Combined semi-dry neutralization reaction device for biological power generation
By adopting a combination of reference sections, standard sections, fixed mechanisms and climbing mechanisms in the biopower reaction tower, the stability problem at the tower connection is solved, firm connection and convenient installation of the device are achieved, and the overall performance and safety of the device are improved.
Patent Information
- Application Number
- CN202421855144.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-02
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2034-08-02
AI Technical Summary
The lack of fixed components between the bottom tower and the tower of the existing bioelectricity reaction tower, and between the tower and the tower, makes these connections susceptible to external influences, such as strong winds, which may cause the tower to be blown down by the wind.
The combination of reference sections, standard sections, fixed mechanisms and climbing mechanisms is adopted to ensure a firm connection between the reference sections and standard sections through the coordination of the fixing rings and the clamps, and the combination of spiral ladders and connection sections is achieved to facilitate installation and operation of the device.
It effectively solves the stability problem at the tower connection, ensures the fixity and safety of the device, and improves the installation and operation convenience of the device.
Smart Images

Figure CN222930831U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of biopower generation, in particular to a combined semi-dry neutralization reaction device for biopower generation. Background Technique
[0002] A biopower generation reaction tower is a device that uses biological processes to generate energy. It mainly converts organic substances into biogas (such as methane) or other forms of energy through microorganisms or other biological systems. This technology has important application values in agricultural waste management, sewage treatment, and as part of renewable energy.
[0003] Chinese patent document CN208627305U discloses a combined semi-dry neutralization reaction tower for biopower generation. The composition of this product includes: a bottom circular plate, the bottom circular plate is welded to a bottom tower cylinder, the bottom tower cylinder is fixedly connected to a bottom magnetic ring, the bottom magnetic ring is inserted into an n-shaped cross-section magnetic ring and is attracted and fixed, the n-shaped cross-section magnetic ring is connected to the bottom of an inverted U-shaped insertion ring, the inverted U-shaped insertion ring is connected to the bottom of a lower tower cylinder, the tops of the n-shaped cross-section magnetic ring and the inverted U-shaped insertion ring are both flat surfaces, the inner sides of the bottom tower cylinder and the bottom magnetic ring have inner convex platforms, the inner convex platforms are connected to inner sealing rings, the inner sides of the inverted U-shaped insertion rings press the inner sealing rings, the outer sides of the bottom tower cylinder and the bottom magnetic ring have outer convex platforms, the outer convex platforms are connected to outer sealing rings, the outer sides of the inverted U-shaped insertion rings press the outer sealing rings, and the lower tower cylinder and the bottom tower cylinder are both connected with hanging ladders. This utility model is used for a neutralization reaction tower.
[0004] The following problems exist in the prior art:
[0005] There are no fixing components between the bottom tower cylinder and the tower cylinder of this reaction tower, and between the tower cylinders. This makes these connection parts vulnerable to the influence of the outer wall, such as strong winds, etc. Since the connection part between the upper and lower tower cylinders is too narrow, it may cause the upper tower cylinder to be blown down by the wind. Content of the Utility Model
[0006] The utility model provides a combined semi-dry neutralization reaction device for biopower generation to solve the problems raised in the above background technique.
[0007] To solve the above technical problems, the technical solution adopted by the utility model is:
[0008] Combined semi-dry neutralization reaction device for biological power generation, including a substrate, on the upper surface of the substrate is fixedly connected with a reference section, in the upper groove of the reference section is movably sleeved with a number of vertically distributed standard sections sleeved with each other up and down, in the inner side of the upper groove of the uppermost standard section is movably sleeved with a capping, at the position near the upper side of the outer sides of a number of the standard sections and the reference section are fixedly sleeved with fixing mechanisms, and on the outer sides of a number of the standard sections and the reference section are fixedly connected with climbing mechanisms.
[0009] Preferably, the fixing mechanism includes a mechanism ring, the inner side of the mechanism ring is fixedly sleeved on the outer wall of the reference section or the standard section near the upper side, the inner side of the mechanism ring is movably sleeved with a fixing ring, on the outer surface of the inner side of the mechanism ring are fixedly connected with a number of annularly distributed limiting rods, on the outer walls of a number of the limiting rods are movably sleeved with clamping blocks, the shape of the clamping blocks is reverse Z-shaped, on the outer wall of the standard section or the capping near the bottom is fixedly sleeved with a flange, and the flange is located above the upper wall of the clamping block.
