Araştırma Makalesi

Synthesis of Fe-Fe2B catalysts via solvothermal route for hydrogen generation by hydrolysis of NaBH4

Cilt: 3 Sayı: 1 26 Mart 2018
PDF İndir
EN

Synthesis of Fe-Fe2B catalysts via solvothermal route for hydrogen generation by hydrolysis of NaBH4

Öz


In this study, iron sulfate heptahydrate (FeSO4.7H2O) and sodium borohydride (NaBH4) were used to synthesize Fe-Fe2B nanocrystals via the solvothermal route. Synthesis of Fe-Fe2B nanocrystals was carried out under Argon (Ar) gas atmosphere with aqueous solutions of FeSO4.7H2O and NaBH4 at various concentrations and reaction time. The phases and microstructures of nanocrystals thus formed were characterized by X-Ray diffraction (XRD) spectroscopy and scanning electron microscopy (SEM). Surface areas of nanocrystals were measured by a surface area and pore-size analyzer using nitrogen adsorption-desorption method together with Brunauer-Emmett-Teller (BET) equation. The vacuum dried nanoparticles were calcined under both Ar and air at 500 ºC. Nano-cylindrical structures Fe-Fe2B were observed while calcinating under Ar atmosphere; whereas more irregular shaped particles were obtained by calcination under air. The surface areas of nanocylinders were determined as 12 m2/g, 5.5 m2/g and 16.5 m2/g, for vacuum dried, Ar-calcined and O2-calcined products respectively. The catalytic effect of those nanocrystals for hydrogen generation were studied by determining reaction rates in aqueous alkaline solutions of NaBH4. Their catalytic activities were investigated by varying the amount of catalysts, and the concentrations of NaBH4 and NaOH. The effect of temperature on the catalytic activity was also studied by varying the temperatures from 25-70 °C. It was noticed that the catalytic activity of vacuum dried nanocrystals was the highest, and it decreased with the increase in NaOH concentration. With 0.01 g of Fe-Fe2B catalyst in 1 % w/w NaBH4 concentration at 25 °C, the hydrogen production rate was 570 mL of H2.g-1.m-1, which reached to 1230 at 50 °C and 2700 mL at 70 °C. 


Anahtar Kelimeler

Kaynakça

  1. [1] Yalaz, N., Kocakuşak, S., Kalafatoğlu, E., İnorganik bor bileşikleri kaynak araştırması metal borürler, TÜBİTAK Marmara Bilimsel ve Endüstriyel Araştırma Enstitüsü, Kocaeli, 1-84 1988.
  2. [2] Telle, R., Boride and Carbide Ceramics, Materials Science and Technology, 11, Swain, M., VCH Publishers Inc., New York, 185-229, 1994.
  3. [3] Lundstrom, T., "Structure, defects and properties of some refractory borides", Pure&Applied Chem., 57(10), 1384, 1985.
  4. [4] Schwetz, K. A., Lipp, A., Boron carbide, boron nitride, and metal borides, Ullmann's Encyclopedia of Industrial Chemistry, A4, Campbell, F. T., Pfefferkorn, R., Wiley-VCH, Weinheim, 303-306, 1985.
  5. [5] Habashi, F., Handbook of Extractive Metallurgy, Wiley-VCH, NewYork, 4, 1997.
  6. [6] Gadakary S., Khanra A. K., Veerabau R., Production of nanocrystalline TiB2 powder through self-propagating high temperature synthesis (SHS) of TiO2-H3BO3-Mg mixture, Advances in Applied Ceramics Structural, Functional and Bioceramics, Adv. Appl. Ceram., 113 (7) ,419-426, 2014.
  7. [7] Wei Y., Liu Z., Ran S., Xi A., Yi T. F., Ji Y., Synthesis and properties of Fe-B powders by molten salt method, J. Mater. Res., 32 (4), 28, 883-889, 2017.
  8. [8] Yin H., Tang D., Mao X., Xiao W., Wang D., Electrolytic calcium hexaboride for high capacity anode of aqueous primary batteries, J. Mater. Chem. A, 3, 15184-15189, 2015.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Mühendislik

