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Optimization of microwave-assisted carbohydrate extraction from indigenous Scenedesmus sp. grown in brewery effluent using response surface methodology

机译:优化土着铜塞氏菌的微波辅助碳水化合物萃取。使用响应表面方法论在啤酒厂生长

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摘要

The use of wastewater as a nutrient source for microalgae cultivation is considered as a cost-effective approach for algal biomass and biofuel production. The microalgal biomass contains carbohydrates that can be processed into bioethanol through different extraction methods. The objective of this study is to optimize the microwave-assisted extraction (MAE) of carbohydrates from the indigenous Scenedesmus sp. grown on brewery effluent. Optimization of independent variables, such as acid concentration (0.1–5 N), microwave power (800–1200 W), temperature (80–180 °C) and extraction time (5–30 min) performed by response surface methodology. It was found that all independent variables had a significant and positive effect on microwave-assisted carbohydrate extraction. The quadratic model developed on the basis of carbohydrate yield had F value of 112.05 with P < 0.05, indicating that the model was significant to predict the carbohydrate yield. The model had a high value of R2 (0.9899) and adjusted R2 (0.9811), indicating that the fitted model displayed a good agreement between the predicted and actual carbohydrate yield. An optimum carbohydrate yield obtained was 260.54 mg g−1 under the optimum conditions of acid concentration (2.8 N), microwave power (1075 W), temperature (151 °C) and extraction time (22 min). The validation test showed that the model has adequately described the microwave-assisted extraction (MAE) of carbohydrates from microalgal biomass. This study demonstrated that the indigenous Scenedesmus sp. grown on brewery effluent provides a promising result in carbohydrate production for bioethanol feedstock.
机译:使用废水作为微藻栽培的营养来源被认为是藻类生物量和生物燃料生产的成本效益的方法。微藻生物质含有碳水化合物,可以通过不同的提取方法将其加工成生物乙醇。该研究的目的是优化来自土着镰刀菌的碳水化合物的微波辅助提取(MAE)。在啤酒厂生长。优化独立变量,如酸浓度(0.1-5 n),微波功率(800-1200次),温度(80-180°C)和响应表面方法进行的提取时间(5-30分钟)。发现所有独立变量对微波辅助碳水化合物提取具有显着且积极的影响。基于碳水化合物产率开发的二次模型具有P <0.05的F值为112.05,表明该模型是预测碳水化合物产量的显着性。该模型具有高值R2(0.9899)和调整的R2(0.9811),表明拟合模型在预测和实际碳水化合物产量之间表现出良好的一致性。在酸浓度(2.8N),微波功率(1075W),温度(151℃)和提取时间(22分钟)的最佳条件下,得到的最佳碳水化合物产率为260.54mg G-1。验证试验表明,该模型已充分描述了从微藻生物质的碳水化合物的微波辅助萃取(MAE)。本研究表明,土着斯明斯姆斯SP。在啤酒厂生长的流出物提供了对生物乙醇原料的碳水化合物生产的有希望的结果。

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