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1

International, SAE. Particulates-emission control ; NOx emission control; intergrated emissions systems; emissions measurements; and worldwide OnRoad emission control experience Europe, USA and Japan. Warrendale, PA: Society of Automotive Engineers, 2006.

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2

Center for Environmental Research Information (U.S.) and Air and Energy Engineering Research Laboratory, eds. User's guide: Emission control technologies and emission factors for unpaved road fugitive emissions. Cincinnati, Ohio: Center for Environmental Research Information, U.S. Environmental Protection Agency, 1987.

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3

Homolya, James B. Primary sulfate emission factors for the NAPAP emissions inventory. Research Triangle Park, NC: U.S. Environmental Protection Agency, Research and Development, Air and Energy Engineering Research Laboratory, 1986.

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4

Ministry of Economic Affairs of the Netherlands., ed. Allocation of CO2 emission allowances: Distribution of emission allowances in a European emissions trading scheme. Netherlands: KPMG Sustainability and [Ecofys], 2002.

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5

Berger, Adrienne Heller Heather Unger Louis. Zero Emission Vehicles: Forecasting Fleet Scenarios and their Emissions Implications. Washington, D.C.: Transportation Research Board, 2019. http://dx.doi.org/10.17226/25709.

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6

Stockton, Margie B. Criteria pollutant emission factors for the 1985 NAPAP emissions inventory. Research Triangle Park, NC: U.S. Environmental Protection Agency, Air and Energy Engineering Research Laboratory, 1987.

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7

Stockton, Margie B. Criteria pollutant emission factors for the 1985 NAPAP emissions inventory. Research Triangle Park, NC: U.S. Environmental Protection Agency, Air and Energy Engineering Research Laboratory, 1987.

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8

E, Stelling John H., and Air and Energy Engineering Research Laboratory., eds. Criteria pollutant emission factors for the 1985 NAPAP emissions inventory: Project summary. Research Triangle Park, NC: U.S. Environmental Protection Agency, Air and Energy Engineering Research Laboratory, 1987.

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9

E, Stelling John H., and Air and Energy Engineering Research Laboratory, eds. Criteria pollutant emission factors for the 1985 NAPAP emissions inventory: Project summary. Research Triangle Park, NC: U.S. Environmental Protection Agency, Air and Energy Engineering Research Laboratory, 1987.

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10

Kindbom, Karin, Ingrid Mawdsley, Ole-Kenneth Nielsen, Kristina Saarinen, Kári Jónsson, and Kristin Aasestad. Emission factors for SLCP emissions from residential wood combustion in the Nordic countries. Copenhagen: Nordic Council of Ministers, 2017. http://dx.doi.org/10.6027/tn2017-570.

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11

Warn, Thomas E. Development and selection of ammonia emission factors for the 1985 NAPAP emissions inventory. Research Triangle Park, NC: U.S. Environmental Protection Agency, Air and Energy Engineering Research Laboratory, 1990.

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12

Warn, Thomas E. Development and selection of ammonia emission factors for the 1985 NAPAP emissions inventory. Research Triangle Park, NC: U.S. Environmental Protection Agency, Air and Energy Engineering Research Laboratory, 1990.

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13

Group, March Consulting, and Great Britain. Dept. of the Environment, Transport and the Regions., eds. UK emissions of HFCs, PFCS and SF₆ and potential emission reduction options: Final report. London: Dept. of the Environment, Transport and the Regions, 1999.

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14

Engineers, Society of Automotive, and International Fall Fuels & Lubricants Meeting & Exposition (1996 : San Antonio, Tex.), eds. Emissions and emissions control. Warrendale, PA: Society of Automotive Engineers, 1996.

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15

Heiss, Wolf-Dieter, Curt Beil, Karl Herholz, Günter Pawlik, Rainer Wagner, and Klaus Wienhard. Atlas der Positronen-Emissions-Tomographie des Gehirns / Atlas of Positron Emission Tomography of the Brain. Berlin, Heidelberg: Springer Berlin Heidelberg, 1985. http://dx.doi.org/10.1007/978-3-642-82566-8.

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16

United States. Environmental Protection Agency. Office of Radiation and Indoor Air., ed. Comments and response to comments: NESHAPS, national emission standards for radon emissions from phosphogypsum stacks. Washington, D.C: U.S. Environmental Protection Agency, Office of Radiation and Indoor Air, 1998.

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17

Heiss, W.-D. 1939 Dec. 31-, ed. Atlas der Positronen-Emissions-Tomographie des Gehirns =: Atlas of positron emission tomography of the brain. Berlin: Springer-Verlag, 1985.

