and diameter on alkali elution rate was investigated using two kinds of open channel vessels with straightened seawater. Seawater velocity, slag layer depth, and diameter were changed from 0.2 × 10−2 to 4.2 × 10−2 m/s, from 3.3 × 10−2 to 5.0 × 10−1 m, and from 0.10 × 10−2 to 2.18 × 10−2 m, respectively. The alkali elution rate increased with an increase in seawater velocity. The effective mass transfer coefficient, which was smaller than the true mass transfer coefficient, was calculated using the total slag surface area including the slag layer irrelevant to the alkali elution. It approached the true mass transfer coefficient when the slag diameter was larger and the slag layer was thinner. Moreover, the ratio of the effective mass transfer coefficient to the true one approached unity when the pH change in the slag layer was decreased. The slag layer height, H (m), involved in the alkali elution rate was calculated using H/d = 2.98 × 10−2 Re − 1.24 × 10−5 Re 2 when the total slag layer height, h s (m), was larger than H (m). Here, d is the slag diameter (m) and Re is the Reynolds number. |
Databáze: | OpenAIRE |
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