NR 469.05(8)(8) When solvent is added or drained from any solvent cleaning machine, the solvent shall be transferred using threaded or other leakproof couplings and the end of the pipe in the solvent sump shall be located beneath the liquid solvent surface. NR 469.05(9)(9) Each solvent cleaning machine and associated controls shall be maintained as recommended by the manufacturers of the equipment or using alternative maintenance practices that have been demonstrated to the department’s satisfaction to achieve the same or better results as those recommended by the manufacturer. NR 469.05(10)(10) Each operator of a solvent cleaning machine shall complete and pass the applicable sections of the test of solvent cleaning procedures in Table 5 if requested during an inspection by the department. NR 469.05(11)(11) Waste solvent, still bottoms and sump bottoms shall be collected and stored in closed containers. The closed containers may contain a device that allows pressure relief, but that device may not allow liquid solvent to drain from the container. NR 469.05(12)(12) Sponges, fabric, wood and paper products may not be cleaned. Table 5. Test of Solvent Cleaning Procedures
Control Device Specific Questions
NR 469.05 HistoryHistory: Cr. Register, March, 1997, No. 495, eff. 4-1-97; CR 07-105: am. (intro.) and (10) Register December 2008 No. 636, eff. 1-1-09. NR 469.06NR 469.06 Operational requirements associated with control devices for batch vapor and in-line cleaning machines. Each owner or operator of a solvent cleaning machine complying with s. NR 469.04 (2) or (3) or s. NR 469.073 or 469.077 shall comply with the requirements specified in this section. NR 469.06(2)(2) Determine during each monitoring period whether each control device used to comply with these standards meets the requirements specified in pars. (a) to (k). NR 469.06(2)(a)(a) If a freeboard refrigeration device is used to comply with these standards, the owner or operator shall ensure that the chilled air blanket temperature, in °F, measured at the center of the air blanket, is no greater than 30% of the solvent’s boiling point. NR 469.06(2)(b)(b) If a reduced room draft is used to comply with these standards, the owner or operator shall comply with the following requirements: NR 469.06(2)(b)1.1. Ensure that the flow or movement of air across the top of the freeboard area of the solvent cleaning machine or within the solvent cleaning machine enclosure does not exceed 15.2 meters per minute (50 feet per minute) at any time as measured using the procedures in s. NR 469.10 (4). NR 469.06(2)(b)2.2. Establish and maintain the operating conditions under which the wind speed was demonstrated to be 15.2 meters per minute (50 feet per minute) or less as described in s. NR 469.10 (4). NR 469.06(2)(c)(c) If a working-mode cover is used to comply with these standards, the owner or operator shall comply with the following requirements: NR 469.06(2)(c)1.1. Ensure that the cover opens only for part entrance and removal and completely covers the cleaning machine openings when closed. NR 469.06(2)(c)2.2. Ensure that the working-mode cover is maintained free of cracks, holes and other defects. NR 469.06(2)(d)(d) If an idling-mode cover is used to comply with these standards, the owner or operator shall comply with the following requirements: NR 469.06(2)(d)1.1. Ensure that the cover is in place whenever parts are not in the solvent cleaning machine and completely covers the cleaning machine openings when in place. NR 469.06(2)(d)2.2. Ensure that the idling-mode cover is maintained free of cracks, holes and other defects. NR 469.06(2)(e)(e) If dwell is used to comply with these standards, the owner or operator shall comply with the following requirements: NR 469.06(2)(e)1.1. Determine the appropriate dwell time for each type of part or parts basket, or determine the maximum dwell time using the most complex part type or parts basket, as described in s. NR 469.09 (4). NR 469.06(2)(e)2.2. Ensure that, after cleaning, each part is held in the solvent cleaning machine freeboard area above the vapor zone for the dwell time determined for that particular part or parts basket, or for the maximum dwell time determined using the most complex part type or parts basket. NR 469.06(2)(f)(f) If a superheated vapor system is used to comply with these standards, the owner or operator shall comply with the following requirements: NR 469.06(2)(f)1.1. Ensure that the temperature of the solvent vapor at the center of the superheated vapor zone is at least 5.6°C (10°F) above the solvent’s boiling point. NR 469.06(2)(f)2.2. Ensure that the manufacturer’s specifications for determining the minimum proper dwell time within the superheated vapor system is followed. NR 469.06(2)(f)3.3. Ensure that