脱硫浆料混料系统
By using a moving component to drive the mixing component in a linear reciprocating motion within the slurry tank, combined with the design of a homogenizing rod and a pusher, the problem of the mixing dead zone is solved, achieving full utilization of limestone powder and uniformity of the slurry, thus avoiding resource waste.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- NINGXIA FENGYE ENVIRONMENTAL PROTECTION TECH CO LTD
- Filing Date
- 2025-07-08
- Publication Date
- 2026-07-17
AI Technical Summary
The existing pulping tank has a large volume, which can easily lead to dead zones during the mixing process, causing limestone particles to accumulate at the bottom of the tank and resulting in a waste of resources.
The moving component drives the mixing component to reciprocate linearly along the length of the slurry tank. Combined with the design of the homogenizing rod and the pusher, the mixture achieves all-round mixing by cutting and scraping the sediment laterally, ensuring that the limestone powder and water are fully mixed.
This method achieves full utilization of limestone powder, avoids resource waste, ensures the uniformity and stability of limestone slurry, and improves mixing efficiency.
Smart Images

Figure CN224506834U_ABST
Abstract
Claims
1. A desulfurized slurry mixing system, characterized by, The device includes a pulping tank, a stirring assembly, and a moving assembly. The moving assembly is slidably disposed in the pulping tank, and the stirring assembly is disposed in the moving assembly and is at least partially located inside the pulping tank. The moving assembly drives the stirring assembly to perform linear reciprocating motion along the length of the pulping tank to stir the material inside the pulping tank. The stirring assembly includes a connecting rod, several homogenizing rods, and several pushers. The connecting rod is disposed on the moving assembly and spans across the pulping tank. The several homogenizing rods are arranged vertically in an array on the connecting rod and extend into the pulping tank. The several pushers are disposed one-to-one at the bottom end of the several homogenizing rods and are in contact with the inner bottom of the pulping tank.
2. The desulfurized slurry mixing system according to claim 1, wherein, The material pushing component includes a scraping part and a pushing part. The pushing part is connected to the bottom end of the homogenizing rod. The scraping part is provided at the end of the pushing part away from the homogenizing rod. The scraping part is in contact with the inner bottom of the pulping box.
3. The desulfurized slurry mixing system of claim 2, wherein, The slurry pushing section includes two push plates connected in a figure-eight shape. The intersection of the two push plates is connected to the bottom end of the homogenizing rod, and the scraping section is horizontally arranged on the end of each push plate away from the homogenizing rod.
4. The desulfurized slurry mixing system of claim 3, wherein, The two push plates intersect to form an intersection, and the length direction of the intersection has an angle with the width direction of the pulping box, so that the pusher is set at an angle.
5. The desulfurized slurry mixing system of claim 1, wherein, Each of the homogenizing rods has several stirring blades arranged alternately along its height direction.
6. The desulfurized slurry mixing system of claim 5, wherein, Both the stirring blade and the pusher are provided with drag-reducing holes.
7. The desulfurized slurry mixing system of claim 5, wherein, Both the connecting rod and the homogenizing rod are hollow structures and are interconnected. The homogenizing rod has several ventilation holes, which are located between adjacent stirring blades. One end of the connecting rod is connected to an air inlet pipe.
8. The desulfurized slurry mixing system of claim 1, wherein, The moving component includes a gantry frame, drive wheels, and two guide rails. The gantry frame is erected on the pulping tank along the width direction of the pulping tank. The two guide rails are arranged in parallel and installed at the bottom of the tank along the length direction of the pulping tank. The drive wheels are located at the bottom ends of the vertical beams on both sides of the gantry frame and are embedded in the guide grooves of the guide rails. The connecting rod is horizontally arranged on the crossbeam of the gantry frame.
9. The desulfurized slurry mixing system of claim 8, wherein, Limit blocks are provided at both ends of the guide rail to prevent the pusher from hitting the side wall of the pulping tank.