The Effect of the Varieties and Particle Size on the Properties of Rice Flour
Jun-Seok Kum, Hyun-Yu Lee
Abstract
Jun-Seok Kum, Hyun-Yu Lee
Abstract
Seven rice varieties(Suweonjo, Suweon232, BG276-5, IR44, IR41999-139, Suweon230 and Yongjubyeo) were used to study the effect of particle size on the physicochemical properties(proximate analysis, color values, amylogram, water absorption index and water solubility index) of rice flours. Suweonjo had the highest amylose content (27.07%) and Yongjubyeo had the lowest one (17.17%). Suweonjo had the highest protein content (11.36%) and IR44 had the lowest one (6.75%). Protein content of rice flours prepared in a pin mill was decreased as particle size of rice flours decreased. L value of rice flour was increased as particle size of rice flours decreased while b value and value decreased. Maximum viscosity, cold paste viscosity, breakdown, total setback in amylogram properties were increased as particle size of rice flours decreased while initial paste temperature decreased. Water absorption index (WAI) and water solubility index (WSI) were increased as particle size of rice flour decreased.
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Seven rice varieties(Suweonjo, Suweon232, BG276-5, IR44, IR41999-139, Suweon230 and Yongjubyeo) were used to study the effect of particle size on the physicochemical properties(proximate analysis, color values, amylogram, water absorption index and water solubility index) of rice flours. Suweonjo had the highest amylose content (27.07%) and Yongjubyeo had the lowest one (17.17%). Suweonjo had the highest protein content (11.36%) and IR44 had the lowest one (6.75%). Protein content of rice flours prepared in a pin mill was decreased as particle size of rice flours decreased. L value of rice flour was increased as particle size of rice flours decreased while b value and value decreased. Maximum viscosity, cold paste viscosity, breakdown, total setback in amylogram properties were increased as particle size of rice flours decreased while initial paste temperature decreased. Water absorption index (WAI) and water solubility index (WSI) were increased as particle size of rice flour decreased.
Key concepts: Amylose, Absorption of water, Particle size, Rice flour, Food science, Chemistry, Viscosity, Solubility