分类: Industry Update

KOSUN exclusively manufacture solids control system,drilling mud solids control equipment,Oilfiled Solids Control,oil and gas drilling waste managemen

  • Solids control system main equipment – drilling fluid shale shaker

    In oil and gas drilling engineering, solids control systems are crucial for maintaining the performance of drilling fluids, ensuring drilling safety,
    and controlling the overall cost. As the primary purification treatment equipment of this system, the performance of the shale shaker directly determines
    the working load and overall solid control efficiency of subsequent equipment such as the vacuum degasser, desander, desilter and decanter centrifuge.

    Core Working Principle of Drilling Fluid shale shaker
     
    The separation process of the drilling fluid shale shaker is based on the principle of physical vibration, which rapidly separates the larger drill cuttings
    in the drilling fluid returning from the wellhead. This process mainly relies on the synergy of the following three core links:
     
    Excitation and motion: The core power of the equipment comes from the exciter. After being powered on, the exciter generates a high-speed rotating centrifugal
    force, which is transmitted to the entire screen box, driving the taut screen to produce high-frequency and small-amplitude vibrations. Depending on the design,
    the screen mesh will form motion trajectories such as straight lines, ellipses or circles, to convey solids in the optimal way and promote the passage of liquids through
    the screen.
     
    Screening and separation: The drilling fluid carrying drill cuttings is evenly spread at the front end of the screen. Under intense vibration, the liquid drilling fluid and
    fine solid particles smaller than the screen mesh size rapidly pass through the screen under the action of gravity and inertial force and flow back to the circulating mud
    tank, achieving the initial recovery and utilization of the drilling fluid.
     
    Chip removal and collection: Solid drill cuttings larger than the screen mesh size cannot pass through the screen. Instead, they move continuously forward along the
    screen surface under the conveying effect brought by the screen vibration and are eventually discharged from the chip removal port, achieving effective separation of
    the solid and liquid phases.
     
    Operators can adjust the frequency and amplitude of vibration according to the viscosity and density of the drilling fluid as well as the characteristics of the formation
    cuttings to achieve the best screening effect under specific working conditions.


    The wide application scope of drilling fluid shale shakers
     
    Due to its efficient and reliable primary screening capacity, the drilling fluid shale shaker is an indispensable standard configuration in modern drilling operations.
    Its application scope covers almost all drilling scenarios:
     
    Onshore and offshore drilling: From conventional onshore drilling RIGS to complex offshore drilling platforms, shale shakers are the standard starting units of solids
    control systems, used to handle various water-based and oil-based drilling fluids.
     
    Different well types and depths: Whether in shallow directional Wells, cluster Wells, or in deep Wells, ultra-deep Wells and horizontal Wells with extremely high technical
    requirements, shale shakers all undertake the key task of the first purification. Their stable operation is the foundation for ensuring the cleanliness and safety of the wellbore
    when encountering complex strata during drilling.
     
    Various geological conditions: soft sand layers, sticky mudstone or hard rock layers can produce drill cuttings of different particle sizes and properties. By choosing screens
    of different mesh sizes (hole diameters), shale shakers can flexibly adapt and effectively separate solid particles ranging from millimeter to nearly a hundred micrometers.
     
    Continuous processing while drilling: Unlike the subsequent intermittent processing equipment, the shale shaker can continuously and real-time process the drilling fluid returning
    from the wellhead, ensuring that the quality of the drilling fluid in the circulation system is always under control.

    Continuous Development of Equipment Performance: Enhancement of Efficiency and Reliability
     
    With the development of drilling technology towards high efficiency and environmental protection, the technology of drilling fluid shale shakers is also continuously
    advancing. Industry-leading equipment typically integrates the following proven technical solutions to enhance overall performance:
     
    Balanced vibration force distribution: By optimizing the layout and dynamic design of the exciter, the uniform distribution of the excitation force on the surface of the
    screen is achieved. This helps to improve the screening efficiency, reduce local wear of the screen, and lower the operating noise of the equipment.
     
