首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >First evidence of bioflocculant from Shinella albus with flocculation activity on harvesting of Chlorella vulgaris biomass
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First evidence of bioflocculant from Shinella albus with flocculation activity on harvesting of Chlorella vulgaris biomass

机译:来自苯菌的生物絮凝剂的首先证据来自絮凝活性对小球藻生物质收获的絮凝活性

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Bioflocculant from Shinella albus xn-1 could be used to harvest energy-producing microalga Chlorella vulgaris biomass for the first time. In this study, we investigated the flocculation activity and mode of strain xn-1, the characteristics of bioflocculant, the effect of flocculation conditions and optimized the flocculation efficiency. The results indicated that strain xn-1 exhibited flocculation activity through secreting bioflocculant; the bioflocculant with high thermal stability, pH stability and low molecular weight was proved to be not protein and polysaccharide, and flocculation active component was confirmed to contain triple bond and cumulated double bonds; algal pH, temperature and metal ions showed great impacts on the flocculation efficiency of bioflocculant; the maximum flocculation activity of bioflocculant reached 85.65% after the response surface optimization. According to the results, the bioflocculant from S. albus xn-1 could be a good potential in applications for high-efficiency harvesting of microalgae. (C) 2016 Elsevier Ltd. All rights reserved.
机译:来自Shinella Albus XN-1的生物絮凝剂可用于首次采用生产微观乐节小球藻的节能生物量。在这项研究中,我们研究了诱导菌株XN-1的絮凝活性和模式,生物絮凝剂的特点,絮凝条件的效果,优化了絮凝效率。结果表明,菌株XN-1通过分泌生物絮凝剂表现出絮凝活性;经证明了具有高热稳定性,pH稳定性和低分子量的生物絮凝剂不是蛋白质和多糖,并且证实絮凝活性组分含有三键和累积的双键;藻类pH,温度和金属离子对生物絮凝剂的絮凝效率产生了重大影响;响应表面优化后,生物絮凝剂的最大絮凝活性达到85.65%。根据结果​​,来自S XN-1的生物絮凝剂可能是微藻高效收获应用的良好潜力。 (c)2016 Elsevier Ltd.保留所有权利。

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