ConceptioArchiveCode of Federal Regulations (eCFR)
Code of Federal Regulations (eCFR)public full text

14 CFR Part 34 — Fuel Venting and Exhaust Emission Requirements for Turbine Engine Powered Airplanes

Office of the Federal Register (NARA) · Code of Federal Regulations (eCFR, Office of the Federal Register)
Code of Federal Regulations (eCFR) · Legal · License: Public Domain
Open Source ↗
aeronauticsaircraftdepartmentoftransportationfederalaviationadministrationspace
united states, us regulation, us federal regulation, code of federal regulations, cfr, federal regulation, 14, 34, part 34, 14 cfr 34, 14 cfr part 34, aeronautics, and, space, federal aviation administration, department of transportation, aircraft

PART 34—FUEL VENTING AND EXHAUST EMISSION REQUIREMENTS FOR TURBINE ENGINE POWERED AIRPLANES Authority: 42 U.S.C. 4321 et seq., Source: Docket No. 25613, 55 FR 32861, Aug. 10, 1990, unless otherwise noted. Subpart A—General Provisions § 34.1 Definitions. As used in this part, all terms not defined herein shall have the meaning given them in the Clean Air Act, as amended (42 U.S.C. 7401 et. seq.): Act Administrator Administrator of the EPA Aircraft Aircraft engine Aircraft gas turbine engine Characteristic level Class TP Class TF Class T3 Class T8 Class TSS Commercial aircraft engine Commercial aircraft gas turbine engine Date of manufacture Derivative engine for emissions certification purposes Emission measurement system Engine model Excepted, Exempt Exhaust emissions In-use aircraft gas turbine engine Introduction date New aircraft turbine engine Non-volatile particulate matter (nvPM) Power setting Rated output (rO) Rated pressure ratio (rPR) Reference day conditions (1) Temperature = 15 °C, (2) Specific humidity = 0.00634 kg H 2 (3) Pressure = 101.325 kPa Sample system Shaft power Smoke Smoke number (SN) Standard day conditions 2 Taxi/idle (in) Taxi/idle (out) Tier, X [Doc. No. 25613, 55 FR 32861, Aug. 10, 1990; 55 FR 37287, Sept. 10, 1990, as amended by Amdt. 34-3, 64 FR 5558, Feb. 3, 1999; Amdt. 34-5, 77 FR 76849, Dec. 31, 2012; Amdt. 34-5A, 78 FR 63016, Oct. 23, 2013; Amdt. 34-7, 89 FR 31085, Apr. 24, 2024] § 34.2 Abbreviations. The abbreviations used in this part have the following meanings in both upper and lower case: CO 2 CO Carbon monoxide EPA United States Environmental Protection Agency FAA Federal Aviation Administration, United States Department of Transportation g Gram(s) HC Hydrocarbon(s) HP Horsepower hr Hour(s) H 2 kg Kilogram(s) kJ Kilojoule(s) kN Kilonewton(s) kW Kilowatt(s) lbf Pound force LTO Landing and takeoff m Meter(s) mg Milligram(s) µg Microgram(s) min Minute(s) MJ Megajoule(s) NO X nvPM Non-volatile particulate matter nvPM mass nvPM MC nvPM num Pa Pascal(s) rO Rated output rPR Rated pressure ratio sec Second(s) SP Shaft power SN Smoke number T Temperature in degrees Kelvin TIM Time in mode °C Degrees Celsius % Percent [Doc. No. FAA-2023-2434, Amdt. 34-7, 89 FR 31085, Apr. 24, 2024] § 34.3 General requirements. (a) This part provides for the approval or acceptance by the Administrator or the Administrator of the EPA of testing and sampling methods, analytical techniques, and related equipment not identical to those specified in this part. Before either approves or accepts any such alternate, equivalent, or otherwise nonidentical procedures or equipment, the Administrator or the Administrator of the EPA shall consult with the other in determining whether or not the action requires rulemaking under sections 231 and 232 of the Clean Air Act, as amended, consistent with the responsibilities of the Administrator of the EPA and the Secretary of Transportation under sections 231 and 232 of the Clean Air Act. (b) Under section 232 of the Act, the Secretary of Transportation issues regulations to ensure compliance with 40 CFR part 1031. This authority has been delegated to the Administrator of the FAA in accordance with 49 CFR 1.47. (c) This part applies to civil airplanes that are powered by aircraft gas turbine engines of the classes specified herein and that have U.S. standard airworthiness certificates. (d) Pursuant to the definition of “aircraft” in 40 CFR 1031.205, this regulation applies to civil airplanes that are powered by aircraft gas turbine engines of the classes specified herein and that have foreign airworthiness certificates that are equivalent to U.S. standard airworthiness certificates. This regulation applies only to those foreign civil airplanes that, if registered in the United States, would be required by applicable regulations to have a U.S. standard airworthiness certificate in order to conduct the operations intended for the airplane. Pursuant to 40 CFR 1031.5, this regulation does not apply where it would be inconsistent with an obligation assumed by the United States to a foreign country in a treaty, convention, or agreement. (e) Reference in this regulation to 40 CFR part 1031 refers to title 40 of the Code of Federal Regulations, chapter I—Environmental Protection Agency, part 1031, Control of Air Pollution from Aircraft and Aircraft Engines (40 CFR part 1031). (f) This part contains regulations that implement compliance with certain standards contained in 40 CFR part 1031. If EPA takes any action, including the issuance of an exemption or issuance of a revised or alternate procedure, test method, or other regulation, the