Araştırma Makalesi

Box–Behnken experimental design for zinc borate Zn2B6O11•7H2O

Cilt: 5 Sayı: 3 30 Eylül 2020
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Box–Behnken experimental design for zinc borate Zn2B6O11•7H2O

Öz

The present study investigated the effect of the operating conditions on the crystallization of zinc borate. For zinc borate crystallization, sodium tetraborate decahydrate and zinc sulfate heptahydrate were used as reactants. In the first part of the study, the crystals were characterized by X-ray diffraction spectroscopy (XRD), Fourier-transform infrared spectroscopy (FTIR), light microscopy, and particle size and thermogravimetric analysis. The results show that the obtained crystals were in the form of Zn2B6O11•7H2O, and the operating conditions had a significant effect on the size, morphology, and filtration characteristics of the zinc borate crystals. In the second part of the study, Box–Behnken design (BBD) with response surface methodology (RSM) was employed to determine the optimal operating conditions for zinc borate crystallization. The effects of stirring rate, temperature, and reactant feed rate on the average particle size were investigated. The results show that the data sufficiently fit the second-order polynomial model. The crystallization conditions, including stirring rate, temperature, and reactant feed rate, were studied at 400–500 rpm, 45–85ºC, and 300–900 mL/h, respectively. The minimum particle size (3.3 µm) was obtained at a stirring rate of 450 rpm, a temperature of 85ºC, and a reactant feed rate of 300 mL/h.

Anahtar Kelimeler

Kaynakça

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  2. [2] Bardakçı M., Acaralı, N.B., Tuğrul, N., Derun, E.M., Pişkin, M.B., Production of Zinc Borate for Pilot Scale Equipment and Effects of Reaction Conditions on Yield. Mater. Sci. 19 (2), 159-163, 2013.
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  5. [5] Liang, P., Li, S.Y., Synthesis, characterization and standard molar enthalpies of formation of two zinc borates: 2ZnO•2B2O 3•3H2O and ZnB4O7. J. Chem. Thermodyn. 139, 105868, 2019.
  6. [6] Gürhan, D., Çakal, G.Ö., Eroğlu, İ., Özkar, S., Improved synthesis of fine zinc borate particles using seed crystals. J. Cryst. Growth. 311(6), 1545-1552, 2009.
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Ayrıntılar

Birincil Dil

İngilizce

Konular

Mühendislik

Bölüm

Araştırma Makalesi

Yazarlar

Sevgi Polat
Türkiye

Yayımlanma Tarihi

30 Eylül 2020

Gönderilme Tarihi

4 Mart 2020

Kabul Tarihi

27 Eylül 2020

Yayımlandığı Sayı

Yıl 2020 Cilt: 5 Sayı: 3

Kaynak Göster

APA
Polat, S., & Sayan, P. (2020). Box–Behnken experimental design for zinc borate Zn2B6O11•7H2O. Journal of Boron, 5(3), 152-161. https://doi.org/10.30728/boron.698858
AMA
1.Polat S, Sayan P. Box–Behnken experimental design for zinc borate Zn2B6O11•7H2O. Journal of Boron. 2020;5(3):152-161. doi:10.30728/boron.698858
Chicago
Polat, Sevgi, ve Perviz Sayan. 2020. “Box–Behnken experimental design for zinc borate Zn2B6O11•7H2O”. Journal of Boron 5 (3): 152-61. https://doi.org/10.30728/boron.698858.
EndNote
Polat S, Sayan P (01 Eylül 2020) Box–Behnken experimental design for zinc borate Zn2B6O11•7H2O. Journal of Boron 5 3 152–161.
IEEE
[1]S. Polat ve P. Sayan, “Box–Behnken experimental design for zinc borate Zn2B6O11•7H2O”, Journal of Boron, c. 5, sy 3, ss. 152–161, Eyl. 2020, doi: 10.30728/boron.698858.
ISNAD
Polat, Sevgi - Sayan, Perviz. “Box–Behnken experimental design for zinc borate Zn2B6O11•7H2O”. Journal of Boron 5/3 (01 Eylül 2020): 152-161. https://doi.org/10.30728/boron.698858.
JAMA
1.Polat S, Sayan P. Box–Behnken experimental design for zinc borate Zn2B6O11•7H2O. Journal of Boron. 2020;5:152–161.
MLA
Polat, Sevgi, ve Perviz Sayan. “Box–Behnken experimental design for zinc borate Zn2B6O11•7H2O”. Journal of Boron, c. 5, sy 3, Eylül 2020, ss. 152-61, doi:10.30728/boron.698858.
Vancouver
1.Sevgi Polat, Perviz Sayan. Box–Behnken experimental design for zinc borate Zn2B6O11•7H2O. Journal of Boron. 01 Eylül 2020;5(3):152-61. doi:10.30728/boron.698858

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