NR 440.46(7) (7)Test methods and procedures.
NR 440.46(7)(a)(a) If a glass melting furnace with modified processes is changed to one without modified processes or if a glass melting furnace without modified processes is changed to one with modified processes, the owner or operator shall notify the department at least 60 days before the change is schedule to occur.
NR 440.46(7)(b) (b) When gaseous and liquid fuels are fired simultaneously in a glass melting furnace, the owner or operator shall determine the applicable standard under sub. (3) (a) 2. as follows:
NR 440.46(7)(b)1. 1. The ratio (Y) of liquid fuel heating value to total (gaseous and liquid) fuel heating value fired in the glass melting furnaces shall be computed for each run using the following equation: - See PDF for diagram PDF
where:
Y is the decimal fraction of liquid fuel heating value to total fuel heating value
Hl is the gross calorific value of liquid fuel, J/kg
Hg is the gross calorific value of gaseous fuel, J/kg
L is the liquid flow rate, kg/hr
G is the gaseous flow rate, kg/hr
NR 440.46(7)(b)2. 2. Suitable methods shall be used to determine the rates (L and G) of fuels burned during each test period and a material balance over the glass melting furnace shall be used to confirm the rates.
NR 440.46(7)(b)3. 3. ASTM Methods D240-92 (liquid fuels) and D1826-94 (gaseous fuels), incorporated by reference in s. NR 440.17 (2) (a) 9. and 21., as applicable, shall be used to determine the gross calorific values.
NR 440.46(7)(c) (c) In conducting the performance tests required in s. NR 440.08, the owner or operator shall use as reference methods and procedures the test methods in Appendix A of 40 CFR part 60, incorporated by reference in s. NR 440.17, or other methods and procedures as specified in this subsection, except as provided in s. NR 440.08 (2).
NR 440.46(7)(d) (d) The owner or operator shall determine compliance with the particulate matter standards in subs. (3) and (4) as follows:
NR 440.46(7)(d)1. 1. The emission rate (E) of particulate matter shall be computed for each run using the following equation: - See PDF for diagram PDF
where:
E is the emission rate of particulate matter, g/kg
cs is the concentration of particulate matter, g/dsm
Qsd is the volumetric flow rate, dscm/hr
A is the zero production rate correction = 227 g/hr for container glass, pressed and blown (soda-lime and lead) glass, and pressed and blown (other than borosilicate, soda-lime and lead) glass
= 454 g/hr for pressed and blown (borosilicate) glass, wool fiberglass, and flat glass
P is the glass production rate, kg/hr
NR 440.46(7)(d)2. 2. Method 5 shall be used to determine the particulate matter concentration (cs) and volumetric flow rate (Q sd) of the effluent gas. The sampling time and sample volume for each run shall be at least 60 minutes and 0.90 dscm (31.8 dscf). The probe and filter holder heating system may be set to provide a gas temperature no greater than 177"14°C (350"25°F), except under the conditions specified in sub. (4) (e).
NR 440.46(7)(d)3. 3. Direct measurement or material balance using good engineering practice shall be used to determine the amount of glass pulled during the performance test. The rate of glass produced is defined as the weight of glass pulled from the affected facility during the performance test divided by the number of hours taken to perform the performance test.
NR 440.46(7)(d)4. 4. Method 9 and the procedures in s. NR 440.11 shall be used to determine opacity.
NR 440.46 History History: Cr. Register, January, 1984, No. 337, eff. 2-1-84; am. (2) (b), (e), (h) and (k), (7) (a) (intro.), cr. (2) (cm), (dm), (km), (ks), (3) (d) and (e), (4) and (7) (g),Register, September, 1986, No. 369, eff. 10-1-86; am. (2) (intro.), (3) (a) 1., 2. and Table, (4) (b), (intro.), 1. and 3., Register, September, 1990, No. 417, eff. 10-1-90; am. (2) (c), (d), (i) and (L), (3) (a) 2. and Table 1, r. and recr. (7), Register, May, 1993, No. 450, eff. 8-1-93; CR 06-109: am. (1) (c), (3) (a) 2., (4) (c) 4. and 5. and (d) 1. (intro.) and (7) (b) 3., renum. (4) (e) to be (4) (f) and am., renum. (4) (d) 3. (intro.), a., b., and c. to be (4) (e) (intro.), 1., 2. and 3. and am. Register May 2008 No. 629, eff. 6-1-08.
NR 440.47 NR 440.47Grain elevators.
NR 440.47(1) (1)Applicability and designation of affected facility.
NR 440.47(1)(a)(a) The provisions of this section apply to each affected facility at any grain terminal elevator or any grain storage elevator, except as provided under sub. (5) (b). The affected facilities are each truck unloading station, truck loading station, barge and ship unloading station, barge and ship loading station, railcar loading station, railcar unloading station, grain dryer and all grain handling operations.
