CN215843613U - Centrifugal automatic production system of humic acid fertilizer - Google Patents
Centrifugal automatic production system of humic acid fertilizer Download PDFInfo
- Publication number
- CN215843613U CN215843613U CN202122074179.3U CN202122074179U CN215843613U CN 215843613 U CN215843613 U CN 215843613U CN 202122074179 U CN202122074179 U CN 202122074179U CN 215843613 U CN215843613 U CN 215843613U
- Authority
- CN
- China
- Prior art keywords
- centrifugal
- horizontal spiral
- centrifuge
- tank
- spiral centrifuge
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Active
Links
Images
Landscapes
- Centrifugal Separators (AREA)
Abstract
The utility model relates to a centrifugal automatic production system of a humic acid fertilizer. The process flow comprises a raw material tank, a horizontal spiral centrifuge, a full-automatic control electric cabinet, a centrifugal pump, an intermediate buffer tank, a cleaning water tank, an electric valve, a basket filter and a disc centrifuge, wherein the raw material automatically flows into the first-level horizontal spiral centrifuge in the raw material tank in a high-level feeding mode, separated clear liquid directly enters the second-level horizontal spiral centrifuge, the separated clear liquid enters the intermediate buffer tank and automatically flows to the third-level disc centrifuge for further separation through the basket filter in the high-level feeding mode.
Description
Technical Field
The utility model relates to a centrifugal automatic production system of humic acid fertilizer, belonging to the technical field of humic acid fertilizer processing.
Background
Humic acid fertilizer is a high molecular substance extracted from soil, peat and lignite. The crushed raw materials, water and sodium hydroxide are fully mixed and heated for reaction according to a certain proportion, the reaction temperature is 80 ℃, and the PH value is controlled to be 9-11. After a certain time, putting the mixture into a tank and carrying out clarification treatment. The traditional process adopts a natural sedimentation mode for clarification, occupies a large area, does not meet the environmental protection requirement, and has unstable product quality.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a centrifugal automatic production process flow of a humic acid fertilizer. The process flow comprises a raw material tank, a horizontal spiral centrifuge, a full-automatic control electric cabinet, a centrifugal pump, an intermediate buffer tank, an electric valve, a cleaning water tank, a basket filter and a disc centrifuge, wherein the raw material automatically flows into the first-stage horizontal spiral centrifuge in the raw material tank in a high-level feeding mode, separated clear liquid directly enters the second-stage horizontal spiral centrifuge, the separated clear liquid enters the intermediate buffer tank and automatically flows to the third-stage disc centrifuge for further separation through the basket filter in the high-level feeding mode, and therefore the content of water insoluble substances is reduced to below 1%. By adopting the centrifugal process flow, full-automatic control and full-closed production operation can be realized, the production efficiency can be improved, the product quality can be stabilized, and the problems in the existing production can be solved.
Furthermore, the first-stage horizontal spiral centrifuge and the second-stage horizontal spiral centrifuge are connected in series, a discharge port of the first-stage horizontal spiral centrifuge is directly connected with a feed port of the second-stage horizontal spiral centrifuge, and the position of the second-stage horizontal spiral centrifuge is lower than that of the first-stage horizontal spiral centrifuge during installation.
Furthermore, before the materials enter the three-stage disc-type centrifugal machine, a basket filter with 50-80 meshes is adopted for pretreatment, so that the service life of the disc-type centrifugal machine is prolonged.
Furthermore, the raw material tank, the intermediate buffer tank and the cleaning water tank are all higher than a first-level centrifuge, a second-level centrifuge and a third-level centrifuge when being installed, and all the centrifuge equipment adopts a high-level feeding mode;
furthermore, the raw material tank, the intermediate buffer tank and the cleaning water tank are all provided with high-low liquid level interlocks, the high-low liquid level of the raw material tank interlocks with incoming materials, the incoming materials stop at the high liquid level, and the incoming materials run at the low liquid level; the high and low liquid levels of the middle buffer tank are linked with the centrifugal pump, the centrifugal pump stops working when the liquid level is high, the first-stage horizontal spiral centrifuge and the second-stage horizontal spiral centrifuge stop feeding, the centrifugal pump normally works when the liquid level is low, and the first-stage horizontal spiral centrifuge and the second-stage horizontal spiral centrifuge normally feed; the high-low liquid level of the cleaning water tank is interlocked with the incoming water, the incoming water stops at the high liquid level, and the incoming water runs at the low liquid level.
Furthermore, the cleaning water tank and the middle buffer tank belong to a parallel connection mode, in a control program, after materials in the middle buffer tank enter the disc type centrifugal machine for 8 hours, the water in the cleaning tank needs to be switched to clean the disc type centrifugal machine, and the time is not less than 30 minutes.
Furthermore, all the high and low liquid levels, the electric valve, the centrifugal equipment and the centrifugal pump are connected to the full-automatic control box.