effect of which is to relax or delay the effective date of any provision of 40 CFR part 1031 that is made applicable to an aircraft under this part, the Administrator of FAA will grant a general administrative waiver of the more stringent requirements until this part is amended to reflect the requirements relaxed by EPA. (g) Unless otherwise stated, all terminology and abbreviations in this part that are defined in 40 CFR part 1031 have the meaning specified in that part, and all terms in 40 CFR part 1031 that are not defined in that part but that are used in this part have the meaning given them in the Clean Air Act, Public Law 91-604, as amended. (h) All interpretations of 40 CFR part 1031 that are promulgated by the EPA also apply to this part. (i) If the EPA, under 40 CFR part 1031, approves or accepts any testing and sampling procedures or methods, analytical techniques, or related equipment not identical to those specified in that part, this part requires an applicant to show that such alternate, equivalent, or otherwise non-identical procedures have been complied with, and that such alternate equipment was used to show compliance, unless the applicant elects to comply with those procedures, methods, techniques, and equipment specified in 40 CFR part 1031. (j) If the EPA, under 40 CFR 1031, prescribes special test procedures for any aircraft or aircraft engine that is not susceptible to satisfactory testing using the procedures in 40 CFR part 1031, the applicant must demonstrate to the FAA Administrator that they are in compliance with those special test procedures. (k) Wherever 40 CFR part 1031 requires agreement, acceptance, or approval by the Administrator of the EPA, this part requires a showing that such agreement or approval has been obtained. (l) Pursuant to 42 U.S.C. 7573, no state or political subdivision thereof may adopt or attempt to enforce any standard respecting emissions of any air pollutant from any aircraft or engine thereof unless that standard is identical to a standard made applicable to the aircraft by the terms of this part. (m) If EPA, by regulation or exemption, relaxes a provision of 40 CFR part 1031 that is implemented in this part, no state or political subdivision thereof may adopt or attempt to enforce the terms of this part that are superseded by the relaxed requirement. (n) If any provision of this part is rendered inapplicable to a foreign aircraft as provided in 40 CFR 1031.5 (international agreements), and paragraph (d) of this section, that provision may not be adopted or enforced against that foreign aircraft by a state or political subdivision thereof. (o) For exhaust emissions requirements of this part that apply beginning February 1, 1974, January 1, 1976, January 1, 1978, January 1, 1984, and August 9, 1985, continued compliance with those requirements is shown for engines for which the type design has been shown to meet those requirements, if the engine is maintained in accordance with applicable maintenance requirements of 14 CFR chapter I. All methods of demonstrating compliance and all model designations previously found acceptable to the Administrator shall be deemed to continue to be an acceptable demonstration of compliance with the specific standards for which they were approved. (p) Each applicant must allow the Administrator to make, or witness, any test necessary to determine compliance with the applicable provisions of this part. [Doc. No. FAA-2023-2434, Amdt. 34-7, 89 FR 31085, Apr. 24, 2024] § 34.4 Incorporation by Reference. Certain material is incorporated by reference into this part with the approval of the Director of the Federal Register under 5 U.S.C. 552(a) and 1 CFR part 51). All approved material is available for inspection at the FAA and at the National Archives and Records Administration (NARA). Contact the FAA Office of Rulemaking (ARM), 800 Independence Avenue SW, Washington, DC 20590 (telephone 202-267-9677) For information on the availability of this material at NARA, visit www.archives.gov/federal-register/cfr/ibr-locations [email protected]. (a) The material may be obtained from the following source: International Civil Aviation Organization (ICAO): Document Sales Unit, 999 University Street, Montreal, Quebec H3C 5H7, Canada, phone + 1 514-954-8022, or www.icao.int. (1) Annex 16 to the Convention on International Civil Aviation: Environmental Protection, Volume II—Aircraft Engine Emissions, Third Edition, July 2008 (ICAO Annex 16); in §§ 34.1 and 34.60. (2) Annex 16 to the Convention on International Civil Aviation: Environmental Protection, Volume II—Aircraft Engine Emissions, Fourth Edition, July 2017 (ICAO Annex 16, Volume II), in §§ 34.71 and 34.73. (b) [Reserved] [Doc. No. FAA-2023-2434, Amdt. 34-7, 89 FR 31086, Apr. 24, 2024] § 34.5 Special test procedures. The Administrator or the Administrator of the EPA may, upon written application by a manufacturer or operator of aircraft or aircraft engines, approve test procedures for any aircraft or aircraft engine that is not susceptible to satisfactory testing by the procedures set forth herein. Prior to taking action on any such application, the Administrator or the Administrator of the EPA shall consult with the other. § 34.6 Aircraft safety. (a) The provisions of this part will be revised if at any time the Administrator determines that