Jan 30, 2026

As global decarbonization and “dual-carbon” targets reshape the future of manufacturing, energy efficiency and green transformation have become urgent priorities across industrial sectors. Powered by its unique ability to recycle thermal energy, MVR evaporation and crystallization technology is evolving from a traditional end-of-pipe wastewater treatment solution into a core value-creating process across entire production lines. Myande Group, as an industry pioneer, is driving this transformation through continuous innovation, helping manufacturers reduce energy consumption, lower carbon emissions, and achieve greater operational efficiency.
MVR evaporation and crystallization technology operates on the principle of processing substances whose solubility is relatively insensitive to temperature. By heating and evaporating the solution, it shifts from an unsaturated state to a supersaturated state, prompting the solute to crystallize. In recent years, the rapid growth of the new energy sector has created a vast new application space for this technology.
Myande has closely tracked industry trends and continuously advanced its capabilities in the production of new energy battery materials. The company has established a comprehensive presence across key segments, including lithium extraction from ores and salt lakes, battery recycling, and lithium iron phosphate production. In processes involving nickel, cobalt, manganese, and lithium materials, as well as in high-salinity wastewater treatment for ternary precursors and phosphate iron, Myande’s evaporation and crystallization technology plays a critical role in ensuring production efficiency and product quality.

As a leading provider of energy-efficient evaporation equipment, Myande places technological innovation and quality enhancement at the core of its development. To address the complexity and diversity of evaporation and crystallization processes, the company’s R&D team has developed a range of high-performance equipment and offers fully customized, end-to-end solutions. These solutions cover the entire process from raw material pretreatment to final product discharge, tailored to meet each customer’s specific needs.
From process package development and technical solution design to complete equipment manufacturing, installation, commissioning, system integration, and personnel training, Myande leverages over 20 years of independent R&D, lean production, strict quality control, and meticulous project execution to deliver a full-service industrial ecosystem. Its evaporation and crystallization equipment not only enables automated and intelligent process control, improving operational stability and production efficiency, but also ensures consistent and reliable product quality through continuously optimized process design, creating substantial value for customers.
In addition, Myande applies advanced 3D design technology to transform traditional engineering blueprints into visual, three-dimensional digital models. This “what you see is what you get” design approach allows clients to preview projects in advance while proactively preventing common issues such as equipment collisions or improper piping layouts. The system automatically generates precise piping lists, detailing specifications, quantities, and materials, effectively avoiding material waste and cost overruns caused by manual errors. From design optimization to accurate material planning, Myande’s 3D design capability spans the entire project lifecycle, saving customers significant time and construction costs and setting a benchmark for innovation in industrial engineering design.
Looking ahead, as global dual-carbon strategies continue to drive industrial transformation, Myande remains committed to innovation-led growth. The company continues to break technical barriers, expanding the application of MVR evaporation and crystallization technology across more industrial scenarios. By providing more efficient, intelligent, and environmentally friendly solutions, Myande is helping industries worldwide advance toward a low-carbon future.