Compared with the prior art, the utility model adopting the technical scheme has the following technical effects: can realize continuous production and full-automatic control, and can meet the requirements of production indexes and environmental protection.
Drawings
FIG. 1 is a flow chart of the centrifugal automated production process of the present invention.
The drawings illustrate: 1-raw material tank, 2-horizontal spiral centrifuge, 3-full-automatic control box, 4-horizontal spiral centrifuge, 5-centrifugal pump, 6-intermediate buffer tank, 7-cleaning water tank, 8-electric valve, 9-basket filter and 10-disk centrifuge.
Detailed Description
The technical scheme of the utility model is further explained in detail by combining the attached drawings:
the raw materials automatically flow into a first-level horizontal spiral centrifuge 2 in a raw material tank 1 in a high-level feeding mode, separated clear liquid directly enters a second-level horizontal spiral centrifuge 4, the separated clear liquid enters a middle buffer tank 6 through a centrifugal pump 5, and automatically flows to a third-level disc centrifuge 10 for further separation through a basket filter 9 in a high-level feeding mode, so that the content of water insoluble substances is reduced to below 1%, and the production requirement is met. By adopting the centrifugal process flow, full-automatic control and full-closed production operation can be realized, the production efficiency can be improved, the product quality can be stabilized, and the problems in the existing production can be solved.
The first-stage horizontal spiral centrifuge and the second-stage horizontal spiral centrifuge are connected in series, a discharge port of the first-stage horizontal spiral centrifuge is directly connected with a feed port of the second-stage horizontal spiral centrifuge, and the second-stage horizontal spiral centrifuge is lower than the first-stage horizontal spiral centrifuge during installation.
The raw material tank, the intermediate buffer tank and the cleaning water tank are all provided with high-low liquid level interlocks, the high-low liquid level of the raw material tank interlocks with incoming materials, the incoming materials stop at the high liquid level, and the incoming materials run at the low liquid level; the high and low liquid levels of the middle buffer tank are linked with the centrifugal pump, the centrifugal pump stops working when the liquid level is high, the first-stage horizontal spiral centrifuge and the second-stage horizontal spiral centrifuge stop feeding, the centrifugal pump normally works when the liquid level is low, and the first-stage horizontal spiral centrifuge and the second-stage horizontal spiral centrifuge normally feed; the high-low liquid level of the cleaning water tank is interlocked with the incoming water, the incoming water stops at the high liquid level, and the incoming water runs at the low liquid level.
Before the materials enter the three-stage disc type centrifugal machine, a basket filter with 50-80 meshes is adopted for pretreatment, so that the service life of the disc type centrifugal machine is prolonged.
The raw material tank, the intermediate buffer tank and the cleaning water tank are all higher than a first-level centrifuge, a second-level centrifuge and a third-level centrifuge when being installed, and all centrifuge equipment adopts a high-level feeding mode, so that a feeding pump can be reduced, and the feeding is uniform and stable;
the cleaning water tank and the middle buffer tank belong to a parallel connection mode, in a control program, materials in the middle buffer tank need to be switched to water in the cleaning tank to clean the disc type centrifugal machine after entering the disc type centrifugal machine for 8 hours, and the time is not less than 30 minutes.
All high and low liquid levels, electric valves, centrifugal equipment and centrifugal pumps are connected to a full-automatic control box.
In addition to the above embodiments, the present invention may have other embodiments. All technical solutions formed by adopting equivalent substitutions or equivalent transformations fall within the protection scope of the claims of the present invention.
Claims (7)
1. The utility model provides a centrifugal automated production system of humic acid fertilizer which characterized in that: the centrifugal process flow sequentially comprises a raw material tank, a horizontal spiral centrifuge, a full-automatic control electric cabinet, a centrifugal pump, a middle buffer tank, a cleaning water tank, an electric valve, a basket filter and a disc centrifuge along the raw material advancing direction; the raw materials automatically flow into a first-stage horizontal spiral centrifuge in a high-level feeding mode in a raw material tank, separated clear liquid directly enters a second-stage horizontal spiral centrifuge, the separated clear liquid enters a middle buffer tank, and automatically flows to a third-stage disc centrifuge for further separation in the high-level feeding mode through a basket filter, so that the content of the water-insoluble substances is reduced to below 1%.
2. The centrifugal automated humic acid fertilizer production system according to claim 1, which is characterized in that: the first-stage horizontal spiral centrifuge and the second-stage horizontal spiral centrifuge are connected in series, a discharge port of the first-stage horizontal spiral centrifuge is directly connected with a feed port of the second-stage horizontal spiral centrifuge, and the second-stage horizontal spiral centrifuge is lower than the first-stage horizontal spiral centrifuge during installation.
