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利用热预处理固体废物制备微藻衍生的碳水化合物、蛋白质和脂质的组成

Composition of carbohydrate, protein and lipid derived from microalgae using thermally pretreated solid waste.

作者信息

Rawindran Hemamalini, Khoo Kuan Shiong, Satpati Gour Gopal, Maity Sudatta, Chandran Krittika, Lim Jun Wei, Tong Woei-Yenn, Setiabudi Herma Dina, Yunus Normawati M

机构信息

Department of Chemistry, Faculty of Science, Centre for Sustainable Nanomaterials, Ibnu Sina Institute for Scientific and Industrial Research, Universiti Teknologi Malaysia, Johor Bahru, Malaysia.

Algae Bioseparation Research Laboratory, Department of Chemical Engineering and Materials Science, Yuan Ze University, Taoyuan, Taiwan.

出版信息

J Sci Food Agric. 2025 Jul;105(9):4672-4679. doi: 10.1002/jsfa.14038. Epub 2024 Nov 19.

Abstract

Microalgae are widely recognized for their capacity to generate value-added products in a variety of sectors, including the pharmaceutical and food industries, bioenergy industries and wastewater industries. The quality of a microalga is significantly influenced by its proliferation. Along with growth, the biochemical profile may also vary based on the nutrient that is supplemented. The majority of the supplemented nutrients utilized are not in a functional state, as they are typically extracted in liquid form or pretreated prior to use. Parallel to numerous commonly applied pretreatment processes, including chemical, mechanical and biological, thermal pretreatment appears to receive less attention. Hence it is crucial to comprehend the potential for thermal pretreatment as well as its mechanism in militating the solid waste to release additional nutrients in order to enhance the biochemical profile of microalgae. The current review takes a closer look at the impact of various thermal pretreatments on solid waste on influencing microalgal performance in terms of their overall biochemical profiles such as carbohydrates, proteins and lipids. This approach is likely to enhance the circular economy by utilizing waste products and effectively closing the loop on waste. © 2024 Society of Chemical Industry.

摘要

微藻因其在包括制药和食品工业、生物能源工业及废水处理工业等多个领域生产增值产品的能力而广受认可。微藻的质量受其增殖的显著影响。随着生长,其生化组成也可能因所添加的营养物质而有所不同。所利用的大多数添加营养物质并非处于功能状态,因为它们通常以液体形式提取或在使用前经过预处理。与众多常用的预处理工艺(包括化学、机械和生物预处理)并行的是,热预处理似乎较少受到关注。因此,了解热预处理的潜力及其促使固体废物释放额外营养物质以改善微藻生化组成的机制至关重要。本综述更深入地探讨了各种热预处理对固体废物的影响,以及在碳水化合物、蛋白质和脂质等整体生化组成方面对微藻性能的影响。这种方法可能通过利用废品和有效实现废物循环利用来促进循环经济。© 2024化学工业协会。

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