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Development of an Enzyme-Based Approach to Control the Formation of Microbiologically Influenced Corrosion (MIC)-Associated Biofilms

机译:基于酶的方法的开发,以控制微生物影响的腐蚀(MIC)相关生物膜的形成

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Corrosive biofilm formation on metal surfaces can have serious impacts on the infrastructure of the natural gas and oil industries. Once initiated, biofilms are extremely difficult to remove even with current mechanical cleaning methods (i.e., pigging) as large sections of a pipeline system are inaccessible. It is also well known that the application of biocides alone does not completely remove the protective slime layer of biofilms. In this study, we hypothesized that the addition of appropriate enzymes or cocktails of enzymes may be able to significantly enhance the effectiveness of biocides and may represent a potential future solution to biofilm prevention and mitigation. The application of enzymes, which are environmentally benign and biodegradable, in the natural gas and oil industry may provide a needed treatment alternative by either eliminating or reducing the widespread use of biocides. Through this proof of concept research project we successfully established and maintained MIC biofilms for subsequent testing with various enzyme preparations. After two months of incubation in a bioreactor inoculated with a consortium of MIC microorganisms, the presence of corrosive MIC biofilms were confirmed on steel coupons. The addition of individual commercial enzyme preparations and mixtures of enzymes were able to reduce the biofilm load. Consistent with this result was the apparent reduction in the numbers of microorganisms associated with the treated biofilms. Together the data suggests that the application of enzymes may prove to be beneficial in the degradation of the MIC biofilm structure.
机译:金属表面上的腐蚀性生物膜形成可能对天然气和石油工业的基础设施产生严重影响。一旦引发,即使具有电流的机械清洁方法(即,Pigging),生物膜也极难去除,因为管道系统的大部分是无法进入的。众所周知,杀菌剂单独施用施用不能完全除去生物膜的保护性粘合层。在这项研究中,我们假设添加适当的酶或酶的鸡尾酒可以能够显着提高杀生物剂的有效性,并且可以代表生物膜预防和缓解的潜在未来解决方案。在天然气和石油工业中,在天然气和石油工业中施用环境良性和可生物降解的施用可以通过消除或减少杀生物剂的广泛使用来提供所需的治疗方法。通过这种概念研究项目证明,我们成功地建立和维持了Mic Biofilms以随后用各种酶制剂进行测试。经过两个月的生物反应器孵育接种用MIC微生物的联盟,在钢杯上确认腐蚀性MIC生物膜的存在。添加单独的商业酶制剂和酶混合物能够减少生物膜载荷。与此结果一致的是与处理过的生物膜相关的微生物数目的表观降低。这些数据的共同表明,酶的施用可以证明在MIC生物膜结构的降解中是有益的。

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