Intelligent acid regeneration system for preventing crystallization clogging and operation method

By designing an intelligent acid regeneration system and using automated control and automatic control valves, the problems of operation troubles and safety risks in the existing system are solved, automated control and prevention of crystallization blockage are achieved, and the safety and efficiency of the system are improved.

WO2025112454A1PCT designated stage expired Publication Date: 2025-06-05WISDRI ENG & RES INC LTD
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Patent Information

Application Number
PCT/CN2024/099498
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2023-11-30
Filing Date
2024-06-17
Publication Date
2025-06-05

AI Technical Summary

Technical Problem

The existing acid regeneration system requires a lot of manpower to control it, which is troublesome and has great safety risks, especially when the temperature is low in winter, it is easy to cause crystallization of equipment and pipelines.

Method used

An intelligent acid regeneration system is designed, and by setting up a baking feed pipeline, a pre-concentrated circulation pipeline, a return pipeline, a desalinated water inlet pipeline and a liquid inlet module, automatic control and automatic control valves are used to achieve automatic start-up and operation and emergency shutdown cleaning to avoid crystallization blockage.

Benefits of technology

The automatic control of the acid regeneration system is realized, which reduces operation difficulty and safety risks, effectively prevents crystallization and blockage of the baking furnace feed pipeline, and improves the safety and efficiency of system operation.

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Abstract

An acid regeneration system for preventing crystallization clogging and an operation method. The acid regeneration system comprises a pre-concentrator (1) and a roasting furnace (5), wherein a pressure-superposing valve (6) is further provided on a roasting feed pipeline, and a blowdown pipeline with a blowdown valve (8) is connected to the lowest end of the roasting feed pipeline; a liquid intake module is provided between the roasting feed pipeline and a top spray gun (4) of the roasting furnace (5); a demineralized-water intake pipeline is connected to the liquid intake module; and a return pipeline is provided on a connecting pipeline between a roasting furnace feed pump (3) and the liquid intake module. By means of the provision of the roasting feed pipeline, a pre-concentration circulation pipeline, the return pipeline, the demineralized-water intake pipeline and a water intake module, an operator is enabled to utilize the same acid regeneration production system to perform forward regeneration from waste acid and reverse cleaning with demineralized water, such that the functions of acid regeneration and pipeline cleaning are achieved, thereby effectively preventing crystallization clogging in the roasting furnace feed pipeline, and the pipeline structure of the system is also simplified, thereby better facilitating intelligent automatic management and control of the system.
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Description

An intelligent acid regeneration system and operation method for preventing crystallization blockage Technical Field

[0001] The present invention belongs to the technical field of acid regeneration, and in particular relates to an intelligent acid regeneration system and an operating method for preventing crystallization blockage. Background Art

[0002] The metallurgical industry, the chlor-alkali industry, and non-ferrous industries such as cobalt, nickel, titanium, and molybdenum usually use a mixture of hydrochloric acid, nitric acid, and hydrofluoric acid to pickle steel, generating a large amount of pickling waste liquid. In order to reduce the production costs of enterprises and reduce the harm of pickling waste liquid to the environment, the above-mentioned industries often use acid treatment technology to regenerate and recycle the pickling waste liquid to achieve the recycling of the acid liquid. The regeneration of pickling waste liquid generally requires an acid treatment system. The core part of the acid treatment system includes a chemical heat treatment unit with a roasting furnace as the core, and a flue gas cooling and concentration unit with a pre-concentrator as the core. By utilizing the waste heat of the high-temperature flue gas, the pickling waste liquid is efficiently concentrated, thereby reducing the gas consumption in the roasting furnace and the operating costs of the system.

