Departamento de Microbiologia Geral, Instituto de Microbiologia Paulo de Góes, Universidade Federal do Rio de Janeiro, Rio de Janeiro, Brazil.
AMB Express. 2013 Aug 10;3(1):44. doi: 10.1186/2191-0855-3-44.
The anti-corrosion effect and the antimicrobial activity of lemongrass essential oil (LEO) against the planktonic and sessile growth of a sulfate reducing bacterium (SRB) were evaluated. Minimum inhibitory concentration (MIC) of LEO and its major component, the citral, was 0.17 mg ml-1. In addition, both LEO and citral showed an immediate killing effect against SRB in liquid medium, suggesting that citral is responsible for the antimicrobial activity of LEO against SRB. Transmission electron microscopy revealed that the MIC of LEO caused discernible cell membrane alterations and formed electron-dense inclusions. Neither biofilm formation nor corrosion was observed on carbon steel coupons after LEO treatment. LEO was effective for the control of the planktonic and sessile SRB growth and for the protection of carbon steel coupons against biocorrosion. The application of LEO as a potential biocide for SRB growth control in petroleum reservoirs and, consequently, for souring prevention, and/or as a coating protection against biocorrosion is of great interest for the petroleum industries.
评估了香茅精油(LEO)对硫酸盐还原菌(SRB)浮游和固定生长的防腐效果和抗菌活性。LEO 和其主要成分柠檬醛的最小抑菌浓度(MIC)为 0.17mg/ml。此外,LEO 和柠檬醛在液体培养基中均对 SRB 表现出即刻的杀菌作用,表明柠檬醛是 LEO 对 SRB 抗菌活性的原因。透射电子显微镜显示,LEO 的 MIC 导致明显的细胞膜改变,并形成电子致密内含物。在 LEO 处理后,碳钢试片上既没有观察到生物膜形成,也没有观察到腐蚀。LEO 可有效控制浮游和固定 SRB 的生长,并保护碳钢试片免受生物腐蚀。LEO 作为一种有潜力的杀菌剂,可用于控制油藏中的硫酸盐还原菌生长,从而防止酸化,以及/或者作为一种涂层保护,防止生物腐蚀,这对石油工业具有重要意义。