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通过原位酯交换法准确可靠地量化总微藻油脂作为脂肪酸甲酯的潜力。

Accurate and reliable quantification of total microalgal fuel potential as fatty acid methyl esters by in situ transesterification.

机构信息

National Renewable Energy Laboratory, National Bioenergy Center, Golden, CO 80401, USA.

出版信息

Anal Bioanal Chem. 2012 Apr;403(1):167-78. doi: 10.1007/s00216-012-5814-0. Epub 2012 Feb 18.

Abstract

In the context of algal biofuels, lipids, or better aliphatic chains of the fatty acids, are perhaps the most important constituents of algal biomass. Accurate quantification of lipids and their respective fuel yield is crucial for comparison of algal strains and growth conditions and for process monitoring. As an alternative to traditional solvent-based lipid extraction procedures, we have developed a robust whole-biomass in situ transesterification procedure for quantification of algal lipids (as fatty acid methyl esters, FAMEs) that (a) can be carried out on a small scale (using 4-7 mg of biomass), (b) is applicable to a range of different species, (c) consists of a single-step reaction, (d) is robust over a range of different temperature and time combinations, and (e) tolerant to at least 50% water in the biomass. Unlike gravimetric lipid quantification, which can over- or underestimate the lipid content, whole biomass transesterification reflects the true potential fuel yield of algal biomass. We report here on the comparison of the yield of FAMEs by using different catalysts and catalyst combinations, with the acid catalyst HCl providing a consistently high level of conversion of fatty acids with a precision of 1.9% relative standard deviation. We investigate the influence of reaction time, temperature, and biomass water content on the measured FAME content and profile for 4 different samples of algae (replete and deplete Chlorella vulgaris, replete Phaeodactylum tricornutum, and replete Nannochloropsis sp.). We conclude by demonstrating a full mass balance closure of all fatty acids around a traditional lipid extraction process.

摘要

在藻类生物燃料的背景下,脂质,或者更好的脂肪酸直链,也许是藻类生物质中最重要的成分。准确量化脂质及其各自的燃料产量对于比较藻类菌株和生长条件以及进行过程监测至关重要。作为传统溶剂基脂质提取方法的替代方法,我们开发了一种强大的全生物质原位酯交换程序,用于定量藻类脂质(作为脂肪酸甲酯,FAMEs),(a)可以在小范围内进行(使用 4-7 毫克生物质),(b)适用于多种不同的物种,(c)由单步反应组成,(d)在不同的温度和时间组合范围内具有稳健性,(e)对生物质中至少 50%的水具有耐受性。与重量法脂质定量不同,后者可能会高估或低估脂质含量,全生物质酯交换反映了藻类生物质的真实潜在燃料产量。我们在这里报告了使用不同催化剂和催化剂组合的 FAME 产率的比较,其中酸催化剂 HCl 提供了脂肪酸的一致高水平转化率,精度为 1.9%相对标准偏差。我们研究了反应时间、温度和生物质含水量对 4 种不同藻类样品(充足和耗尽的普通小球藻、充足的三角褐指藻和充足的拟球藻)的测量 FAME 含量和谱图的影响。我们最后通过演示传统脂质提取过程中所有脂肪酸的完全质量平衡闭合来证明这一点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f5c4/3309134/5e36b6fb8f6d/216_2012_5814_Figa_HTML.jpg

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