[0003] In existing acid treatment systems, maintaining stable operation of concentrated acid in the preconcentrator and roaster often requires significant manpower to manage and control the preconcentrator circulation pipeline and roaster feed pipeline to ensure smooth, unobstructed operation of the concentrated acid pipeline. In the event of an emergency shutdown, manual drain valves are manually opened to reduce the amount of concentrated acid that settles and crystallizes in the equipment and pipelines, thereby preventing crystallization from clogging the equipment and pipelines, which could damage the equipment and pipelines. These operations and control measures are not only cumbersome to operate in actual production but also pose significant safety risks, particularly in winter when temperatures are low. Improper handling can easily lead to crystallization blockage of the equipment and pipelines, impacting their safe use, causing rupture or damage to the equipment and pipelines, and acid splashing, adversely affecting the personal safety of operators.

[0004] Therefore, there is an urgent need for an intelligent acid regeneration system and operation method that is simple to operate and has a simple system to prevent crystallization blockage.

[0005] Summary of the Invention

[0006] The purpose of the present invention is to address the shortcomings of the existing technology and provide an intelligent acid regeneration system and operation method that prevents crystallization blockage. The purpose is to solve the problems existing in the existing acid regeneration system and method, such as the need for a large amount of manpower to control the pre-concentrator circulation pipeline and the roaster feed pipeline, the cumbersome operation, and the great safety risks.

[0007] In order to solve the above technical problems, the present invention provides an intelligent acid regeneration system for preventing crystallization and blockage, comprising a preconcentrator and a roaster, wherein the gas outlet of the roaster is connected to the top of the preconcentrator through a flue gas pipeline, the liquid outlet end of the preconcentrator is connected to the top of the preconcentrator through a preconcentration circulation pipeline, the liquid outlet end of the preconcentrator is connected to the top of the roaster through a roasting feed pipeline, a preconcentration circulation pump is provided on the preconcentration circulation pipeline, a roasting furnace feed pump is provided on the roasting feed pipeline, and the preconcentration circulation pipeline is connected to the top of the preconcentrator. The roasting feed pipeline shares a section of pipeline connected to the liquid outlet end of the pre-concentrator. The roasting feed pipeline is also provided with a stacking valve. The lowest end of the roasting feed pipeline is connected to a sewage discharge pipeline with a sewage discharge valve. A liquid inlet module is provided between the roasting feed pipeline and the top spray gun of the roasting furnace. The desalted water inlet pipeline is connected to the liquid inlet module. A reflux pipeline is connected to the connecting pipeline between the roasting furnace feed pump and the liquid inlet module. The output end of the reflux pipeline is connected to the bottom of the pre-concentrator. The reflux valve is provided on the reflux pipeline.

[0008] Optionally, the liquid inlet module includes a main feed pipe, a feed branch pipe and a water inlet branch pipe. The main feed pipe and the water inlet branch pipe are connected in parallel to the same end of the feed branch pipe, and the other end of the feed branch pipe is connected to the roasting feed pipeline. The main feed pipe is connected to the top spray gun of the roasting furnace, and the water inlet branch pipe is connected to the desalted water inlet pipeline.

[0009] Optionally, the main feed pipe is provided with a main feed liquid inlet valve, the branch feed pipe is provided with a branch feed liquid inlet valve, and the water inlet branch pipes are both provided with water inlet valves.

[0010] Optionally, the stacking valve, reflux valve, drain valve, main pipe liquid inlet valve, branch pipe liquid inlet valve and water inlet valve are all self-controlled valves.

[0011] Optionally, the pre-concentration circulation pipeline, the connecting pipeline of the stacking valve, the connecting pipeline of the reflux valve, the main feed pipe and the feed branch pipe are all provided with detectors for detecting the pressure or flow in the pipe.

[0012] The present invention also provides an operating method of an intelligent acid regeneration system for preventing crystallization and blockage, including automatic startup and operation and emergency shutdown for cleaning;

[0013] The automatic start-up operation is specifically as follows: after the waste liquid in the pre-concentrator reaches the pump start level, the pre-concentration circulation pump automatically starts to start the pre-concentration cycle;

[0014] After the operating pressure or flow of the pretreatment circulation pipeline is stabilized, the stacking valve is automatically opened to start supplying liquid to the roaster feed pump, and the roaster feed pump is automatically started;

[0015] After the operating pressure of the roaster feed pump is stable, the reflux pipeline is automatically opened to maintain the stable operating pressure and flow of the roaster feed pump;

[0016] When the system switches to production mode, the acid inlet and outlet ends of the liquid inlet module are automatically opened to feed liquid to the spray gun on the top of the roasting furnace. When the liquid flow or pressure of the spray gun is stable, the reflux valve is automatically closed.