    Modularization and maintenance convenience: The adoption of modular design components (such as quick-tensioning screen frames and integrated lubrication points)
    makes daily maintenance, screen replacement, and replacement of vulnerable parts more convenient, significantly reducing non-production time.
     
    Adaptive control strategy: Equipped with an adjustable controller, it allows operators to precisely adjust vibration parameters according to actual needs, enabling a device to
    better adapt to different drilling stages ranging from rapid drilling to fine control.
     
    In conclusion, the drilling fluid shale shaker, with its mature physical screening principle, constitutes the cornerstone for the efficient operation of the solids control system.
    Its reliability and adaptability have enabled it to be widely applied in various drilling operations worldwide. Selecting a shale shaker that is scientifically designed, stably
    operated and easily maintained is the primary and crucial step in building an efficient solids control system and ensuring the smooth progress of drilling projects.

     

     
    Given the differences in geological conditions, drilling fluid systems and performance requirements faced by various drilling projects, a single equipment configuration
    often fails to meet the optimal demands of all working conditions. Relying on a mature technical platform, Kosun can provide customers with a variety of configuration
    options for drilling fluid shale shakers, aiming to specifically enhance the processing efficiency and economy in certain operation scenarios.
  • Solids control system main equipment – drilling fluid shale shaker

    In oil and gas drilling engineering, solids control systems are crucial for maintaining the performance of drilling fluids, ensuring drilling safety,
    and controlling the overall cost. As the primary purification treatment equipment of this system, the performance of the shale shaker directly determines
    the working load and overall solid control efficiency of subsequent equipment such as the vacuum degasser, desander, desilter and decanter centrifuge.

    Core Working Principle of Drilling Fluid shale shaker
     
    The separation process of the drilling fluid shale shaker is based on the principle of physical vibration, which rapidly separates the larger drill cuttings
    in the drilling fluid returning from the wellhead. This process mainly relies on the synergy of the following three core links:
     
    Excitation and motion: The core power of the equipment comes from the exciter. After being powered on, the exciter generates a high-speed rotating centrifugal
    force, which is transmitted to the entire screen box, driving the taut screen to produce high-frequency and small-amplitude vibrations. Depending on the design,
    the screen mesh will form motion trajectories such as straight lines, ellipses or circles, to convey solids in the optimal way and promote the passage of liquids through
    the screen.
     
    Screening and separation: The drilling fluid carrying drill cuttings is evenly spread at the front end of the screen. Under intense vibration, the liquid drilling fluid and
    fine solid particles smaller than the screen mesh size rapidly pass through the screen under the action of gravity and inertial force and flow back to the circulating mud
    tank, achieving the initial recovery and utilization of the drilling fluid.
     
    Chip removal and collection: Solid drill cuttings larger than the screen mesh size cannot pass through the screen. Instead, they move continuously forward along the
    screen surface under the conveying effect brought by the screen vibration and are eventually discharged from the chip removal port, achieving effective separation of
    the solid and liquid phases.
     
    Operators can adjust the frequency and amplitude of vibration according to the viscosity and density of the drilling fluid as well as the characteristics of the formation
    cuttings to achieve the best screening effect under specific working conditions.


    The wide application scope of drilling fluid shale shakers
     
    Due to its efficient and reliable primary screening capacity, the drilling fluid shale shaker is an indispensable standard configuration in modern drilling operations.
    Its application scope covers almost all drilling scenarios:
     
    Onshore and offshore drilling: From conventional onshore drilling RIGS to complex offshore drilling platforms, shale shakers are the standard starting units of solids
    control systems, used to handle various water-based and oil-based drilling fluids.
     
    Different well types and depths: Whether in shallow directional Wells, cluster Wells, or in deep Wells, ultra-deep Wells and horizontal Wells with extremely high technical
    requirements, shale shakers all undertake the key task of the first purification. Their stable operation is the foundation for ensuring the cleanliness and safety of the wellbore
    when encountering complex strata during drilling.
     
    Various geological conditions: soft sand layers, sticky mudstone or hard rock layers can produce drill cuttings of different particle sizes and properties. By choosing screens
    of different mesh sizes (hole diameters), shale shakers can flexibly adapt and effectively separate solid particles ranging from millimeter to nearly a hundred micrometers.
     
