has been cited by the following article(s):
[1]
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Selective Synthesis and Characterization of Single Walled Carbon Nanotubes (11, 8)
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2019 |
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[2]
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Theoretical and experimental models for the synthesis of single-walled carbon nanotubes and their electrochemical properties
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Journal of Applied Electrochemistry,
2018 |
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[3]
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Review of Models and Variables Affecting Phosphorus Removal during Processing of Iron Ores Designated for Production of Orthopedics Devices
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2017 |
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[4]
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THEORETICAL AND EXPERIMENTAL MODELS OF CATALYSTS FOR SELECTIVE SYNTHESIS OF METALLIC SINGLE-WALLED CARBON NANOTUBES …
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2017 |
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[5]
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Response Analysis of Phosphorus Removal to Operational Effects of Inoculum Concentration and Leaching Time during Biotreatment of Iron Oxide
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2016 |
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[6]
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Predictive Analysis of Removed Phosphorus Concentration Based on Reaction Time and Grain Size of Iron Oxide Ore during Its Biotreatment
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2015 |
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[7]
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Assessment Evaluation of Removed Phosphorus Concentration Based on Its As-Beneficiated Content and Treatment Temperature
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Assessment,
2014 |
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[8]
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Factorial Analysis of Phosphorus Removal during Bioprocessing of Iron Oxide Ore Using Acidithiobacillus Ferrooxidans (ATF)
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2014 |
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[9]
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Quantitative Analysis of Phosphorus Removal Based on its As-Beneficiated Content, Iron Extraction Rate and Input Concentration of H2O2
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TO Chime - ijmse.org,
2014 |
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[10]
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Model for evaluation of Phosphorus Removal Based on Its As-Beneficiated Content and Input Concentration of H2O2
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International Journal of Engineering and Technology,
2014 |
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[11]
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Predictability of Phosphorus Removal Based on Simultaneously Removed Sulphur and Mass-Input of Iron Ore Leached in Potassium Hydroxide
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Physics and Materials Chemistry,
2013 |
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[12]
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Empirical Analysis of Phosphorus Removal Based on Its As-Beneficiated Concentration and Mass-Input of KClO3
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2013 |
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[13]
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Empirical analysis of phosphorus removal based on its asbeneficiated concentration and mass-Input of KClO3
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2013 |
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[14]
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Dephosphorization of Agbaja Iron Ore By Sintering And Bioleaching Processes
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2012 |
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[15]
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Model for Quantitative Analysis of Phosphorus Removed during Leaching of Iron Oxide Ore in Oxalic Acid Solution
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Journal of Minerals and Materials Characterization and Engineering,
2010 |
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[16]
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Model for Predicting the Concentration of Phosphorus Removed as Impurity during Hydro-Processing of Iron Oxide Ore Designated for Production of Orthopedics Devices
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Life Science Journal,
2010 |
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[17]
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Spectroscopic Characterization of Iron ore from Itakpe, Nigeria
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2010 - Faculty of Science,
2010 |
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[18]
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Model for predictive analysis of the concentration of dissolved iron relative to the weight input of iron oxide ore and leaching temperature during sulphuric …
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2009 |
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[19]
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Model for predicting the concentration of phosphorus removed during leaching of iron oxide ore in oxalic acid solution
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Journal of Engineering and Applied Science,
2009 |
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[20]
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Model for predictive analysis of the concentration of dissolved iron relative to the weight input of iron oxide ore and leaching temperature during sulphuric acid leaching
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Nat. & Sc. J,
2009 |
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[21]
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INVESTIGATION OF THE OPTIMUM DISSOLUTION TEMPERATURES OF PHOSPHORUS IN SULPHURIC, NITRIC AND OXALIC ACID SOLUTIONS DURING LEACHING OF IRON OXIDE ORE
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Journal of Engineering Science and Technology,
2009 |
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[22]
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2209, Investigation of the Optimum Dissolution Temperatures ff Phosphorus in Sulphuric, Nitric and Oxalic Acid Solutions during Leaching of Iron Oxide …
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2009 |
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[1]
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Review of Models and Variables Affecting Phosphorus Removal during Processing of Iron Ores Designated for Production of Orthopedics Devices
Advances in Tissue Engineering & Regenerative Medicine: Open Access,
2017
DOI:10.15406/atroa.2017.02.00046
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[2]
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Model for Quantitative Evaluation and Prediction of the Concentration of Phosphorus Removed during Pyro-Hydro Beneficiation of Haematite
Journal of Minerals and Materials Characterization and Engineering,
2011
DOI:10.4236/jmmce.2011.107049
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[3]
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Model for Quantitative Analysis of Phosphorus Removed during Leaching of Iron Oxide Ore in Oxalic Acid Solution
Journal of Minerals and Materials Characterization and Engineering,
2010
DOI:10.4236/jmmce.2010.94024
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