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The effect of bubble size distribution on the release of microalgae proteins by ozone-flotation

机译:泡沫浮选泡沫尺寸分布对微藻蛋白释放的影响

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摘要

Interest in sustainable energy production is one of the most important resources in the development of technologies, and one of the promising sources is the use of microalgae as a raw material. These are obtained in nature, do not need good conditions to develop, occupy a small area for growth and replace the use of food products for the production of biofuel. However, one of the biggest hurdle is the biomass harvest and one of the innovative techniques being proposed is ozone - flotation. Flotation processes are influenced by the physical characteristics of bubbles and particles, and therefore it is necessary to investigate the size distribution of generated bubbles, their action in microalgal cells and the oxidation and release of proteins that act as biosurfactants. In this work the effect of ozone bubble size in a three-phase system (ozone - wastewater - micro algae) and size of microalgal particles separated by ozone - flotation were evaluated. Three ozone flows were used (0.2, 0.6 and 1 L/min). Best results were obtained with a flow of 0.6 L/min achieving 88.5% efficiency, increased biomass oxidation, destabilization of microalgal cells (zeta potential 3.17 mV), highest protein release (46.7 mg/L) and, a demonstrated efficiency of proteins in reducing bubble coalescence. Regarding the latter, no differences in size or distribution of the ozone bubbles were obtained between the 3 evaluated heights of the column (bottom, middle and top). At this flow the mean bubble diameters were maintained at 1910, 2028 and 2071 mu m for bottom, middle and top, respectively, with approximately 50% of the bubbles concentrated up to 2000 mu m. In addition, due to the higher action of ozone with microalgal cells, smaller particle sizes in the column were found due to the oxidizing action of ozone.
机译:可持续能源产量的兴趣是技术发展中最重要的资源之一,其中有希望的来源是使用微藻作为原料。这些是自然界的,不需要良好的发展条件,占据一个小面积的生长,取代食品的使用进行生物燃料。然而,最大的障碍之一是生物量收获,所提出的创新技术之一是臭氧 - 浮选。浮选过程受气泡和颗粒的物理特性的影响,因此需要研究产生的气泡的尺寸分布,它们在微藻细胞中的作用以及充当生物表面活性剂的蛋白质的氧化和释放。在这项工作中,评价了臭氧气泡尺寸在三相系统(臭氧 - 废水 - 微藻)和通过臭氧 - 浮选分离的微藻颗粒尺寸的影响。使用三种臭氧流量(0.2,0.6和1 L / min)。通过0.6L / min的流程获得最佳结果,实现88.5%的效率,增加生物质氧化,微藻细胞(Zeta潜力3.17mV),最高蛋白质释放(46.7mg / L),并证明蛋白质在还原中的效率泡泡聚结。关于后者,在3柱的3评估高度之间没有臭氧气泡的大小或分布的差异,在柱的3个评价高度之间获得。在该流程下,平均气泡直径分别在1910,2028和2071μm,分别为底部,中间和顶部,大约50%的气泡浓缩至2000μm。另外,由于臭氧与微藻细胞的作用更高,由于臭氧的氧化作用,发现柱中的较小粒径。

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