an emission standard cannot be met within the specified time without creating a safety hazard. (b) Consistent with 40 CFR part 1031, if the FAA Administrator determines that any emission control regulation in this part cannot be safely applied to an aircraft, that provision may not be adopted or enforced against that aircraft by any state or political subdivision thereof. [Docket No. 25613, 55 FR 32861, Aug. 10, 1990, as amended by Amdt. No. 34-7, 89 FR 31086, Apr. 24, 2024] § 34.7 Exemptions. Notwithstanding part 11 of the Federal Aviation Regulations (14 CFR part 11), all petitions for rulemaking involving either the substance of an emission standard or test procedure prescribed by the EPA that is incorporated in this FAR, or the compliance date for such standard or procedure, must be submitted to the EPA. Information copies of such petitions are invited by the FAA. Petitions for rulemaking or exemption involving provisions of this FAR that do not affect the substance or the compliance date of an emission standard or test procedure that is prescribed by the EPA, and petitions for exemptions under the provisions for which the EPA has specifically granted exemption authority to the Secretary of Transportation are subject to part 11 of the Federal Aviation Regulations (14 CFR part 11). Petitions for rulemaking or exemptions involving these FARs must be submitted to the FAA. (a) Exemptions based on flights for short durations at infrequent intervals. (1) Flights of an aircraft for the purpose of export to a foreign country, including any flights essential to demonstrate the integrity of an aircraft prior to a flight to a point outside the United States. (2) Flights to a base where repairs, alterations or maintenance are to be performed, or to a point of storage, or for the purpose of returning an aircraft to service. (3) Official visits by representatives of foreign governments. (4) Other flights the Administrator determines, after consultation with the Administrator of the EPA, to be for short durations at infrequent intervals. A request for such a determination shall be made before the flight takes place. (b) Exemptions for very low production engine models. (c) Exemptions for new engines in other categories. (1) Adverse economic impact on the manufacturer; (2) Adverse economic impact on the aircraft and airline industries at large; (3) Equity in administering the standards among all economically competing parties; (4) Public health and welfare effects; and (5) Other factors which the Administrator, after consultation with the Administrator of the EPA, may deem relevant to the case in question. (d) Applicants seeking exemption from other emissions standards of this part and 40 CFR 1031.15. (e) Applications for exemption from this part shall be submitted in duplicate to the Administrator in accordance with the procedures established by the Administrator in part 11. (f) The Administrator shall publish in the Federal Register (g) No state or political subdivision thereof may attempt to enforce a standard respecting emissions from an aircraft or engine if such aircraft or engine has been exempted from such standard under this part. [Doc. No. 25613, 55 FR 32861, Aug. 10, 1990, as amended by Amdt. 34-5, 77 FR 76850, Dec. 31, 2012; Amdt. 34-7, 89 FR 31087, Apr. 24, 2024] § 34.9 Exceptions. (a) Spare engines. (1) This exception allows production of an engine for installation on an in-service aircraft. A spare engine may not be installed on a new aircraft. (2) Each spare engine must be identical to a sub-model previously certificated to meet all applicable requirements. (3) A spare engine may be used only when the emissions of the spare do not exceed the certification requirements of the original engine, for all regulated pollutants. (4) No separate approval is required to produce spare engines. (5) The record for each engine excepted under this paragraph (c) must indicate that the engine was produced as an excepted spare engine. (6) Engines produced under this exception must be labeled “EXCEPTED SPARE” in accordance with § 45.13 of this chapter. (b) On and after July 18, 2012, and before August 31, 2013, a manufacturer may produce up to six Tier 4 compliant engines that meet the NO X [Doc. No. FAA-2012-1333, 77 FR 76850, Dec. 31, 2012] Subpart B—Engine Fuel Venting Emissions (New and In-Use Aircraft Gas Turbine Engines) § 34.10 Applicability. (a) The provisions of this subpart are applicable to all new aircraft gas turbine engines of classes T3, T8, TSS, and TF equal to or greater than 36 kN (8,090 lb) rated output, manufactured on or after January 1, 1974, and to all in-use aircraft gas turbine engines of classes T3, T8, TSS, and TF equal to or greater than 36 kN (8,090 lb) rated output manufactured after February 1, 1974. (b) The provisions of this subpart are also applicable to all new aircraft gas turbine engines of class TF less than 36 kN (8,090 lb) rated output and class TP manufactured on or after January 1, 1975, and to all in-use aircraft gas turbine engines of class TF less than 36 kN (8,090 lb) rated output and class TP manufactured after January 1, 1975. [Doc. No. FAA-2012-1333, 77 FR 76850, Dec. 31, 2012] § 34.11 Standard for fuel venting emissions. (a) No liquid fuel venting emissions shall be discharged into the atmosphere from any new or in-use aircraft gas turbine