    Continuous processing while drilling: Unlike the subsequent intermittent processing equipment, the shale shaker can continuously and real-time process the drilling fluid returning
    from the wellhead, ensuring that the quality of the drilling fluid in the circulation system is always under control.

    Continuous Development of Equipment Performance: Enhancement of Efficiency and Reliability
     
    With the development of drilling technology towards high efficiency and environmental protection, the technology of drilling fluid shale shakers is also continuously
    advancing. Industry-leading equipment typically integrates the following proven technical solutions to enhance overall performance:
     
    Balanced vibration force distribution: By optimizing the layout and dynamic design of the exciter, the uniform distribution of the excitation force on the surface of the
    screen is achieved. This helps to improve the screening efficiency, reduce local wear of the screen, and lower the operating noise of the equipment.
     
    Modularization and maintenance convenience: The adoption of modular design components (such as quick-tensioning screen frames and integrated lubrication points)
    makes daily maintenance, screen replacement, and replacement of vulnerable parts more convenient, significantly reducing non-production time.
     
    Adaptive control strategy: Equipped with an adjustable controller, it allows operators to precisely adjust vibration parameters according to actual needs, enabling a device to
    better adapt to different drilling stages ranging from rapid drilling to fine control.
     
    In conclusion, the drilling fluid shale shaker, with its mature physical screening principle, constitutes the cornerstone for the efficient operation of the solids control system.
    Its reliability and adaptability have enabled it to be widely applied in various drilling operations worldwide. Selecting a shale shaker that is scientifically designed, stably
    operated and easily maintained is the primary and crucial step in building an efficient solids control system and ensuring the smooth progress of drilling projects.

     

     
    Given the differences in geological conditions, drilling fluid systems and performance requirements faced by various drilling projects, a single equipment configuration
    often fails to meet the optimal demands of all working conditions. Relying on a mature technical platform, Kosun can provide customers with a variety of configuration
    options for drilling fluid shale shakers, aiming to specifically enhance the processing efficiency and economy in certain operation scenarios.
  • Solids control system main equipment – drilling fluid shale shaker

    In oil and gas drilling engineering, solids control systems are crucial for maintaining the performance of drilling fluids, ensuring drilling safety,
    and controlling the overall cost. As the primary purification treatment equipment of this system, the performance of the shale shaker directly determines
    the working load and overall solid control efficiency of subsequent equipment such as the vacuum degasser, desander, desilter and decanter centrifuge.

    Core Working Principle of Drilling Fluid shale shaker
     
    The separation process of the drilling fluid shale shaker is based on the principle of physical vibration, which rapidly separates the larger drill cuttings
    in the drilling fluid returning from the wellhead. This process mainly relies on the synergy of the following three core links:
     
    Excitation and motion: The core power of the equipment comes from the exciter. After being powered on, the exciter generates a high-speed rotating centrifugal
    force, which is transmitted to the entire screen box, driving the taut screen to produce high-frequency and small-amplitude vibrations. Depending on the design,
    the screen mesh will form motion trajectories such as straight lines, ellipses or circles, to convey solids in the optimal way and promote the passage of liquids through
    the screen.
     
    Screening and separation: The drilling fluid carrying drill cuttings is evenly spread at the front end of the screen. Under intense vibration, the liquid drilling fluid and
    fine solid particles smaller than the screen mesh size rapidly pass through the screen under the action of gravity and inertial force and flow back to the circulating mud
    tank, achieving the initial recovery and utilization of the drilling fluid.
     
    Chip removal and collection: Solid drill cuttings larger than the screen mesh size cannot pass through the screen. Instead, they move continuously forward along the
    screen surface under the conveying effect brought by the screen vibration and are eventually discharged from the chip removal port, achieving effective separation of
    the solid and liquid phases.
     
    Operators can adjust the frequency and amplitude of vibration according to the viscosity and density of the drilling fluid as well as the characteristics of the formation
    cuttings to achieve the best screening effect under specific working conditions.


