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Dry Exhaust Gas Treatment
Lithium battery recycling dry one-stop exhaust gas treatment integrated solution
Home Solutions Lithium Battery Recycling Dry Exhaust Gas Treatment
Program Overview
Lithium battery recycling dry exhaust treatment solutions
Lithium battery recycling dry exhaust sources
Lithium battery recycling dry method: not through the solution and other media, direct recovery of valuable metals, the main use of physical sorting method and high-temperature pyrolysis method
Physical sorting method: Separate and dismantle the battery, through the use of physical means to separate down the electrode active material, collector and battery shell and other battery components through the crushing, sieving, magnetic separation, fine crushing and sorting of a series of operations, so as to separate the high-value metal materials and other substances.
High-temperature pyrolysis method: the lithium battery material after physical crushing and other preliminary separation process is subjected to high-temperature roasting decomposition, the organic binder is removed, so as to separate the lithium battery constituent materials.
In particular, the physical sorting and high temperature pyrolysis processes generate a large amount of NMP off-gas.
Distributed exhaust gas adsorption Purification system
The value of the program runs through the entire life cycle, and is committed to improving purification capacity, controlling equipment life, and efficient and accurate operation and maintenance.
工艺包渲染流程图
系统特性(解决痛点)
Adjustable operating functions, multimode combination
Compact assembly process, easy to build
Dynamic design of modules, on-demand additions
Highly efficient and economical equipment to reduce costs and increase efficiency
应用场景
Concentration: <25 % LEL (25% or less of the lower explosive limit)
Component: Mixed exhaust gas, suitable for the treatment of medium air volume, containing a certain concentration of organic exhaust gas.
Industry: lithium battery production and recycling, new energy, electronics, chemical, petrochemical, etc.
Efficiency: can be stabilized at more than 99%
Device Rendering
Device Rendering
Device Rendering
Device Rendering
Device Rendering
Services Configuration
Provide a complete set of our own solutions based on customer needs and project characteristics, and launch mature cases that fit a wide range of needs.
Exclusive Team
Preferred senior business and technical teams, along with specialists, accompany the entire process to achieve efficient pre-sale communication and after-sales service, reducing obstructive closed-loop operations.
Customized Solution
By utilizing a collaborative approach in each case and discussion, we are able to effectively deliver tailored solutions that meet the demands of any working condition. From initial demand analysis to system integration design, our solutions offer both technical reliability and economic rationality.
Economic Calculation
Evaluating the economic benefits of the exhaust gas treatment process station involves estimating the construction, investment, and operating costs at various levels, analyzing revenue, and employing dynamic financial modeling. The process ensures the project's economic feasibility by offering reliable and practical demonstrations. This analysis involves manual adjustments and calculations to provide an in-depth evaluation of the project's financial viability.
Kit Delivery
The turnkey package delivery covers the entire design and development process, manufacturing, commissioning, and management of operation and maintenance. This approach ensures a comprehensive delivery and a cost-effective solution.
Program Process Kits
Modular dynamic design, multi-mode combination, on-demand additions
Catalytic Combustion CO Equipment

Catalytic combustion CO equipment utilizes a catalyst at a low temperature range of 280-400℃ to achieve complete combustion of combustibles. The process involves active oxygen in-depth oxidation. During catalytic combustion, the catalyst plays a crucial role in reducing activation energy and adsorbing reactant molecules on its surface to enhance the reaction rate and accelerate the process.

The product showcases the following features:

1. The operating temperature is lower than direct combustion, resulting in increased safety.

2.The fuel consumption is lower compared to TO, resulting in cost savings.

3.The processing efficiency is high, achieving up to 99% or more.

4.The process is highly safe, reacting at low temperatures and eliminating the danger of dust explosions.

Direct-fired TO equipment

The combustion equipment uses heat generated by burning auxiliary fuels to increase the temperature of harmful gases until they reach the required temperature for oxidative decomposition. Then, the induced draft fan forces the organic mixed waste gas into the waste gas incinerator. The organic mixed waste gas first passes through the heat exchanger for preheating before entering the furnace chamber. There, it undergoes decomposition into carbon dioxide and water under the high temperature of the combustion machine's flame (760-800℃).