engine subject to the subpart. This paragraph is directed at the elimination of intentional discharge to the atmosphere of fuel drained from fuel nozzle manifolds after engines are shut down and does not apply to normal fuel seepage from shaft seals, joints, and fittings. (b) Conformity with the standard set forth in paragraph (a) of this section shall be determined by inspection of the method designed to eliminate these emissions. (c) As applied to an airframe or an engine, any manufacturer or operator may show compliance with the liquid fuel venting and emissions requirements of this section that were effective beginning February 1, 1974 or January 1, 1975, by any means that prevents the intentional discharge of fuel from fuel nozzle manifolds after the engines are shut down. Acceptable means of compliance include one of the following: (1) Incorporation of an FAA-approved system that recirculates the fuel back into the fuel system. (2) Capping or securing the pressurization and drain valve. (3) Manually draining the fuel from a holding tank into a container. [Docket No. 25613, 55 FR 32861, Aug. 10, 1990, as amended by Amdt. No. 34-7, 89 FR 31087, Apr. 24, 2024] Subpart C—Exhaust Emissions (New Aircraft Gas Turbine Engines) § 34.20 Applicability. The provisions of this subpart are applicable to all aircraft gas turbine engines of the classes specified beginning on the dates specified in § 34.21. § 34.21 Standards for exhaust emissions. (a) Exhaust emissions of smoke from each new aircraft gas turbine engine of class T8 manufactured on or after February 1, 1974, shall not exceed a smoke number (SN) of 30. (b) Exhaust emissions of smoke from each new aircraft gas turbine engine of class TF and of rated output of 129 kN (29,000 lb) thrust or greater, manufactured on or after January 1, 1976, shall not exceed SN = 83.6 (rO) −0.274 (c) Exhaust emission of smoke from each new aircraft gas turbine engine of class T3 manufactured on or after January 1, 1978, shall not exceed a smoke number (SN) of 25. (d) Gaseous exhaust emissions from each new aircraft gas turbine engine shall not exceed: (1) For Classes TF, T3, T8 engines greater than 26.7 kN (6,000 lb) rated output: (i) Engines manufactured on or after January 1, 1984: Hydrocarbons: 19.6 g/kN rO. (ii) Engines manufactured on or after July 7, 1997: Carbon Monoxide: 118 g/kN rO. (iii) Engines of a type or model of which the date of manufacture of the first individual production model was on or before December 31, 1995, and for which the date of manufacture of the individual engine was on or before December 31, 1999 (Tier 2): Oxides of Nitrogen: (40 + 2(rPR)) g/kN rO. (iv) Engines of a type or model of which the date of manufacture of the first individual production model was after December 31, 1995, or for which the date of manufacture of the individual engine was after December 31, 1999 (Tier 2): Oxides of Nitrogen: (32 + 1.6(rPR)) g/kN rO. (v) The emission standards prescribed in paragraphs (d)(1)(iii) and (iv) of this section apply as prescribed beginning July 7, 1997. (vi) The emission standards of this paragraph apply as prescribed after December 18, 2005. For engines of a type or model of which the first individual production model was manufactured after December 31, 2003 (Tier 4): (A) That have a rated pressure ratio of 30 or less and a maximum rated output greater than 89 kN: Oxides of Nitrogen: (19 + 1.6(rPR)) g/kN rO. (B) That have a rated pressure ratio of 30 or less and a maximum rated output greater than 26.7 kN but not greater than 89 kN: Oxides of Nitrogen: (37.572 + 1.6(rPR) − 0.2087(rO)) g/kN rO. (C) That have a rated pressure ratio greater than 30 but less than 62.5, and a maximum rated output greater than 89 kN: Oxides of Nitrogen: (7 + 2(rPR)) g/kN rO. (D) That have a rated pressure ratio greater than 30 but less than 62.5, and a maximum rated output greater than 26.7 kN but not greater than 89 kN: Oxides of Nitrogen: (42.71 + 1.4286(rPR) − 0.4013(rO) + 0.00642(rPR × rO)) g/kN rO. (E) That have a rated pressure ratio of 62.5 or more: Oxides of Nitrogen: (32 + 1.6(rPR)) g/kN rO. (2) For Class TSS Engines manufactured on or after January 1, 1984: Hydrocarbons: 140 (0.92) rPR (e) Smoke exhaust emissions from each gas turbine engine shall not exceed: (1)(A) For Class TF of rated output less than 26.7 kN (6,000 lbf) manufactured on or after August 9, 1985, and before July 18, 2012: SN = 83.6(rO) −0.274 (B) For Classes TF, T3, and T8 of rated output less than 26.7 kN (6,000 lbf) manufactured on or after July 18, 2012, and before January 1, 2023: SN = 83.6(rO) −0.274 (C) For Classes TF, T3, and T8 of rated output of 26.7 kN (6,000 lbf) or less manufactured on or after January 1, 2023: SN = 83.6(rO) −0.274 (2) For Classes T3, T8, TSS, and TF of rated output greater than or equal to-26.7 kN (6,000 lbf) manufactured on or after January 1, 1984, and before January 1, 2023: SN = 83.6(rO) −0.274 (3) For Class TP of rated output equal to or greater than 1,000 kW manufactured on or after January 1, 1984: SN = 187(rO) −0.168 (4) For Class TSS manufactured on or after January 1, 2023: SN = 83.6(rO) −0.274 (f) The standards set forth in paragraphs (a), (b), (c), (d), and (e) of this section refer to a composite gaseous emission sample representing the operation cycles and exhaust smoke emission emitted during operation of