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EMERGENCY ACTION PLAN
PKO.NE NX'MBERS
DWQ (^^/^ ) -57/- y7^ P
EMERGENCY M.ANAGEMENT SYSTEM Af/f; '
SWCD Af/f;-s^5-^y^/
Tnis plan will be implemented in the event that wastes from your operation are leaking,
overflowing, or running off site. You should not wait until wastes reach surface waters or
leave your propeny to consider that you have a problem. You should make every effon to
ensure that this does not happen. Thus plan should be posted in an accessible location for
all employees at the facility. The following are some action items you should take.
1. Stop the release of wastes. Depending on the situation, this may or may not be
possible. Suggested responses to some possible problems are listed below.
A. Lagoon overflow-possible solutions are:
a. Add soil to berra to increase elevation of dam.
b. Pump wastes to fields at an acceptable rate.
c. Stop all flows to the lagoon immediately.
d. Call a pumping contractor.
e. Make sure no surface water is entering lagoon.
B: Runoff from waste application field-actions include:
a. Immediately stop waste application.
b. Create a temporary diversion to contain waste.
c. Incorporate waste to reduce runoff.
d. Evaluate and eliminate the reason(s) that caused the runoff.
e. Evaluate the application rates for the fields where runoff occurred.
C: Leakage from the waste pipes and sprinklers-action include:
a. Stop recycle pump.
b. Stop irrigation pump.
c. Close va]\'es to eliminate funhe.' discharge.
d. Repair all leaks prior to restaning pumps.
D: Leakage from flush systems, houses, solid separators-action include:
a. Stop recycle pump.
b. Stop irrigation pump.
c. .Make sure no siphon occurs.
J. Stop all llou s in the liouse. s\, or solid separators.
Coniaci the technical specialist who cenified the lagoon (NRCS. Consulting
Engineer, etc.)
a. Name: (/ D ^ RC
b. Phone: A^/f :> - 50 '3^^/
Implement procedures as advised by DWQ and technical assistance agencies to
rectify the damage, repair the system, and reassess the waste management plan to
keep problems with release of wastes from happening again.
Mortality Management Methods
(check which method(s) are being implemented)
Burial three feet beneath the surface of the ground within 24 hours after
knowledge of the death. The burial must be at least 300 feet from any flowing
stream or public body of water.
Rendering at a rendering plant licensed under G.S. 106-168.7
Complete incineration
In the case of dead poultry only, placing in a disposal pit of a size and design
approved by the Depanment of Agriculture
Any method which in the professional opinion of the State Veterinarian would
make possible the salvage of pan of a dead animal's value without endangering
human or animal health. (Written approval of the State Veterinarian must be
attached)
System Calibration
Information presented in manufacturer's charts are based on average
operating conditions with relatively new equipment. Discharge
rates and application rates change over time as equipment gets older
and components wear. In particular, pump wear tends to reduce
operating pressure and flow. With continued use, nozzle wear results
in an increase in the nozzle opening which will increase the
discharge rate while decreasing the wetted diameter.
You should he aware that operating the system differently than
assumed in the design will alter the application rate, diameter of
coverage, and subsequently the application uniformity. For example,
operating the system with excessive pressure results in smaller
droplets, greater potential for drift, and accelerates wear of the
sprinkler nozzle. Clogging of nozzles can result in pressure increase.
Plugged intakes or crystallization of mainlines will reduce operating
pressure. Operating below design pressure greatly reduces the
coverage diameter and application uniformity.
For the above reasons, you should calibrate your equipment on a
regular basis to ensure proper application rates and uniformity.
Calibration at least once every thrge yeaj;sjs recommended.
Calibration involve?collecting^nd measuring flow at several
locations in the application area. Any number of containers can he
used to collect flow and determine the application rate. Rain
gauges work best because they already have a graduated scale from
which to read the application amount without having to perform
additional calculations. However, pans, plastic buckets, jars, or
anything with a uniform opening and cross-section can he used
provided the liquid collected can he easily transferred to a scaled
container for measuring.
For stationary sprinklers, collection containers should he located
randomly throughout the application area at several distances from
sprinklers. For traveling guns, sprinklers should he located along a
transect perggndiculaMo the direction of pull. Set out collection
container^^^ feet apart3long the transect on both sides of the gun
cart. You sHould compute the average application rate for all
collection containers. You should also look for evidence of
nonuniformity of the application. On a windless day, variation
between containers of more than 30 percent is cause for concern.
You should contact your irrigation dealer or technical specialist
for assistance.