    The wide application scope of drilling fluid shale shakers
     
    Due to its efficient and reliable primary screening capacity, the drilling fluid shale shaker is an indispensable standard configuration in modern drilling operations.
    Its application scope covers almost all drilling scenarios:
     
    Onshore and offshore drilling: From conventional onshore drilling RIGS to complex offshore drilling platforms, shale shakers are the standard starting units of solids
    control systems, used to handle various water-based and oil-based drilling fluids.
     
    Different well types and depths: Whether in shallow directional Wells, cluster Wells, or in deep Wells, ultra-deep Wells and horizontal Wells with extremely high technical
    requirements, shale shakers all undertake the key task of the first purification. Their stable operation is the foundation for ensuring the cleanliness and safety of the wellbore
    when encountering complex strata during drilling.
     
    Various geological conditions: soft sand layers, sticky mudstone or hard rock layers can produce drill cuttings of different particle sizes and properties. By choosing screens
    of different mesh sizes (hole diameters), shale shakers can flexibly adapt and effectively separate solid particles ranging from millimeter to nearly a hundred micrometers.
     
    Continuous processing while drilling: Unlike the subsequent intermittent processing equipment, the shale shaker can continuously and real-time process the drilling fluid returning
    from the wellhead, ensuring that the quality of the drilling fluid in the circulation system is always under control.

    Continuous Development of Equipment Performance: Enhancement of Efficiency and Reliability
     
    With the development of drilling technology towards high efficiency and environmental protection, the technology of drilling fluid shale shakers is also continuously
    advancing. Industry-leading equipment typically integrates the following proven technical solutions to enhance overall performance:
     
    Balanced vibration force distribution: By optimizing the layout and dynamic design of the exciter, the uniform distribution of the excitation force on the surface of the
    screen is achieved. This helps to improve the screening efficiency, reduce local wear of the screen, and lower the operating noise of the equipment.
     
    Modularization and maintenance convenience: The adoption of modular design components (such as quick-tensioning screen frames and integrated lubrication points)
    makes daily maintenance, screen replacement, and replacement of vulnerable parts more convenient, significantly reducing non-production time.
     
    Adaptive control strategy: Equipped with an adjustable controller, it allows operators to precisely adjust vibration parameters according to actual needs, enabling a device to
    better adapt to different drilling stages ranging from rapid drilling to fine control.
     
    In conclusion, the drilling fluid shale shaker, with its mature physical screening principle, constitutes the cornerstone for the efficient operation of the solids control system.
    Its reliability and adaptability have enabled it to be widely applied in various drilling operations worldwide. Selecting a shale shaker that is scientifically designed, stably
    operated and easily maintained is the primary and crucial step in building an efficient solids control system and ensuring the smooth progress of drilling projects.

     

     
    Given the differences in geological conditions, drilling fluid systems and performance requirements faced by various drilling projects, a single equipment configuration
    often fails to meet the optimal demands of all working conditions. Relying on a mature technical platform, Kosun can provide customers with a variety of configuration
    options for drilling fluid shale shakers, aiming to specifically enhance the processing efficiency and economy in certain operation scenarios.
  • Oil Sludge Treatment Methods

    Oily sludge treatment is an important solid waste generated in the petroleum industry production process and has been included in the National
    Hazardous Waste List (HW08 category).

    The following are several main methods for treating oil sludge and their characteristics

