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Production of thermostable protease enzyme in wastewater sludge using thermophilic bacterial strains isolated from sludge

机译:利用从污泥中分离的嗜热细菌菌株生产废水污泥中的热稳定蛋白酶

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摘要

The volume of sludge produced annually is very high and poses serious disposal problems. The traditional methods of sludge disposal produce secondary pollutants. Therefore, the alternate or suitable solution is reuse of sludge in an ecofriendly approach. Biotechnology is an interesting tool to add value to the processes involved in wastewater and wastewater sludge disposal/reuse. In this context, a study was carried out on thermophilic bacterial strains that produce thermostable proteases. The bacterial strains were first isolated from municipal wastewater sludge. In contrast to the conventional strains used in industries, like Bacillus sp., the new strains were Gram-Negative type. In semi-synthetic medium, a maximal protease activity of 5.25 IU/ml (International Unit per ml) was obtained at a pH of 8.2 and at a temperature of 60 degrees C, which is higher than the stability temperature of 37 degrees C for a similar protease obtained from the conventional producer Bacillus licheniformis. Moreover, growth and protease activity of the strains were tested in wastewater sludge. It is expected that the complexity of sludge could stimulate/enhance the protease production and their characteristics. In conclusion, reuse of wastewater sludge will help to reduce their quantity as well as the value-added products produced will replace chemical products used in industries.
机译:每年产生的污泥量很高,并且存在严重的处置问题。传统的污泥处置方法会产生二次污染物。因此,替代或合适的解决方案是以一种生态友好的方式重复利用污泥。生物技术是一种有趣的工具,可为废水和废水污泥处理/再利用所涉及的过程增加价值。在这种情况下,对产生热稳定蛋白酶的嗜热细菌菌株进行了研究。首先从市政废水污泥中分离出细菌菌株。与工业上使用的常规菌株(如芽孢杆菌)相反,新菌株为革兰氏阴性。在半合成培养基中,在pH值为8.2且温度为60摄氏度的条件下,最大蛋白酶活性为5.25 IU / ml(国际单位每毫升),高于37摄氏度的稳定温度。从常规生产者地衣芽孢杆菌获得的类似蛋白酶。此外,在废水污泥中测试了菌株的生长和蛋白酶活性。预期污泥的复杂性可以刺激/增强蛋白酶的产生及其特性。总之,废水污泥的再利用将有助于减少其数量,所产生的增值产品将取代工业中使用的化学产品。

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