[0017] The emergency shutdown cleaning is specifically as follows:

[0018] When the machine is shut down or in emergency, the feed pump of the roaster stops, the superposition valve closes automatically, the spray gun stops spraying automatically, and the sewage pipe and / or return pipe are opened automatically to drain the remaining liquid in the pipe;

[0019] The system enters the automatic cleaning state, automatically closes the acid outlet end of the liquid inlet module and opens the water inlet end of the liquid inlet module, and flows water from the water inlet end to the acid inlet end to flush the roasting feed pipeline;

[0020] When the flushing discharge liquid becomes clear, the reflux valve, sewage valve and desalted water inlet pipeline are automatically closed until the next production cycle begins.

[0021] Optionally, during automatic startup, the branch pipe liquid inlet valve and the main pipe liquid inlet valve in the liquid inlet module are automatically opened;

[0022] During emergency shutdown for cleaning, the main pipe liquid inlet valve in the liquid inlet module automatically closes and the water inlet valve automatically opens.

[0023] Optionally, during automatic startup operation, the roaster feed pump can only be started when the pre-concentration circulation pump is running stably.

[0024] Optionally, when the flushing discharge liquid becomes clear, first close the reflux valve and the drain valve, and then close the desalted water inlet pipeline; before entering the next production cycle, open the drain valve to drain the stored water in the equipment and pipelines.

[0025] Optionally, when the flushing discharge liquid becomes clear, the reflux valve and the sewage valve are automatically closed, and then the desalted water valve is closed after the pressure reaches 0.25-0.3 MPa.

[0026] Compared with the prior art, the present invention has the following beneficial effects:

[0027] 1. The present invention provides an intelligent acid regeneration system and operation method for preventing crystallization blockage. By setting a roasting feed pipeline, a pre-concentration circulation pipeline, a reflux pipeline, a desalted water inlet pipeline and a water inlet module, the reflux pipeline and the pre-concentration circulation pipeline are connected in parallel, and a pipeline having a roasting furnace feed pump and a superposition valve is shared with the roasting feed pipeline. The roasting feed pipeline is connected to the roasting furnace top spray gun, and the desalted water inlet pipeline and the roasting feed pipeline are connected by the water inlet module. The operator can use the same acid regeneration production system to perform forward acid waste liquid regeneration and reverse desalted water cleaning, thereby realizing acid regeneration function and pipeline cleaning function, effectively preventing crystallization blockage in the roasting furnace feed pipeline, and simplifying the system pipeline structure, reducing the difficulty of operation control, and being more conducive to intelligent automatic control of the system.

[0028] 2. The present invention provides an intelligent acid regeneration system and operation method that prevents crystallization blockage. By setting two operating modes: automatic startup and emergency shutdown for cleaning, the pre-concentration circulation pipeline, reflux pipeline, and roasting feed pipeline are gradually opened in the automatic startup mode to stabilize the pipeline pressure during the startup production process. In the emergency shutdown for cleaning mode, water is reversely fed into the original roasting feed pipeline for cleaning, thereby realizing intelligent operation control of the production and cleaning of the acid regeneration system, saving manpower, and ensuring the safety of the system operation. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] FIG1 is a schematic structural diagram of an intelligent acid regeneration system for preventing crystallization and blockage according to an embodiment of the present invention;

[0030] Among them, 1. Pre-concentrator; 2. Pre-concentrator circulation pump; 3. Roasting furnace feed pump; 4. Spray gun; 5. Roasting furnace; 6. Superposition valve; 7. Reflux valve; 8. Drain valve; 9. Branch pipe liquid inlet valve; 10. Main pipe liquid inlet valve; 11. Water inlet valve. DETAILED DESCRIPTION

[0031] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.