the engine as specified in the applicable sections of subpart G of this part, and measured and calculated in accordance with the procedures set forth in subpart G. (g) Where a gaseous emission standard is specified by a formula, calculate and round the standard to three significant figures or to the nearest 0.1 g/kN (for standards at or above 100 g/kN). Where a smoke standard is specified by a formula, calculate and round the standard to the nearest 0.1 SN. Engines comply with an applicable standard if the testing results show that the engine type certificate family's characteristic level does not exceed the numerical level of that standard, as described in § 34.60. [Doc. No. 25613, 55 FR 32861, Aug. 10, 1990; 55 FR 37287, Sept. 10, 1990, as amended by Amdt. 34-3, 64 FR 5559, Feb. 3, 1999; Amdt. 34-4, 74 FR 19127, Apr. 28, 2009; Amdt. 34-5, 77 FR 76851, Dec. 31, 2012; Amdt. No. 34-7, 89 FR 31087, Apr. 24, 2024] § 34.23 Exhaust Emission Standards for Engines Manufactured on and after July 18, 2012. The standards of this section apply to aircraft engines manufactured on and after July 18, 2012, unless otherwise exempted or excepted. Where a gaseous emission standard is specified by a formula, calculate and round the standard to three significant figures or to the nearest 0.1 g/kN (for standards at or above 100 g/kN). Where a smoke standard is specified by a formula, calculate and round the standard to the nearest 0.1 SN. Engines comply with an applicable standard if the testing results show that the engine type certificate family's characteristic level does not exceed the numerical level of that standard, as described in § 34.60. (a) Gaseous exhaust emissions from each new aircraft gas turbine engine shall not exceed: (1) [Reserved] (2) Except as provided in §§ 34.9(b) and 34.21(c), for Classes TF, T3 and T8 engines manufactured on and after July 18, 2012, and for which the first individual production model was manufactured on or before December 31, 2013 (Tier 6): Tier 6 Oxides of Nitrogen Emission Standards for Subsonic Engines Class Rated pressure ratio—rPR Rated output rO NO X TF, T3, T8 rPR ≤ 30 26.7 < rO ≤ 89.0 38.5486 + 1.6823 (rPR) − 0.2453 (rO) − (0.00308 (rPR) (rO)). rO > 89.0 16.72 + 1.4080 (rPR). 30 < rPR < 82.6 26.7 < rO ≤ 89.0 46.1600 + 1.4286 (rPR) − 0.5303 (rO) + (0.00642 (rPR) (rO)). rO > 89.0 −1.04 + 2.0 (rPR). rPR ≥ 82.6 rO ≥ 32 + 1.6 (rPR). (3) Engines exempted from paragraph (a)(2) of this section produced on or before December 31, 2016 must be labeled “EXEMPT NEW” in accordance with § 45.13 of this chapter. No exemptions to the requirements of paragraph (a)(2) of this section will be granted after December 31, 2016. (4) For Class TSS Engines manufactured on and after July 18, 2012: Gaseous Emission Standards for Supersonic Engines Class Rated output 1 NO X CO TSS All 36 + 2.42 (rPR) 4,550 (rPR) −1.03 1 (b) Gaseous exhaust emissions from each new aircraft gas turbine engine shall not exceed: (1) For Classes TF, T3 and T8 engines of a type or model of which the first individual production model was manufactured after December 31, 2013 (Tier 8): Tier 8 Oxides of Nitrogen Emission Standards for Subsonic Engines Class Rated pressure ratio—rPR Rated output rO NO X TF, T3, T8 rPR ≤ 30 26.7 < rO ≤ 89.0 40.052 + 1.5681 (rPR) − 0.3615 (rO) − (0.0018 (rPR) (rO)). rO > 89.0 7.88 + 1.4080 (rPR). 30 < rPR < 104.7 26.7 < rO ≤ 89.0 41.9435 + 1.505 (rPR) − 0.5823 (rO) + (0.005562 (rPR) (rO)). rO > 89.0 −9.88 + 2.0 (rPR). rPR ≥ 104.7 rO ≥ 26.7 32 + 1.6 (rPR). (c) Engines (including engines that are determined to be derivative engines for the purposes of emission certification) type certificated with characteristic levels at or below the NO X X [Doc. No. 34-5, 77 FR 76851, Dec. 31, 2012, as amended by Amdt. 34-5A, 78 FR 63017, Oct. 23, 2013; 78 FR 65554, Nov. 1, 2013; Amdt. No. 34-7, 89 FR 31087, Apr. 24, 2024] § 34.25 Non-volatile particulate emissions standards (nvPM). The standards of this section apply to an aircraft engine of Class TF, T3, or T8 with a rated output greater than 26.7 kN that is manufactured after January 1, 2023. Where a maximum nvPM MC 3 mass num (a) Except as provided in paragraph (b) or (c) of this section; (1) The characteristic level for the maximum nvPM MC 3 nvPM MC (3+2.9 r0 -0.274 ) and (2) The characteristic level for nvPM mass expressed in [mg/kN] and for nvPM number expressed in [particles/kN] must not exceed the following: Table 1 to Paragraph ( a Class Rated output nvPM mass nvPM num TF, T3, T8 26.7 < rO ≤ 200 4646.9 − 21.497 (rO) 2.669 × 10 16 14 rO > 200 347.5 4.170 × 10 15 (b) For a change in type design by the type design holder, when the application for an amended type certificate is filed after January 1, 2023: (1) If the engine qualifies as a derivative engine in accordance with § 34.48 of this part, no testing is required for the engine to use the same nvPM certificated parameters (nvPM mass num MC (2) If the engine does not qualify as a derivative engine in accordance with § 34.48 of this part, the applicant must demonstrate compliance with each requirement in paragraph (a) of this section. (c) For issuance of an original type certificate when an application for type certification is filed after January 1, 2023, the applicant must demonstrate that the engine does not exceed: (1) For maximum nvPM MC (2) For the characteristic level