Li Jing, Yun Yue-Qing, Xing Li, Song Lei
a School of Civil Engineering , Inner Mongolia University of Technology , Hohhot , China.
Biosci Biotechnol Biochem. 2017 May;81(5):1018-1025. doi: 10.1080/09168451.2016.1274635. Epub 2017 Jan 9.
The optimized production of MBF-HG6, which is a novel salt-tolerant alkaliphilic bioflocculant produced by Oceanobacillus polygoni with its application in tannery wastewater treatment was investigated in this study. It was found the optimal carbon source, nitrogen source, cation, and initial pH of the medium for bioflocculant production were starch, urea, Fe, and pH 9.0, respectively. The best stability in the temperature range was from 0 to 80°C and the purified MBF-HG6 contained polysaccharides of 81.53% and proteins of 9.98%. The carboxyl, hydroxyl, and amino groups were determined in bioflocculants, while the optimized bioflocculating activity was observed as 90.25% for the dosages of 6.96mL MBF-HG6, 4.77mL CaCl (1%, m/v), and 19.24g/L NaCl using response surface methodology. In addition, SS and turbidity removal rates of the tannery wastewater (4g/L MBF-HG6) could, respectively, reach 46.49% and 91.08%, indicating that the great potential was emerged in enhancement of tannery wastewater treatment by MBF-HG6.
本研究对多粘海洋芽孢杆菌产生的新型耐盐碱嗜碱生物絮凝剂MBF-HG6的优化生产及其在制革废水处理中的应用进行了研究。结果发现,生物絮凝剂生产培养基的最佳碳源、氮源、阳离子和初始pH分别为淀粉、尿素、铁和pH 9.0。在0至80°C的温度范围内稳定性最佳,纯化后的MBF-HG6含有81.53%的多糖和9.98%的蛋白质。对生物絮凝剂中的羧基、羟基和氨基进行了测定,同时使用响应面法观察到,当MBF-HG6用量为6.96mL、CaCl(1%,m/v)用量为4.77mL、NaCl用量为19.24g/L时,优化后的生物絮凝活性为90.25%。此外,制革废水(4g/L MBF-HG6)的悬浮物和浊度去除率分别可达46.49%和91.08%,表明MBF-HG6在强化制革废水处理方面具有巨大潜力。