Captures, purifies and reuses NMP from electrode dryers at ≥99% purity.
| Recovered solvent | N-methyl-2-pyrrolidone (NMP) |
| Source | Exhaust gas from electrode (cathode) dryers |
| Capture principle | Adsorption/desorption wheel with zeolite or activated carbon, or direct condensation |
| Recovered NMP purity | 99% or higher (directly reusable in production) |
| Recovery rate | 90 to 99% of the NMP evaporated in the dryers |
| Heat recovery | Available in advanced configurations (60% or more of the gas heat) |
| Control | PLC, continuous monitoring, alarm and automatic shutdown |
| Integration | Connects to the gas outlets of existing dryers |
| Capacity | Configurable for any exhaust airflow |
| Input parameter | Typical values |
| Exhaust gas flow | Configured for the specific line |
| NMP concentration in gas | Depends on the dryer type and the cathode paste |
| Inlet gas temperature | According to the dryer parameters |
| Electrode compatibility | NMC, NCA, LFP, LiCoO₂ cathode |
N-methyl-2-pyrrolidone (NMP) is the solvent used in manufacturing electrodes for lithium-ion batteries: it serves to prepare the cathode paste and is evaporated in the line dryers. An NMP solvent recovery system for batteries captures NMP vapor from the dryer exhaust gas, condenses it, purifies it and returns the NMP at working purity to the production flow. Without recovery, evaporated NMP is a lost production cost and an environmental burden.
An NMP solvent recovery system for batteries reduces the operating cost of the electrode line by a significant percentage compared with continuously buying fresh NMP: the pure solvent paid for once circulates in production, offsetting the minimal losses through contamination. It is the fastest-ROI investment possible in equipping a lithium-ion battery electrode line. See the full range of battery equipment and the integrated solutions.
• Reduced NMP cost, recovers 90 to 99% of the NMP evaporated in the dryers, significantly reducing the need for fresh NMP.
• Recovered NMP purity of 99% or higher, the purification process by distillation or adsorption-desorption produces NMP at a purity sufficient for direct reuse.
• Environmental compliance, NMP is a regulated volatile organic compound; capturing and recovering it reduces atmospheric emissions and ensures compliance with VOC regulations.
• Heat recovery, advanced systems also recover the heat carried by the exhaust gas, reducing the dryer's thermal consumption.
• Continuous automated operation, the adsorption/desorption wheel or the condenser works continuously, without frequent manual intervention.
• Integration with electrode dryers, the dryer exhaust ducts connect directly to the recovery system, without modifying existing equipment.
• Fast ROI, at current NMP prices, the investment generally pays for itself in less than two years of operation.
• Scalable, sized for the exhaust airflow of any electrode line.
| Parameter | Value |
|---|---|
| Recovered solvent | N-methyl-2-pyrrolidone (NMP) |
| Source | Exhaust gas from electrode (cathode) dryers |
| Capture principle | Adsorption/desorption wheel with zeolite or activated carbon, or direct condensation |
| Recovered NMP purity | 99% or higher (directly reusable in production) |
| Recovery rate | 90 to 99% of the NMP evaporated in the dryers |
| Heat recovery | Available in advanced configurations (60% or more of the gas heat) |
| Control | PLC, continuous monitoring, alarm and automatic shutdown |
| Integration | Connects to the gas outlets of existing dryers |
| Capacity | Configurable for any exhaust airflow |
An NMP solvent recovery system for batteries is mandatory for any lithium-ion battery electrode production line: NMP is expensive (several thousand euros per tonne), toxic and regulated as a VOC. Releasing it into the atmosphere or disposing of it as hazardous waste are both costly and incompatible with European environmental requirements. Recovering and reusing it is the only economical and legal long-term option.
NMP is used in the production of cathode electrodes for lithium-ion batteries; an NMP solvent recovery system for batteries delivered in Europe is designed in accordance with the requirements of Directive 2010/75/EU on industrial emissions. For integration into the complete production line, see also our complete industry solutions.