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18

United States. Environmental Protection Agency. Office of Radiation and Indoor Air, ed. Comments and responses to comments: NESHAPS, national emission standards for radon emissions from phosphogypsum stacks. Washington, D.C: U.S. Environmental Protection Agency, Office of Radiation and Indoor Air, 1998.

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19

Engineers, Society of Automotive, and SAE International Congress & Exposition (1996 : Detroit, Mich.), eds. Engine emissions and emissions measurement. Warrendale, Pa: Society of Automotive Engineers, 1996.

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20

Engineers, Society of Automotive, and SAE International Congress and Exposition (1996 : Detroit, Mich.), eds. Engine emissions and emissions measurement. Warrendale, Pa: Society of Automotive Engineers, 1996.

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21

International Symposium for PET and Molecular Imaging (2003 Sapporo, Japan). PET and molecular imaging: State of the art and future perspectives : proceedings of the International Symposium for PET and Molecular Imaging, held in Sapporo, Japan, between 1 and 3 November 2003. Edited by Tamaki Nagara and Kuge Yūji. Amsterdam: Elsevier, 2004.

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22

United States. Environmental Protection Agency. Office of Transportation and Air Quality. Program update: Proposal of emission control area to reduce emissions from ships in the U.S. Caribbean. Washington, D.C.]: U.S. Environmental Protection Agency, Office of Transportation and Air Quality, 2010.

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23

Tangena, B. H. Optimalisatie bestrijding verzurende emissies. 's-Gravenhage: Ministerie van Volkshuisvesting, Ruimtelijke Ordening en Milieubeheer, 1985.

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24

Division, GCA Corporation Technology, and United States. Environmental Protection Agency. Emission Standards and Engineering Division, eds. Hazardous waste ranking: Assessment of air emissons [i.e. emissions] from hazardous waste treatment, storage, and disposal facilities. Research Triangle Park, N.C: U.S. Environmental Protection Agency, Office of Air Quality Planning and Standards, Emission Standards and Engineering Division, 1985.

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25

1948-, Waterland L. R., and United States. Environmental Protection Agency, eds. Testing the performance of continuous emission monitors for measuring trace metal and organic species emissions from incinerators. [Washington, D.C.?: U.S. Environmental Protection Agency, 1996.

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26

United States. Environmental Protection Agency. Office of Transportation and Air Quality. Assessment and Standards Division. Development of emission rates for light-duty vehicles in the Motor Vehicle Emissions Simulator (MOVES2010): Final report. Washington, D.C.]: Assessment and Standards Division, Office of Transportation and Air Quality, U.S. Environmental Protection Agency, 2011.

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27

United States. Environmental Protection Agency. Office of Transportation and Air Quality. Assessment and Standards Division. Development of emission rates for light-duty vehicles in the motor vehicle emissions simulator (MOVES2009): Draft report. Washington, D.C.]: Assessment and Standards Division, Office of Transportation and Air Quality, U.S. Environmental Protection Agency, 2009.

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28

1948-, Waterland L. R., and United States. Environmental Protection Agency., eds. Testing the performance of continuous emission monitors for measuring trace metal and organic species emissions from incinerators. [Washington, D.C.?: U.S. Environmental Protection Agency, 1996.

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29

International PET Symposium (1999 Hokkaido, Japan). Positron emission tomography in the millennium: Proceedings of the International PET Symposium held in Hokkaido, Japan 24-26th September 1999. Edited by Tamaki Nagara. Amsterdam: Elsevier Science B. V., 2000.

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30

Stelling, John H. E. VOC emission factors for NAPAP emission inventory. Research Triangle Park, NC: U.S. Environmental Protection Agency, Air and Energy Engineering Research Laboratory, 1987.

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31

Engineers, Society of Automotive, and International Spring Fuels & Lubricants Meeting (1997 : Dearborn, Mich.), eds. Factors influencing emissions and emissions formation processes. Warrendale, PA: Society of Automotive Engineers, 1997.

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32

Skalskyi, Valentyn, Zinoviy Nazarchuk, and Olena Stankevych. Acoustic Emission. Cham: Springer International Publishing, 2022. http://dx.doi.org/10.1007/978-3-031-11291-1.

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33

Nazarchuk, Zinoviy, Valentyn Skalskyi, and Oleh Serhiyenko. Acoustic Emission. Cham: Springer International Publishing, 2017. http://dx.doi.org/10.1007/978-3-319-49350-3.

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34

Antes, Ralf, Bernd Hansjürgens, Peter Letmathe, and Stefan Pickl, eds. Emissions Trading. Berlin, Heidelberg: Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-20592-7.

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35

Antes, Ralf, Bernd Hansjürgens, and Peter Letmathe, eds. Emissions Trading. New York, NY: Springer New York, 2008. http://dx.doi.org/10.1007/978-0-387-73653-2.

