水动力空化低能量提取技术去除纳米绿藻脂质的数学建模。

A. Budiman, Martomo Setyawan, Panut Mulyono, Sutijan, Razif Harun
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摘要

流体动力空化(HCLE)辅助脂质提取是一种很有前途的低能耗工艺。本研究旨在利用离散流系统减少能量需求,并评估两种模型来计算体积传质系数。重复次数、空化次数、微藻浓度和温度的变化对能量需取值都有影响。第一个模型采用总脂质传质近似(模型1),第二个模型采用分离脂质传质近似(模型2)。根据模型1,总体积传质系数()f分别为1.166 × 10-2、3.113 × 10-3和1.285 × 10-3 min-1,决定系数(R2)为0.9797。而根据模型2,破碎微藻()的体积传质系数分别为1.131 × 10-2、2.925 × 10-3和1.260 × 10-3 min-1,完整微藻()的体积传质系数分别为0.051、0.030和0.011 1/min, R2为0.9766。两个模型给出了相似的结果。结果表明,与完整的微藻相比,破坏微藻的脂质释放占主导地位。因此,HCLE离散流系统是一种很有前途的微藻脂质提取技术
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Mathematical Modeling of Hydrodynamic Cavitation as Low Energy Extraction Technique for Lipid Removal from Nannochloropsis sp.
Lipid extraction assisted by hydrodynamic cavitation (HCLE) is one of the promising processes with low energy requirements. This study aims to reduce the energy requirement using a discrete flow system and evaluate two models to calculate the volumetric mass transfer coefficient. The variations of the number of repetitions, cavitation number, microalgae concentration, and temperature have affected the energy requirement value.  The first model uses total lipid mass transfer approximation (Model 1) and the second uses separated lipid mass transfer approximation (Model 2). Based on Model 1 the value of total volumetric mass transfer coefficient ( ) f were 1.166 x 10-2, 3.113 x 10-3 and 1.285 x 10-3 min-1 with coefficient of determination (R2) is 0.9797. Whereas, based on Model 2 the value of volumetric mass transfer coefficient from disrupted microalgae ( ) were 1.131 x 10-2, 2.925 x 10-3 and 1.260 x 10-3 min-1 and from the intact microalgae ( ) was 0.051, 0.030 and 0.011 1/min with R2 of 0.9766. Both models gave a similar result. It was shown that lipid release from disrupted microalgae was dominant compared to the intact microalgae. Therefore, the discrete flow system of HCLE is a promising technique for extracting lipids from microalgae
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