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Supplier: Branch Environmental Solutions
Description: Jet Venturi scrubbers can remove dust and gas simultaneously. Their advantage is the ability to handle high concentrations of gases such as Chlorine or other water soluble gases. In many applications, the Jet Venturi can be used without any additional fan.
- Airflow: 50,008.05 SCFM
- Pollutants Scrubbed: Caustic
- Process Type: Wet
- Filter Type: Wet Spray
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Supplier: Schutte & Koerting
Description: Single-Stage Steam Jet Ejectors are based on the ejector-venturi principle. In operation, steam issuing through an expanding nozzle has its pressure energy converted to velocity energy. A vacuum is created and the high velocity of steam entrains air or gas and the mixture
- Ultimate Operating Vacuum: 710 to 0 torr
- Application: Analytical / Scientific, Chemical / Corrosive Gas, Food Processing, General Purpose / Industrial, Manufacturing Processing, Medical / Laboratory, Packaging, Pharmaceutical / Sanitary, Power Generation, Semiconductor Manufacturing
- Venturi Type: Liquid Eductor / Ejector, Steam Ejector, Venturi Air Jet
- Features: Other
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Supplier: Schutte & Koerting
Description: Single-Nozzle Water Jet Exhauster operates on the jet principle. Motive water is supplied to the exhauster under pressure discharging through spray nozzles in a high-velocity, solid jet. Air or vapors are drawn into the body of the exhauster by the draft-producing
- Application: General Purpose / Industrial, Medical / Laboratory
- Venturi Type: Liquid Eductor / Ejector, Venturi Air Jet
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Supplier: Schutte & Koerting
Description: Multi-Nozzle Water Jet Exhausters are manufactured to provide high air or vapor handling capacities at low operating pressures. Multi-Nozzle Water Jet Exhausters are used to create moderately high vacuums and can only be installed discharging vertically downward.
- Application: General Purpose / Industrial, Medical / Laboratory
- Venturi Type: Liquid Eductor / Ejector, Venturi Air Jet
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Supplier: Schutte & Koerting
Description: enters the heater through the other inlet. An intimate mixing of the slurry and the steam occurs in the venturi throat and the slurry absorbs the heat of the steam. The hot slurry is discharged from the discharge connection for further processing. A regulator in the steam line controls the
- Fuel / Energy Source: Hot Water / Steam
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Dry Vacuum Solutions for Chemical and Pharmaceutical Applications
Throughout the years, many different technologies have been used to provide vacuum for chemical and pharmaceutical processes. Some examples of these include steam jet ejector systems utilizing the venturi effect to draw a vacuum, liquid ring vacuum pumps utilizing water as a sealant, and rotary
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Vapor Jet System: An Alternative Vapor Recovery Method
The Vapor Jet System utilizes produced lease water as the operating medium for a jet pump (also known as a venturi , eductor or ejector ).
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Optimization of oxygen transfer through venturi‐based systems applied to the biological sweetening of biogas
PFV: pump with frequency variator, ET: expansion tank, DIF: diffuser, SV: separation vessel, VE/JVE: venturi ejector / jet -venturi, FI3: water flowmeter, FI1-FI2: gas flowmeters, VL: optical level, DO1-DO2: DO sensors, DT: downflow tube, PTP: pressure transducer and PSV: pressure …
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http://www.wcponline.com/pdf/ResWaterPumps02-03.pdf
Jet pumps draw water from a well by creating a vacuum through the com- bined efforts of the impeller and dif- fuser as well as the jet ejector , which is made up of a nozzle and venturi (see Figure 1).
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http://www.doiserbia.nb.rs/img/doi/0354-9836/2012/0354-98361100059S.pdf
Oceanogr., 35 (1990), 3, pp. 688-696 [24] Vyas, B. D., Kar, S., Standardisation of Water Jet Pumps , Proceedings, Symposium on Jet Pumps and Ejectors , Paper 10, BHRA Fluid Engineering, Cranfield … … Jet Trajectories and Mixing Behaviour of Venturi -Jet Mixer, Journal of …
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Environmental Engineering 5th Edition Complete Document
The water forced down the well passes up through the ejector at high velocity, causing a pressure reduc- tion in the venturi throat, and with it draws up water from the well through the riser or return pipe. A jet pump may be used to raise small quantities of water 90 to 120 ft, but its efficiency is lowered when the lift exceeds 50 ft.
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Construction Dewatering and Groundwater Control: New Methods and Applications 3rd Edition Complete Document
The ejector system therefore requires a significant amount of supply and return piping that is not necessary with the individual residential jet pump arrangement. The ejector itself is simply a nozzle and venturi device arrangement that is used to lift or suck water from a deep well casing, a wellpoint, or even a sump.
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Environmental Engineering: Water Wastewater Soil and Groundwater Treatment and Remediation 6th Edition Complete Document
The water forced down the well passes up through the ejector at high velocity, causing a pressure reduction in the venturi throat, and with it draws up water from the well through the riser or return pipe. A jet pump may be used to raise small quantities of water 90 to 120 feet, but its efficiency is lowered when the lift exceeds 50 feet.
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Industrial Gases
Water - jet pumps rely on entraining and then lowering the pressure of the pumped gas. Ejector or venturi pumps which use gas instead of water, are very similar and exploit the entrainment and venturi principles in a straightforward way.
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Water Wells and Pumps, Second Edition > Propeller, Mixed Flow and Jet Pumps
The principal parts of the jet mechanism are a nozzle and a venturi (Fig. 12.19). At the pump delivery, a portion of the high-pressure water returns through the pressure pipe to activate the nozzle in the ejector .
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Land Development Handbook: Planning, Engineering, and Surveying, Third Edition > WATER DISTRIBUTION
Jet pumps are actually a combination of centrifugal and ejector pumps (see Figure 25.4). A portion of the centrifugal pump discharge is diverted through a nozzle and venturi tube near the water level of the source.
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