3. The centrifugal automated humic acid fertilizer production system according to claim 1, which is characterized in that: the raw material tank, the intermediate buffer tank and the cleaning water tank are all provided with high-low liquid level interlocks, the high-low liquid level of the raw material tank interlocks with incoming materials, the incoming materials stop at the high liquid level, and the incoming materials run at the low liquid level; the high and low liquid levels of the middle buffer tank are linked with the centrifugal pump, the centrifugal pump stops working when the liquid level is high, the first-stage horizontal spiral centrifuge and the second-stage horizontal spiral centrifuge stop feeding, the centrifugal pump normally works when the liquid level is low, and the first-stage horizontal spiral centrifuge and the second-stage horizontal spiral centrifuge normally feed; the high-low liquid level of the cleaning water tank is interlocked with the incoming water, the incoming water stops at the high liquid level, and the incoming water runs at the low liquid level.
4. The centrifugal automated humic acid fertilizer production system according to claim 1, which is characterized in that: all be higher than one, two, tertiary centrifuge when head tank, middle buffer tank, washing water pitcher installation, all centrifugal equipment feeding modes are high-order feeding.
5. The centrifugal automated humic acid fertilizer production system according to claim 1, which is characterized in that: before the materials enter a three-stage disc type centrifuge, a basket filter with 50-80 meshes is adopted for pretreatment.
6. The centrifugal automated humic acid fertilizer production system according to claim 1, which is characterized in that: the cleaning water tank and the middle buffer tank are connected in parallel, materials in the middle buffer tank in the control program enter the disc type centrifugal machine for 8 hours, the water in the cleaning tank is automatically switched to clean the disc type centrifugal machine, and the cleaning time is at least 30 minutes.
7. The centrifugal automated humic acid fertilizer production system according to claim 1, which is characterized in that: all the high and low liquid levels, the electric valve, the centrifugal equipment and the centrifugal pump are controlled by the automatic control electric cabinet.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202122074179.3U CN215843613U (en) | 2021-08-31 | 2021-08-31 | Centrifugal automatic production system of humic acid fertilizer |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202122074179.3U CN215843613U (en) | 2021-08-31 | 2021-08-31 | Centrifugal automatic production system of humic acid fertilizer |
Publications (1)
Publication Number | Publication Date |
---|---|
CN215843613U true CN215843613U (en) | 2022-02-18 |
Family
ID=80244456
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN202122074179.3U Active CN215843613U (en) | 2021-08-31 | 2021-08-31 | Centrifugal automatic production system of humic acid fertilizer |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN215843613U (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113600348A (en) * | 2021-08-31 | 2021-11-05 | 南京中船绿洲机器有限公司 | Centrifugal automatic production system of humic acid fertilizer |
-
2021
- 2021-08-31 CN CN202122074179.3U patent/CN215843613U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113600348A (en) * | 2021-08-31 | 2021-11-05 | 南京中船绿洲机器有限公司 | Centrifugal automatic production system of humic acid fertilizer |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
CN113600348A (en) | Centrifugal automatic production system of humic acid fertilizer | |
CN215843613U (en) | Centrifugal automatic production system of humic acid fertilizer | |
CN102268327B (en) | Method for orange peel essential oil and pectin combined production | |
CN105524669A (en) | Separating and recycling method for fine slag of coal gasification | |
CN106140783B (en) | A kind of kitchen garbage homogenate exclusion device | |
CN109332366B (en) | Kitchen waste treatment system and method | |
CN105666926B (en) | A kind of waste plant dregs press dewatering equipment | |
CN102886306A (en) | Column-slot combined technology for grading calcium collophanite | |
CN103755818A (en) | Impurity removal production process of sweet potato starch | |
CN103506373B (en) | Equipment and method for collecting and pretreating kitchen waste | |
CN112679244B (en) | Kitchen waste integrated treatment method based on biotechnology and energy coupling | |
CN217780770U (en) | System for producing nickel sulfate solution | |
CN202953831U (en) | Heavy-alkali washing system | |
CN114108352B (en) | Papermaking white mud pretreatment system and treatment method for wet desulphurization | |
CN103599716A (en) | Filterable slurrying device as well as method for preparing high-concentration water coal slurry by using device | |
CN218146124U (en) | High-efficient algae moisture utilization resource system | |
CN107055863B (en) | Process for treating citric acid wastewater by disc tube type reverse osmosis | |
CN204470243U (en) | A kind of lightweight oil groove circulating flushing slag device | |
CN108101212A (en) | A kind of method judged and processing anaerobic grain sludge is poisoned | |
CN212151831U (en) | Reclaimed water recycling device in concentrated fruit and vegetable processing water | |
CN212417124U (en) | Salt mud resource utilization processing system | |
CN114082245A (en) | Rinsing and purifying device and method for pentaerythritol | |
CN112371343A (en) | Flotation clean coal dewatering and blending process | |
CN216855957U (en) | A solid-liquid separation equipment for production of water-soluble humic acid product | |
CN208662098U (en) | A kind of citrus peel residue fermentation processing unit |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
GR01 | Patent grant | ||
GR01 | Patent grant |