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<article language="en">
	<journal>
		<journal_title>Atmospheric Chemistry and Physics Discussions</journal_title>
		<journal_url>www.atmos-chem-phys-discuss.net</journal_url>
		<issn>1680-7367</issn>
		<eissn>1680-7375</eissn>
		<volume_number>2</volume_number>
		<issue_number>6</issue_number>
		<publication_year>2002</publication_year>
	</journal>
	<doi>10.5194/acpd-2-1905-2002</doi>
	<article_url>http://www.atmos-chem-phys-discuss.net/2/1905/2002/</article_url>
	<abstract_html>http://www.atmos-chem-phys-discuss.net/2/1905/2002/acpd-2-1905-2002.html</abstract_html>
	<fulltext_pdf>http://www.atmos-chem-phys-discuss.net/2/1905/2002/acpd-2-1905-2002.pdf</fulltext_pdf>
	<start_page>1905</start_page>
	<end_page>1938</end_page>
	<publication_date>2002-11-07</publication_date>
	<article_title content_type="html">Protocol for the development of the Master Chemical Mechanism, MCM v3 (Part B): tropospheric degradation of aromatic volatile organic compounds</article_title>
	<authors>
		<author numeration="1" affiliations="1">
			<name>M. E. Jenkin</name>
		</author>
		<author numeration="2" affiliations="2,3">
			<name>S. M. Saunders</name>
		</author>
		<author numeration="3" affiliations="2">
			<name>V. Wagner</name>
		</author>
		<author numeration="4" affiliations="2">
			<name>M. J. Pilling</name>
		</author>
	</authors>
	<affiliations>
		<affiliation numeration="1" content_type="html">Department of Environmental Science and Technology, Imperial College, Silwood Park, Ascot, Berkshire, SL5 7PY, UK</affiliation>
		<affiliation numeration="2" content_type="html">School of Chemistry, University of Leeds, Leeds, LS2 9JT, UK</affiliation>
		<affiliation numeration="3" content_type="html">Disciplines of Chemistry and Geography, University of Western Australia, Nedlands, Western Australia 6009, Australia</affiliation>
	</affiliations>
	<abstract content_type="html">Kinetic and mechanistic data relevant to the tropospheric degradation of
      aromatic volatile organic compounds (VOC) have been used to define a mechanism development protocol, which has been used to construct degradation
      schemes for 18 aromatic VOC as part of version 3 of the Master Chemical Mechanism
      (MCM v3). This is complementary to the treatment of 107 non-aromatic VOC, presented in a companion paper. The protocol is divided
      into a series of subsections describing initiation reactions, the degradation
      chemistry to first generation products via a number of competitive routes,
      and the further degradation of first and subsequent generation products. Emphasis is placed on describing where the treatment differs from that
      applied to the non-aromatic VOC. The protocol is based on work available in
      the open literature up to the beginning of 2001, and some other studies known
      by the authors which were under review at the time. Photochemical Ozone Creation Potentials (POCP) have been calculated for the 18 aromatic VOC in
      MCM v3 for idealised conditions appropriate to north-west Europe, using a photochemical trajectory model. The POCP values provide a measure of the
      relative ozone forming abilities of the VOC. These show distinct differences
      from POCP values calculated previously for the aromatics, using earlier versions of the MCM, and reasons for these differences are
      discussed.</abstract>
	<references>
	</references>
</article>