[0032] It should be noted that, in the absence of conflict, the embodiments of the present invention and the features in the embodiments may be combined with each other.

[0033] The present invention will be further described below with reference to specific examples, but they are not intended to limit the present invention.

[0034] The present invention provides an intelligent acid regeneration system for preventing crystallization and blockage, comprising a preconcentrator 1 and a roasting furnace 5, wherein the gas outlet of the roasting furnace 5 is connected to the top of the preconcentrator 1 through a flue gas pipeline, the liquid outlet end of the preconcentrator 1 is connected to the top spray gun 4 of the roasting furnace 5 through a roasting feed pipeline, a preconcentrator circulation pump 2 is provided on the preconcentration circulation pipeline, a roasting furnace feed pump 3 is provided on the roasting feed pipeline, and the preconcentrator circulation pipeline and the roasting feed pipeline share a section with the preconcentrator 1. The pipeline connected to the liquid outlet end, the roasting feed pipeline is also provided with a stacking valve 6, the connecting pipeline between the roasting furnace feed pump 3 and the stacking valve 6 is connected to a sewage pipeline with a sewage valve 8, a liquid inlet module is provided between the roasting feed pipeline and the top spray gun 4 of the roasting furnace 5, the desalted water inlet pipeline is connected to the liquid inlet module, a reflux pipeline is provided on the connecting pipeline between the roasting furnace feed pump 3 and the liquid inlet module, the output end of the reflux pipeline is connected to the bottom of the pre-concentrator 1, and a reflux valve 7 is provided on the reflux pipeline.

[0035] As shown in FIG1 , the preconcentrator 1 and the roasting furnace 5 are connected via a roasting feed pipeline, and the bottom and top ends of the preconcentrator 1 are connected via a preconcentration circulation pipeline, dividing the overall pipeline of the acid regeneration system into a first pipeline, a second pipeline, and output pipelines for roasting feed, preconcentration circulation, and reflux. The first pipeline is connected to the output pipeline of the reflux to form a preconcentration circulation pipeline, and the first pipeline, the second pipeline, and the output pipeline of the roasting feed are sequentially connected to form a roasting feed pipeline. The first pipeline, The second pipeline and the reflux output pipeline are connected in sequence to form a reflux pipeline, that is, the roasting feed pipeline and the pre-concentration circulation pipeline share the first pipeline, and the roasting feed pipeline and the reflux pipeline share the first pipeline and the second pipeline. The roasting furnace feed pump 3 is used as a power pump for roasting feed and pickling liquid reflux. The roasting feed pipeline is opened and closed by operating the superposition valve 6, and the reflux valve 7 is operated to control the opening and closing of the reflux pipeline. The liquid inlet module is used to inject acid into the roasting furnace 5 spray gun 4 in the production mode, and to inject desalted water into the roasting feed pipeline in the cleaning mode, so that the operator can use the same acid regeneration production system to perform forward acid waste liquid regeneration and reverse desalted water cleaning, realizing the acid regeneration function and pipeline cleaning function, effectively preventing crystallization blockage in the roasting furnace 5 feed pipeline, and at the same time simplifying the system pipeline structure, reducing the difficulty of operation control, and being more conducive to intelligent automatic control of the system.

[0036] The setting of the reflux pipeline not only maintains the stable operation of the pipeline during the production and feeding process of the acid regeneration system, but also cooperates with the drain valve 8 to discharge the residual acid waste liquid in the pipeline, promptly responds to the pipeline emptying during emergency shutdown, and serves as a drainage branch pipe when the desalted water is reversely fed for cleaning, draining water into the pre-concentrator 1 to maintain the stable operation of the pipeline. While improving the safety of system operation, there is no need to add multiple branches to stabilize the pipe pressure, which is conducive to simplifying the system pipeline structure.

