Pioneering modular architectures designed for seamless configuration, transport, and commissioning across modern industrial environments.
Advanced cryogenic separation units customized for modular natural gas and associated gas processing.
Highly integrated pre-treatment skids optimizing feed gas quality prior to deep cryogenic processing.
Eco-friendly high-pressure thermal hydrolysis units designed for bio-safety laboratories and clinics.
Dry and wet process desulphurization systems engineering for sour gas fields and associated gases.
Thailand's dynamic industrial sector is undergoing a rapid evolution. Driven by the national Power Development Plan (PDP 2018-2037) and stringent environmental policies from the Ministry of Energy, there is an escalating demand for clean energy and carbon reduction strategies. Key energy hubs, such as the Eastern Economic Corridor (EEC) including Rayong, Chonburi, and Chachoengsao, are focusing heavily on upgrading industrial fuel efficiency.
Traditional central liquefaction plants require vast spatial footprints and huge capital expenditures (CAPEX), which are economically non-viable for localized or marginal gas fields. Skid-mounted liquefaction equipment bypasses these hurdles by offering:
Born from top-tier research institutions, our engineering DNA guarantees optimal thermodynamics and structural integrity.
Our technical core is guided by scientists from Tsinghua University and the Institute of Physics and Chemistry Technology, Chinese Academy of Sciences (CAS). Specializing in cryogenic thermal dynamics, gas separation, and mixed refrigerant cycle (MRC) methodologies.
Hebei Hongke Qingneng holds an A2 level pressure vessel manufacturing license, pressure pipeline component manufacturing licenses, GB/T19001-2016 ISO quality standard compliance, and certified Sinopec HSSE / CNPC safety management systems.
Leveraging engineering experience spanning over 50 projects, our solutions are optimized for tropical and humid climates typical of Thailand, incorporating corrosion-resistant coatings, heat exchangers optimized for high ambient temperatures, and remote monitoring modules.
In localized gas fields or oil exploration sites throughout Thailand (such as those in the Phitsanulok Basin or Gulf of Thailand), associated petroleum gas is often flared due to pipeline connectivity limitations. Our skid-mounted liquefaction equipment allows producers to trap and liquefy this gas directly at the wellhead.
The modular integration combines desulfurization, deacidification (amine Wash), dehydration (molecular sieve), and cryogenic chilling into a unified, high-durability chassis. This allows the production of commercial-grade LNG, capturing profits from otherwise wasted fuel sources.
LNG storage terminals experience natural boil-off gas (BOG) losses. Our cryogenic technology focuses on BOG re-liquefaction and the extraction of trace high-value gases, such as Helium. By using highly customized non-standard pressure vessels and precise thermal exchangers, we help operators retain tank pressures safely without environmental venting.
Integrating advanced phase change heat transfer processes guarantees optimized compressor operation, maximizing coefficient of performance (COP) and limiting plant parasitic electrical loads.
Explore our complete catalog of industrial pressure vessels, cryogenic units, gas separation systems, and biological waste recovery plants.
Ensuring biological safety and sterile residues in modern R&D centers.
Eco-friendly solutions preventing atmospheric hydrocarbon release.
ASME compliant storage and reaction vessels built to critical tolerances.
Innovative modular cryogenic systems built for fast deployment.
Destroy industrial volatile emissions with regenerative systems.
Efficient sulfur compound filtration units designed for long duty cycles.
High-grade municipal veterinary waste reduction and sterilization.
Optimal sulfur recovery utilizing innovative liquid catalysts.
Maximizing downstream asset performance with custom auxiliary processing columns and lifetime maintenance packages.
Ensures optimal feed gas cleanliness for cryogenic storage protection.
Green sanitation alternative minimizing atmospheric carbon footprint.
From dynamic simulation to predictive preventative maintenance packages.
High-pressure containment systems tailored for extreme process cycles.
Our design protocols are shaped by leading engineering academics specializing in cryogenic separation systems.
Ph.D. from the Institute of Physics and Chemistry Technology, Chinese Academy of Sciences (CAS). National Senior Engineer. Recipient of the Special Prize of Technological Invention of the Chinese Society of Refrigeration (2015) and First Prize of Beijing Science and Technology Award (2016). Over 20 patents issued.
Ph.D. Candidate, Senior Engineer of CAS. Directed national projects for the 12th Five-Year Plan. Author of 24 international peer-reviewed papers (11 SCI/EI indexed). Awarded the Silver Medal at the 19th China International Industry Expo (2017).
Doctor of Engineering from CAS. Renowned expert in phase change heat transfer characteristics and flow properties of multi-component mixed refrigerants. Awarded First Prize of Beijing Science and Technology Award.
Guaranteeing structural safety and legal compliance under the regulatory authorities of the Kingdom of Thailand.
Fully compliant with the Department of Energy Business (DOEB) requirements for high-pressure storage and hazardous substance processing in Thailand.
Structural calculations and manufacturing protocols align seamlessly with the Thailand Industrial Standards Institute (TISI) and international ASME Section VIII Div 1/2 codes.
Features marine-grade C5 corrosion resistance and process calculations adjusted for 40°C+ ambient temperatures and 95%+ relative humidity conditions.
Expert answers regarding modular gas processing, safety certifications, and installation logistics.
Connect with our expert team from the Chinese Academy of Sciences and Tsinghua University. We design custom skid-mounted systems engineered for high performance, efficiency, and compliance.
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