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Bioremediation of Costal and Marine Pollution due to Crude Oil using a Microorganism Bacillus subtilis

机译:使用微生物Bacillus枯草芽孢杆菌的原油引起的沿海和海洋污染的生物修复

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Marine and costal pollution has become a global concern in recent years due to the increase in intensity of contaminants in the marine environment. The release of crude oil in the marine environment during exploitation and transportation cause serious environmental pollution, owing to the presence of toxic organic compounds. Crude oil, which is the most predominant energy resource throughout the word is the complex mixtures of hydrocarbons including more than 70% of alkanes along with aromatics, naphthenes and resins. The long chain alkanes present in the crude oil remains persistent due to its non-volatile nature and pose a major menace to terrestrial and marine ecosystems. Biodegradation has emerged as a potential and economical technology for the restoration of oil spilled environment. It provides efficient, economical and environment friendly solution for on-shore and off-shore oil spill remedies. The present study investigates the degradation of crude oil using a biosurfactant producing microorganism 'Bacillus subtilis' to obtain maximum degradation. Bacillus subtilis isolated from polymer dump site, Chennai, India was used for the degradation of crude oil. Crude oil degradation and viscosity reduction was observed to be 80% and 60%, respectively, in 10 days. The high microbial adherence, surface tension reduction, emulsification activity, production of higher amount of biosurfactant, stability of the produced biosurfactant at extreme environment conditions, viscosity reduction and high rate of degradation indicates the potential of the microorganism for oil spill treatment.
机译:由于海洋环境中的污染物强度的增加,近年来,海洋和肋骨污染已成为全球担忧。由于有毒有机化合物的存在,在剥削和运输过程中释放原油在海洋环境中导致严重的环境污染。原油是整个词的最主要的能量资源是烃的复杂混合物,包括超过70%的烷烃,以及芳烃,环烷烃和树脂。原油中存在的长链烷基含量仍然是由于其非易失性的性质,并且将主要威胁与陆地和海洋生态系统构成。生物降解已成为恢复油溢流环境的潜在和经济技术。它为岸边和离岸漏油泄漏补救措施提供高效,经济和环境友好的解决方案。本研究研究了使用生产微生物“枯草芽孢杆菌”的生物活性剂的原油降解以获得最大降解。从聚合物倾倒场地分离的Bacillus枯草芽孢杆菌用于钦奈,印度用于原油的降解。将原油降解和粘度降低分别在10天内分别为80%和60%。高微生物粘附,表面张力降低,乳化活性,生产较高量的生物活性剂,在极端环境条件下产生的生物活性剂的稳定性,粘度降低和高降解率表明了漏油处理的微生物的潜力。

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