HAR §11-280.1-43
HAR §11-280.1-43. §11-280
Cite as Haw. Code R. § 11-280.1-43
1-42
Requirements for hazardous
substance UST systems.
Owners and operators of
hazardous substance UST systems must monitor these
systems in accordance with section 11-280.1-43(7) at
least every thirty-one days.
In addition, underground
piping that conveys hazardous substances under
pressure must be equipped with an automatic line leak
detector in accordance with section 11-280.1-44(1).
[Eff 7/15/18; comp 1/17/20; comp 7/8/21; comp
MAR 21 2025
]
(Auth:
HRS §§3421-3, 3421-32,
3C(t-""33)
(Imp:
HRS §§3421-3, 3421-32, 3421-33)
§11-280.1-43
Methods of release detection for
tanks.
Each method of release detection for tanks
used to meet the requirements of sections 11-280.1-40
to 11-280.1-42 must be conducted in accordance with
the following:
(1)
Inventory control. Product inventory control
(or another test of equivalent performance)
must be conducted monthly to detect a
release of at least one percent of flow
through plus one hundred thirty gallons on a
monthly basis in the following manner:
(A)
Inventory volume measurements for
regulated substance inputs,
withdrawals, and the amount still
remaining in the tank are recorded each
operating day;
(B)
The equipment used is capable of
measuring the level of product over the
full range of the tank's height to the
nearest one-eighth of an inch;
(C)
If a manual measuring device is used
(e.g., a gauge stick), the measurements
must be made through a drop tube that
extends to within one foot of the tank
bottom.
Level measurements shall be to
the nearest one-eighth of an inch;
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§11-280.1-43
(D)
The regulated substance inputs are
reconciled with delivery receipts by
measurement of the tank inventory
volume before and after delivery;
(E)
Deliveries are made through a drop tube
that extends to within one foot of the
tank bottom;
(F)
Product dispensing is metered and
recorded within the state standards for
meter calibration or an accuracy of six
cubic inches for every five gallons of
product withdrawn, and the meter is
calibrated every three hundred sixty
five days; and
(G)
The measurement of any water level in
the bottom of the tank is made to the
nearest one-eighth of an inch at least
once a month.
(2)
Manual tank gauging. Manual tank gauging
must meet the following requirements:
(A)
Tank liquid level measurements are
taken at the beginning and ending of a
period using the appropriate minimum
duration of test value in the table
below during which no liquid is added
to or removed from the tank;
(B)
If a manual measuring device is used
(e.g., a gauge stick), the measurements
must be made through a drop tube that
extends to within one foot of the tank
bottom.
Level measurements shall be to
the nearest one-eighth of an inch;
(C)
Level measurements are based on an
average of two consecutive stick
readings at both the beginning and
ending of the period;
(D)
The equipment used is capable of
measuring the level of product over the
full range of the tank's height to the
nearest one-eighth of an inch;
(E)
A release is suspected and subject to
the requirements of subchapter 5 if the
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§11-280.1-43
variation between beginning and ending
measurements exceeds the weekly or
monthly standards in the following
table:
Nominal tank capacity
Minimum
Weekly standard
duration of test
(one test)
550 gallons or less .............................................................. ...............
1
36 hours ......... ... I 1 O gallons ......... ..
Monthly standard
(four test
average)
5 gallons
551-1.000 gallons (when tank diameter is 64 inches)....................... 44 hours ........
9 gallons ........... .. 4 gallons
551-1,000 gallons (when tank diameter is 48 inches)....................... 58 hours .............
12 gallons ......... .. 6 gallons
551-1,000 gallons (also requires periodic tank tightness testing) .. .. . 36 hours .. .. ..... ...
13 gallons .......... . 7 gallons
1,001-2.000 gallons (also requires periodic tank tightness testing) .. 36 hours .............
26 gallons ......... ..
13 gallons
(F)
Tanks of five hundred fifty gallons or
less nominal capacity and tanks with a
nominal capacity of five hundred fifty
one to one thousand gallons that meet
the tank diameter criteria in the table
in subparagraph (E) may use manual tank
gauging as the sole method of release
detection. All other tanks with a
nominal capacity of five hundred fifty
one to two thousand gallons may use
manual tank gauging in place of
inventory control in paragraph (1),
combined with tank tightness testing as
indicated in the table. Tanks of
greater than two thousand gallons
nominal capacity may not use this
method to meet the requirements of this
subchapter.
(3)
Tank tightness testing. Tank tightness
testing (or another test of equivalent
performance) must be capable of detecting a
0.1 gallon per hour leak rate from any
portion of the tank that routinely contains
product while accounting for the effects of
thermal expansion or contraction of the
product, vapor pockets, tank deformation,
evaporation or condensation, and the
location of the water table.
(4)
Automatic tank gauging. Equipment for
automatic tank gauging that tests for the
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§11-280.1-43
loss of product and conducts inventory
control must meet the following
requirements:
(A)
The automatic product level monitor
test can detect a 0.2 gallon per hour
leak rate from any portion of the tank
that routinely contains product;
(B)
The automatic tank gauging equipment
must meet the inventory control (or
other test of equivalent performance)
requirements of paragraph (1); and
(C)
The test °ust be performed with the
system operating in one of the
following modes:
(i)
In-tank static testing conducted
at least once every thirty-one
days; or
(ii)
Continuous in-tank leak detection
operating on an uninterrupted
basis or operating within a
process that allows the system to
gather incremental measurements to
determine the leak status of the
tank at least once every thirty
one days.