NR 440.47(1)(b) (b) Any facility under par. (a) which commences construction, modification or reconstruction after August 3, 1978 is subject to the requirements of this section.
NR 440.47(2) (2)Definitions. As used in this section, terms not defined in this subsection have the meanings given in s. NR 440.02.
NR 440.47(2)(a) (a) “Capture system" means the equipment such as sheds, hoods, ducts, fans, dampers, etc. used to collect particulate matter generated by an affected facility at a grain elevator.
NR 440.47(2)(b) (b) “Column dryer" means any equipment used to reduce the moisture content of grain in which the grain flows from the top to the bottom in one or more continuous packed columns between 2 perforated metal sheets.
NR 440.47(2)(c) (c) “Fugitive emission" means the particulate matter which is not collected by a capture system and is released directly into the atmosphere from an affected facility at a grain elevator.
NR 440.47(2)(d) (d) “Grain" means corn, wheat, sorghum, rice, rye, oats, barley and soybeans.
NR 440.47(2)(e) (e) “Grain elevator" means any plant or installation at which grain is unloaded, handled, cleaned, dried, stored or loaded.
NR 440.47(2)(f) (f) “Grain handling operations" include bucket elevators or legs (excluding legs used to unload barges or ships), scale hoppers and surge bins (garners), turn heads, scalpers, cleaners, trippers, and the headhouse and other such structures.
NR 440.47(2)(g) (g) “Grain loading station" means that portion of a grain elevator where the grain is transferred from the elevator to a truck, railcar, barge or ship.
NR 440.47(2)(h) (h) “Grain storage elevator" means any grain elevator located at any wheat flour mill, wet corn mill, dry corn mill (human consumption), rice mill or soybean oil extraction plant which has a permanent grain storage capacity of 35,200 m3 (ca. 1 million bushels).
NR 440.47(2)(i) (i) “Grain terminal elevator" means any grain elevator which has a permanent storage capacity of more than 88,100 m3 (ca. 2.5 million U.S. bushels), except those located at animal food manufacturers, pet food manufacturers, cereal manufacturers, breweries and livestock feedlots.
NR 440.47(2)(j) (j) “Grain unloading station" means that portion of a grain elevator where the grain is transferred from a truck, railcar, barge or ship to a receiving hopper.
NR 440.47(2)(k) (k) “Permanent storage capacity" means grain storage capacity which is inside a building, bin or silo.
NR 440.47(2)(L) (L) “Process emission" means the particulate matter which is collected by a capture system.
NR 440.47(2)(m) (m) “Rack dryer" means any equipment used to reduce the moisture content of grain in which the grain flows from the top to the bottom in a cascading flow around rows of baffles or racks.
NR 440.47(2)(n) (n) “Railcar" means railroad hopper car or boxcar.
NR 440.47(2)(o) (o) “Unloading leg" means a device which includes a bucket-type elevator which is used to remove grain from a barge or ship.
NR 440.47(3) (3)Standard for particulate matter.
NR 440.47(3)(a)(a) On and after the 60th day of achieving the maximum production rate at which the affected facility will be operated, but no later than 180 days after initial startup, no owner or operator subject to the provisions of this section may cause to be discharged into the atmosphere any gases which exhibit greater than zero percent opacity from any:
NR 440.47(3)(a)1. 1. Column dryer with column plate perforation exceeding 2.4 mm diameter (ca. 0.094 inch).
NR 440.47(3)(a)2. 2. Rack dryer in which exhaust gases pass through a screen filter coarser than 50 mesh.
NR 440.47(3)(b) (b) On and after the date on which the performance test required to be conducted by s. NR 440.08 is completed, no owner or operator subject to the provisions of this section may cause to be discharged into the atmosphere from any affected facility except a grain dryer any process emission which:
NR 440.47(3)(b)1. 1. Contains particulate matter in excess of 0.023 g/dscm (ca. 0.010 gr/dscf).
NR 440.47(3)(b)2. 2. Exhibits greater than zero percent opacity.
NR 440.47(3)(c) (c) On and after the 60th day of achieving the maximum production rate at which the affected facility will be operated, but no later than 180 days after initial startup, no owner or operator subject to the provisions of this section may cause to be discharged into the atmosphere any fugitive emission from:
NR 440.47(3)(c)1. 1. Any individual truck unloading station, railcar unloading station, or railcar loading station, which exhibits greater than 5% opacity.
NR 440.47(3)(c)2. 2. Any grain handling operation which exhibits greater than zero percent opacity.
NR 440.47(3)(c)3. 3. Any truck loading station which exhibits greater than 10% opacity.
NR 440.47(3)(c)4. 4. Any barge or ship loading station which exhibits greater than 20% opacity.
