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首页> 外文期刊>Environmental Technology >Unravelling the characteristics of a heteropolysaccharide-protein from an Haloarchaeal strain with flocculation effectiveness in heavy metals and dyes removal
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Unravelling the characteristics of a heteropolysaccharide-protein from an Haloarchaeal strain with flocculation effectiveness in heavy metals and dyes removal

机译:从卤莽菌株与重金属絮凝效果的悬垂菌株释放出杂多多糖 - 蛋白的特征,并去除染料

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摘要

The production, characterization and potential application in heavy metals and dyes removal of a novel heteropolysaccharide-protein named, gpHb, produced by an Haloarchaeal strain Halogeometricum borinquense strain A52 were investigated. The highest gpHb yield of 13.96 +/- 0.32 g/L was produced under optimized conditions by response surface methodology. We focused on the characteristics and flocculation performance of gpHb. An important attribute of protein with 16 protein types identified that occupied a total content of 50.2% in the gpHb. Additionally, carbohydrate that occupied 30.4% of the total bioflocculant content consisted of three monosaccharides. Fourier transform-infrared spectroscopy indicated the presence of carboxyl, hydroxyl, amine, amide, and sulphate groups. To further study flocculation activities, factors such as bioflocculant dosage, temperature, pH, salinity and cations addition were tested. In comparison to the chemical flocculant polyaluminium chloride, gpHb maintain high activity at large range of salinity and its flocculation activity was higher on both sides of pH 7. Addition of trivalent cation mainly Fe3+ enhances the flocculating rate indicating that the bioflocculant is negatively charged. Its practical applicability was established for heavy metals and dyes removal from saline aqueous solutions. The highest removal efficiency was observed with Cr3+ (91.4%) and Ni2+ (89.60%) and with basic blue 3 (83.8%) and basic red (78.6%). The excellent flocculation activity of gpHb under saline condition suggests its potential industrial utility for treatment of textile and tannery wastewaters.[GRAPHICS].
机译:研究了重金属和染料中的生产,表征和潜在应用,除去了由卤莽菌株HaloGeometricumum Borinquenst菌株A52产生的名为GHB的新型杂多糖蛋白。通过响应面方法在优化条件下生产的最高GPHB产量为13.96 +/- 0.32g / L.我们专注于GHB的特点和絮凝性能。具有16种蛋白质类型的蛋白质的重要​​属性,其占GHB中的总含量为50.2%。另外,占含有30.4%的生物絮凝剂含量的碳水化合物包括三种单糖。傅里叶变换红外光谱表明存在羧基,羟基,胺,酰胺和硫酸盐基团。为了进一步研究絮凝活性,测试了生物絮凝剂剂量,温度,pH,盐度和阳离子等因素。与化学絮凝剂聚氯化铝相比,GHB在大范围内保持高活性,并且其絮凝活性在pH 7的两侧较高。添加三价阳离子主要是Fe3 +增强了表明生物絮凝剂的絮凝速率。其实际适用性是为重金属和从盐水溶液中除去的重金属和染料。用Cr3 +(91.4%)和Ni2 +(89.60%)和碱性蓝3(83.8%)和碱性红色(78.6%)观察到最高的去除效率。盐水条件下GHB的优异絮凝活性表明其潜在的工业用途,用于治疗纺织和制革器废水。[图形]。

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