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36

Frenz, Walter. Emissions-handelsrecht. Berlin, Heidelberg: Springer Berlin Heidelberg, 2005. http://dx.doi.org/10.1007/b138431.

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37

Meynell, Katharine. Emissions book. London: Gefn Press, 1992.

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38

Engineers, Society of Automotive, and SAE International Spring Fuels & Lubricants Meeting and Exposition (2004 : Toulouse, France), eds. Emissions technologies. Warrendale, PA: Society of Automotive Engineers, 2004.

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39

Engineers, Society of Automotive, and International Fall Fuels & Lubricants Meeting & Exposition (1998 : San Francisco, Calif.), eds. SI emissions. Warrendale, PA: Society of Automotive Engineers, 1998.

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40

Misenheimer, David C. Ammonia emission factors for the NAPAP emission inventory. Research Triangle Park, NC: U.S. Environmental Protection Agency, Air and Energy Engineering Research Laboratory, 1987.

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41

Inc, Bergwall Productions. Electronic Emission Control (Auto Emissions Explained). Delmar Thomson Learning, 1994.

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42

Inc, Bergwall Productions. Mechanical Emission Control (Auto Emissions Explained). Delmar Thomson Learning, 1994.

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43

Particulates-emission control, NOx emission control, integrated emissions systems, emissions measurements, and worldwide on-road emission control experience Europe, USA and Japan. Warrendale, PA: Society of Automotive Engineers, Inc., 2005.

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44

Konopel'ko, Leonid, Oleg Popov, Yuriy Kustikov, Anna Kolobova, Andrey Mal'ginov, Dmitriy Manevich, Ol'ga Pinchuk, Anton Pronin, and Vladimir Shevchenko. Analytical control of industrial emissions. Triumph Publishing, 2023. http://dx.doi.org/10.29039/978-5-94472-135-8-04-2023.

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The presented monograph, in addition to information on various aspects of the use of automatic measuring systems for monitoring emissions of harmful pollutants, on the control of emissions of the so-called. "greenhouse" contains information on gases, the application of emission control systems using calculation methods based on the modeling of technological processes, and an overview of specific examples of the practical use in the Russian Federation of automatic measurement systems for emission control.
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45

Ye, Liu, Jose Porro, and Ingmar Nopens, eds. Quantification and Modelling of Fugitive Greenhouse Gas Emissions from Urban Water Systems. IWA Publishing, 2022. http://dx.doi.org/10.2166/9781789060461.

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Abstract With increased commitment from the international community to reduce greenhouse gas (GHG) emissions from all sectors in accordance with the Paris Agreement, the water sector has never felt the pressure it is now under to transition to a low-carbon water management model. This requires reducing GHG emissions from grid-energy consumption (Scope 2 emissions), which is straightforward; however, it also requires reducing Scope 1 emissions, which include nitrous oxide and methane emissions, predominantly from wastewater handling and treatment. The pathways and factors leading to biological nitrous oxide and methane formation and emissions from wastewater are highly complex and site-specific. Good emission factors for estimating the Scope 1 emissions are lacking, water utilities have little experience in directly measuring these emissions, and the mathematical modelling of these emissions is challenging. Therefore, this book aims to help the water sector address the Scope 1 emissions by breaking down their pathways and influencing factors, and providing guidance on both the use of emission factors, and performing direct measurements of nitrous oxide and methane emissions from sewers and wastewater treatment plants. The book also dives into the mathematical modelling for predicting these emissions and provides guidance on the use of different mathematical models based upon your conditions, as well as an introduction to alternative modelling methods, including metabolic, data-driven, and AI methods. Finally, the book includes guidance on using the modelling tools for assessing different operating strategies and identifying promising mitigation actions. A must-have book for anyone needing to understand, account for, and reduce water utility Scope 1 emissions. ISBN: 9781789060454 (Paperback) ISBN: 9781789060461 (eBook) ISBN: 9781789060478 (ePub)
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46

Dept.of Environment. Manual of Acidic Emission Abatement Technologies (Acidic Emissions Abatement Processes). Stationery Office Books, 1992.

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47

Environment, Dept of. Manual of Acidic Emission Abatement Technologies: Acidic Emissions Abatement Processes. HMSO Books, 1991.

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48

Manual of Acidic Emission Abatement Technologies (Acidic Emissions Abatement Processes). Stationery Office Books, 1992.

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49

Dept.of Environment. Manual of Acidic Emission Abatement Technologies: Acidic Emissions Abatement Processes. HMSO Books, 1991.

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50

Manual of acidic emission abatement technologies: Acidic emissions abatement processes. London: HMSO, 1991.

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