[0037] Among them, the pretreatment circulation pump 2 is arranged on the output pipeline of the pre-concentration circulation, the reflux valve 7 is arranged on the reflux output pipeline, and the roasting furnace feed pump 3 is arranged on the second pipeline.

[0038] As a specific implementation of the liquid inlet module structure, the liquid inlet module includes a feed main pipe, a feed branch pipe and a water inlet branch pipe. The feed main pipe and the water inlet branch pipe are connected in parallel and connected to the same end of the feed branch pipe. The other end of the feed branch pipe is connected to the roasting feed pipeline. The feed main pipe is connected to the top spray gun 4 of the roasting furnace 5, and the water inlet branch pipe is connected to the desalted water inlet pipeline. As shown in Figure 1, the feed main pipe, the feed branch pipe and the water inlet branch pipe are interconnected. In production mode, the feed branch pipe and the feed main pipe are opened, the water inlet branch pipe is closed, and the roasting furnace 5 is fed. In cleaning mode, the feed branch pipe and the water inlet branch pipe are opened, the feed main pipe is closed, and the desalted water is fed in the reverse direction along the roasting feed pipeline, realizing the feeding and water inlet functions of the liquid inlet module.

[0039] In order to control the opening and closing of each pipeline, a main pipe liquid inlet valve 10 is provided on the main feed pipe, a branch pipe liquid inlet valve 9 is provided on the branch feed pipe, and a water inlet valve 11 is provided on each water inlet branch pipe.

[0040] In order to realize intelligent management and control, the superposition valve 6, the reflux valve 7, the drain valve 8, the main pipe liquid inlet valve 10, the branch pipe liquid inlet valve 9 and the water inlet valve 11 are all automatic valves, which are controlled by the control system of the acid regeneration system to realize the intelligent operation of the acid regeneration system.

[0041] In order to detect the pressure or flow of each pipeline in real time, the pre-concentration circulation pipeline, the connecting pipeline of the stacking valve 6, the connecting pipeline of the reflux valve 7, the main feed pipe and the feed branch pipe are all equipped with detectors for detecting the pressure or flow in the pipe. This is convenient for ensuring that the pressure or flow in the pipeline tends to be stable during intelligent operation, which is beneficial to improving the safety of system operation.

[0042] The present invention also provides an operating method of an intelligent acid regeneration system for preventing crystallization and blockage, including automatic startup and operation and emergency shutdown for cleaning;

[0043] The automatic start-up operation is as follows: when the waste liquid in the pre-concentrator 1 reaches the pump start level, the pre-concentration circulation pump 2 automatically starts to start the pre-concentration cycle;

[0044] After the operating pressure or flow of the pretreatment circulation pipeline is stabilized, the stacking valve 6 is automatically opened to start supplying liquid to the roasting furnace feed pump 3, and the roasting furnace feed pump 3 is automatically started;

[0045] After the operating pressure of the roasting furnace feed pump 3 is stabilized, the reflux pipeline is automatically opened to maintain the stable operating pressure and flow of the roasting furnace feed pump 3;

[0046] When the system switches to production mode, the acid inlet and outlet ends of the liquid inlet module are automatically opened to feed liquid into the spray gun 4 at the top of the roasting furnace 5. When the liquid flow or pressure of the spray gun 4 stabilizes, the reflux valve 7 is automatically closed.

[0047] Emergency shutdown cleaning is as follows:

[0048] When the machine is shut down or in emergency, the roasting furnace feed pump 3 stops, the stacking valve 6 automatically closes, the spray gun 4 automatically stops spraying, and the sewage pipe and / or return pipe are automatically opened to drain the remaining liquid in the pipe;

[0049] The system enters the automatic cleaning state, automatically closes the acid outlet end of the liquid inlet module and opens the water inlet end of the liquid inlet module, and flows water from the water inlet end to the acid inlet end to flush the roasting feed pipeline;

[0050] When the flushing discharge liquid becomes clear, the reflux valve 7, the sewage valve 8 and the desalted water inlet pipeline are automatically closed until entering the next production cycle.