NR 440.47(3)(d) (d) The owner or operator of any barge or ship unloading station shall operate as follows:
NR 440.47(3)(d)1. 1. The unloading leg shall be enclosed from the top (including the receiving hopper) to the center line of the bottom pulley and ventilation to a control device shall be maintained on both sides of the leg and the grain receiving hopper.
NR 440.47(3)(d)2. 2. The total rate of air ventilated shall be at least 32.1 actual cubic meters per cubic meter of grain handling capacity (ca. 40 ft3/bushel).
NR 440.47(3)(d)3. 3. Rather than meet the requirements of subds. 1. and 2., the owner or operator may use other methods of emission control if it is demonstrated to the administrator's satisfaction that they would reduce emissions of particulate matter to the same level or less.
NR 440.47(4) (4)Test methods and procedures.
NR 440.47(4)(a)(a) In conducting the performance tests required in s. NR 440.08, the owner or operator shall use as reference methods and procedures the test methods in Appendix A of 40 CFR part 60, incorporated by reference in s. NR 440.17, or other methods and procedures as specified in this subsection, except as provided in s. NR 440.08 (2). Acceptable alternative methods and procedures are given in par. (c).
NR 440.47(4)(b) (b) The owner or operator shall determine compliance with the particulate matter standards in sub. (3) as follows:
NR 440.47(4)(b)1. 1. Method 5 shall be used to determine the particulate matter concentration and the volumetric flow rate of the effluent gas. The sampling time and sample volume for each run shall be at least 60 minutes and 1.70 dscm (60 dscf). The probe and filter holder shall be operated without heaters.
NR 440.47(4)(b)2. 2. Method 2 shall be used to determine the ventilation volumetric flow rate.
NR 440.47(4)(b)3. 3. Method 9 and the procedures in s. NR 440.11 shall be used to determine opacity.
NR 440.47(4)(c) (c) The owner or operator may use the following as alternatives to the reference methods and procedures specified in this subsection:
NR 440.47(4)(c)1. 1. For Method 5, Method 17 may be used.
NR 440.47(5) (5)Modifications.
NR 440.47(5)(a)(a) The factor 6.5 shall be used in place of “annual asset guidelines repair allowance percentage," to determine whether a capital expenditure as defined by in s. NR 440.02 has been made to an existing facility.
NR 440.47(5)(b) (b) For purposes of this chapter, the following physical changes or changes in the method of operation may not by themselves be considered a modification of any existing facility described under sub. (1) (a):
NR 440.47(5)(b)1. 1. The addition of gravity loadout spouts to existing grain storage or grain transfer bins.
NR 440.47(5)(b)2. 2. The installation of automatic grain weighing scales.
NR 440.47(5)(b)3. 3. Replacement of motor and drive units driving existing grain handling equipment.
NR 440.47(5)(b)4. 4. The installation of permanent storage capacity with no increase in hourly grain handling capacity.
NR 440.47 History History: Cr. Register, January, 1984, No. 337, eff. 2-1-84; am (2) (intro.), (3) (b) 1. and (d) 3., Register, September, 1990, No. 417, eff. 10-1-90; r. and recr. (4), Register, July, 1993, No. 451, eff. 8-1-93.
NR 440.48 NR 440.48Surface coating of metal furniture.
NR 440.48(1)(1)Applicability and designation of affected facility.
NR 440.48(1)(a)(a) The affected facility to which the provisions of this section apply is each metal furniture surface coating operation in which organic coatings are applied.
NR 440.48(1)(b) (b) This section applies to each affected facility identified in par. (a) on which construction, modification or reconstruction is commenced after November 28, 1980.
NR 440.48(1)(c) (c) Any owner or operator of a metal furniture surface coating operation that uses less than 3,842 liters of coating (as applied) per year and keeps purchase or inventory records or other data necessary to substantiate annual coating usage shall be exempt from all other provisions of this section. These records shall be maintained at the source for a period of at least 2 years.
NR 440.48(2) (2)Definitions and symbols.
NR 440.48(2)(a)(a) As used in this section, terms not defined in this paragraph have the meanings given in s. NR 440.02.
NR 440.48(2)(a)1. 1. “Bake oven" means a device which uses heat to dry or cure coatings.
NR 440.48(2)(a)2. 2. “Dip coating" means a method of applying coatings in which the part is submerged in a tank filled with the coatings.
NR 440.48(2)(a)3. 3. “Electrodeposition" or “EDP" means a method of applying coatings in which the part is submerged in a tank filled with the coatings and in which an electrical potential is used to enhance deposition of the coatings on the part.
NR 440.48(2)(a)4. 4. “Electrostatic spray application" means a spray application method that uses an electrical potential to increase the transfer efficiency of the coatings.
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Published under s. 35.93, Stats. Updated on the first day of each month. Entire code is always current. The Register date on each page is the date the chapter was last published.