for nvPM mass num Table 2 to Paragraph ( c Class Rated output nvPM mass nvPM num TF, T3, T8 26.7 < rO ≤ 150 1251.1 − 6.914 (rO) 1.490 × 10 16 13 rO > 150 214.0 2.780 × 10 15 (d) For engines type certificated after January 1, 2023 and prior to May 24, 2024, compliance with this part must be demonstrated no later than August 22, 2024. [Doc. No. FAA-2023-2434, Amdt. No. 34-7, 89 FR 31087, Apr. 24, 2024, as amended by Amdt. No. 34-7A, 89 FR 37972, May 7, 2024] Subpart D—Exhaust Emissions (In-use Aircraft Gas Turbine Engines) § 34.30 Applicability. The provisions of this subpart are applicable to all in-use aircraft gas turbine engines certificated for operation within the United States of the classes specified, beginning on the dates specified in § 34.31. § 34.31 Standards for exhaust emissions. (a) Exhaust emissions of smoke from each in-use aircraft gas turbine engine of Class T8, beginning February 1, 1974, shall not exceed a smoke number (SN) of 30. (b) Exhaust emissions of smoke from each in-use aircraft gas turbine engine of Class TF and of rated output of 129 kN (29,000 lb) thrust or greater, beginning January l, 1976, shall not exceed SN = 83.6(rO) −0.274 (c) The standards set forth in paragraphs (a) and (b) of this section refer to exhaust smoke emission emitted during operation of the engine as specified in the applicable sections of subpart G of this part, and measured and calculated in accordance with the procedures set forth in subpart G. [Doc. No. FAA-2012-1333, 77 FR 76852, Dec. 31, 2012] Subpart E—Certification Provisions § 34.48 Derivative engines for emissions certification purposes. (a) General. (1) The FAA has determined that a safety issue exists that requires an engine modification. (2) Emissions from the derivative engines are determined to be similar. In general, this means the emissions must meet the criteria specified in paragraph (b) of this section. The FAA may amend the criteria of paragraph (b) in unusual circumstances, for individual cases, consistent with good engineering judgment. (3) All of the regulated emissions from the derivative engine are lower than the original engine. (b) Emission similarity (i) ±3.0 g/kN for NO X (ii) ±1.0 g/kN for HC. (iii) ±5.0 g/kN for CO. (iv) ±2.0 SN for smoke (where applicable). (v) The following values apply for maximum nvPM MC mass num (A) maximum nvPM MC ( 1 MC 3 ( 2 MC 3 (B) nvPM mass ( 1 mass ( 2 mass (C) nvPM num ( 1 14 num 15 ( 2 num 15 (2) If the characteristic level of the original certificated engine model (or any other sub-models within the emission type certificate family tested for certification) before modification is at or above 95% of the applicable standard for any pollutant, an applicant must measure the proposed derivative engine model's emissions for all pollutants to demonstrate that the derivative engine's resulting characteristic levels will not exceed the applicable emission standards. If the characteristic levels of the originally certificated engine model (and all other sub-models within the emission type certificate family tested for certification) are below 95% of the applicable standard for each pollutant, the applicant may use engineering analysis consistent with good engineering judgment to demonstrate that the derivative engine will not exceed the applicable emission standards. The engineering analysis must address all modifications from the original engine, including those approved for previous derivative engines. (3) In unusual circumstances and consistent with good engineering judgement, the FAA may adjust the ranges specified in paragraph (b)(1) of this section to evaluate a proposed derivative engine. (c) Continued production allowance. (d) Non-derivative engines. [Doc. No. 34-5, 77 FR 76852, Dec. 31, 2012, as amended by Amdt. No. 34-7, 89 FR 31088, Apr. 24, 2024] Subpart F [Reserved] Subpart G—Test Procedures for Engine Exhaust Gaseous Emissions (Aircraft and Aircraft Gas Turbine Engines) § 34.60 Introduction. (a) Use the equipment and procedures specified in Appendix 3, Appendix 5, and Appendix 6 of ICAO Annex 16, as applicable, to demonstrate whether engines meet the applicable gaseous emission standards specified in subpart C of this part. Measure the emissions of all regulated gaseous pollutants. Use the equipment and procedures specified in Appendix 2 and Appendix 6 of ICAO Annex 16 to determine whether engines meet the applicable smoke standard specified in subpart C of this part. The compliance demonstration consists of establishing a mean value from testing the specified number of engines, then calculating a “characteristic level” by applying a set of statistical factors that take into account the number of engines tested. Round each characteristic level to the same number of decimal places as the corresponding emission standard. For turboprop engines, use the procedures specified for turbofan engines, consistent with good engineering judgment. (b) Use a test fuel that meets the specifications described in Appendix 4 of ICAO Annex 16. The test fuel must not have additives whose purpose is to suppress smoke, such as organometallic compounds. (c) Prepare test engines by including accessories that are available with production engines if they can reasonably be expected to influence emissions. The test engine may not extract shaft power or bleed service air to provide