SOL2B1 Allicdata Electronics
Allicdata Part #:

725-1824-ND

Manufacturer Part#:

SOL2B1

Price: $ 64.43
Product Category:

Industrial Controls

Manufacturer: Cynergy 3
Short Description: VALVE SOLENOID 1/2" BSP NC 24VDC
More Detail: 2/2 Normally Closed, One-Way Solenoid Valve Free ...
DataSheet: SOL2B1 datasheetSOL2B1 Datasheet/PDF
Quantity: 2
1 +: $ 58.57110
10 +: $ 55.48600
50 +: $ 49.32080
100 +: $ 46.23830
Stock 2Can Ship Immediately
$ 64.43
Specifications
Series: SOL
Part Status: Active
Type: Solenoid Valve
Function: 2/2 Normally Closed, One-Way
Actuator Type: --
Operating Pressure: 1 ~ 218 PSI (0.1 ~ 15 bar)
Orifice Diameter: --
Fluid Type: Inert Gas, Liquid
Connection Method: Threaded 1/2" BSP
For Use With/Related Products: --
Mounting Type: Free Hanging (In-Line)
Features: Supply Voltage 24VDC
Ingress Protection: IP65 - Dust Tight, Water Resistant
Operating Temperature: -20°C ~ 90°C
Mechanical Life: --
Approvals: CE
Description

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Pneumatics and hydraulics are two branches of fluid power technology. Through the use of pressurized fluids, pneumatics and hydraulics provide solutions to many challenging engineering problems. SOL2B1, or Selective Oxygen Leaching of Borates, is an innovative application field and working principle of pneumatics and hydraulics. This technique, along with its associated hardware and software, is used to mine and recover borate ore from low phosphate concentrations, allowing borate reserves to be accessed that would not otherwise be possible.

SOL2B1 stands for Selective Oxygen Leaching of Borates and is a method of extracting borate ore from phosphate-rich ores, rocks, and clay. In the process, pressurized compressed air is used to introduce oxygen molecules into the phosphate-rich ore, resulting in a reaction that releases borate ore from its phosphate bonds. This process is further assisted by the introduction of a stabilizing agent, such as ammonium hydroxide, which helps to prevent the release of the borate ore in an uncontrolled manner.

The SOL2B1 process is a two-phase operation, consisting of an initial stage of oxygen injection and a second phase of ore extraction. During the oxygen injection phase, a high-pressure nozzle injects oxygen into the ore at an optimal rate to ensure maximum extraction efficiency. During this phase, the pressure of the nozzle is carefully controlled to preserve the integrity of the ore while ensuring maximum extraction. Once the pressure is sufficient, the ore is quickly injected with oxygen before allowing the pressure to drop back to atmospheric pressure.

In the second phase of the SOL2B1 process, ore extraction, pressurized air is again used to force the desired phosphate-rich ore out of the ore body. This is done by first creating a vacuum, which separates the air in the flooded mining area into low-pressure and high-pressure zones. The low-pressure zone, or \'void\', is then used to draw out the phosphate-rich ore while leaving the non-desired material behind. The drawn out ore is then separated using gravity-fed magnetic separators before being processed further.

The SOL2B1 method of mining and recovering borate ore has been found to be an efficient and cost effective solution for mining companies that operate in phosphate-rich ores, rocks, and clays. This technique has allowed companies to tap into borate reserves that would not otherwise be economically feasible to extract. In addition, the process is fast, reliable, and energy-efficient, making it a viable option in today\'s highly competitive mining industry.

In conclusion, SOL2B1 is a process field and working principle of pneumatics and hydraulics that is used to mine and recover borate ore from low phosphate concentrations. The process enables companies to access borate reserves that would not be cost effective to extract with other methods, while also being energy-efficient and fast. The process is composed of two stages, oxygen injection and ore extraction, which are accomplished using pressurized air and additional processes such as gravity-fed magnetic separators. SOL2B1 is an efficient and cost effective solution for companies that are mining borate ore from low phosphate concentrations.

The specific data is subject to PDF, and the above content is for reference

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