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Pressure Relief Valve

  • 10% technology for minimum pressure increase up to full lift
  • excellent tightness resulting in lowest possible product losses and reduced environmental pollution
  • set pressure close to opening pressure for optimum pressure maintenance in the system
  • high flow capacity
  • valve pallet is guided inside the housing to protect against harsh weather conditions
  • can be used in explosion hazardous areas
  • sturdy housing design
  • spring-loaded for high set pressures
  • best technology for API tanks

Функция и описание

The ER/V-F type PROTEGO® valve is a highly developed emergency pressure relief valve with high flow capacity. It is primarily used as a device for emergency pressure relief for storage tanks, containers, silos, and process engineering equipment. It offers reliable protection against overpressure and prevents excessive product vapor loss close to the set pressure. It is designed to release particularly large amounts to prevent the vessel from rupturing in an emergency case. The springloading allows for higher set pressures than those with the ER-V-LP, ER/V, or ER/VH.

The device will start to open as soon as the set pressure is reached and only requires 10% overpressure to reach full lift. Continuous investments in and a commitment to research and development have allowed PROTEGO® to develop a low pressure valve which has the same opening characteristic as a high pressure safety relief valve. This “full lift type” technology allows the valve to be set at just 10% below the maximum allowable working pressure of the tank and still safely vent the required mass flow.

Due to the highly developed manufacturing technology, the tank pressure is maintained up to the set pressure with a tightness that is far superior to the conventional standard. This feature is achieved by valve seats made of high-grade steel with an inserted O-ring seal, a precisely lapped valve pallet, and a sturdy housing design. After the excess pressure is released, the valve re-seats and provides a tight seal again.

Таблица параметров

To select the nominal size (DN), use the flow capacity chart on the following page

DN200 / 8"250 / 10" 300 / 12" 350 / 14" 400 / 16" 450 / 18" 500 / 20" 600 / 24" 700 / 28"
a465 / 18.31550 / 21.65650 / 25.59650 / 25.59800 / 31.50800 / 31.501000 / 39.371000 / 39.371200 / 47.24
b860 / 33.86860 / 33.861170 / 46.061170 / 46.061150 / 45.281175 / 46.261430 / 56.301425 / 56.101690 / 66.54
(≤370 mbar)(≤240 mbar)(≤240 mbar)(≤270 mbar)(≤220 mbar)(≤170 mbar)(≤130 mbar)(≤140 mbar)(≤140 mbar)
(≤148 inchW.C.)(≤96 inchW.C.)(≤96 inchW.C.)(≤108 inchW.C.)(≤88 inchW.C.)(≤68 inchW.C.)(≤52 inchW.C.)(≤56 inchW.C.)(≤56 inchW.C.)
b980 / 38.58980 / 38.581490 / 58.661490 / 58.661490 / 58.661515 / 59.651660 / 65.351655 / 65.161910 / 75.20
(>370 mbar)(>240 mbar)(>240 mbar)(>270 mbar)(>220 mbar)(>170 mbar)(>130 mbar)(>140 mbar)(>140 mbar)
(>148 inchW.C.)(≤96 inchW.C.)(≤96 inchW.C.)(≤108 inchW.C.)(≤88 inchW.C.)(≤68 inchW.C.)(≤52 inchW.C.)(≤56 inchW.C.)(≤56 inchW.C.)
размер в мм

Material selection

Design A B
HousingSteelStainless Steel
Valve seatStainless SteelStainless Steel
Valve palletStainless Steel or Steel-Stainless SteelStainless Steel
WeightSteelStainless Steel
Special materials upon request

Вид фланцевого соединения

 EN 1092-1, Форма B1
ASME B16.5 CL 150 R.F.
other types upon request

Модели и спецификация

The valve pallet is spring-loaded. Lower pressures are achieved with the ER-V-LP, ER/V and ER/VH designs.

Pressure valve in basic design


Additional special devices available upon request.


>+60 mbar +500 mbar
>+24 inch W.C. +200 inch W.C.
Higher pressure settings, upon request. Lower pressure settings, see types ER-V-LP, ER/V and ER/VH.

Диаграммы пропускной способности

Диаграммы пропускной способности были определены с помощью калибрированной и сертифицированной объединением технического надзора (TÜV) проточной измерительной установки. Пропускная способность V. в м³/час определена воздухом при нормальных атмосферных условиях в соответствии с ISO 6358 (20°C, 1 бар). Преобразование для различных плотностей и температур см. главу 1: Технические основы