    processing mode Core principle Main applicable scenarios Key advantages Key advantages
    Chemical hot washing method Using hot alkaline water solution and surfactant, oil sludge was cleaned under heating and mechanical stirring to realize oil, water and solid three-phase separation. Landing sludge treatment, high oil content of sludge The oil recovery rate is high, the oil content of residue can be reduced to below 1%, the cost is relatively low, and the operation is relatively simple. The oil recovery rate is high, the oil content of residue can be reduced to below 1%, the cost is relatively low, and the operation is relatively simple.
    Incineration At high temperature (800-850℃), the organic matter in the oil sludge is oxidized and decomposed, so as to achieve maximum reduction and harmlessness. Various types of sludge are especially suitable for situations where other methods are difficult to treat or require complete harmlessness. Thorough treatment, remarkable volume reduction effect, and effective destruction of toxic and harmful substances. The equipment investment and operation cost are high, and the energy consumption is high, and the secondary waste gas may be generated, which should be strictly controlled.
    bio treatment method Using specific microorganisms to degrade petroleum hydrocarbons in oil sludge and convert them into harmless carbon dioxide and water. Sludge with relatively low oil content and not in a hurry to be treated, or as a means of advanced treatment. Low operation cost, environmental friendliness and no secondary pollution. The treatment period is long (several weeks to several months), and the efficiency is greatly affected by environmental factors such as climate and temperature, which requires high-efficiency degradation strain screening.
    Solvent extraction method Based on the principle of "similar miscibility", organic solvents were selected to extract and recover crude oil from oil sludge. Oil sludge with complex composition, high oil content and high recycling value The oil is completely recovered and the treatment effect is good. Extractants are expensive, costly and complex, and have not been applied in large-scale industrialization.
    Pyrolysis method Heating the sludge to a certain temperature under oxygen-free or anaerobic conditions, so that hydrocarbons and organic substances are thermally desorbed and condensed for recovery. All kinds of sludge are a new harmless treatment technology. The reaction conditions are milder than incineration, which can realize the recycling of hydrocarbon resources. The reaction conditions are demanding, the operation is complicated and the equipment investment is large.
    Curing/stabilization method Mixing sludge with curing agent (such as cement, lime, etc.) wraps harmful substances in the curing body to reduce its mobility and toxicity. Oil sludge with low oil content and high sediment content, or the treated residue is finally disposed of. The process is relatively simple and can effectively prevent the leakage of harmful substances. Oil can't be recovered, and the capacity is large, so long-term stability needs attention.
    Conditioning-mechanical dehydration By adding chemical agents such as flocculants and demulsifiers, the stable emulsified state of oil sludge is destroyed, and then dewatering and weight reduction are carried out by centrifuges, belt filter presses and other equipment. It is often used as a pretreatment step of sludge to reduce the load for subsequent treatment (such as incineration and landfill). It can effectively reduce the water content and volume of oil sludge and create conditions for subsequent treatment. It can effectively reduce the water content and volume of oil sludge and create conditions for subsequent treatment.
     
     
     

     

    How to choose the handling method
     
    When choosing an oil sludge treatment method, the following points need to be comprehensively considered:
    Sludge characteristics: including oil content, moisture content, oil quality, solid particle size and heavy metal content, etc.
    Processing requirements: It is necessary to clearly define whether the goal is resource recovery, harmless treatment or reduction, and
    understand the requirements of local environmental protection regulations for indicators such as the oil content of the treated residue
    (for example, many standards in China require that the oil content of the treated residue be ≤2%).
    Economy and scale: Evaluate investment costs, operating expenses and processing scale. Chemical hot washing and biological methods
    have relatively low operating costs, while incineration and pyrolysis require larger investments.
    Final disposal approach: Consider the destination of the treated products (such as recovered oil and residue), whether it is for recycling,
    landfill or resource utilization (such as brick-making and road paving).

     
    Technological development trends
     
    A notable trend in current oil sludge treatment is the combined application of multiple technologies to make up for the deficiencies of a single
    technology.
    For example:
    Hot washing + biological treatment: First, the majority of the oil content is rapidly reduced through hot washing, and then the residual petroleum
    hydrocarbons are deeply degraded by biological methods.
    Hot washing + profile control: The treated oil sludge is used as a conditioning agent in oilfield injection Wells to seal the high-permeability layer,
    increase the oil recovery rate, and achieve "waste treatment with waste".

     
    In the future,  waste oil sludge treatment technology is moving towards the direction of low cost, high efficiency, resource utilization, and green low-carbon, with a greater emphasis on the recycling and utilization of resources and the environmental benefits of the entire treatment process.
  • How should the desander and desilter in the mud circulation system be reasonably combined and used

     
    Domestic large-scale slurry circulation system manufacturing enterprises generally have the ability to design and produce cyclone desanders and slurry desilters (collectively referred to as solid control cyclones). The core performance index of the solid control cyclone is the separation particle size, which is usually represented by D50. The lower the D50 value, the better the separation effect. In terms of quality, the wear resistance of the cyclone is of vital importance. Currently, mainstream products mostly use polyurethane or high-chromium cast iron materials to ensure a longer service life.

