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用于增值农业废物混合物消化物的微藻选择。

Selection of microalgae intended for valorization of digestate from agro-waste mixtures.

机构信息

Laboratory of Biochemical Engineering & Environmental Technology (LBEET), Department of Chemical Engineering, University of Patras, 26504 Patras, Greece.

Laboratory of Plant Physiology, Department of Biology, University of Patras, 26504 Patras, Greece.

出版信息

Waste Manag. 2018 Mar;73:123-129. doi: 10.1016/j.wasman.2017.12.030. Epub 2017 Dec 30.

Abstract

Digestates have been recently recognized as valuable substrates for microalgal cultivation, effectively combining wastewater remediation and biofuels production. In this regard, selection of the appropriate species for such a process is of utmost importance. In this study, the performance of seven different microalgal strains in 10% (v/v) digestate which derived from the co-digestion of several agro-waste streams was investigated. Parachlorella kessleri, Acutodesmus obliquus, Chlorella vulgaris and Tetraselmis tetrathele were able to acclimate to this new medium, resulting in biomass yields and fatty acids (FAs) content which varied between 570-1117 mg L and 3.9-24.5%, respectively. The main FAs detected in the four species were oleic, palmitic and linolenic acid, with significant differences in their relative abundance. Concerning nutrients removal, almost complete NH-N removal was observed, while % TP removal exceeded 80% for three of the four strains tested. Furthermore, induction kinetics of prompt chlorophyll fluorescence was used as a screening tool indicative of the reactions of the photosynthetic machinery of different microalgal species cultivated in digestate.

摘要

近年来,消化液已被认为是微藻培养的有价值的基质,有效地将废水修复和生物燃料生产结合起来。在这方面,选择适合这种工艺的适当物种是最重要的。在这项研究中,研究了七种不同的微藻菌株在 10%(v/v)消化液中的性能,该消化液来自几种农业废物流的共消化。Parachlorella kessleri、Acutodesmus obliquus、Chlorella vulgaris 和 Tetraselmis tetrathele 能够适应这种新的培养基,导致生物量产量和脂肪酸(FA)含量分别在 570-1117mg/L 和 3.9-24.5%之间变化。在这四种物种中检测到的主要脂肪酸是油酸、棕榈酸和亚麻酸,它们的相对丰度存在显著差异。关于营养物质的去除,几乎完全去除了 NH-N,而在所测试的四种菌株中,有三种的 TP 去除率超过 80%。此外,快速叶绿素荧光的诱导动力学被用作一种筛选工具,指示不同微藻物种在消化液中培养时光合作用机制的反应。

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