Oilfield oily mud sand resource treatment equipment and method thereof
A processing equipment and recycling technology, applied in chemical instruments and methods, water/sludge/sewage treatment, separation methods, etc., can solve the problem of poor treatment effect and treatment efficiency, inconvenient oil separation, and inability to concentrate oil To improve the oil absorption effect, improve the oil absorption efficiency, and improve the effect of defoaming
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Embodiment 1
[0058] Such as Figure 1-12 As shown, a kind of resource treatment equipment for oilfield oily mud sand proposed by the present invention includes a sedimentation tank 1, a filter tank 2, an oil-water separation box 3, a first pump body 9, a first input pipe 10 and a first output pipe 11, and the sedimentation Pool 1 and filter tank 2 are connected through a pipeline with a valve, and the oily mud sand solution is precipitated in sedimentation tank 1, and the upper solution is transported to filter tank 2, and filter tank 2 filters the incoming upper solution to filter out solid particles, a mud pump is installed on the sedimentation tank 1, a mud pump and a mud delivery pipe are installed on the mud pump, and the other end of the mud suction pipe is connected to the bottom of the sedimentation tank 1, and the other end of the mud delivery pipe is connected to Sludge filter press, a sludge outlet and a water outlet pipe are installed on the sludge filter press, and the other e...
Embodiment 2
[0063] Such as Figure 10 As shown, the difference between this embodiment and Embodiment 1 is that a second motor 420 is fixedly installed on the box body 401 through a motor base, and a hollow shaft 421 is installed on the output end of the second motor 420, and the second motor 420 is used to drive the hollow shaft. shaft 421, and the hollow shaft 421 is horizontally arranged in the evaporation chamber 404 and connected with the box 401 in rotation, the oil outlet end of the oil delivery pipe 418 extends into the hollow shaft 421, and the heated oil is transported to the hollow shaft 421 through the oil delivery pipe 418, and the hollow shaft The outer peripheral surface of 421 is fixed with a hollow turntable 422 by bolts, the hollow shaft 421 is provided with an opening, and the hollow shaft 421 communicates with the hollow turntable 422 through the opening, the oil in the hollow shaft 421 enters the hollow turntable 422, and the two sides of the hollow turntable 422 Ther...
Embodiment 3
[0065] Such as Figure 10 As shown, the difference between this embodiment and Embodiment 1 and Embodiment 2 is that the top of the evaporation chamber 404 is rotatably mounted with a movable shaft 423 through a bearing, the hollow shaft 421 is meshed with the movable shaft 423 through a bevel gear, and the hollow shaft 421 is connected through two The bevel gear drives the movable shaft 423 to rotate, and the second row of fan blades 424 is fixedly installed with bolts on the movable shaft 423, and the second row of fan blades 424 is located directly below the second exhaust port 425, when the movable shaft 423 rotates, the second row of fan blades 424 The second row of fan blades 424 rotates thereupon and blows air toward the second exhaust port 425 to drive the air flow in the evaporation chamber 404 and make the interior of the evaporation chamber 404 in a negative pressure state, and then the evaporated air is discharged through the second exhaust port 425 The water vapor...
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