     

    When configuring desanders and desilters, it is necessary to pay attention to the fact that the particle separation ranges of the two should not only maintain a certain interval but also have some overlap to achieve graded treatment. According to industry standards, cyclones with a separation particle size ranging from 74 to 44μm are classified as desanders, while those with a separation particle size ranging from 44 to 15μm are categorized as desilters. However, in practical applications, many on-site desanders and desilters have particle sizes close to each other (for example, the desander has a particle size of 20-50 μm, and the desilter has a particle size of 45-15 μm), which results in the latter being unable to effectively remove finer solid particles when the drilling fluid treated by the desander re-enters the desilter. This issue mainly stems from the fact that the manufacturing processes of some domestic cyclones have not yet fully met the requirements of drilling techniques. As a result, many users tend to replace the standard configuration of "one for sand removal and one for mud removal" with two desanders.
    Some users simply install a second desander at the original desilter station without adjusting the process flow. This approach is not scientific. If the performance parameters of the two devices are the same, a more reasonable approach should be to set them as parallel processes, which can not only serve as backups for each other but also work in coordination during the rapid drilling stage to increase the processing capacity. However, for well types with high requirements for drilling fluid performance, it is still recommended to adopt the series process of "one desander + one desilter" to ensure the solid control effect.
     

     

    Therefore, when choosing a desander and a desilter, models with significant differences in the range of separated particle sizes should be given priority. For instance, the desander covers 40-60 μm, while the desilter is responsible for 15-45 μm. This not only avoids the redundancy of equipment efficiency caused by overlapping processing zones but also achieves a better particle removal effect.
    The commonly used solid control equipment mainly includes three categories: drilling fluid vibrating screens, cyclone separators and drilling fluid sedimentation centrifuges. Among them, the cyclone separator can be further classified into desander, desilter and slurry cleaner. Drilling fluid centrifuges can be classified into screen-equipped drum centrifuges and sedimentation centrifuges based on structural differences. The former is typically used to recover the weighting materials in drilling fluid.
  • Mud gun: Solve the problem of drilling mud system in oilfield

    Mud gun: Solve the problem of drilling mud system in oilfield
    In oil field drilling operations, mud systems play a critical role in delivering drilling fluid (mud) to the bottom of the well, maintaining wellbore stability, cooling the bit, reducing friction between the bit and the hole, and carrying cuttings from the bottom hole to the surface. High mud system… Operation is critical to the smooth running of drilling operations. However, mud systems often accumulate a large amount of mud residue after a long period of operation, resulting in reduced operating efficiency and damage to bottom hole stability. In order to solve this problem, the mud gun-mud tank cleaning equipment came into being and became a helpful assistant in oil drilling operations.

     

     
    1. Working principle of the device
     
    Mud gun-mud tank cleaning equipment uses the principle of high-pressure water flow and mechanical rotation to quickly wash and remove residual mud, cuttings and solid particles from the mud system. Through the impact of high-pressure water flow, the equipment can quickly wash the mud residue attached to the wall of the mud tank, improve the cleanliness of the mud system, and maintain the high quality of the system. Operation.
     
    2. Device features
     
    High… Cleaning: The equipment adopts a combination of high pressure water flow and mechanical rotation, which can… Clean mud tank, mud gun and other equipment, keep the system clean.
     
    Water conservation: equipment adopts high-pressure water flow technology, nozzle design fine… Can maintain the cleaning effect at the same time… Maximize the conservation of water resources.
     
    Easy to operate: The equipment is compact and easy to operate, and only the operator can click the button to complete the cleaning task and improve the working efficiency.
     
    Strong adaptability: The equipment can be customized according to the needs of different mud systems, to adapt to different specifications, models of mud tanks and mud guns.
     
    3. Application scope
     
    Mud gun-mud tank cleaning equipment is widely used in oil drilling operations, which can not only improve the cleanliness of the mud system, extend the service life of the equipment, but also reduce the maintenance cost and improve the operation efficiency. The equipment is also suitable for other industrial areas where cleaning mud systems are required, such as mines, construction, etc.
     
