Journal Article

·2013 OPEN ACCESS

Production of Zinc Borate for Pilot-Scale Equipment and Effects of Reaction Conditions on Yield

Melek Bardakci YTU , Nil Acaralı YTU , Nurcan Tuğrul YTU , Emek Möröydor Derun YTU , Mehmet Burçin Pişkin YTU

Materials Science

Abstract

In this study, zinc borate (ZB) was synthesized by reacting zinc oxide and boric acid in the presence of standard ZB (w/w, in terms of boric acid) in order to promote crystallization. The effects of seed, H3BO3/ZnO (boric acid/zinc oxide) ratio, reaction time, water volume, reaction temperature and cooling temperature on yield were investigated for pilot-scale equipment. The results indicated that the addition of seed (w/w) to a saturated solution of reactants increased the yield of the reaction. The results of reaction yields obtained from either magnetically or mechanically stirred systems were compared. At various reaction times, the optimal yield was 86.78 % in a saturated aqueous solution. The products were characterized by X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FT-IR) and Thermogravimetric / Differential Thermal Analysis (TG/DTA). The results displayed that ZB was successfully produced under the optimized reaction conditions and the product synthesized had high thermal stability.DOI: http://dx.doi.org/10.5755/j01.ms.19.2.4432

Keywords

Boric acid Zinc Thermogravimetric analysis Yield (engineering) Zinc borate Crystallization Boron Fourier transform infrared spectroscopy Differential thermal analysis Materials science Thermal stability Nuclear chemistry Inorganic chemistry Chemistry Analytical Chemistry (journal) Chemical engineering Diffraction Organic chemistry Metallurgy

Subject Areas

Chemical Synthesis and Characterization ·Industrial and Manufacturing Engineering ·Physical Sciences
Clay minerals and soil interactions ·Biomaterials ·Physical Sciences
Thermal and Kinetic Analysis ·Materials Chemistry ·Physical Sciences

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