[0051] The present invention provides an operating method for an intelligent acid regeneration system that prevents crystallization and blockage. By setting two operating modes, namely, automatic startup and emergency shutdown for cleaning, a pre-concentration circulation pipeline, a reflux pipeline, and a roasting feed pipeline are gradually opened in the automatic startup mode, thereby ensuring stable operation of the acid regeneration system. In the emergency shutdown for cleaning mode, water is fed in reverse along the original roasting feed pipeline, and the eluate is discharged by gravity, thereby realizing intelligent operation of the acid regeneration system, being simple to operate, having a simple system structure, low energy consumption, stable pipe pressure, and greatly improved operational safety.

[0052] More specifically, when the automatic start-up operation is performed, the branch pipe liquid inlet valve 9 and the main pipe liquid inlet valve 10 in the liquid inlet module are automatically opened, that is, the acid inlet end and the acid outlet end of the liquid inlet module are automatically opened;

[0053] During emergency shutdown and cleaning, the main pipe liquid inlet valve 10 in the liquid inlet module is automatically closed and the desalted water inlet valve 11 is automatically opened, that is, the acid outlet end of the liquid inlet module is automatically closed and the water inlet end of the liquid inlet module is opened.

[0054] In order to ensure the simultaneous and stable operation of the pre-concentration circulation pipeline and the other two pipelines, during the automatic startup operation, the roaster feed pump 3 can only be started when the pre-concentration circulation pump 2 is running stably, to prevent the two pumps from starting at the same time and the operation of the roaster feed pump 3 causing a significant reduction in the flow rate in the pre-concentration circulation pipeline.

[0055] In order to avoid the crystallization of residual acid in the pipe after cleaning, when the flushing discharge liquid becomes clear, first close the reflux valve 7 and the drain valve 8, and then close the desalted water inlet pipeline; before entering the next production cycle, open the drain valve 8 to discharge the stored water in the equipment and pipeline.

[0056] More specifically, after automatically closing the reflux valve 7 and the drain valve 8, the desalted water valve is closed after the pressure reaches 0.25-0.3 MPa. The pressure here refers to the pressure upstream of the desalted water valve, which is equipped with a regulating valve and a pressure gauge. The desalted water valve is closed when the value on the pressure gauge reaches 0.25-0.3 MPa.

[0057] Among them, desalted water can also be replaced by pure water.

[0058] In order to more conveniently collect the acid liquid, a special collection device is provided at the tail end of the drain pipeline, the effective volume of which is not less than 1.5 to 2 times the total volume of each device and pipeline in the acid regeneration system to avoid overflow of the collection device during collection. The collection device can be an acid pit or an acid storage tank.

[0059] The pre-concentrator 1 and the collecting device are both connected to the original storage device of the acid solution. When the acid solution in the collecting device reaches a certain level, it can flow back to the original storage device of the acid solution for standby use so as to be processed in the next production cycle.

[0060] In a specific extended embodiment, the waste acid liquid from pickling first enters the pre-concentrator 1 and reaches the pump start level, and the pre-concentration circulation pump 2 is started. The waste heat of the high-temperature flue gas generated by the roasting furnace 5 is used to fully exchange heat between the waste acid liquid from pickling and the high-temperature flue gas, thereby achieving efficient concentration. After the operating pressure or flow of the pre-concentration system stabilizes, the stacking valve 6 is automatically opened, and stacking begins to supply liquid to the roasting furnace feed pump 3. The roasting furnace feed pump 3 is then started, and the spray gun 4 system is opened for exhaust. After the operating pressure of the roasting furnace feed pump 3 stabilizes, the spray gun 4 is closed, and the reflux valve 7 is automatically opened to maintain stable and reliable operation of the roasting furnace 5 feed pipeline. When the roasting furnace 5 feed pipeline is stable, the entire system is then switched to production mode, and the feed branch pipe inlet valve 9 and the feed main pipe inlet valve 10 of the roasting furnace 5 feed system are automatically opened. When the liquid inlet flow or pressure of the spray gun 4 system is stable, the reflux valve 7 is automatically closed, thereby ensuring stable production of the acid treatment system.

