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FIG 515
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Features—
• Available in
2", 3" and 4" versions.
• 2" and 3" versions
are ULC Listed
• Lid and container
constructed of 12 Ga. (.105) steel
• 22½ wide x
24" deep—Container height 24½
• 15 gallon capacity
• Powder coated
white
• Weather-tight
enclosure
• Container continuously
vents to prevent buildup of vapors and
internal pressure
• 1" NPT drain
with locking ball valve
• Single column
base—adjustable height 28"–40"
• Base plate
with four ½" mounting holes. Custom order for a post
hole mount or box only
• Lockable lid
• Container can
hold up to two 2" or 3" Morrison swing check valves,
ball valves, quick couplers and dust caps
• Choice of one
or two fill ports in 2", 3" or a combination
• 2" bung for
pump
• Gasspring cylinder
holds lid open during use
• A top mount Figure 515OEM without a pedestal is also available.
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The Fig. 516 contains any spills that occur at the fill point on Aboveground Storage Tanks. It is designed to
be mounted on top of the AST. The 5 gallon Fig. 516 has a lockable hinged cover. It is of steel construction and powdercoated
white inside and out. It has an optional push type drain with a fluoroelastomer o-ring.
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These Spill Containers are made to contain any spills that may occur at the fill point on Aboveground Storage
Tanks. They can be installed before a tank test. The Fig. 517 has a hinged cover that is lockable with a #3 Masterlock. It
is of steel construction and powder coated white inside and out. The Fig. 518 Spill Container has a hinged cover that is lockable
with a #1 Masterlock. It has a push type drain with a fluoroelastomer oring. It is of steel construction and powder coated
white inside and out.
517/518 Spill Containers are ULC Listed
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The Morrison Fig. 818 Clock Gauge is used for measuring liquid level in aboveground storage tanks. Readout format is
on a standard 12 hour clock face. Small hand represents feet and the large hand inches.Gauge can be read up to 20-30 ft. away
to within 1/8”.Maximum measurement capability is 12 feet. The gauge can be rotated 360 degrees after mounting.
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Utilizes the Fig. 818 style Clock Gauge with a built-in high level warning alarm.
Contains a battery powered, intrinsically safe, alarm unit that is mounted remote from gauge. Alarm is set for desired level
during installation and can be reset at any time for a change in alarm level requirements.
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The 918 TCP provides an audible alarm for either a high or low level warning. The
system incorporates an alarm box and a single-point level sensor. The alarm box is UL Listed. The alarm box is a weatherproof, intrinsically safe, 90 decibel alarm that operates on two 9-volt batteries.
It features a membrane-type test/cancel button.The single point level sensor
is designed for tanks up to 35’ tall. This rugged sensor is immersed in the tank through a 2" NPT female opening and
is supported by a nylon liquid tight fitting, Teflon tubing and wire. The float and weight are stainless steel, making it
ideal for almost any petroleum tank application.
The order length should be equal to the distance from the top of
the 2" tank opening to the desired activation level.
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The Fig. 1018 Mechanical
AST Gauge is designed for use on aboveground storage tanks. This quality gauge provides a convenient and economical solution
to inventory management needs. The standard gauge unit can be calibrated for tanks up to 35 ft. in height, eliminating costly
custom probe lengths used in other gauging systems.
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Used for measuring
liquid level in aboveground storage tanks. Best suited for vertical tanks over 12 ft high. Gauge readout by tape which passes
over an indicator mounted at 3 ft height on the side of the tank. Activated mechanically by a float that rests on the liquid
level. Float is connected to a cable that runs up through the top of the tank, across two pulleys, and down the side of the
tank to the indicator position.
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and Overfill Alarm—FIG 1018
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System Features
• Monitors 1 to 4 aboveground storage tanks per console. Each gauge can be located up to 1000 ft. from
the console.
• Can measure tanks up to 35 ft. in height, including vertical or horizontal cylindrical tanks and rectangular
tanks. Accurate to 0.1”.
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Emergency Vent (pressure relief only) used on aboveground storage
tanks, as a code requirement, to help prevent the tank from becoming over-pressurized and rupturing if exposed to fire. Series
also contains flanged adaptor, companion flange, and pipe nipple fittings.
