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An Improved Further Treatment Process and Parameter Optimization for Waste Water in Polymer Flooding Oilfield

机译:聚合物驱油田改进的深度处理工艺及参数优化

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This paper presents an improved further treatment technical process for polymer-containing waste water in the oilfield. The core equipment of the system is a forced filtration unit, which uses walnut shells as the main filtering material, avoiding such disadvantages of ordinary mechanical filtering materials as being easy to be contaminated and difficult to be cleaned. It is equipped with an automatic backwash unit, which may timely and thoroughly back wash and prevent the filtering material from hardening and the quality of effluent water from deteriorating, etc. Compared to application of scrubbing pump at outside of the body, it may save a large amount of cost. After optimizing the backwash parameters by using the orthogonal experimental method, the backwash cycle is extended by 15%, the backwash intensity is decreased by 28.6%, the backwash time is saved by 40%, water is saved by 46.8%, and the electricity is saved by 23.44%.Experiments and field tests indicate that the after-filtration water quality is assured. It can improve the work efficiency, extend the service life of the filtering material, reduce the overflow risks as a result of a large amount of backwash water, effectively save resources, and deliver good economic and social benefits.
机译:本文提出了一种改进的油田处理含聚合物废水的进一步处理技术方法。该系统的核心设备是强制过滤装置,该装置使用胡桃壳作为主要过滤材料,避免了普通机械过滤材料容易被污染,难以清洗的缺点。它配备有自动反冲洗装置,可以及时彻底地进行反冲洗,并防止过滤材料变硬和废水水质恶化等。与在体外使用洗涤泵相比,可以节省成本。大量的费用。使用正交实验法优化反冲洗参数后,反冲洗周期延长了15%,反冲洗强度降低了28.6%,反冲洗时间节省了40%,节水46.8%,电节省了23.44%。实验和现场测试表明,过滤后的水质得到了保证。它可以提高工作效率,延长过滤材料的使用寿命,减少因大量反冲洗水而导致的溢流风险,有效地节约资源,并带来良好的经济和社会效益。

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