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新型除乳化菌——人源 Ochrobactrum anthropi 菌株 RIPI5-1 高效破乳(油水)乳液。

Efficient breaking of water/oil emulsions by a newly isolated de-emulsifying bacterium, Ochrobactrum anthropi strain RIPI5-1.

机构信息

Biotechnology Research Center, Research Institute of Petroleum Industry, Tehran, Iran.

出版信息

Colloids Surf B Biointerfaces. 2012 Oct 1;98:120-8. doi: 10.1016/j.colsurfb.2012.04.037. Epub 2012 Apr 28.

Abstract

Water-oil emulsions occur throughout oil production, transportation, and processing. The breaking of the water/oil emulsion improves oil quality and as a consequence chemically synthesized de-emulsifiers are commonly used in the petroleum industries. Microbial de-emulsifiers represent potential alternatives to the chemicals and may become important products for petroleum industries. The main goal of this work was isolation, identification, and characterization of an efficient de-emulsifying bacterium. Following a multi-step enrichment programme a de-emulsifying bacterium, Ochrobactrum anthropi strain RIPI5-1was isolated from the oil-polluted sandy bank of Siri Island, Iran. The presence of an oil phase in growth medium was found to be unnecessary for production of the de-emulsifier. The de-emulsifying activity of both the whole culture and the cells of this strain was examined using a model multiple water-crude oil (w/o/w) emulsion. This w/o/w emulsion was used for the first time in microbial de-emulsification research. Whole cells of strain RIPI5-1 exhibited high de-emulsifying activity during the late-exponential growth and stationary phases; de-emulsifying activity of the whole culture was highest during the early-exponential growth phase. The time course of de-emulsification by whole culture and whole cells of strain RIPI5-1 was investigated; the initial rate (DeI(1)) of breaking of the multiple water-crude oil emulsion by whole culture and whole cells was calculated as 11% and 54%, respectively. However, overall de-emulsification (DeI(8.5)) for whole culture and whole cells was calculated as 63% and 72%, respectively. A clear correlation was observed between cell surface hydrophobicity and the de-emulsifying activity of whole cells. With the water/kerosene emulsion, emulsion half-life (t(1/2)) was found to be <0.5h. The potential activity of this strain was also explained using a complex oilfield emulsion.

摘要

油水乳液存在于石油生产、运输和加工的各个环节。破乳可以改善油质,因此在石油工业中通常使用化学合成的破乳剂。微生物破乳剂是化学物质的潜在替代品,可能成为石油工业的重要产品。本工作的主要目的是分离、鉴定和表征高效的破乳菌。通过多步富集程序,从伊朗锡里岛受石油污染的沙质岸滩中分离出一种高效的破乳菌 Ochrobactrum anthropi 菌株 RIPI5-1。研究发现,生长培养基中存在油相并不是产生破乳剂所必需的。使用模型多水-原油(w/o/w)乳液研究了该菌的整个培养物和细胞的破乳活性。这种 w/o/w 乳液首次用于微生物破乳研究。在对数生长后期和静止期,菌株 RIPI5-1 的整个细胞表现出较高的破乳活性;在对数生长早期,整个培养物的破乳活性最高。研究了整个培养物和菌株 RIPI5-1 整个细胞的破乳时间过程;整个培养物和整个细胞初始破乳速率(DeI(1))分别计算为 11%和 54%。然而,整个培养物和整个细胞的总体破乳率(DeI(8.5))分别计算为 63%和 72%。观察到细胞表面疏水性与整个细胞破乳活性之间存在明显的相关性。对于水/煤油乳液,乳液半衰期(t(1/2))发现小于 0.5h。还使用复杂的油田乳液解释了该菌株的潜在活性。

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