[0010] Preferably, on the outer walls of a number of the limiting rods are movably sleeved with springs, and the springs are located on the side of the clamping block away from the fixing ring.
[0011] Preferably, on the upper surface of the upper wall of a number of the clamping blocks near the side of the standard section are provided with chamfers.
[0012] Preferably, on the upper surface of the fixing ring are fixedly connected with a number of annularly distributed hooks.
[0013] Preferably, the climbing mechanism includes a spiral staircase, the inner side of the spiral staircase is fixedly connected to the outer wall of the reference section or the standard section by screws, at the positions near both ends of the lower side of the spiral staircase are fixedly connected with mounting plates, on the upper side of the mounting plate located on the upper side is lapped with a connecting section, and the lower side of the connecting section and the mounting plate are fixedly connected together by screws, on the inner side lower surface of the upper groove of the reference section or the standard section are fixedly connected with a number of annularly distributed positioning columns, and the outer walls of the positioning columns are movably sleeved in the jacks opened on the lower side of the standard section.
[0014] Due to the adoption of the above technical solution, the technical progress obtained by the present utility model compared with the prior art is:
[0015] 1. The present utility model provides a combined semi-dry neutralization reaction device for biological power generation, which adopts the cooperation of a reference section, a standard section, a fixing mechanism, a mechanism ring, a fixing ring, a limiting rod, a clamping block, a spring, a hook and a flange. By tightly fixing all the clamping blocks through the fixing ring, the clamping blocks are pressed down on the flange so that the reference section and the standard section and between the standard sections are firmly fixed. Since the fixing ring is completely inside the mechanism ring, it avoids the loosening of the fixing of the clamping blocks by the fixing ring caused by external interference. The fixing is convenient, the disassembly is simple, and the installation is easy.
[0016] 2. The present utility model provides a combined semi-dry neutralization reaction device for biological power generation, which adopts the cooperation of a climbing mechanism, a spiral staircase, a mounting plate, a connecting joint and a positioning column. The upper and lower spiral staircases are fixedly connected together through the connecting joint, so that all the spiral staircases and the connecting joints form a complete spiral shape, enabling the user to reach the uppermost side of the device by climbing the spiral staircase and the connecting joint. It is convenient to install and operate. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 is a three-dimensional structural schematic diagram of the present utility model;
[0018] Figure 2 is a partial cross-sectional three-dimensional structural schematic diagram of the standard section part of the present utility model;
[0019] Figure 3 For the present utility model Figure 2 is an enlarged structural schematic diagram of part A in;
[0020] Figure 4 is a partial cross-sectional three-dimensional structural schematic diagram of the mechanism ring part of the present utility model;
[0021] Figure 5 is a three-dimensional structural schematic diagram of the climbing mechanism part of the present utility model.
[0022] In the figure: 1, substrate; 2, reference section; 3, standard section; 4, top cap; 5, fixing mechanism; 51, mechanism ring; 52, fixing ring; 53, limiting rod; 54, clamping block; 55, spring; 56, hook; 57, flange; 6, climbing mechanism; 61, spiral staircase; 62, mounting plate; 63, connecting joint; 64, positioning column. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0023] In order to make the technical means, creative features, achieved purposes and functions of the present utility model easy to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0024] As Figure 1 shown, the combined semi-dry neutralization reaction device for biological power generation includes a substrate 1. A reference section 2 is fixedly connected to the upper surface of the substrate 1. A plurality of vertically distributed standard sections 3 that are sleeved with each other up and down are movably sleeved in the upper groove of the reference section 2. A top cap 4 is movably sleeved inside the upper groove of the uppermost standard section 3. Fixing mechanisms 5 are fixedly sleeved at positions near the upper side of the outer sides of the plurality of standard sections 3 and the reference section 2. Climbing mechanisms 6 are fixedly connected to the outer sides of the plurality of standard sections 3 and the reference section 2.
[0025] It should be noted that rubber pads are fixedly connected to the lower surfaces of the inner sides of the grooves on the upper sides of the reference section 2 and the standard section 3, so as to seal between the reference section 2 and the standard section 3 and between the standard sections 3.
