Development of Protein Foods and Their Rheological and Sensory Properties - Physicochemical Properties of Soy Milks and Tofu Milks (1) -
In Koo Hwang, Soo-Hee Kim, Young-Rak Choi
Abstract
In Koo Hwang, Soo-Hee Kim, Young-Rak Choi
Abstract
Tom coagulated with was used to make high-Ca soy milk, named tofu milk. Physicochemical analysis of regular soy milk and tofu milk adjusted at various pH and/or heat-treated was carried out. Unheated and heat treated tofu milk kept stable conoldal state at pH 8. The solubility of soy milk was low at pH 4 but increased gradually at higher pH, while mat of tofu milk was almost unchanged between pH 4 and pH 7 but increased rapid1y above pH 8. At pH 8, the viscosity of tofu milk was almost the same as soy milk, while mat of heat-heated tofu milk was much higher man that of soy milk. Especially, steamed tofu milk seemed to be a thick paste unable to drink, but autoclaved tofu milk was suitable to drink. Phytic acid content of tofu milk was somewhat lower man mat of soy milk.
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Tom coagulated with was used to make high-Ca soy milk, named tofu milk. Physicochemical analysis of regular soy milk and tofu milk adjusted at various pH and/or heat-treated was carried out. Unheated and heat treated tofu milk kept stable conoldal state at pH 8. The solubility of soy milk was low at pH 4 but increased gradually at higher pH, while mat of tofu milk was almost unchanged between pH 4 and pH 7 but increased rapid1y above pH 8. At pH 8, the viscosity of tofu milk was almost the same as soy milk, while mat of heat-heated tofu milk was much higher man that of soy milk. Especially, steamed tofu milk seemed to be a thick paste unable to drink, but autoclaved tofu milk was suitable to drink. Phytic acid content of tofu milk was somewhat lower man mat of soy milk.
Key concepts: Food science, Soy milk, Chemistry, Soy protein, Soy flour, Rheology, Phytic acid, Materials science