Advanced skid-mounted solutions engineered for Hungarian operators, designed to optimize gas processing and achieve absolute environmental compliance.
Hungary sits at a vital geopolitical intersection for European gas transit and domestic refining networks. Managed closely under the supervision of entities like FGSZ, the nation is actively modernizing its natural gas network. Driven by the European Union Green Deal and the updated National Energy and Climate Plan (NECP), Hungarian gas fields (e.g., around Algyő) and chemical processing plants must scale down volatile emissions dramatically.
The recovery of tail gas from Claus units, heavy hydrocarbon removal, and the extraction of BOG (Boil-Off Gas) are no longer optional. Industrial enterprises across Central Europe must deploy advanced recovery skids that minimize venting, capture trace sulfur compounds, and reclaim valuable hydrocarbons. Deploying custom, highly integrated Chinese skid systems offers Hungarian buyers the exact technical capabilities needed to meet strict EU-ETS requirements without inflating operational expenditure.
Engineered by Ph.D. scholars from the Chinese Academy of Sciences (CAS) and Tsinghua University, integrating theoretical breakthroughs with large-scale industrial execution.
Founder & Chairman, CAS Senior Engineer
Obtained his doctorate from the Institute of Physics and Chemistry Technology, Chinese Academy of Sciences. He has led multiple National 863 Program initiatives, aerospace projects, and major national science campaigns. Recipient of the Special Prize of Technological Invention from the Chinese Society of Refrigeration (2015) and Beijing Science and Technology Award (2016). Over 20 patents and 50+ implemented industrial skids.
General Manager & Senior Researcher
Ph.D. candidate and Senior Engineer at the Institute of Physics and Chemistry Technology (CAS). Presided over market expansion and operations for over a decade. Published 24 academic papers (11 SCI/EI index) and has been granted 5 national invention patents. Received the Silver Medal of the 19th China International Industry Expo.
Chief Engineer
Doctor of Engineering from the Institute of Physics and Chemistry Technology (CAS). Specialist in skid-mounted natural gas liquefaction systems, mixed refrigerant thermal performance, and multiphase flow characteristics. Key designer of commercialized tail gas and VOC extraction systems currently active globally.
Registered Capital (CNY)
Independent R&D Patents
Skid Projects Implemented
Pressure Vessel Licensure
Our research and engineering pathways offer localized solutions targeting the reduction of pollutant loading and maximizing recovery rates.
By utilizing a highly engineered refrigeration cycle (-40°C to -180°C), we isolate high-boiling-point hydrocarbons from tail gas streams. Perfect for VOC recovery in Central European refineries, this technique allows the reclamation of condensed liquid fractions, which can be reintroduced back into the refinery feedstocks.
Tail gas from Claus sulfur recovery units contains residual H2S, COS, and CS2. Our skid-mounted recovery units integrate catalytic hydrogenation of organic sulfur back to H2S, followed by selective amine absorption. This technology reaches up to 99.9% overall sulfur recovery efficiency, satisfying stringent regional emission laws.
BOG is a natural byproduct of cryogenic LNG storage. Our proprietary CAS cryogenic cycle allows operators in Central Europe to selectively capture and purify helium gases present in natural gas reserves, turning an exhaust gas component into a high-value industrial resource.
Demonstrating technical excellence and execution safety across multiple environmental protection and purification project categories.
Industrial machinery bound for Hungary must satisfy rigorous European directives. Our fabrication plants prioritize global QA/QC protocols. We hold official A2-level pressure vessel manufacturing licensing, pressure pipeline component manufacturing permits, and strictly follow the GB/T19001-2016 and Sinopec HSSE/CNPC Health, Safety, and Environment Management System certifications.
For European projects, our engineering design teams provide direct calculations matching the European Pressure Equipment Directive (PED) 2014/68/EU, incorporating AD 2000 or EN 13445 standard calculations, and integrating explosion-proof ATEX certified components where appropriate. This guarantees seamless local commissioning, approval by designated local notified bodies, and subsequent plant startup.
Explore our highly specialized system configurations, built to handle diverse industrial waste, energy recovery, and gas purification workflows.
Addressing core technical questions from industrial operators and engineering procurement officers regarding gas recovery solutions in Hungary.
Contact our academic and engineering advisory team to request calculation sheets, skid dimension layouts, and targeted emissions reduction estimates for your gas processing facility.