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Effect of extraction water chemistry on the self-weight consolidation of oil sands fine tailings

机译:萃取水化学对油砂细尾矿自重固结的影响

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As part of an overall study of properties and processes influencing consolidation of oil sands fine tailings resulting from different extraction processes, self-weight consolidation tests were performed. Fourteen 2 m and 1 m high standpipe tests were instrumented to monitor the rate and magnitude of consolidation of seven fine tailings materials. Tests provided valuable information about the variation of consolidation related to differences in fine tailings material properties that result from a change in bitumen extraction process (caustic versus non-caustic). In addition, the effect of adding a coagulant to caustic fine tailings was measured. Test results are presented and discussed in terms of consolidation rate, long-term volume decrease, compressibility, and downward drainage. Non-caustic fine tailings had faster initial consolidation, which is important in tailings ponds for reducing storage capacity and returning decant water at a faster rate to the extraction plant. Similar results were obtained for caustic fine tailings with a coagulant addition. However, long-term settlement of the different fine tailings appears to converge to a similar value over time because it is then governed by effective stress.
机译:作为对影响油砂固结的特性和过程进行整体研究的一部分,这些尾矿是由不同的开采过程产生的,因此进行了自重固结测试。进行了14个2 m和1 m高竖管测试,以监测七种细尾矿材料的固结速率和固结程度。试验提供了有关固结变化的有价值的信息,固结变化与沥青提取工艺(苛性碱和非苛性碱)变化引起的细尾矿材料性能差异有关。另外,测量了向苛性细尾矿中添加凝结剂的效果。提出并讨论了固结率,长期体积减少,可压缩性和向下排水的测试结果。非苛性细尾矿的初始固结速度更快,这在尾矿池中对于降低储存能力和将倾析水以更快的速度返还至提取厂非常重要。添加了混凝剂的苛性细尾矿获得了相似的结果。但是,随着时间的推移,不同细尾矿的长期沉降似乎会收敛到一个相似的值,因为它随后受到有效应力的支配。

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