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Microalgae recovery by microflotation for biofuel production usina metallic coaaulants

机译:通过微浮选回收微藻用于金属凝聚剂用于生物燃料生产

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摘要

Harvesting algal biomass is an important unit operation in the production of biofuel from algae. However, many of the known techniques available for harvesting and dewatering microalgal biomass are energy intensive and in some cases intrusive and inefficient. Here we show that microflotation mediated by fluidic oscillation is an approach that differs from dissolved air flotation by the nonintrusive laminar flow approach, as well as low energy consumptions, and is also different from dispersed air flotation by the method of bubble generation. Using three metallic coagulant types, recovery efficiencies of 99.2,98.1 and 95.2% were obtained for ferric chloride, ferric sulfate and aluminum sulfate, respectively. The benchmarks in the literature for dissolved air flotation are 40-98%.Biofuel production from microalgae can be facilitated by the improvement of a key unit operation such as harvesting and dewatering. The study outcome strongly recommends the technique as a technology for microalgal harvesting.
机译:收获藻类生物质是从藻类生产生物燃料的重要单位操作。然而,许多可用于收获和脱水微藻生物质的已知技术是能量密集型的,并且在某些情况下是侵入性的且效率低下的。在这里,我们表明,由流体振荡介导的微浮选是一种与非侵入性层流法的溶解气浮法不同的方法,并且能耗低,并且与气泡产生法的分散气浮法不同。使用三种类型的金属混凝剂,氯化铁,硫酸铁和硫酸铝的回收率分别为99.2、98.1和95.2%。文献中溶解空气浮选的基准是40-98%。微藻的生物燃料生产可以通过改进关键单元操作(例如收获和脱水)来促进。研究结果强烈推荐该技术为微藻收获技术。

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  • 来源
    《Biofuels》 |2013年第4期|363-369|共7页
  • 作者单位

    Department of Chemical & Biological Engineering, University of Sheffield, Mappin Street, Sheffield, S1 3JD, UK;

    Department of Chemical & Biological Engineering, University of Sheffield, Mappin Street, Sheffield, S1 3JD, UK;

    Department of Chemical & Biological Engineering, University of Sheffield, Mappin Street, Sheffield, S1 3JD, UK;

    Department of Chemical Engineering, University of Loughborough, Leicestershire, LE11 3TU, UK;

    Department of Chemical & Biological Engineering, University of Sheffield, Mappin Street, Sheffield, S1 3JD, UK;

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