English

English

Get a Quote
Products

Hot Products

Company News

Reflections on the Fire at Russia’s Amur Gas Chemical Complex — Valve Safety Analysis for the Auxiliary Process Section of a Cracking Unit
Reflections on the Fire at Russia’s Amur Gas Chemical Complex — Valve Safety Analysis for the Auxiliary Process Section of a Cracking Unit
2026-08-27

Fact Statement: The fire is still under investigation, and publicly available information has not yet confirmed the exact cause of the accident. Therefore, this article does not analyze the cause of the accident, nor does it attribute the accident to any specific valve, piping component, or equipment. Instead, it focuses on valve safety issues commonly involved in the commissioning of large-scale chemical facilities.   On August 25, 2026, a serious fire occurred at the Amur Gas Chemical Complex (AGCC) in the Amur Region of Russia’s Far East. As of August 26, the accident had resulted in 7 deaths, 152 injuries, and 9 people missing.   According to an official statement from AGCC, the fire occurred in the auxiliary process section of the plant’s pyrolysis unit, while the main project equipment was not damaged. This accident is deeply distressing and once again reminds us that, in natural gas chemical projects, the safety of auxiliary process sections, particularly the reliability of valves, is by no means an “auxiliary” issue.   1. What Is the Auxiliary Process Section of a Cracking Unit?   An ethylene cracking unit is an extremely complex system with highly demanding process requirements. The cracking furnace is the heart of the  unit, where natural gas or naphtha is cracked at temperatures above 800°C into basic chemical feedstocks such as ethylene and propylene.   The Auxiliary Technological Section, although not located at the center of the high-temperature reaction like the cracking furnace, is responsible for providing stable utilities and various auxiliary media for the entire unit, ensuring the continuous and safe operation of the main unit.   The auxiliary process section mainly includes the following seven subsystems:   1. Fuel Gas/Fuel Oil System: This includes fuel gas buffer vessels, knockout drums, fuel oil pumps, strainers, and burners, and is responsible for supplying stable and clean fuel to the cracking furnace. 2. Steam System: The core equipment is the Steam Drum, which generates and distributes the dilution steam, high-pressure steam, and other steam required by the unit. 3. Feedwater and Condensate System: This includes deaerators, boiler feedwater pumps, condensate recovery tanks, and other equipment responsible for supplying and treating qualified water for the steam system. 4. Compression and Refrigeration System: This includes multistage compressors, intercoolers, separators, and refrigeration compressors, which are used to compress and cool cracked gas and provide refrigeration for downstream separation. 5. Drying and Purification System: This mainly consists of molecular sieve dryers used to remove trace moisture from cracked gas and prevent freezing and blockage of downstream equipment at low temperatures. 6. Relief and Flare System: This includes flare knockout drums, flare tips, and other equipment used to safely burn and dispose of com...

Manual, Gear, or Hydraulic Line Blind Valve: Which Operation Type Fits Your Pipeline Shutdown?
Manual, Gear, or Hydraulic Line Blind Valve: Which Operation Type Fits Your Pipeline Shutdown?
2026-08-21

Operation Type Is a Shutdown Decision   A line blind valve is chosen for positive isolation, but the operation type decides how practical that isolation will be during a shutdown. Manual, gear-operated, and hydraulic designs can all move the blind between open and closed positions, yet they do not create the same workload, speed, or safety margin. For shutdown planning, the right question is not only “Can the valve isolate the line?” It is “Can operators switch, verify, lock, and return the valve to service safely within the shutdown window?”   Manual Operation: Simple, but Limited   Manual operation is usually suitable for smaller line blind valves, lower pressure classes, infrequent switching, and sites where operators have clear access around the valve. It keeps the design simple and avoids dependence on hydraulic power units or control systems. The limitation is physical effort. As size, pressure class, seal load, and plate weight increase, manual operation becomes slower and more exposed to human error. If several operators, lifting tools, or extended handling time are needed, the valve may no longer be a good fit for a tight shutdown schedule.   Manual operation is best treated as a low-complexity option for manageable sizes and low switching frequency.   Gear Operation: Better Control for Medium-Duty Shutdowns   A gear-operated blind valve gives operators more mechanical advantage and better control than direct manual operation. It is useful when the valve is too large or stiff for simple manual switching, but the site does not justify a hydraulic system. Gear operation often fits plant shutdowns where isolation is planned, access is available, and switching speed matters but is not the only priority. It can reduce operator strain and make the changeover more predictable.   The buyer should still review gearbox location, handwheel access, operation turns, torque, locking method, and position indication. A gear operator that cannot be reached safely during shutdown is not a good solution, even if the valve design is correct.   Hydraulic Operation: For Large, High-Pressure, or Time-Critical Lines   Hydraulic operation is usually considered when the pipeline isolation valve is large, high-pressure, frequently switched, or located in a difficult operating area. It can reduce manual handling, shorten changeover time, and improve control during planned isolation. This makes hydraulic line blind valves attractive for refineries, gas systems, terminals, high-temperature service, and shutdowns where every hour of downtime has a cost. Hydraulic operation can also support safer distance between personnel and the moving mechanism, depending on the control arrangement.   The tradeoff is system complexity. Hydraulic cylinders, hoses, power units, seals, and controls need inspection and maintenance. Buyers should ask how the valve is operated if hydraulic power is lost, how the pos...