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The Fig. 749 Vent valve is used on underground & low volume aboveground tanks for motor fueling. The vent
allows the tank to “breathe” during filling/dispensing operations. Poppets seal vapors in the tank when pressure
is equalized. Settings are approximate. Fig. 749CRB0500 and 749CRBS500 offer C.A.R.B. approval for Stage I vapor recovery
systems. Fig. 749CRB0600 and 749CRBS600 offer C.A.R.B. approval for Stage I & II vapor recovery systems.
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For normal venting of aboveground storage tanks. Allows tank
to "breathe" during filing and withdrawing operations. Pressure/vacuum poppets seal vapors in the tank when pressure is equalized.
This vent must be used in conjunction with an emergency vent and it is recommended that the opening pressure setting is set
below that of the emergency vent so the normal vent relieves first.
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For normal venting of aboveground storage tanks. Allows tank
to "breathe" during filing and withdrawing operations. Pressure/vacuum poppets seal vapors in the tank when pressure is equalized.
This vent must be used in conjunction with an emergency vent and it is recommended that the opening pressure setting is set
below that of the emergency vent so the normal vent relieves first.
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The Morrison Combination Vent/Overfill Alarm alerts you when your tank is near full while also
allowing your tank to breathe during filling and dispensing operations.
Features:
• Fully mechanical.
No wires or batteries needed.
• High
intensity audible alarm which can be set to activate at 90% full.
• 2" full port
pressure/vacuum vent.
• For use on
new and existing AST's.
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The aluminum T-style vent is used primarily on fuel oil storage tanks. The T-style vent has outlet ports on
either side of the inlet that have 20 mesh stainless steel screens that keep debris out of the airway.
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“Open” vent used on underground and aboveground tanks for motor fueling. Vent allows tank to “breathe”
during filling & dispensing operations.
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Used in conjunction with a "normal" vent on aboveground storage
tanks. Open (non-pressure type) flame arrester to help prevent the transmission of heat and/or an ignition source into the
tank.
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Installed at the fill port of an aboveground storage tank
(top loading). Shuts off the flow of product when the liquid level reaches a preset warning level (90 - 95% full).
The Morrison 9095A Series is now approved with the City of New York
Fire Department (Approval #5028).
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AST Overfill Prevention Valve Test Mechanism
FIG 9095ATM
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The new test mechanism option for the 9095A allows a technician to verify
that the valve is functioning properly without having to climb on the tank or uninstall the valve. As a part of an ongoing
tank maintenance program, one can verify the valve is working properly by pulling on the test line at any time during the
filling process to actuate the float and stop the fill.
This added capability will increase safety by eliminating the
risk of climbing on the tank to test the valve. It is also a quick and simple way to ensure that the Morrison Overfill Prevention
Valve is working correctly.
The mechanism can be used for both direct and remote fill applications.
The
test mechanism is sold separately as an option and is available for both the 2” and 3” valves. It will retrofit
to existing valves.
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AST Stainless Steel Overfill Prevention
Valve—FIG 9095SS
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The Fig. 9095SS Morrison Overfill Prevention
Valve is designed for use on top loading storage tanks that require an overfill prevention device. The valve terminates the
fill when the product reaches the preset level. The valve can be retrofitted on existing tanks and fits into a 2" opening.
• The 9095SS has
proven compatibility, durability and reliability through cycle testing in actual DEF transfer systems.
• The valve has
completed cycle testing and compatibility testing.
• The valve materials
meet the required specifications of ISO 22241-3 for handling DEF.
• The wetted materials
are Stainless Steel Alloys 304 and 316, Teflon and Polypropylene.
• The valve design
allows for a full flow fill until it closes. The dashpot design ensures a
reduction of line shock at shutoff.
• The valve flow
rate is 150GPM at 50PSI.
• 5 PSI & 5
GPM is the minimum flow
requirement for valve operation. The valve is compatible with fluids that have a density greater than 0.717 grams per ML/6.00
lbs per gallon and a maximum viscosity of 150 centistokes.
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The ULC Listed Morrison Overfill Prevention Valve is designed for
use on low profile AST tanks that require a high level shut-off. The valve terminates the fill when the product reaches the
preset level. The valve can be retrofitted on existing tanks and fits into a 2" opening. A tight fill connection is required
for operation.
NOTE: For use on clean product oil. Not suitable for motor oil.
