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Contact Number:0716-8316033
Email:clkjxs@cnclkj.com
Mobile:18672122616
Address: No. 8, Weiwu Road, Development Zone, Jingzhou City, Hubei Province
Electromagnetic pyrolysis equipment for oily solid waste
Our company has formed a complete technical system for the electromagnetic thermal desorption treatment of oil-containing and hydrocarbon solid pollutants.
Oil-containing solid waste sludge drying equipment
The sludge drying system consists of a sludge drying skid and a heat transfer oil circulation skid
Skid-mounted produced water injection treatment system
The device consists of 6 parts, forming an independent and complete system: Coagulation degasser Fine filter Dual media filter Post-filtration water tank High-pressure water injection system Chemical preparation system
Production of hydropower electrochemical COD degradation technology
Electrochemical COD degradation technology for hydropower production is an environmentally friendly wastewater treatment technology. Its basic principle is to degrade certain macromolecules in water through electrochemical action, producing uniform, tiny bubbles. The process involves both electrochemical degradation and electroflotation.
Using oilfield produced water to quickly disperse and dissolve the polymer (dry powder) allows it to meet the polymer stock solution injection index requirements within 10 minutes, and the polymer solution viscosity retention rate is ≥90%.
Multifunctional oilfield wastewater treatment experimental and evaluation device
This device can be used for indoor research on processing technologies. It consists of multiple processing unit modules and can handle various waste liquids, including offshore waste water-based drilling fluids, completion return fluids, workover return fluids, and oilfield produced wastewater.
Experimental and evaluation device for thermal desorption of oily solid waste
Process principle: Under anoxic conditions, when oil-containing sludge is heated, water and organic matter evaporate to form a mixed gas of water vapor and organic vapor, thus separating from the solid phase. The mixed gas is condensed to form condensate and non-condensable gas, resulting in three products: desorption residue, condensate, and non-condensable gas. The non-condensable gas is then treated by oxidation and adsorption before being discharged to meet the standards. If the thermal reaction temperature exceeds the decomposition temperature of the organic matter, thermal cracking reaction will occur. Other chemical reactions such as thermal condensation and reforming may also occur simultaneously.
Oil and water treatment simulation system
This device is a full-process simulation device based on the processing flow and principles of offshore oilfield produced fluid treatment. Its purpose is to overcome the shortcomings of existing oil and gas water treatment agents, such as the single means of on-site selection, evaluation methods and means that deviate from actual production, and the inability to accurately control and evaluate the treatment effect of the agents.
Dynamic simulation system for wastewater treatment
This system simulates the process of treating produced water from offshore platforms to the maximum extent. It independently integrates technologies such as crude oil emulsification, inclined plate oil removal, electrostatic dehydration, hydrocyclone, dual-media filtration, dissolved air flotation, coagulation sedimentation and free settling separation, and membrane separation into separate units. Users can freely combine these units according to their wastewater treatment requirements to form a specific wastewater treatment process. Combined with existing high-definition microscopic dynamic imaging equipment, the system dynamically captures microscopic or mesoscopic particles, allowing for micro-, meso-, and macro-scale evaluations. This approach helps explore the mechanisms and laws governing the separation process, enhancing the reliability of research results and broadening and deepening the research process.