parts remain within the superheated vapor for at least the minimum proper dwell time. NR 469.06(2)(g)(g) If a carbon adsorber in conjunction with a lip exhaust or other exhaust internal to the cleaning machine is used to comply with these standards, the owner or operator shall comply with the following requirements: NR 469.06(2)(g)1.1. Except as provided in subd. 4., ensure that the concentration of organic solvent in the exhaust from the carbon adsorber does not exceed 100 parts per million of any halogenated HAP compound as measured using the procedure in s. NR 469.10 (5). If the halogenated HAP solvent concentration in the carbon adsorber exhaust exceeds 100 parts per million, the owner or operator shall adjust the desorption schedule or replace the disposable canister, if not a regenerative system, so that the exhaust concentration of halogenated HAP solvent is brought below 100 parts per million. NR 469.06(2)(g)2.2. Ensure that the carbon adsorber bed is not bypassed during desorption. NR 469.06(2)(g)3.3. Ensure that the lip exhaust is located above the solvent cleaning machine cover so that the cover closes below the lip exhaust level. NR 469.06(2)(g)4.4. For each batch vapor or in-line vapor cleaning machine that is not exempt under s. NR 423.03 (2) (a), (b), (d), (e) or (h), but is exempt under s. NR 423.03 (2) (i), ensure that the concentration of organic solvent in the exhaust from the carbon adsorber does not exceed 25 parts per million of solvent as measured using the procedure in s. NR 469.10 (5). If the solvent concentration in the carbon adsorber exhaust exceeds 25 parts per million, the owner or operator shall adjust the desorption schedule or replace the disposable canister, if not a regenerative system, so that the exhaust concentration of solvent is brought below 25 parts per million. NR 469.06 NoteNote: Subdivision 4. contains pertinent language previously applicable under s. NR 423.03 (4) (c) 4. and (5) (c) 2., and now applicable under this chapter instead, to owners and operators of batch vapor cleaning machines and in-line vapor cleaning machines that use solvents that contain halogenated HAP compounds that are also VOCs. NR 469.06(2)(h)(h) If a superheated part system is used to comply with the standards for continuous web cleaning machines in s. NR 469.073, the owner or operator shall ensure that the temperature of the continuous web part is at least 10 degrees Fahrenheit above the solvent boiling point while the part is traveling through the cleaning machine. NR 469.06(2)(i)1.1. Determine the appropriate maximum product throughput for the squeegees used in the squeegee system, as described in s. NR 469.09 (6). NR 469.06(2)(i)3.3. Calculate the total amount of continuous web product processed since the squeegees were replaced and compare to the maximum product throughput for the squeegees. NR 469.06(2)(i)4.4. Ensure squeegees are replaced at or before the maximum product throughput is attained. NR 469.06(2)(i)5.5. Redetermine the maximum product throughput for the squeegees if any solvent film is visible on the continuous web part immediately after it exits the cleaning machine. NR 469.06(2)(j)1.1. Determine the air knife parameter and parameter value that demonstrate to the department’s satisfaction that the air knife is properly operating. An air knife is properly operating if no visible solvent film remains on the continuous web part after it exits the cleaning machine. NR 469.06(2)(j)4.4. Redetermine the proper air knife parameter value if any solvent film is visible on the continuous web part immediately after it exits the cleaning machine. NR 469.06(2)(k)(k) If a combination squeegee and air knife system is used to comply with the continuous web cleaning requirements of s. NR 469.073 (3) (c) or 469.077 (2) (a), the owner or operator shall comply with the following requirements: NR 469.06(2)(k)1.1. Determine the system parameter and value that demonstrate to the department’s satisfaction that the system is properly operating. NR 469.06(2)(k)4.4. Redetermine the proper parameter value if any solvent film is visible on the continuous web part immediately after it exits the cleaning machine. NR 469.06(3)(3) If any of the requirements of sub. (2) are not met, determine whether an exceedance has occurred using the criteria in pars. (a) and (b). NR 469.06(3)(b)(b) An exceedance has occurred if the requirements of sub. (2) (a), (b) 1., (c) 2., (d) 2., (f) 1. or (g) 1. have not been met and the condition is not corrected within 15 days of detection. Adjustments or repairs shall be made to the solvent cleaning system or control device to reestablish required levels. The parameter shall be remeasured immediately upon adjustment or repair and demonstrated to be within required limits. NR 469.06(4)(4) The