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微藻中的脂类和蛋白质中氨基酸类型对水热液化过程中氮反应途径的影响。

Effects of Lipids and Type of Amino Acid in Protein in Microalgae on Nitrogen Reaction Pathways during Hydrothermal Liquefaction.

机构信息

School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, China.

Department of Chemical & Biochemical Engineering, The University of Western Ontario, London, ON N6A 3K7, Canada.

出版信息

Int J Mol Sci. 2023 Oct 6;24(19):14967. doi: 10.3390/ijms241914967.

Abstract

It is meaningful to understand the conversion pathways of nitrogen during the hydrothermal liquefaction process of microalgae to reveal the related reaction mechanisms and develop effective methods to prevent N from ending in biocrude, which eventually increases the quality of biocrude. Extending from our previous works that mainly focused on two high-protein (>50 wt%) microalgae ( sp. and sp.), sp., which has a high lipid content (>70 wt%), was used as the feedstock for this project using the same methodology. The high lipid content in induced less nitrogen during the oil phase and as a result, reduced the heteroatom content while also improving the quality of biocrude. It is worth noting that another investigation was conducted on the model compounds with different types of amino acids to specify the effects of the types of amino acids in the proteins in microalgae on the N pathway and their distribution in the products (aqueous phase, oil, solid, and gas). It was found that the basic amino acid in microalgae caused the formation of more N-heterocyclic compounds in the biocrude. The mass flow based on the mass balance was demonstrated to further refine the map showing the predicted reaction pathway of nitrogen from the previous version.

摘要

了解微藻水热液化过程中氮的转化途径对于揭示相关反应机制和开发有效方法防止氮最终进入生物油具有重要意义,这最终可以提高生物油的质量。在我们之前主要关注两种高蛋白 (>50wt%) 微藻( sp. 和 sp.)的工作基础上,本项目使用相同的方法,以脂质含量较高 (>70wt%) 的 sp. 作为原料。 sp. 中较高的脂质含量在油相中产生的氮较少,从而降低了杂原子含量,同时提高了生物油的质量。值得注意的是,我们还对不同类型氨基酸的模型化合物进行了另一次研究,以明确微藻中蛋白质中氨基酸的类型对氮途径的影响及其在产物(水相、油相、固相等)中的分布。研究发现,微藻中的碱性氨基酸会在生物油中形成更多的 N-杂环化合物。基于质量平衡的质量流进一步细化了之前版本中显示氮的预测反应途径的图谱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12b4/10573331/7e80431d9018/ijms-24-14967-g001.jpg

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