The Phyto-Lipid Biotechnology Lab, Departments of Biotechnology, Energy and Environmental Engineering, Ben-Gurion University of the Negev, P,O, Box 653, Beer-Sheva, 84105, Israel.
Biotechnol Biofuels. 2013 Apr 16;6(1):55. doi: 10.1186/1754-6834-6-55.
Biodiesel production has increased dramatically over the last decade, raising the need for new rapid and non-destructive analytical tools and technologies. 1H Low Field Nuclear Magnetic Resonance (LF-NMR) applications, which offer great potential to the field of biodiesel, have been developed by the Phyto Lipid Biotechnology Lab research team in the last few years.
Supervised and un-supervised chemometric tools are suggested for screening new alternative biodiesel feedstocks according to oil content and viscosity. The tools allowed assignment into viscosity groups of biodiesel-petrodiesel samples whose viscosity is unknown, and uncovered biodiesel samples that have residues of unreacted acylglycerol and/or methanol, and poorly separated and cleaned glycerol and water. In the case of composite materials, relaxation time distribution, and cross-correlation methods were successfully applied to differentiate components. Continuous distributed methods were also applied to calculate the yield of the transesterification reaction, and thus monitor the progress of the common and in-situ transesterification reactions, offering a tool for optimization of reaction parameters.
Comprehensive applied tools are detailed for the characterization of new alternative biodiesel resources in their whole conformation, monitoring of the biodiesel transesterification reaction, and quality evaluation of the final product, using a non-invasive and non-destructive technology that is new to the biodiesel research area. A new integrated computational-experimental approach for analysis of 1H LF-NMR relaxometry data is also presented, suggesting improved solution stability and peak resolution.
在过去的十年中,生物柴油的产量大幅增长,这就需要新的快速、无损的分析工具和技术。在过去的几年中,植物脂质生物技术实验室的研究团队已经开发了 1H 低场核磁共振(LF-NMR)应用,这为生物柴油领域带来了巨大的潜力。
根据油含量和粘度,提出了有监督和无监督化学计量工具,用于筛选新的替代生物柴油原料。这些工具允许将生物柴油-石油柴油样品的粘度分配到未知粘度的粘度组中,并发现了生物柴油样品中存在未反应的酰基甘油和/或甲醇残留,以及甘油和水分离和清洁不良。在复合材料的情况下,成功地应用了弛豫时间分布和互相关方法来区分成分。连续分布方法也被应用于计算酯交换反应的产率,从而监测常见和原位酯交换反应的进展,提供了一种优化反应参数的工具。
详细介绍了综合应用工具,用于表征新的替代生物柴油资源的整体构象、监测生物柴油酯交换反应以及最终产品的质量评估,使用了一种对生物柴油研究领域来说是新颖的非侵入性和无损技术。还提出了一种新的 1H LF-NMR 弛豫度数据分析的综合计算-实验方法,表明提高了溶液稳定性和峰分辨率。