    Conclusion
     
    The emergence of mud gun – mud tank cleaning equipment has brought a new solution for oilfield drilling operations. Its features of efficient cleaning, water saving and easy operation make the maintenance of the mud system more convenient and efficient. In the growing oilfield drilling industry, this equipment provides reliable technical support for improving operational efficiency and ensuring operational safety.
  • Kosun cuttings dewatering machine: Efficiently recovers drilling mud and significantly reduces losses

     
    The cuttings spin dryer (also known as the continuous screen centrifuge) is a highly efficient solid-liquid separation device, featuring an automatic feeding control function, and is widely used in the treatment of drill cuttings during drilling operations. This equipment effectively separates the liquid components contained in drill cuttings by applying high-intensity centrifugal force, thereby achieving a high recovery rate of drilling fluid, improving resource utilization, and reducing environmental impact.

     

     
    The Kosun cuttings spin dryer system can reintroduce the recovered high-value drilling fluid into the in-use mud system, significantly reducing the cost of drilling fluid procurement. Especially in handling oil-based mud, it performs exceptionally well, significantly reducing the total amount of on-site waste and lowering subsequent disposal costs, which meets the requirements of modern drilling clean production and sustainable development.
     
     
    Product advantages
    Significantly reduce solid-phase emissions: The efficient separation technology greatly reduces the generation of solid waste, alleviating the pressure of environmental emissions.
     
    Liquid phase recovery and reuse: The separated liquid phase can be directly returned to the drilling solid control system for recycling, enhancing the efficiency of resource utilization.
     
    Comprehensive cost reduction: By recovering drilling fluid and reducing the amount of waste disposal, effectively control the costs of drilling fluid procurement and waste treatment.
     
    Support "No mud on the ground" : Help achieve the environmental protection operation goal of fully controllable, recyclable and scattered mud on the drilling site.

     

    The Kosun cuttings spin dryer, with its stable performance and outstanding processing effect, has become an indispensable environmental protection and energy-saving equipment in the oil drilling industry, providing reliable technical support for enterprises to achieve a dual improvement in economic benefits and environmental responsibility.
     
  • SOLID CONTROL EQUIPMENT:drilling fluid mud cleaner

    KOSUN drilling fluid mud cleaner is a drilling fluid solid control equipment that combines desander, desilter, and shale shaker. The mud cleaner has a compact structure, occupies a small space, and has powerful functions. It is an ideal choice for second and third-stage solid control in drilling mud and is highly popular in the drilling market. Currently, the best-selling model is MD210, which has a processing capacity of 240m³/h. It is equipped with two desanders hydrocyclone, 10-12 desilters hydrocyclone, and requires a 55kw sand pump to provide power. Other special requirements can be customized according to needs.
     

     
     
    Tags: drilling fluid mud cleaner, solid control equipment, for sale, manufacturer
     
  • KOSUN DC Series Decanter Centrifuge – Efficient Solid-Liquid Separation for Industrial Applications

    The KOSUN DC Series Decanter Centrifuge is a high-performance separation solution designed for industries requiring efficient solid-liquid separation. Engineered with advanced technology, this decanter centrifuge ensures optimal performance in drilling waste management, wastewater treatment, oilfield operations, and more.

    With robust construction, high-speed rotation, and customizable configurations, the KOSUN DC Series delivers superior dewatering and clarification, reducing environmental impact while maximizing productivity.
     

    Key Features of KOSUN DC Series Decanter Centrifuge

    1. High-Efficiency Separation

    The DC Series utilizes centrifugal force to separate solids from liquids with precision. Its high rotational speed ensures maximum separation efficiency, making it ideal for handling sludge, drilling cuttings, and industrial slurries.

    2. Robust and Durable Design

    Built with high-quality materials, the KOSUN decanter centrifuge withstands harsh operating conditions, including corrosive environments and high temperatures. Its wear-resistant components ensure long service life with minimal maintenance.