The price of NMP fluctuates, but it remains consistently significant in the production cost of cathode electrodes. On a line that consumes several tonnes of NMP per month, a system that recovers 95% of the evaporated NMP generates a substantial monthly saving, directly in the variable production cost. This saving is continuous, calculable and accumulates over the entire service life of the line.
European regulations on volatile organic compounds (VOC) limit NMP atmospheric emissions ever more strictly. An NMP solvent recovery system for batteries is both an economic investment and a compliance obligation: manufacturers who do not capture NMP from exhaust gases risk fines and operational restrictions.
The purity of the recovered NMP is the critical factor for its direct reuse: NMP with water or organic impurities changes the viscosity of the cathode paste and can affect electrode quality. A system with a purification stage by distillation or additional adsorption produces NMP at a purity of 99% or higher, suitable for direct reuse without diluting fresh batches.
Recovering heat from the dryer exhaust gas is an additional benefit of advanced systems. The exhaust gas has a high temperature; this heat, recovered through a heat exchanger, reduces the energy consumption of the dryer or of other processes in the plant. On a line running 24 hours, the energy saving adds to the saving from NMP recovery.
An NMP solvent recovery system for batteries is designed for exhaust gas from cathode dryers with a specific temperature and NMP concentration profile.
| Input parameter | Typical values |
|---|---|
| Exhaust gas flow | Configured for the specific line |
| NMP concentration in gas | Depends on the dryer type and the cathode paste |
| Inlet gas temperature | According to the dryer parameters |
| Electrode compatibility | NMC, NCA, LFP, LiCoO₂ cathode |
1. The hot gas with NMP vapor from the electrode dryers enters the adsorption zone of the wheel.
2. The zeolite or activated carbon wheel adsorbs the NMP and lets the clean air circulate back into the plant or be exhausted.
3. The heated desorption zone of the wheel releases the concentrated NMP into a small flow of hot gas.
4. The concentrated NMP is condensed and collected as a liquid.
5. The collected liquid passes through a purification stage (distillation or final adsorption) to reach a purity of 99% or higher.
6. The purified NMP is returned to the production tank for reuse.
The PLC monitors the NMP concentration at the outlet, the wheel temperature and the gas flow. A well-tuned system runs continuously, without manual intervention, with periodic scheduled maintenance of the adsorption elements.
How much NMP is recovered from a typical system?
A correctly sized system recovers 90 to 99% of the NMP evaporated in the cathode dryers. The exact percentage depends on the NMP concentration in the inlet gas, the gas flow and the configuration of the capture and purification system.
Can the recovered NMP be reused directly in production?
Yes, if the purity reaches 99% or higher. A system with a purification stage by distillation or additional adsorption produces NMP that can be reused directly, without diluting it with fresh NMP. Periodic analysis verifies the purity before reuse.
Is capturing NMP a legal obligation?
Yes, for battery manufacturers in Europe. NMP is a toxic volatile organic compound regulated by the Industrial Emissions Directive. Capturing and recovering it is mandatory for compliance; release into the atmosphere is penalized. The system turns a compliance obligation into an operational saving.
Can it be connected to existing dryers?
Yes. The system connects to the gas outlets of existing dryers without modifying the production equipment. Sizing is based on the flow and NMP concentration of the exhaust gas specific to your line.
URSTAG is a premium brand of recycling equipment, with over 15 years of experience. You don't just get a machine, you get a solution engineered by specialists, built from top-tier components and backed by a team that supports you from design through commissioning.
• European engineering, every machine and every complete line is designed by our engineering teams in Europe, with a focus on reliability, safety and energy efficiency.
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• Over 15 years of experience, we know how materials and machines behave in real-world operation, and we configure each solution for your flow and volume.
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• Delivery, installation and training included, we handle transport, commissioning and operator training, with support throughout the equipment's life.
As a premium brand, URSTAG relies on European engineering, top-tier components and experience. You choose a partner that supports your production long term, with equipment built to run reliably in demanding industrial environments.
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