首页> 外文会议>2010 3rd International Conference on Biomedical Engineering and Informatics >Use of box-behnken design for the optimization of supercritical carbon dioxide extraction of oil from Schisandra Chinensis(Turcz.) Baill
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Use of box-behnken design for the optimization of supercritical carbon dioxide extraction of oil from Schisandra Chinensis(Turcz.) Baill

机译:箱式设计用于超临界二氧化碳从五味子中提取油的优化

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The response surface methodology (RSM) was employed to optimize the process parameters of supercritical carbon dioxide extraction of the oil from caculis of Schisandra Chinensis(Turcz.) Baill. The effects of temperature, pressure and flow rate on the oil yield were investigated. Results showed that the data were adequately fitted into the second-order polynomial model. The linear and quadratic of independent variables, temperature, pressure and flow rate, the interactions between pressure and flow rate, temperature and flow rate had a significant effect on the oil yield. It was predicted that the optimum extraction process parameters within the experimental ranges would be the extraction temperature of 36°C and pressure of 42MPa and flow rate 17L/h. Under these conditions, the oil yield was 0.43%. The color of oil extracted by supercritical carbon dioxide is golden orange. Its physical and chemical properties come up to the required standard for edible oil.
机译:采用响应面方法(RSM)来优化Schisandra Chinensis(Turcz。)扑克中的石油的超临界二氧化碳的过程参数。研究了温度,压力和流速对油产量的影响。结果表明,数据充分拟合到二阶多项式模型中。独立变量的线性和二次,温度,压力和流速,压力和流速之间的相互作用,温度和流速之间对油产量具有显着影响。预测,实验范围内的最佳提取工艺参数将是36°C的提取温度和42MPa的压力和17L / h。在这些条件下,油产率为0.43%。通过超临界二氧化碳提取的油的颜色是金色橙色。其物理和化学性质均达到食用油所需的标准。

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