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Integrated Dehydration and Dehydrocarbonation Skid
Overview

Integrated dehydration and dehydrocarbonation skid employs Laval jet nozzle cyclonic separation corepatented new technology, integrating refrigeration, separation, and compression functions, greatly simplifyingthe process. All eguipment is highly integrated into a single sled, achieving natural gas treatment at thewellhead to meet GB17820-2018 gas quality standards. The integrated skid adopts patented core new technology of Laval nozzle cyclonic separation, integrating threefunctions of refrigeration, separation, and compression, greatly simplifying the process. All equipment is highlyintegrated into a single skid, achieving natural gas treatment at the wellhead to meet GB17820-2018 gas qualitystandards.

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Wellhead Pressure:
For pipeline transmission mode: The minimum pressure requirement is that the pressure difference betweenwellhead pressure and transmission pressure should be 24 MPa, if the pressure difference is less than 4 MPa,boosting is required,The maximum wellhead natural gas pressure is 70 Mpa.For CNG filing mode: The minimum wellhead pressure should be >2 MPa. lf the wellhead pressure is less than 25MPa, boosting is required. The maximum wellhead natural gas pressure is 70 Mpa.

Wellhead natural gas sulfur content<20 mg/m³,: carbon dioxide content ≤ 3%.

Separator Skid Dimension:10m*3m*2.8m
Heater Skid Dimension:1.2m*0.7m*1.2m
Minimum dew point: ≤-10°C
Processing Capacity: 2-50*104m³/d
Maximum Liquid Discharge: 160 m³/d
Maximum Desanding Capacity (0.1mm): 100 kg/d
· High integration and small footprint: greatly simplifies the process, occupying an area equivalent to 1/3 of thetraditionalrecovery process.

· Short construction period, easy relocation and easy installation and can be put into operation in as soon as 7days.

· Low investment and few effect to to the environment: Simple process and equipment without waste liquiddischarge.

· High degree of automation and low labor intensity: The control system tightly connects with field instrumentsOnly a small number of maintenance personnel are required.

· High efficiency: There is no energy loss, achieving higher refrigeration efficiency compared to refrigerationequipment such as "j-T valve" Daily processing capacity can reach 2-50*104Nm3.

· Low energy consumption and low operating costs: fully utilize the residual pressure energy of wellheadnatural gas as power for refrigeration, dehydration, and dehydrocarbonation. The power consumption of theexport-oriented integrated skid is only 8KW.

· High standardization and high reuse rate: The equipment has been standardized and can be reused indifferent well sites, with very high utilization rates.

· High safety: The combustion system is located externally, ensuring a safe distance, with no moving parts.
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