(5)
Vapor monitoring. Testing or monitoring for
vapors within the soil gas of the excavation
zone must meet the following requirements:
(A)
The materials used as backfill are
sufficiently porous (e.g., gravel,
sand, crushed rock) to readily allow
diffusion of vapors from releases into
the excavation area;
(B)
The stored regulated substance, or a
tracer compound placed in the tank
system, is sufficiently volatile (e.g.,
gasoline) to result in a vapor level
that is detectable by the monitoring
devices located in the excavation zone
in the event of a release from the
tank;
(C)
The measurement of vapors by the
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§11-280.1-43
monitoring device is not rendered
inoperative by the groundwater,
rainfall, or soil moisture or other
known interferences so that a release
could go undetected for more than
thirty-one days;
(D)
The level of background contamination
in the excavation zone will not
interfere with the method used to
detect releases from the tank;
(E)
The vapor monitors are designed and
operated to detect any significant
increase in concentration above
background of the regulated substance
stored in the tank system, a component
or components of that substance, or a
tracer compound placed in the tank
system;
(F)
In the UST excavation zone, the site is
assessed to ensure compliance with the
requirements in subparagraphs (A) to
(D)
and to establish the number and
positioning of monitoring wells that
will detect releases within the
excavation zone from any portion of the
tank that routinely contains product;
and
(G)
Monitoring wells are clearly marked and
secured to avoid unauthorized access
and tampering.
(6)
Groundwater monitoring. Testing or
monitoring for liquids on the groundwater
must meet the following requirements:
(A)
The regulated substance stored is
immiscible in water and has a specific
gravity of less than one;
(B)
Groundwater is never more than twenty
feet from the ground surface and the
hydraulic conductivity of the soils
between the UST system and the
monitoring wells or devices is not less
than 0.01 cm/sec (e.g., the soil should
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§11-280.1-43
consist of gravels, coarse to medium
sands, coarse silts or other permeable
materials);
(C)
The slotted portion of the monitoring
well casing must be designed to prevent
migration of natural soils or filter
pack into the well and to allow entry
of regulated substance on the water
table into the well under both high and
low groundwater conditions;
(D)
Monitoring wells shall be sealed from
the ground surface to the top of the
filter pack;
(E)
Monitoring wells or devices intercept
the excavation zone or are as close to
it as is technically feasible;
(F)
The continuous monitoring devices or
manual methods used can detect the
presence of at least one-eighth of an
inch of free product on top of the
groundwater in the monitoring wells;
(G)
Within and immediately below the UST
system excavation zone, the site is
assessed to ensure compliance with the
requirements in subparagraphs (A) to
(E)
and to establish the number and
positioning of monitoring wells or
devices that will detect releases from
any portion of the tank that routinely
contains product; and
(H)
Monitoring wells are clearly marked and
secured to avoid unauthorized access
and tampering.
(7)
Interstitial monitoring. Interstitial
monitoring between the UST system and a
secondary barrier immediately around or
beneath it may be used, but only if the
system is designed, constructed, and
installed to detect a leak from any portion
of the tank that routinely contains product
and also meets one of the following
requirements:
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§11-280.1-43
(A}
For double walled UST systems, the
sampling or testing method can detect a
leak through the inner wall in any
portion of the tank that routinely
contains product;
(B)
For UST systems with a secondary
barrier within the excavation zone, the
sampling or testing method used can
detect a leak between the UST system
and the secondary barrier;
(i)
The secondary barrier around or
beneath the UST system consists of
artificially constructed material
that is sufficiently thick and
impermeable (at least 10- 6 cm/sec
for the regulated substance
stored) to direct a leak to the
monitoring point and permit its
detection;
(ii)
The barrier is compatible with the
regulated substance stored so that
a leak from the UST system will
not cause a deterioration of the
barrier allowing a release to pass
through undetected;
(iii)
For cathodically protected tanks,
the secondary barrier must be
installed so that it does not
interfere with the proper
operation of the cathodic
protection system;
(iv}
The groundwater, soil moisture, or
rainfall will not render the
testing or sampling method used
inoperative so that a release
could go undetected for more than
thirty-one days;
(v)
The site is assessed to ensure
that the secondary barrier is
always above the groundwater and
not in a twenty-five-year flood
plain, unless the barrier and
280.1-61
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§11-280.1-43
monitoring designs are for use
under such conditions; and,
(vi)
Monitoring wells are clearly
marked and secured to avoid
unauthorized access and tampering.
(C)
For tanks with an internally fitted
liner, an automated device can detect a
leak between the inner wall of the tank
and the liner, and the liner is
compatible with the substance stored.
tB)
Statistical inventory reconciliation.
Release detection methods based on the
application of statistical principles to
inventory data similar to those described in
paragraph (1) must meet the following
requirements:
(A)
Report a quantitative result with a
calculated leak rate;
(B)
Be capable of detecting a leak rate of
0.2 gallon per hour or a release of one
hundred fifty gallons within thirty-one
days; and
(C)
Use a threshold that does not exceed
one-half the minimum detectible leak
rate.
t9)
Other methods. Any other type of release
detection method, or combination of methods,
can be used if:
(A)
It can detect a 0.2 gallon per hour
leak rate or a release of one hundred
fifty gallons within a month with a
probability of detection of 0.95 and a
probability of false alarm of 0.05; or
(B)
The owner and operator can demonstrate
to the department that the method can
detect a release as effectively as any
of the methods allowed in paragraphs
(3) to (8), and the department approves
the method. In comparing methods, the
department shall consider the size of
release that the method can detect and
the frequency and reliability with
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