[0026] As Figures 2 - 4 shown, the fixing mechanism 5 includes a mechanism ring 51. The inner side of the mechanism ring 51 is fixedly sleeved on the outer wall of the reference section 2 or the standard section 3 near the upper side. A fixing ring 52 is movably sleeved on the inner side of the mechanism ring 51. A plurality of annularly distributed limiting rods 53 are fixedly connected to the outer surface of the inner side of the mechanism ring 51. The outer walls of the plurality of limiting rods 53 are all movably sleeved with a clamping block 54. The shape of the clamping block 54 is reverse Z-shaped. A flange 57 is fixedly sleeved on the outer wall of the standard section 3 or the top cap 4 near the bottom, and the flange 57 is located above the upper wall of the clamping block 54.
[0027] It should be noted that the fixing ring 52 fixes the clamping block 54, so that the clamping block 54 cannot move outward, resulting in the flange 57 being located below the upper wall of the clamping block 54, so that the upper standard section 3 is fixed. The fixing ring 52 is entirely located inside the mechanism ring 51. The shape of the fixing ring 52 is trapezoidal, and the shape of the lower wall of the clamping block 54 is also trapezoidal. Therefore, when the fixing ring 52 is installed, the inclined surface on its lower side pushes the clamping block 54, causing the clamping block 54 to move inward to complete the installation of the fixing ring 52.
[0028] As Figure 4 shown, springs 55 are movably sleeved on the outer walls of the plurality of limiting rods 53, and the springs 55 are located on the side of the clamping block 54 away from the fixing ring 52.
[0029] It should be noted that the springs 55 are used to push the clamping block 54, so that when the fixing ring 52 is pulled out, the springs 55 push the clamping block 54 to move outward, causing the clamping block 54 to automatically disengage from the upper side of the flange 57 to complete the disassembly of the standard section 3.
[0030] As Figure 4 shown, chamfers are provided on the upper surfaces of the upper walls of the plurality of clamping blocks 54 near the standard section 3.
[0031] It should be noted that the chamfers are used to push the clamping block 54 when the upper standard section 3 is installed, to prevent some of the clamping blocks 54 from not being completely moved to the outermost side, which may affect the installation of the standard section 3.
[0032] As Figure 2 、 Figure 4 shown, a plurality of annularly distributed hooks 56 are fixedly connected to the upper surface of the fixing ring 52.
[0033] It should be noted that the hooks 56 are used to connect the hanging ropes for pulling the fixing ring 52, which is convenient for installing and disassembling the fixing ring 52.
[0034] AsFigure 3 , Figure 5 As shown in Figure 5 , the climbing mechanism 6 includes a spiral staircase 61. The inner side of the spiral staircase 61 is fixedly connected to the outer wall of the reference section 2 or the standard section 3 by screws. Mounting plates 62 are fixedly connected to the positions near both ends of the lower side of the spiral staircase 61. A connecting section 63 is lapped on the upper side of the upper mounting plate 62, and the lower side of the connecting section 63 is fixedly connected to the mounting plate 62 by screws. A plurality of annularly distributed positioning columns 64 are fixedly connected to the inner lower surface of the upper groove of the reference section 2 or the standard section 3. The outer wall of the positioning column 64 is movably sleeved in the insertion hole opened in the lower side of the standard section 3.
[0035] It should be noted that the connecting section 63 is used to connect two adjacent spiral staircases 61 up and down, so that the spiral staircase 61 and the connecting section 63 together form a complete spiral shape. The positioning column 64 is used to fix the connection between the standard section 3 and the standard section 3, as well as between the reference section 2 and the standard section 3, to prevent relative rotation and affect the connecting section 63.
[0036] Working principle of the utility model: First, the fixing ring 52 fixes the column block 54, preventing the block 54 from moving outward. As a result, the flange 57 is located below the upper wall of the block 54, fixing the upper standard section 3. The fixing ring 52 is entirely inside the mechanism ring 51. The fixing ring 52 is trapezoidal in shape, and the lower wall of the block 54 is also trapezoidal. When installing the fixing ring 52, the inclined surface on its lower side pushes the block 54, causing the block 54 to move inward to complete the installation of the fixing ring 52. The spring 55 is used to push the block 54. When the fixing ring 52 is pulled out, the spring 55 pushes the block 54 outward, causing the block 54 to automatically disengage from the upper side of the flange 57 to complete the disassembly of the standard section 3. The chamfer is used when installing the upper standard section 3. The lower outer edge of the flange 57 will push the block 54 to prevent some of the blocks 54 from not being fully moved to the outermost side, which may affect the installation of the standard section 3. By firmly fixing all the blocks 54 with the fixing ring 52, the block 54 presses down on the flange 57, firmly fixing the standard section 3 between the reference section 2 and the standard section 3 and between the standard sections 3. Since the fixing ring 52 is completely inside the mechanism ring 51, it avoids the loosening of the fixing of the block 54 by the fixing ring 52 caused by external interference. It is convenient to fix, simple to disassemble, and easy to install. Finally, the connecting section 63 is used to connect two adjacent spiral ladders 61 above and below, so that the spiral ladders 61 and the connecting section 63 together form a complete spiral shape. The positioning column 64 is used to fix the connection between the standard section 3 and the standard section 3 and between the reference section 2 and the standard section 3 to prevent relative rotation, which may affect the connecting section 63. By connecting the two spiral ladders 61 above and below with the connecting section 63, all the spiral ladders 61 and the connecting section 63 form a complete spiral shape, enabling the user to climb up to the uppermost side of the device through the spiral ladders 61 and the connecting section 63. It is convenient to install and easy to operate.