owner or operator shall report all exceedances and all corrections and adjustments made to avoid an exceedance as specified in s. NR 469.12 (7). NR 469.06 HistoryHistory: Cr. Register, March, 1997, No. 495, eff. 4-1-97; CR 07-105: am. (intro.), (2) (intro.) and (g) (intro.), cr. (2) (h) to (k) Register December 2008 No. 636, eff. 1-1-09. NR 469.07NR 469.07 Idling emission limit standards for batch vapor and in-line cleaning machines. Each owner or operator of a batch vapor or in-line solvent cleaning machine complying with the idling emission limit standards in s. NR 469.04 (2) (a) 2. or (b) 2. or (3) (a) 2. or (b) 2. shall comply with the requirements specified in this section. NR 469.07(1)(1) Conduct an initial performance test to comply with the following requirements: NR 469.07(1)(a)(a) Demonstrate compliance with the applicable idling emission limit. NR 469.07(1)(b)(b) Establish parameters that will be monitored to demonstrate compliance. If a control device is used that is listed in s. NR 469.06 (2), then the requirements for that control device as listed in s. NR 469.06 (2) shall be used unless the owner or operator can demonstrate to the department’s satisfaction that an alternative strategy is equally effective. NR 469.07(2)(2) Conduct the periodic monitoring of the parameters used to demonstrate compliance as described in s. NR 469.10 (6). NR 469.07(3)(3) Operate the solvent cleaning machine within parameters identified in the initial performance test. NR 469.07(4)(4) If any of the requirements in subs. (1) to (3) are not met, determine whether an exceedance has occurred using the following criteria: NR 469.07(4)(b)(b) If using a control device not listed in s. NR 469.06 (2), the owner or operator shall indicate whether the exceedance of the parameters that are monitored to determine the proper functioning of this control would be classified as an immediate exceedance or whether a 15 day repair period would be allowed. This information shall be submitted to the department for approval. NR 469.07(5)(5) The owner or operator shall report all exceedances and all corrections and adjustments made to avoid an exceedance as specified in s. NR 469.12 (7). NR 469.07 HistoryHistory: Cr. Register, March, 1997, No. 495, eff. 4-1-97. NR 469.073NR 469.073 Control device and operational requirements for continuous web cleaning machines. Except as provided in ss. NR 469.077 and 469.08 for remote reservoir continuous web cleaning machines, each owner or operator of a continuous web cleaning machine shall comply with subs. (1) to (4) for each continuous web cleaning machine. NR 469.073(1)(1) Except as provided in sub. (2), install, maintain and operate one of the following control combinations on each continuous web cleaning machine: NR 469.073(1)(a)(a) For each existing continuous web cleaning machine, the following control combinations are allowed: NR 469.073(1)(a)1.1. Superheated vapor or superheated part technology and a freeboard ratio of 1.0 or greater. NR 469.073(1)(a)2.2. Freeboard refrigeration device and a freeboard ratio of 1.0 or greater. NR 469.073(1)(b)(b) For each new continuous web cleaning machine, the following control combinations are allowed: NR 469.073(1)(b)1.1. Superheated vapor or superheated part technology and a freeboard refrigeration device. NR 469.073(2)(2) If a carbon adsorber system can be demonstrated to the department’s satisfaction to have an overall solvent control efficiency (capture efficiency and removal efficiency) of 70% or greater, this system is equivalent to the options in this section. NR 469.073(3)(3) In lieu of complying with the provisions of s. NR 469.04 (1), the owner or operator of a continuous web cleaning machine shall comply with the following provisions: NR 469.073(3)(a)(a) Each cleaning machine shall meet one of the following control equipment or technique requirements: NR 469.073(3)(a)1.1. An idling and downtime mode cover, as described in s. NR 469.05 (1) (a), that may be readily opened or closed; that completely covers the cleaning machine openings when in place and is free of cracks, holes and other defects. A continuous web part that completely occupies an entry or exit port when the machine is idle is considered to meet this requirement. NR 469.073(3)(a)3.3. Gasketed or leakproof doors that separate both the continuous web part feed reel and take-up reel from the room atmosphere if the doors are checked according to the requirements of s. NR 469.06 (2) (c). NR 469.073(3)(a)4.4. A cleaning machine that is demonstrated to the department’s satisfaction to be under negative pressure during idling and downtime and is vented to a carbon adsorption system that meets the requirements of either s. NR 469.06 (2) (g) or sub. (2).
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