Sliding vs Swing Type Line Blind Valve: How to Choose the Right Design for Pipeline Isolation
Sliding vs Swing Type Line Blind Valve: How to Choose the Right Design for Pipeline Isolation
2026-08-14

Both sliding and swing type line blind valves are used for the same core purpose: positive isolation. In the closed position, a solid blind plate  blocks the pipeline bore, giving operators a visible and mechanical isolation method before maintenance, inspection, shutdown work, or media changeover.   The difference is not whether one can isolate and the other cannot. The real question is how the valve moves, how much space the site has, how often the line must be switched, and how difficult the operation will be under pressure, temperature, and site-access limits.   A sliding type line blind valve moves the blind plate laterally. This design is often useful where side clearance is available but swing clearance is limited. A swing type line blind valve rotates the blind plate into or out of the flow path. It is often selected where fast, clear changeover is needed and the installation area allows the plate to swing.   Selection Factor Sliding Type Line Blind Valve Swing Type Line Blind Valve Structure Blind plate slides sideways between open and closed positions Blind plate rotates or swings between open and closed positions Operation Often gear, hydraulic, pneumatic, or electric assisted for easier plate movement Manual, gear, hydraulic, pneumatic, or electric operation depending on size and class Maintenance Sliding tracks, sealing surfaces, and drive parts should be checked regularly Pivot, locking parts, sealing surfaces, and drive parts need inspection Space Requirement Usually better when swing radius is restricted, but needs side travel space Needs enough swing clearance around the pipeline Suitable Service Frequent switching, compact plant layout, limited swing area Clear operation path, quick changeover, maintenance isolation, oil, gas, steam, or chemical lines   For compact plants, pipe racks, or areas with nearby equipment, sliding type designs may be easier to arrange. Their lateral movement can avoid the large arc required by a swing plate. This is one reason sliding line blinds are often considered when installation space is a serious constraint.   Swing type designs are often preferred when the site has enough clearance and operators want a simple visual change between open and blind positions. For large sizes or higher pressure classes, the operation method becomes important. Gear, hydraulic, pneumatic, or electric operation can reduce manual effort and improve safety.   When choosing between the two, start with the site layout. If the valve cannot physically move through its full travel, the design is wrong no matter how good the specification looks. Then check pressure class, medium, temperature, material, sealing type, switching frequency, and required test standard.   For high-temperature steam, hot oil, gas, toxic media, or flammable service, do not select only by valve type. Confirm body material, blind plate material, seal material, operating torque, ...

Globe Valve
加载中...

1/2" 800LB Forged Steel Globe Valve SW F316/316L API602 Hand Wheel

1/2" 800LB globe valve is made according to API 602 standard. The valve body is made of ASTM A182 F316/F316L+STL. It has the structural characteristics of bolt cover, disc swivel plug, body seat and OS&Y. Its connection mode is SW. And it has hand wheel operation mode.

  • Payment:

    30% when order confirmed, 70% before shipment
  • Product Origin:

    China
  • Color:

    Customization
  • Shipping Port:

    Shanghai, China
  • Lead Time:

    30~60 days Ex Works after order confirmation
  • Material:

    ASTM A182 F316/F316L+STL
  • Method of Operation:

    Hand Wheel
Inquiry now
Product Detail

Product Description

Type

Globe Valve

Size

1/2"

Pressure

800LB

Connection

SW

Operation

Hand Wheel

Body Material

ASTM A182 F316/F316L+STL

Design Norm

API 602

Face to Face Dimensions

Manufacturer's Std.

SW Dimensions

ANSI B16.11

Test & Inspection Code

API STD.598

Temperature

-29 ~ 300°C

Applicable Medium

Water, Oil and Gas

Features

1. Suitable for a wide range of pressure and temperature;

2. Not easy to scratch and wear, with good sealing performance.

Technical Drawing

Dimension Checking

Pressure Testing

Nameplate & Packing

Inspection report

Leave A Message

If you are interested in our products and want to know more details,please leave a message here,we will reply you as soon as we can.