power to auxiliary gearbox-mounted components required to drive aircraft systems. (d) Test engines must reach a steady operating temperature before the start of emission measurements. (e) In consultation with the EPA, the FAA may approve alternative procedures for measuring emissions, including testing and sampling methods, analytical techniques, and equipment specifications that differ from those specified in this part. Manufacturers and operators may request approval of alternative procedures by written request with supporting justification to the FAA and to the Designated EPA Program Officer. To be approved, one of the following conditions must be met: (1) The engine cannot be tested using the specified procedures; or (2) The alternative procedure is shown to be equivalent to, or more accurate or precise than, the specified procedure. (f) The following landing and takeoff (LTO) cycles apply for emissions testing and for calculating weighted LTO values: LTO Test Cycles and Time in Mode Mode Class TP TF, T3, T8 TSS TIM (min) % of rO TIM (min) % of rO TIM (min) % of rO Taxi/idle 26.0 7 26.0 7 26.0 5.8 Takeoff 0.5 100 0.7 100 1.2 100 Climbout 2.5 90 2.2 85 2.0 65 Descent NA NA NA NA 1.2 15 Approach 4.5 30 4.0 30 2.3 34 (g) Engines comply with an applicable standard if the testing results show that the engine type certificate family's characteristic level does not exceed the numerical level of that standard, as described in the applicable appendix of Annex 16. (h) The system and procedure for sampling and measurement of gaseous emissions shall be as specified by in Appendices 2, 3, 4, 5 and 6 to the International Civil Aviation Organization (ICAO) Annex 16, Environmental Protection, Volume II, Aircraft Engine Emissions, Third Edition, July 2008 (incorporated by reference, see § 34.4). [Doc. No. FAA-2012-1333, 77 FR 76853, Dec. 31, 2012, as amended by Doc. No. FAA-2018-0119, Amdt. 34-6, 83 FR 9170, Mar. 5, 2018; Doc. No. FAA-2023-2434; Amdt. No. 34-7, 89 FR 31088, Apr. 24, 2024] §§ 34.61-34.71 [Reserved] Subpart H—Test Procedures and Compliance Demonstration for Non-Volatile Particulate Matter Emissions Source: Doc. No. FAA-2023-2434; Amdt. No. 34-7, 89 FR 31088, Apr. 24, 2024, unless otherwise noted. § 34.71 Non-volatile particulate matter (nvPM) test procedures. For each Class TF, T3, or T8 engine manufactured after January 1, 2023, that has a rated output greater than 26.7 kN, the test procedures for measuring each required nvPM parameter are as follows: (a) Measure the emissions of all nvPM parameters required in this part, as applicable. (b) Collect data from at least three engine tests, with each test conducted at the reference LTO time/thrust combinations shown in paragraph (h) of this section. (c) For the engines referenced in paragraph (b) of this section, all emissions certification tests may be conducted on one or more engines of the same type design. (d) Use a test fuel that meets the specifications described in Appendix 4 of ICAO Annex 16, Volume II (incorporated by reference, see § 34.4). The test fuel must not have any additive whose purpose is to suppress nvPM emissions. (e) (1) When conducting test measurements in accordance with paragraphs (a) through (c) of this section, use the equipment and procedures specified in Appendix 1, Appendix 4, Appendix 6, and Appendix 7 of ICAO Annex 16, Volume II (incorporated by reference, see § 34.4), when demonstrating whether an engine meets the applicable nvPM limit specified in § 34.25 of this part. (2) An applicant that seeks to use a procedure or equipment that differs from any specified in this part must request FAA approval in writing with supporting justification before the alternative procedure or equipment may be used to demonstrate compliance. The FAA will consult with the EPA on any such request. The FAA may approve the requested alternative for measuring nvPM, including testing and sampling methods, analytical techniques, and equipment specifications. Each request must meet one of the following conditions: (i) The engine cannot be tested using a specified procedure; or (ii) The alternative procedure is shown to be equivalent to, or more accurate or precise than, the specified procedure. (f) Any engine accessory included in a type design that may reasonably be expected to influence either nvPM emissions or measurements must be installed on the engine before testing. The test engine must not extract shaft power or bleed service air to provide power to auxiliary gearbox-mounted components necessary to drive aircraft systems; (g) For each percentage of rated output thrust level prescribed in paragraph (h) of this section, a test engine must reach and maintain a steady operating condition before any nvPM emission measurement is made; (h) The following landing and takeoff (LTO) cycles apply for nvPM emissions testing and for calculating weighted LTO values: Table 1 to Paragraph ( h Mode Class TIM (min) % of rO Taxi/idle 26.0 7 Takeoff 0.7 100 Climbout 2.2 85 Descent NA NA Approach 4.0 30 (i) An engine complies with an applicable limit if the test results show that the engine type certificate family's characteristic level does not exceed any limit for maximum nvPM MC num mass (j) All measurements collected during engine tests required in paragraph (b) of this section must be used in the calculation of nvPM. Before any