首页> 美国卫生研究院文献>The Scientific World Journal >Cation Dependence pH Tolerance and Dosage Requirement of a Bioflocculant Produced by Bacillus spp. UPMB13: Flocculation Performance Optimization through Kaolin Assays
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Cation Dependence pH Tolerance and Dosage Requirement of a Bioflocculant Produced by Bacillus spp. UPMB13: Flocculation Performance Optimization through Kaolin Assays

机译:阳离子依赖性pH耐受性和芽孢杆菌产生的生物絮凝剂的剂量要求。 UPMB13:通过高岭土分析优化絮凝性能

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摘要

A bioflocculant-producing bacterial strain with highly mucoid and ropy colony morphological characteristics identified as Bacillus spp. UPMB13 was found to be a potential bioflocculant-producing bacterium. The effect of cation dependency, pH tolerance and dosage requirement on flocculating ability of the strain was determined by flocculation assay with kaolin as the suspended particle. The flocculating activity was measured as optical density and by flocs formation. A synergistic effect was observed with the addition of monovalent and divalent cations, namely, Na+, Ca2+, and Mg2+, while Fe2+ and Al3+ produced inhibiting effects on flocculating activity. Divalent cations were conclusively demonstrated as the best cation source to enhance flocculation. The bioflocculant works in a wide pH range, from 4.0 to 8.0 with significantly different performances (P < 0.05), respectively. It best performs at pH 5.0 and pH 6.0 with flocculating performance of above 90%. A much lower or higher pH would inhibit flocculation. Low dosage requirements were needed for both the cation and bioflocculant, with only an input of 50 mL/L for 0.1% (w/v) CaCl2 and 5 mL/L for culture broth, respectively. These results are comparable to other bioflocculants produced by various microorganisms with higher dosage requirements.
机译:一种生物絮凝剂生产菌,具有高度粘液状和红菌落形态特征,被鉴定为芽孢杆菌。发现UPMB13是潜在的产生生物絮凝剂的细菌。通过以高岭土为悬浮颗粒的絮凝测定,确定了阳离子依赖性,pH耐受性和剂量要求对菌株絮凝能力的影响。絮凝活性通过光密度和絮凝物形成来测量。通过添加Na + ,Ca 2 + 和Mg 2 + 一价和二价阳离子可观察到协同作用,而Fe 2 + 和Al 3 + 对絮凝活性产生抑制作用。结论表明二价阳离子是增强絮凝的最佳阳离子来源。该生物絮凝剂可在4.0至8.0的宽pH范围内工作,且性能差异显着(P <0.05)。它在pH 5.0和pH 6.0时表现最佳,絮凝性能超过90%。较低或较高的pH值将抑制絮凝。阳离子和生物絮凝剂都需要低剂量要求,分别以0.1%(w / v)的CaCl2和50μmL/ L的浓度分别输入50μmL/ L和5μmL/ L的培养液。这些结果可与具有更高剂量要求的各种微生物产生的其他生物絮凝剂相媲美。

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