Related Products
Forged Steel ASTM A105 Globe Valve
Forged Steel Globe Valve 1 Inch 800LB Threaded Manual

The 1 inch 800LB female threaded globe valve has plug disc, reduced port and manual handwheel operation. The valve is made of A105N body and trim 5 as per API 602. Quick Detail Type Globe Valve Size 1'' Pressure Class 800 Construction Bolted Bonnet, Reduced Port, Outside Scew & Yoke ConnectionType NPT Female Thread OperationType Handwheel Operated Design Code API 602 End to End Dimension ASME B16.10 Connection ASME B1.20.1 Pressure & Temp ASME B16.34 Test & Inspection API 598 Body Material Forged Steel A105 TrimMaterial 13CR+Stellite Temperature Range -29℃~+427℃ Application Water, Oil, Gas Origin China Product Range 1.Size up to 4 inch 2.Design pressure between 150LB to 2500LB 3.Connection: flange, socket weld, thread 4.Operation: handwheel, gearbox, bare stem, with actuators 5.Body material: carbon steel, stainless steel, alloy steel 6.Trim material: trim 1, 5, 8, 10, 12, 16 and ect. 7.Bolted bonnet, pressure sealed bonnet, welded bonnet, screwed bonnet 8.Reduced bore, full bore Inspection Reports Along with each order, Dervos will provide inspection reports and material test reports free of charge after shipment. All these certificates will let you have a clear picture of inspection process and results. Plus, these reports can be used for traceability. 

Forged Steel Globe Valve
Forged Steel Globe Valve Straight SDNR FNPT

Globe valve with a non-return design, preventing reverse flow when in the open position, also suitable for isolation duty. Manually operated, supplied with a handwheel.

Tee Pattern Globe Valve
DN25 PN250 Tee Pattern Globe Valve Forging Steel API 602

Quick Detail Type Globe Valve DN DN50 PN PN250 Construction Tee Pattern; Bolt Bonnet; Connection Type NPT Operation Type Handwheel Design Code API602 Screw End ASME/ANSI B1.20.1 Test & Inspection API598 Body Material A105+STL Trim Material A276-420 Medium Water, Oil and Gas Origin China   Features -- Globe valves have both good throttling and shutoff capabilities -- Easy to maintain and resurface the seats -- Can be used as a stop-check valve if the disc is not attached to the stem Technical Drawing Dimension Check Witnessing Tests Dervos Packaging Good packing means good first impression. Just imagine how do you feel differently when seeing two boxes below? And you will know the reason why in Dervos we value packaging so much. In Dervos, we make sure- Every valve is clean and dry. -Clean the valve before packing -Add anti-rust oil -Add flange cover   No damage to valves in delivery. -Fix the valve with iron wire -Separate the valve with soft material -Layer the valve with plywood -Strong box and clear shipping mark

Globe Valve
Forged Steel Globe Valve DN15 ASA2500 NPT

With outside screw and yoke, handwheel operation, NPT, the forged steel globe valve is made of A105 and designed as per BS5352.

Globe Valve
11/2" 800LB Forged Steel Globe Valve SW A105 API602

11/2" 800LB globe valve is made according to API602 standard. The valve body is made of A105+STL. It has the structural characteristics of welded bonnet. Its connection mode is SW. And it has hand wheel operation mode.

Globe Valve
3/4" 800LB Forged Steel Globe Valve SW+FNPT A105N API602

3/4" 800LB globe valve is made according to API 602 standard. The valve body is made of A105N+ STL. It has the structural characteristics of plug, disc swivel plug, body seat and OS&Y. Its connection mode is SW+FNPT. And it has hand wheel operation mode.

Globe Valve
DN25 PN63 Forged Steel Globe Valve BS5352 Handwheel A105N SS304

DN25 PN63 globe valve is made according to BS5352 standard. The valve body is made of A105N+SS304. It has the structural characteristics of bolt cover, straight through type. Its connection mode is EN1092-1 D. And it has hand wheel operation mode.

Globe Valve
DN25 PN100 Forged Steel Globe Valve A105N SS304 API602

DN25 PN100 globe valve is made according to API 602 standard. The valve body is made of A105N+SS304. It has the structural characteristics of bolt cover, straight through type. Its connection mode is EN1092-1 D. And it has hand wheel operation mode.

Globe Valve
API602 1/2" 150LB Forged Steel Globe Valve A105N RF Handwheel

1/2" 150LB globe valve is made according to API 602 standard. The valve body is made of ASTM A105N+STL. It has the structural characteristics of pass-through type. Its connection mode is RF. And it has hand wheel operation mode.

Globe Valve
Forged Steel Globe Valve, RF Connection, 1/2'' 150LB, Body A105N, API602

1/2" 150LB globe valve is made according to API 602 standard. The valve body is made of ASTM A105N+STL. It has the structural characteristics of pass-through type. Its connection mode is RF. And it has hand wheel operation mode.

Globe Valve
RF Connection, Forged Steel Globe Valve, 1'' 600LB, Body A105N, API602

1" 600LB globe valve is made according to API 602 standard. The valve body is made of ASTM A105N+STL. It has the structural characteristics of bolt cover, straight through type. Its connection mode is RF. And it has hand wheel operation mode.

Globe Valve
DN25 PN40 Forged Steel Globe Valve, EN1092-1 B Connection, Body F316, BS5352

DN25 PN40 forged steel globe valve is made according to BS 5352 standard. The valve body is made of A182-F316+STL. It has the structural characteristics of bolt cover and straight through type. Its connection mode is EN1092-1 B. And it has hand wheel operation mode.

Leave a message

    If you are interested in our products and want to know more details,please leave a message here,we will reply you as soon as we can.

Home

Products

about

contact