首页> 外文期刊>World Journal of Microbiology and Biotechnology >Characteristics and flocculating mechanism of a novel bioflocculant HBF-3 produced by deep-sea bacterium mutant Halomonas sp. V3a’
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Characteristics and flocculating mechanism of a novel bioflocculant HBF-3 produced by deep-sea bacterium mutant Halomonas sp. V3a’

机译:深海细菌突变体Haloomonas sp。产生的新型生物絮凝剂HBF-3的特性及絮凝机理。 V3a’

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摘要

A novel bioflocculant HBF-3 produced by deep-sea bacterium mutant Halomonas sp. V3a’ was investigated with regard to its flocculating characteristics and mechanism. 4.0 m g l−1 HBF-3 showed the maximum flocculating activity of 96.9% in 5.0 g l−1 Kaolin suspension containing 11.25 mM CaCl2, and that its flocculating activity was more than 90% within 5–40°C and over 80% in a wide pH range (3.0–11.0). Chemical analyses indicated that the biopolymer HBF-3 was mainly a polysaccharide, including neutral sugar residues (20.6%), uronic acid residues (7.6%), amino sugar residues (1.6%) and sulfate groups (5.3%). Fourier transform infrared (FTIR) spectrum showed the presence of carboxyl and hydroxyl groups in HBF-3 molecular. The average molecular mass of HBF-3, as determined by gel filtration chromatography (GFC), was approximately 590 kDa. Flocculation of Kaolin suspension with HBF-3 acted as a model to explore the flocculating mechanism in which bridging mediated by Ca2+ was proposed as the primary action based upon the experimental observations.
机译:深海细菌突变体Haloomonas sp。生产的一种新型生物絮凝剂HBF-3。对V3a’的絮凝特性和机理进行了研究。 4.0 mgl -1 HBF-3在含有11.25 mM CaCl 2 的5.0 gl -1 高岭土悬浮液中显示最大絮凝活性为96.9%它的絮凝活性在5–40°C下超过90%,而在宽pH范围(3.0–11.0)下超过80%。化学分析表明,生物聚合物HBF-3主要是多糖,包括中性糖残基(20.6%),糖醛酸残基(7.6%),氨基糖残基(1.6%)和硫酸根(5.3%)。傅里叶变换红外(FTIR)光谱显示HBF-3分子中存在羧基和羟基。通过凝胶过滤色谱法(GFC)测定的HBF-3的平均分子量约为590 kDa。以HBF-3对高岭土悬浮液进行絮凝为模型,探讨了以Ca 2 + 为介导的桥联作用的絮凝机理。

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