Product features:

1、Wide range of pollutant suitability;

2、High processing efficiency can reach more than 99%;

3、Equipment is simple.

Engineering Management Advantage
Experience in the development, design and construction of multi-million waste gas treatment projects, with sound management mechanism
Dedicated and professional
We have a well-educated team of engineering and construction management professionals with ample experience in exhaust gas projects. They are capable of tackling difficult construction problems and working hard to find solutions. Our business covers a range of projects including lithium workshops, lithium battery recycling workshops, photovoltaic battery workshops, hydrogen fuel cell workshops, semiconductor production workshops, and new energy automobile and other new energy exhaust gas treatment projects.
Timely handling
The ideal management system can promptly address unforeseen and unique incidents at the project site. By creating an intelligent, real-time production monitoring and maintenance platform, the project can achieve "centralized monitoring, regional maintenance, unmanned and minimally manned, intelligent, and professional operation and maintenance" while maximizing the advantages of smart operation and maintenance response.
Service Guarantee
The engineering project management team values the owner's experience, proactively communicates and coordinates with them on a regular basis, and promptly responds to their suggestions and requirements. By relying on the company's engineering project management system, specifications, and quantitative metrics, the team can offer customers post-operation and maintenance services that are both efficient and of high quality. Our team continuously strives to enhance customer satisfaction.
Related Products
Robust and reliable, quality assurance, technology-led, efficient purification
Zeolite rotor + RCO
YQC zeolite rotor RCO is suitable for treating VOCs with large air volume and low concentration. After passing through the zeolite rotor, due to the van der Waals force between the molecules, the VOCs are adsorbed by the zeolite micropores, and the purified gas can be discharged to the exhaust pipe directly. The organic matter adsorbed on the zeolite rotor is then desorbed by the gas at a temperature of 180℃~200℃. The adsorbed high concentration waste gas is then sent to RCO furnace for catalytic combustion treatment. SEED specializes in manufacturing zeolite rotor RCO.
01
Arsenophosane adsorption tower
Arsenophosane adsorption tower working principle: the use of chemical reaction, complex decomposition reaction and other basic principles, and a variety of waste gas chemical reaction, to generate stable non-toxic and harmless compounds or complexes, will not produce secondary pollution. Semiconductor industry arsenic-containing waste gas from the machine end of a separate collection, the formation of an independent system, arsenic alkyl phosphide treatment system is divided into two main parts, a stage for the Local Scrubber, i.e., the local dry adsorption device, using the principle of chemical adsorption, in the arsenic-containing system on the basis of the Local Scrubber will be pooled on the roof at the Central end of the again for the dry adsorption, the use of equipment, the use of chemical adsorption. Dry adsorption, the use of equipment called arsenophosphane adsorption tower. General arsenophosphane adsorption tower will also be configured with a one-use and one-standby mode, after adsorption through the end of the fan negative pressure discharge.
02
cartridge dust collector
The cartridge dust collector is composed of cartridge as the filter element or adopts pulse blowing dust collector. According to the installation method, the cartridge dust collector can be divided into inclined insertion type, side-mounted type, lifting type and top-mounted type. Cartridge dust collector can be divided into long-fiber polyester cartridge dust collector, composite fiber cartridge dust collector, anti-static cartridge dust collector, flame-retardant cartridge dust collector, coated cartridge dust collector, nano-cartridge dust collector and so on according to the cartridge material.
03
Coupled Catalytic Systems
Coupling catalytic system equipment adopts stainless steel fixed skid-mounted fully sealed structure, convenient installation, internal coating of stainless steel special anticorrosion materials, can be resistant to acid and alkali exhaust environment, long service life of the equipment, by the pre-treatment section, the coupling reaction device, the array of drawer-type module composition.
04
Related Cases
Lithium battery recycling whole chain exhaust treatment solution
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