[0061] When the machine is shut down or in an emergency stop, the roaster feed pump 3 stops running, the stack valve 6 automatically closes, and the reflux valve 7 and / or drain valve 8 automatically open. At this point, the spray gun 4 also stops spraying immediately, the main feed pipe inlet valve 10 automatically closes, and the desalted water inlet valve 11 automatically opens. Desalted water or pure water flushes the roaster feed pipeline in reverse through the desalted water inlet valve 11 and the feed branch pipe inlet valve 9, thereby preventing concentrated acid from crystallizing and clogging the equipment and pipelines. When the flushing discharge is essentially clean, the desalted water inlet valve 11 and the feed branch pipe inlet valve 9 automatically close, and the reflux valve 7 and / or drain valve 8 automatically close, ensuring that the concentrated acid equipment and pipelines store an appropriate amount of desalted water or purified water until the next production cycle begins.

[0062] When only reflux valve 7 is open, the effluent is discharged by gravity into pre-concentrator 1 for storage. When only drain valve 8 is open, the effluent is discharged by gravity into a dedicated collection device, such as an acid pit or acid storage tank. When both reflux valve 7 and drain valve 8 are open, the effluent is discharged by gravity, partially into pre-concentrator 1 and partially into a dedicated collection device. In all three cases, the previously opened reflux valve 7 and / or drain valve 8 are closed upon completion of cleaning.

[0063] The above are only preferred embodiments of the present invention and do not limit the implementation mode and protection scope of the present invention. For those skilled in the art, it should be aware that all solutions obtained by equivalent substitutions and obvious changes made using the contents of the present invention specification should be included in the protection scope of the present invention.

Claims

1. An intelligent acid regeneration system for preventing crystallization blockage, comprising a preconcentrator and a roaster, wherein the gas outlet of the roaster is connected to the top of the preconcentrator through a flue gas pipeline, the liquid outlet of the preconcentrator is connected to the top of the preconcentrator through a preconcentration circulation pipeline, the liquid outlet of the preconcentrator is connected to the top of the roaster through a roasting feed pipeline, the preconcentrator circulation pump is provided on the preconcentration circulation pipeline, and the roasting feed pipeline is provided with a roasting furnace feed pump, characterized in that: The pre-concentration circulation pipeline and the roasting feed pipeline share a section of pipeline connected to the liquid outlet end of the pre-concentrator, the roasting feed pipeline is also provided with a stacking valve, the lowest end of the roasting feed pipeline is connected to a sewage discharge pipeline with a sewage discharge valve, a liquid inlet module is provided between the roasting feed pipeline and the top spray gun of the roasting furnace, a desalted water inlet pipeline is connected to the liquid inlet module, a reflux pipeline is connected to the connecting pipeline between the roasting furnace feed pump and the liquid inlet module, the output end of the reflux pipeline is connected to the bottom of the pre-concentrator, and a reflux valve is provided on the reflux pipeline.

2. The intelligent acid regeneration system for preventing crystallization blockage according to claim 1 is characterized in that: The liquid inlet module includes a main feed pipe, a feed branch pipe and a water inlet branch pipe. The main feed pipe and the water inlet branch pipe are connected in parallel to the same end of the feed branch pipe. The other end of the feed branch pipe is connected to the roasting feed pipeline. The main feed pipe is connected to the top spray gun of the roasting furnace, and the water inlet branch pipe is connected to the desalted water inlet pipeline.

3. The intelligent acid regeneration system for preventing crystallization blockage according to claim 2 is characterized in that: The main feed pipe is provided with a main pipe liquid inlet valve, the branch feed pipe is provided with a branch pipe liquid inlet valve, and the water inlet branch pipes are both provided with water inlet valves.

