Abstract

<p><strong><em>Abstract: </em></strong><em>Sorghum(Sorghum bicolor L.) is one of raw materials to make bioethanol containing carbohydrate which can be hydrolysis becomeglucose. Making of bioethanol is started by liquification and continued by simultaneous saccharification and fermentation (SSF) by adding glucoamylase (aspergillus niger) enzyme and dry yeast (Saccharomyces cerevisiae). This research aim to know influence of enzyme catalyst concentration inSSF reaction to make bioethanol from sorghum. Reaction time of SSF 6 hours at 30<sup>o</sup>C by adding glucoamilase enzyme and 8 grams dry yeast with velocity of shaker at 8 scale, after liquification in 2 hours at80<sup>o</sup>C by adding 2 ml alpha-amilase enzyme. From this research earned relation between concentration of glucoamylase enzyme with concentration of glucose product. Ever greater concentration of glucoamylase enzyme applied, ever greater also concentration of glucose product. From this research, it can be concluded that reaction of SSF with the range of glucoamylase enzyme are 4 ml, 8 ml, 10 ml, and 12 ml for 12% substrate concentration, earned optimum condition is using concentration of glucoamylase enzyme at 8 ml. Michaelis-Menten constant (Km) from this research for 12% substrate concentration and 8 ml glucoamylase enzyme is 11.6875 g/l.hours and maximum velocity of reaction (Vmax) is 12.5 g/l.hours.</em><em></em></p><p><strong> </strong></p><p><strong><em>Keywords: </em></strong><em>Bioethanol, Sorghum, SSF Kinetic</em></p>

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