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Investigating the recovery of ferrous phosphate in a fluidized bed crystallizer by response surface methodology
Ting Yu Huang
, You Ren Yang
,
Shun Hsing Chuang
環境工程研究所
研究成果
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雜誌貢獻
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期刊論文
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Keyphrases
Molar Ratio
100%
Response Surface Methodology
100%
Fluidized Bed Crystallizer
100%
Ferric Phosphate
100%
Fe-P
57%
Phosphate
28%
Fluidized Bed Crystallization
28%
Phosphorus Recovery
28%
Crystal Efficiencies
28%
Reactor
14%
Wastewater
14%
Crystallization
14%
Crystallization Process
14%
Semiconductor Industry
14%
Zinc
14%
Livestock
14%
Response Surface
14%
Phosphorus
14%
Recovery Efficiency
14%
Ratio Parameter
14%
Composite Design
14%
Zinc Ion
14%
Phosphorus Removal Efficiency
14%
Food Companies
14%
Response Surface Analysis
14%
Engineering
Fluidized Bed
100%
Response Surface Methodology
100%
Molar Ratio
100%
Crystallizer
100%
Response Surface
28%
Removal Efficiency
14%
Phosphorus Removal
14%
Recovery Efficiency
14%
Material Science
Surface (Surface Science)
100%
Crystallization
50%
Surface Analysis
50%
Zinc
50%
Composite Material
50%
Zinc Ion
50%
Chemical Engineering
Phosphorus Removal Efficiency
33%