4. The intelligent acid regeneration system for preventing crystallization blockage according to claim 3 is characterized in that: The stacking valve, reflux valve, drain valve, main pipe liquid inlet valve, branch pipe liquid inlet valve and water inlet valve are all self-controlled valves.

5. The intelligent acid regeneration system for preventing crystallization blockage according to claim 4 is characterized in that: The pre-concentration circulation pipeline, the connection pipeline of the stacking valve, the connection pipeline of the reflux valve, the main feed pipe and the feed branch pipe are all provided with detectors for detecting the pressure or flow in the pipe.

6. An operation method of an intelligent acid regeneration system for preventing crystallization blockage, characterized in that: Including automatic start-up operation and emergency shutdown for cleaning; The automatic start-up operation is specifically as follows: after the waste liquid in the pre-concentrator reaches the pump start level, the pre-concentration circulation pump automatically starts to start the pre-concentration circulation; After the operating pressure or flow of the pretreatment circulation pipeline is stabilized, the stacking valve is automatically opened to start supplying liquid to the roasting furnace feed pump, and the roasting furnace feed pump is automatically started; After the operating pressure of the roaster feed pump is stable, the return line will be automatically opened to maintain the stable operation of the roaster feed pump. Pressure and flow; When the system switches to production mode, the acid inlet and outlet ends of the liquid inlet module are automatically opened to inject liquid into the spray gun on the top of the roasting furnace. When the liquid inlet flow or pressure of the spray gun is stable, the reflux valve is automatically closed. The emergency shutdown cleaning is specifically as follows: When the machine is shut down or stopped in emergency, the feed pump of the roasting furnace stops, the stacking valve closes automatically, the spray gun stops spraying automatically, and the sewage pipeline and / or reflux pipeline are opened automatically to drain the remaining liquid in the pipeline; The system enters the automatic cleaning state, automatically closes the acid outlet end of the liquid inlet module and opens the water inlet end of the liquid inlet module, and water flows from the water inlet end to the acid inlet end to flush the roasting feed pipeline; When the flushing discharge liquid becomes clear, the reflux valve, drain valve and desalted water inlet pipeline are automatically closed until the next production cycle begins.

7. The method for operating the intelligent acid regeneration system for preventing crystallization blockage according to claim 6, characterized in that: During automatic start-up, the branch pipe liquid inlet valve and the main pipe liquid inlet valve in the liquid inlet module are automatically opened; During emergency shutdown for cleaning, the main pipe liquid inlet valve in the liquid inlet module is automatically closed and the water inlet valve is automatically opened.

8. The method for operating the intelligent acid regeneration system for preventing crystallization blockage according to claim 6, characterized in that: During automatic start-up operation, the roaster feed pump can only be started when the pre-concentration circulation pump is running stably.

9. The method for operating the intelligent acid regeneration system for preventing crystallization blockage according to claim 6, characterized in that: When the flushing discharge liquid becomes clear, first close the reflux valve and the drain valve, and then close the desalted water inlet pipeline; before entering the next production cycle, first open the drain valve to discharge the stored water in the equipment and pipelines.

10. The method for operating the intelligent acid regeneration system for preventing crystallization blockage according to claim 9, characterized in that: When the flushing discharge liquid becomes clear, the reflux valve and the drain valve are automatically closed, and then the desalted water valve is closed after the pressure reaches 0.25-0.3Mpa.

Citation Information

Patent Citations

  • Technique for cleaning acid dirty of acid reactivating machine group inner loop type pipeline

    CN101109088A

  • Method for removing crystals on feeding pipeline of acid regeneration system and circulation system thereof

    CN107488863A

  • Automatic purification device for concentrated acid pipeline of acid regeneration system and use method thereof

    CN112481624A

  • Acid regeneration system purification method, acid regeneration system and purification operation method of acid regeneration system

    CN112481625A

  • Intelligent acid regeneration system capable of preventing crystallization blockage and operation method

    CN117427351A