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Information Journal Paper

Title

SYNTHESIS OF LITHIUM ION SIEVE NANOPARTICLES AND OPTIMIZING UPTAKE CAPACITY BY TAGUCHI METHOD

Pages

  15-24

Abstract

 Spinel-type of MnO2 nanoparticles which successfully synthesized by a hydrothermal process, have a required capacity for LITHIUM uptake from liquid resources. The most LITHIUM ADSORPTION CAPACITY of 6.6 mmol/g of up to now was found to be an important limiting parameter for industrial applications. Therefore, increasing uptake capacity of these ION SIEVEs by studding the effect of six effective parameters, involving LITHIUM compounds, manganese compounds, oxidizing reagents, calcination temperatures, heating times and Li/Mn mol ratios was investigated. To this end, Taguchi L9 (34) orthogonal array was employed as a predominate method to evaluate these parameters and the results optimized by using analysis of variance (ANOVA) and analysis of mean (ANOM) in two separate stages. Although, all mentioned parameters had significant effect on LITHIUM uptake capacity, but oxidizing reagents were the most effective factors. Hence, a new ION SIEVE with more than 9 mmol/g LITHIUM ADSORPTION CAPACITY was synthesized for the first time, by applying this method.

Cites

References

Cite

APA: Copy

ZANDEVAKILI, SAEED, RANJBAR, MOHAMMAD, & EHTESHAMZADEH, MARYAM. (2014). SYNTHESIS OF LITHIUM ION SIEVE NANOPARTICLES AND OPTIMIZING UPTAKE CAPACITY BY TAGUCHI METHOD. IRANIAN JOURNAL OF CHEMISTRY AND CHEMICAL ENGINEERING (IJCCE), 33(4), 15-24. SID. https://sid.ir/paper/635935/en

Vancouver: Copy

ZANDEVAKILI SAEED, RANJBAR MOHAMMAD, EHTESHAMZADEH MARYAM. SYNTHESIS OF LITHIUM ION SIEVE NANOPARTICLES AND OPTIMIZING UPTAKE CAPACITY BY TAGUCHI METHOD. IRANIAN JOURNAL OF CHEMISTRY AND CHEMICAL ENGINEERING (IJCCE)[Internet]. 2014;33(4):15-24. Available from: https://sid.ir/paper/635935/en

IEEE: Copy

SAEED ZANDEVAKILI, MOHAMMAD RANJBAR, and MARYAM EHTESHAMZADEH, “SYNTHESIS OF LITHIUM ION SIEVE NANOPARTICLES AND OPTIMIZING UPTAKE CAPACITY BY TAGUCHI METHOD,” IRANIAN JOURNAL OF CHEMISTRY AND CHEMICAL ENGINEERING (IJCCE), vol. 33, no. 4, pp. 15–24, 2014, [Online]. Available: https://sid.ir/paper/635935/en

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