School of Chemical Engineering, Universiti Sains Malaysia, Engineering Campus, Seri Ampangan, 14300 Nibong Tebal, Pulau Pinang, Malaysia.
Carbohydr Polym. 2013 Apr 15;94(1):561-6. doi: 10.1016/j.carbpol.2013.01.042. Epub 2013 Jan 24.
Utilization of macroalgae biomass for bioethanol production appears as an alternative source to lignocellulosic materials. In this study, for the first time, Amberlyst (TM)-15 was explored as a potential catalyst to hydrolyze carbohydrates from Eucheuma cottonii extract to simple reducing sugar prior to fermentation process. Several important hydrolysis parameters were studied for process optimization including catalyst loading (2-5%, w/v), reaction temperature (110-130°C), reaction time (0-2.5 h) and biomass loading (5.5-15.5%, w/v). Optimum sugar yield of 39.7% was attained based on the following optimum conditions: reaction temperature at 120°C, catalyst loading of 4% (w/v), 12.5% (w/v) of biomass concentration and reaction time of 1.5h. Fermentation of the hydrolysate using Saccharomyces cerevisiae produced 0.33 g/g of bioethanol yield with an efficiency of 65%. The strategy of combining heterogeneous-catalyzed hydrolysis and fermentation with S. cerevisiae could be a feasible strategy to produce bioethanol from macroalgae biomass.
利用大型藻类生物质生产生物乙醇似乎是一种替代木质纤维素材料的来源。在这项研究中,Amberlyst(TM)-15 首次被探索用作一种潜在的催化剂,可将 Eucheuma cottonii 提取物中的碳水化合物水解为简单的还原糖,然后进行发酵过程。研究了几个重要的水解参数,以优化工艺,包括催化剂负载量(2-5%,w/v)、反应温度(110-130°C)、反应时间(0-2.5 小时)和生物质负载量(5.5-15.5%,w/v)。基于以下最佳条件,获得了 39.7%的最佳糖产率:反应温度为 120°C,催化剂负载量为 4%(w/v),生物质浓度为 12.5%(w/v),反应时间为 1.5h。使用酿酒酵母对水解物进行发酵,可产生 0.33g/g 的生物乙醇产率,效率为 65%。用酿酒酵母进行非均相催化水解和发酵相结合的策略可能是从大型藻类生物质生产生物乙醇的一种可行策略。