Bölüm

Araştırma Makalesi

Yazarlar

Mustafa Barış
Etimaden Works General Menagement
0000-0002-2119-0697
Türkiye

Tuncay Şimşek Bu kişi benim
Hacettepe University, Department of Physics Engineering
0000-0002-4683-0152
Türkiye

Hatice Taşkaya Bu kişi benim
Department of Chemical Engineering, Middle East Technical University
Türkiye

Arun K. Chattopadhyay Bu kişi benim

Yayımlanma Tarihi

26 Mart 2018

Gönderilme Tarihi

31 Ekim 2017

Kabul Tarihi

26 Ocak 2018

Yayımlandığı Sayı

Yıl 2018 Cilt: 3 Sayı: 1

Kaynak Göster

APA
Barış, M., Şimşek, T., Taşkaya, H., & Chattopadhyay, A. K. (2018). Synthesis of Fe-Fe2B catalysts via solvothermal route for hydrogen generation by hydrolysis of NaBH4. Journal of Boron, 3(1), 51-62. https://doi.org/10.30728/boron.348291
AMA
1.Barış M, Şimşek T, Taşkaya H, Chattopadhyay AK. Synthesis of Fe-Fe2B catalysts via solvothermal route for hydrogen generation by hydrolysis of NaBH4. Journal of Boron. 2018;3(1):51-62. doi:10.30728/boron.348291
Chicago
Barış, Mustafa, Tuncay Şimşek, Hatice Taşkaya, ve Arun K. Chattopadhyay. 2018. “Synthesis of Fe-Fe2B catalysts via solvothermal route for hydrogen generation by hydrolysis of NaBH4”. Journal of Boron 3 (1): 51-62. https://doi.org/10.30728/boron.348291.
EndNote
Barış M, Şimşek T, Taşkaya H, Chattopadhyay AK (01 Mart 2018) Synthesis of Fe-Fe2B catalysts via solvothermal route for hydrogen generation by hydrolysis of NaBH4. Journal of Boron 3 1 51–62.
IEEE
[1]M. Barış, T. Şimşek, H. Taşkaya, ve A. K. Chattopadhyay, “Synthesis of Fe-Fe2B catalysts via solvothermal route for hydrogen generation by hydrolysis of NaBH4”, Journal of Boron, c. 3, sy 1, ss. 51–62, Mar. 2018, doi: 10.30728/boron.348291.
ISNAD
Barış, Mustafa - Şimşek, Tuncay - Taşkaya, Hatice - Chattopadhyay, Arun K. “Synthesis of Fe-Fe2B catalysts via solvothermal route for hydrogen generation by hydrolysis of NaBH4”. Journal of Boron 3/1 (01 Mart 2018): 51-62. https://doi.org/10.30728/boron.348291.
JAMA
1.Barış M, Şimşek T, Taşkaya H, Chattopadhyay AK. Synthesis of Fe-Fe2B catalysts via solvothermal route for hydrogen generation by hydrolysis of NaBH4. Journal of Boron. 2018;3:51–62.
MLA
Barış, Mustafa, vd. “Synthesis of Fe-Fe2B catalysts via solvothermal route for hydrogen generation by hydrolysis of NaBH4”. Journal of Boron, c. 3, sy 1, Mart 2018, ss. 51-62, doi:10.30728/boron.348291.
Vancouver
1.Mustafa Barış, Tuncay Şimşek, Hatice Taşkaya, Arun K. Chattopadhyay. Synthesis of Fe-Fe2B catalysts via solvothermal route for hydrogen generation by hydrolysis of NaBH4. Journal of Boron. 01 Mart 2018;3(1):51-62. doi:10.30728/boron.348291

Cited By