[0037] The above shows and describes the basic principles, main features and advantages of the utility model. Those skilled in the art should understand that the utility model is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principles of the utility model. Without departing from the spirit and scope of the utility model, the utility model will have various changes and improvements, and these changes and improvements all fall within the scope of the utility model claimed. The scope of protection claimed by the utility model is defined by the appended claims and their equivalents.
Claims
1. A combined semi-dry neutralization reaction device for biomass power generation, comprising a substrate (1), characterized in that: The upper surface of the base plate (1) is fixedly connected with a reference node (2); a plurality of vertically distributed standard nodes (3) which are mutually sleeved up and down are movably sleeved in the upper groove of the reference node (2); a capping (4) is movably sleeved in the inner side of the upper groove of the uppermost standard node (3); a fixing mechanism (5) is fixedly sleeved at the outer sides of a plurality of the standard nodes (3) and the reference nodes (2) near the upper side; and a climbing mechanism (6) is fixedly connected to the outer sides of a plurality of the standard nodes (3) and the reference nodes (2).
2. The combined semi-dry neutralization reaction device for biomass power generation according to claim 1, characterized in that: The fixing mechanism (5) comprises a mechanism ring (51), the inner side of the mechanism ring (51) is fixedly sleeved on the outer wall of the reference section (2) or the standard section (3) near the upper side, the inner side of the mechanism ring (51) is movably sleeved with a fixing ring (52), the inner outer surface of the mechanism ring (51) is fixedly connected with a plurality of annularly distributed limiting rods (53), the outer walls of the plurality of limiting rods (53) are movably sleeved with a clamping block (54), the shape of the clamping block (54) is an inverted Z shape, and the outer wall of the standard section (3) or the capping section (4) is fixedly sleeved with a flange (57) near the bottom, and the flange (57) is located above the upper wall of the clamping block (54).
3. The combined semi-dry neutralization reaction device for biomass power generation according to claim 2, characterized in that: The outer walls of the plurality of limit rods (53) are movably sleeved with springs (55), and the springs (55) are located on a side of the clamping block (54) away from the fixing ring (52).
4. The combined semi-dry neutralization reaction device for biomass power generation according to claim 2, characterized in that: A cut corner is formed on the upper surface of the upper wall of a plurality of the clamping blocks (54) on one side close to the standard section (3).
5. The combined semi-dry neutralization reaction device for biomass power generation according to claim 2, characterized in that: A plurality of hooks (56) distributed in an annular shape are fixedly connected to the upper surface of the fixing ring (52).
6. The combined semi-dry neutralization reaction device for biomass power generation according to claim 1, characterized in that: The climbing mechanism (6) comprises a spiral ladder (61), the inner side of which is fixedly connected to the outer wall of the reference section (2) or the standard section (3) by means of screws, the lower side of the spiral ladder (61) is fixedly connected to mounting plates (62) near both ends, the upper side of the mounting plate (62) located on the upper side is overlapped with a connecting section (63), and the lower side of the connecting section (63) and the mounting plate (62) are fixedly connected together by means of screws, and a plurality of annularly distributed positioning columns (64) are fixedly connected to the inner lower surface of the upper groove of the reference section (2) or the standard section (3), and the outer wall of the positioning column (64) is movably sleeved in a socket provided on the lower side of the standard section (3).
Citation Information
Patent Citations
Combination half -dry type neutralization reaction tower of biological electricity generation usefulness
CN208627305U