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Recovery of Mineral Oil from Underground Electrical Cables

机译:从地下电缆中回收矿物油

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摘要

To remove the mineral oil impregnating the insulating paper present in old, disconnected, underground electrical cables, which represents a threat to the environment, two approaches are investigated at laboratory (1 m) and pilot (10 m) scales. The first one involves in situ polymerization to clog the inner channel of the cables and to enable the washing of the outer paper region impregnated by the oil by axial flow of a displacing fluid (water). The second approach leaves the inner channel open and employs repeated cycles of pressurization and rest to displace the oil contained in the paper by radially pushing the water from the inner channel into the outer layers. The pressurization and rest times were optimized to obtain the highest oil extraction rate. While the first approach showed limitations in terms of required pressures and operating time, which increase with the length of the cables, the second one was effective at removing 97% of the oil impregnating the paper layers within 25 cycles. Even more relevant, this second solution, in contrast to the first one, can be easily scaled up as it does not depend on the length of the cable, and was successfully tested on a 10 m cable, showing 98% oil recovery.
机译:为了去除浸渍在旧的,断开的地下电缆中的绝缘纸中的矿物油,绝缘纸对环境构成威胁,在实验室(1 m)和中试(10 m)规模下研究了两种方法。第一个涉及原位聚合,以堵塞电缆的内部通道,并通过驱替液(水)的轴向流动来清洗被油浸透的外部纸区域。第二种方法使内部通道保持敞开状态,并采用重复的加压和加压循环,通过将水从内部通道径向推入外层来置换纸中所含的油。优化加压和静置时间以获得最高的采油率。尽管第一种方法在所需压力和操作时间方面显示出局限性,并且随电缆长度的增加而增加,但第二种方法在25个循环内可有效去除97%的浸渍纸层的油。与第一种解决方案相比,第二种解决方案甚至更相关,因为它不依赖于电缆的长度,因此可以轻松按比例放大,并且已在10 m的电缆上成功进行了测试,显示出98%的采油率。

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