calculations are made, the FAA must approve the exclusion of any measurements that the applicant seeks to exclude, including any justification for such exclusions. (k) The system and procedure for sampling and measurement of gaseous emissions shall be as specified by Appendices 1, 4, 6, and 7 of ICAO Annex 16, Volume II (incorporated by reference, see § 34.4). § 34.73 Demonstration of compliance for nvPM emissions. (a) Each compliance demonstration by an applicant requires: (1) Establishing a mean value from tests conducted on one or more engines; (2) Calculating a “characteristic level” by applying a set of statistical factors that take into account the number of engines tested in accordance with § 34.71(b) of this part; and (3) Rounding each characteristic level to the same number of decimal places as the corresponding emission limit. (b) In demonstrating compliance with this subpart, an applicant must use the nvPM measurements collected in accordance with § 34.71 as follows: (1) An engine complies with an applicable standard when the engine type certificate family's characteristic level does not exceed any nvPM limit described in § 34.25 of this part; and (2) A compliance demonstration consists of: (i) Determining the maximum nvPM MC mass num (ii) Correcting each data point to standard temperature and pressure conditions; (iii) Applying the appropriate statistical factor shown in Table 6-1 of Appendix 6 of ICAO Annex 16, Volume II (incorporated by reference, see § 34.4) to account for the number of engines tested; and (iv) Rounding each characteristic level to the same number of decimal places as the corresponding nvPM limit in § 34.25 of this part. (c) (1) In determining maximum nvPM MC MC MC (i) Method 1— (A) Average the individual data points measured at each thrust setting to develop one dataset of nvPM mass concentration for each engine tested, creating an average dataset for each engine; and (B) Use the averages generated in paragraph (c)(1) of this section to develop a single curve fit to determine the overall maximum nvPM MC (ii) Method 2— (A) Measure individual data points of nvPM MC (B) Determine the maximum nvPM MC (C) If more than one engine is physically tested, average the nvPM MC MC (iii) Method 3— (A) Develop a curve fit of nvPM MC (B) From each curve fit developed in paragraph (c)(1) of this section, use the resultant curve fit equation to solve for each maximum; (C) Average the maximum values for each engine physically tested; and (D) Average the maximum values determined in paragraph (c)(1)(iii)(C) of this section to determine the overall average maximum nvPM MC (2) Using the data measured in § 34.71(b) of this part, determine the nvPM characteristic levels for nvPM num mass (i) Average all nvPM num mass (ii) Multiply the averaged measurement from paragraph (a)(2)(i) of this section by the appropriate time in mode (TIM) as shown in § 34.71(h); (iii) Sum the products from paragraph (a)(2)(ii) of this section to determine the LTO values for nvPM num mass (iv) Divide the result of paragraph (a)(2)(iii) of this section by the characteristic level factor, shown in Table A6-1 of Appendix 6 of ICAO Annex 16, Volume II (incorporated by reference, see § 34.4), for the number of engines physically tested to determine the nvPM mass num (d) The data used to determine the regressed curves must meet a 90% confidence interval, CI 90 90 90 (e) The following information must be reported to the FAA substantiating compliance with nvPM limits of § 34.25 of this part: (1) The values of nvPM emissions measured and computed in accordance with the procedures and calculated as required by this subpart in § 34.71 of this part and paragraphs (a) through (d) of this section; (2) For each engine tested: (i) Engine model, series, and serial number; (ii) Rated thrust (kN); (iii) Overall pressure ratio; (iv) The methods of data acquisition; and (v) The method of data analysis chosen by the applicant under paragraphs (a) through (d) of this section. (3) Demonstration that the fuel used for each test is in compliance with the fuel specification listed in Appendix 4 of ICAO Annex 16, Volume II (incorporated by reference, see § 34.4). For the fuel used for nvPM emissions certification, include the following fuel characteristics: (i) Hydrogen/carbon ratio; (ii) Net heat of combustion (MJ/kg); (iii) Hydrogen content (mass per cent); (iv) Total aromatics content (volume per cent); (v) Naphthalene content (volume per cent); and (vi) Sulfur content (ppm by mass). (4) For each engine tested for certification purposes, the following values measured and computed in accordance with the procedures of § 34.71 of this part: (i) Fuel flow (kg/s) at each thrust setting of the LTO cycle; (ii) nvPM EI mass (iii) nvPM mass emission rate [nvPM EI mass (iv) nvPM EI num (v) nvPM number emission rate [nvPM EI num (vi) Total gross emissions of nvPM mass measured over the LTO cycle in mg; (vii) Total gross emissions of nvPM number measured over the LTO cycle in particles; (viii) LTO nvPM mass (ix) LTO nvPM num (x) Maximum nvPM MC 3 (5) For each engine tested for certification purposes, the characteristic levels for the maximum nvPM MC mass num

Related documents

Record · ID 505693 · SHA-256 fb0c252082228e0c
Retrieved via Conceptio — every document is proof-bundled with source, license, and retrieval metadata.