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使用固定化微生物的聚氨酯泡沫来吸附和降解水面上的油污。

Use of microorganism-immobilized polyurethane foams to absorb and degrade oil on water surface.

作者信息

Oh Y S, Maeng J, Kim S J

机构信息

Microbiology Laboratory, Korea Ocean Research & Development Institute, Ansan, Korea.

出版信息

Appl Microbiol Biotechnol. 2000 Sep;54(3):418-23. doi: 10.1007/s002530000384.

Abstract

Highly oil-absorbent polyurethane foam (PUF) materials were obtained by polymerizing polyether polyol mixture and carbodiimide-modified D-methyl diisocyanate in a weight ratio of 10:2. The foam materials were prepared to contain inorganic nutrients (slow-release fertilizer; SRF) and oil-degrading yeast cells, Yarrowia lipolytica 180, to be applied for removal of oil films on surface waters through absorption and biodegradation after oil spills. PUFs absorbed 7-9 times their own weight of Arabian light crude oil and the oil absorbency appeared to improve as the ratio of surface area to foam weight increased. PUFs showed excellent floatability which was maintained for more than 6 months in sea water, and less than 5% of the absorbed oil was released when the foams were left on water for more than 10 days. For immobilization of yeast cells into PUFs, various immobilization techniques were tested to compare their oil degrading ability and the maintenance thereof. All immobilized cells showed oil degrading abilities as good as those of free cells immediately after the preparation of PUFs, however, the activity of chitin-immobilized cells remained at a high level for the longest period of preservation. The high efficiency of oil absorption and oil degradation by PUF-immobilized yeast cells suggested that PUF-immobilized cells have a high potential as a bioremediation technique for the treatment of oil films on surface waters.

摘要

通过将聚醚多元醇混合物与碳二亚胺改性的二甲基二异氰酸酯按10:2的重量比聚合,获得了高吸油聚氨酯泡沫(PUF)材料。制备的泡沫材料含有无机养分(缓释肥料;SRF)和降解油的酵母细胞解脂耶氏酵母180,用于在溢油后通过吸附和生物降解去除地表水的油膜。PUF吸收了自身重量7-9倍的阿拉伯轻质原油,且随着表面积与泡沫重量之比的增加,吸油能力似乎有所提高。PUF表现出优异的漂浮性,在海水中可保持6个月以上,当泡沫在水面放置10天以上时,吸附的油释放量不到5%。为了将酵母细胞固定在PUF中,测试了各种固定技术以比较它们的油降解能力及其维持情况。在制备PUF后,所有固定化细胞立即表现出与游离细胞一样好的油降解能力,然而,几丁质固定化细胞的活性在最长保存期内保持在较高水平。PUF固定化酵母细胞对油的高效吸收和降解表明,PUF固定化细胞作为一种用于处理地表水油膜的生物修复技术具有很大潜力。

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