Explore our elite portfolio of skid-mounted equipment, custom-engineered for extreme industrial efficiency, low emissions, and reliable thermodynamic operations.
Established in June 2021 with a substantial registered capital of 78 million yuan, Hebei Hongke Qingneng Environmental Protection Equipment Co., Ltd. has rapidly positioned itself as a global spearhead in the design, engineering, and manufacturing of advanced energy conservation and environmental protection equipment. Operating from the industrial core of Sanhe Economic Development Zone, Langfang City, the company integrates world-class thermodynamic research with practical manufacturing scale to deliver skid-mounted and custom engineering systems.
Our core mission revolves around addressing critical gaps in industrial refrigeration, gas extraction, and tail gas cleanup. From design-to-build executions of non-standard pressure vessels to multi-stage environmental purification, Hebei Hongke Qingneng combines highly precise scientific methodologies with cost-effective manufacturing pipelines, positioning the enterprise as one of the High-Quality Leading Compressor-Unit Suppliers & Supplier networks globally.
What sets Hebei Hongke Qingneng apart in the highly competitive global compressor and gas treatment marketplace is our root connection to elite research institutions. Our technological backbone is supported by scientists and engineering experts from Tsinghua University and the Institute of Physics and Chemistry Technology, Chinese Academy of Sciences (CAS).
Through these joint ventures, we have bridged the gap between fundamental thermodynamic science and heavy industrial deployment. Our team has pioneered breakthroughs in the phase change heat transfer characteristics and flow dynamics of mixed working mediums, achieving optimized thermodynamic pathways for mixed refrigerant cycles (MRC). This academic-industrial synthesis is backed by a plethora of proprietary patents, municipal R&D awards, and verified field performance in major national energy corridors.
In the extraction and transport of shale gas, coalbed methane (CBM), and associated natural gas, standard vertical integrations fail to manage remote or scattered wells. Our modular, skid-mounted LNG liquefaction systems solve this challenge through pre-engineered, factory-tested skids that require minimal on-site civil works.
Raw gas must undergo strict deacidification, dehydration, and heavy hydrocarbon removal before entering cryogenic stages to avoid freezing blocks. Our systems deploy specialized amine scrubbing columns for CO2/H2S removal, temperature swing adsorption (TSA) molecular sieves for dehydration, and activated carbon beds for mercury and heavy hydrocarbon capture.
Our liquefaction process utilizes a single-stage mixed refrigerant cycle (SMR) or nitrogen expansion cycle based on project volume. By optimizing the blending ratio of nitrogen, methane, ethylene, propane, and isopentane, our process reduces specific power consumption by 12% to 15% compared to conventional generic suppliers.
Operating out of Hebei allows us to leverage northern China's unparalleled industrial cluster. Our factory maintains close relationships with steel mills, high-grade valve manufacturers, and electrical control system suppliers. This ecosystem ensures:
The technological edge of Hebei Hongke Qingneng is driven by leading scientists in thermodynamics and low-temperature engineering.
Founder & Chairman
General Manager & Senior Engineer
Chief Engineer
Our technology roadmap focuses heavily on reducing greenhouse gases and optimizing helium extraction from natural gas streams. In standard gas recovery, boil-off gases (BOG) from LNG storage tanks are usually re-liquefied or flared. Our proprietary BOG Helium Extraction technology separates helium via cryogenic fractional distillation, adding significant value for petrochemical operators.
Achieved stable industrial operation down to -180°C. Perfected vacuum cold traps operating at -135°C for pharmaceuticals and semiconductor applications.
Rolled out skid-mounted LNG systems capable of processing between 10,000 Nm³/d and 300,000 Nm³/d, lowering engineering costs for remote energy developers.
Integrating advanced membrane separation with low-temperature fractionation columns to extract high-purity (99.999%) helium from boil-off gases.
Our equipment is designed to operate in challenging environments globally:
A glimpse into our manufacturing facilities, assembly processes, and advanced skid testing yards.
Technical answers from our engineering team regarding design, performance, and customization.
High-efficiency purification, desulphurisation, and advanced temperature-controlled process plants.