    3. Customizable Configurations

    The DC Series offers adjustable parameters such as bowl speed, differential speed, and weir plate settings, allowing operators to optimize performance based on specific application requirements.

    4. Energy-Efficient Operation

    Designed for low power consumption, the KOSUN DC Series reduces operational costs while maintaining high processing capacity. Its advanced control system ensures smooth and stable operation.

    5. Easy Maintenance and Automation

    With a user-friendly design, the decanter centrifuge allows for quick disassembly and cleaning. Optional automation features enable real-time monitoring and adjustments, enhancing operational efficiency.

     

    Applications of KOSUN DC Series Decanter Centrifuge

    • Oil & Gas: Drilling waste management, oil sludge treatment, and cuttings processing.

    • Wastewater Treatment: Municipal and industrial sludge dewatering.

    • Chemical & Pharmaceutical: Separation of fine particles and liquid clarification.

    • Food & Beverage: Processing waste and byproduct separation.

    • Mining & Minerals: Tailings dewatering and mineral recovery.
       

    Why Choose KOSUN DC Series Decanter Centrifuge?

    • Proven Performance: Trusted by global industries for reliable solid-liquid separation.

    • Cost-Effective: Reduces disposal costs and improves recycling efficiency.

    • Environmentally Friendly: Minimizes waste volume and supports sustainable operations.

    • Expert Support: KOSUN provides comprehensive technical support and after-sales service.

     

    The KOSUN DC Series Decanter Centrifuge is a top-tier solution for industries seeking efficient, durable, and customizable separation technology. Whether for oilfield operations, wastewater treatment, or industrial processing, this centrifuge delivers unmatched performance and cost savings.

    Contact KOSUN today to learn more about how the DC Series Decanter Centrifuge can enhance your operations!
     

    Target Keywords:

    • KOSUN DC Series Decanter Centrifuge

    • Decanter centrifuge for solid-liquid separation

    • Industrial sludge dewatering centrifuge

    • Oilfield drilling waste management

    • High-efficiency decanter centrifuge

     

  • Harmless treatment of shale gas oil-based mud

    During the development of shale gas, horizontal drilling operations generate a large amount of waste oil-based mud. If this type of slurry is discharged directly without proper treatment, it will not only cause serious pollution to the natural environment such as soil and water bodies, but also lead to a large waste of oil resources. At present, the centrifugation-distillation treatment technology initially applied in engineering still has problems such as high operating costs and low treatment efficiency. Therefore, Kosun Machinery is actively committed to developing efficient, economical and environmentally friendly processes for the treatment and resource recovery of waste oil-based mud, providing key technical support for promoting the large-scale green development of shale gas.

     
    In response to the current industry pain points of inconsistent methods for determining the oil content of waste oil-based mud and significant data differences, Kosun Machinery has established a scientific and reliable component analysis method for waste oil-based mud through systematic comparison and experimental research, covering key indicators such as oil content, water content, solid content, organic matter content and density. Based on this, the company focused on the research and development and evaluation of three treatment and recovery processes: sonochemical demulsification – centrifugal separation, centrifugation – low-temperature thermal distillation, and centrifugation – vacuum thermal distillation, and systematically analyzed their treatment efficiency and economic benefits under laboratory conditions.

     

     
    Drawing on advanced treatment experiences both at home and abroad, Kosun Machinery has further improved the full-component analysis system for waste oil-based mud and developed corresponding treatment equipment. After actual processing and verification, the oil content of the oil-based waste treated by Kosun equipment is significantly lower than the limit values stipulated in the "Emission Standard of Pollutants for Onshore Petroleum and Natural Gas Extraction Industry (Draft for Comment)" of China – that is, the oil content for landfill in ponds is less than 3%, and the oil content for land disposal is less than 1%, fully meeting the environmental protection emission requirements.

     

    The treatment solution provided by Kosun Machinery not only realizes the harmless treatment of waste oil-based mud, but also achieves the efficient recovery and reuse of oil resources, with significant environmental and economic benefits. We sincerely welcome both new and old customers to consult technical solutions and exchange process experiences, and jointly contribute to the sustainable and green development of the shale gas industry.