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The 2” Morrison Overfill Prevention Valve is designed for use on low profile top loading aboveground
storage tanks that require a high level shut-off. Once the product reaches the preset level the valve will close and allow
minimal liquid to pass through to relieve the fill line pressure. The valve can be retrofitted on existing tanks and fits
into a 2” opening. This valve accepts a 1 1/2” male threaded drop tube (not included).• The valve
flow rate is 60 GPM at 60 PSI. • 2” 305C Locking Cap is sold separately. • A tight fill connection
is required for operation. • 10 PSI & 5 GPM are the minimum pressure and flow requirements for valve operation. The
maximum fluid viscosity is 150 centistokes. The maximum operating pressure is 100 PSI.
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"FMM® brand" warning valve with optional alarm for use on waste oil evacuation systems which use
an air operated pump. The FMM Series is ULC Listed.
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The stainless steel Fig. 958 Check Valve is used
on storage tank systems and allows product to flow in one direction. Available with or without expansion relief.
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The Fig. 912 Anti-Syphon Valve is used on storage tank systems to prevent the formation of a syphon
in the event of a line break or leak. The Fig. 912 will help prevent product loss, environmental
contamination and/or fire hazards.
The 912 has built in expansion relief. The stainless steel/Viton® construction allows
for greater fluid compatibility.
The 912 is designed to be installed in the piping system above the top of the tank.
It may be installed in both horizontal and vertical piping.
The priming tee is an optional device that allows the installer/operator to fill the piping
system with fluid. This allows a prime to be established for pumps and other devices. The tee also allows an access point
for system maintenance and troubleshooting, such as installing a pressure gauge.
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Used in pipe and tank fitting to reduce or adapt to a connection.
Cast iron with NPT threads. The duplex bushing is used to connect 2" pipe to dual 1/2" or 3/8" lines.
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nstalled on pipeline leading to/from an aboveground tank. This
valve is used to prevent accidental spill or siphoning of product from the tank in the event of a fracture in the pipe or
other cause for leak downstream and below the liquid level. The Fig. 710 solenoid valve is a two-way, hung piton type valve
with normally "closed at rest positioning." The valve opens upon receipt of an electronic signal such as when a dispenser
or pump is switched on.
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Rising Stem Gate Valve used for manual flow control in petro-chemical
liquid handling. Available in brass and ductile iron. This gate valve operates by rotating handwheel counter-clockwise to
open or clockwise to close. Valve can be left partially open to control flow rate.
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Rising Stem Gate Valve used for manual flow control in petro-chemical
liquid handling. Available in brass and ductile iron. This gate valve operates by rotating handwheel counter-clockwise to
open or clockwise to close. Valve can be left partially open to control flow rate. This valve is equipped with expansion relief.
This means that the piping exposed to outside temperature rise will create pressure build-up in sections of piping that are
isolated by closed valves for example. Expansion relief feature allows product to bleed back through the closed valve, and
thereby relieving excessive pressure in the line. If left uncontrolled, pressure build-up within a system can result in a
release of product to the outside.
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Manually operated gate valve with throttle type lever action.
For use in petroleum liquid handling. They have a pressure rating of 200 PSI WOG, cold, non-shock.
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Full port ball valve used for liquid handling with manual open-close
in quick quarter-turn handle operation. Threaded (NPT) connections. Valve can be operated in partial open position. Lockable
with padlock.
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Brass Globe Valve used to shut off product flow in the event
of fire. Fusible element in handwheel automatically closes valve when in contact with 165° F.
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Often referred to as "Fire Valve." Used to shut off flow in the
event of fire. Fuse link holds open spring actuated lever. Mounts on external pipeline, thus the designation "external."
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Often referred to as "Fire Valve." Used to shut off flow in the
event of fire. Fuse link holds open spring actuated lever. Body mounts at the base of an aboveground tank with poppet end
projecting inside the tank, thus the designation "internal."
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Used for single-direction flow in a horizontal pipeline and/or
to isolate product in a multi-product handling system. Poppet and seats are metal and may allow some seepage over long periods
of time. Expansion relief is available.
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Used on aboveground storage tanks for draining condensation or
water from bottom of the tank. The lock bonnet doubles as the wrench.
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By-Pass Valve
FIG 174 and 174AL Series
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Used in applications where pressure control is needed such
as by-passing a pump in order to reduce the pressure at the outlet. Valve settings are adjustable plus or minus 5-10 PSI from
set point. The valve is available in PSI settings from 20 to 75.
Available in brass and aluminum.
NOTE: Fig. 174 and Fig. 174AL are not pressure regulating devices.
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