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	"Rhttps://data.globalchange.gov/gcmd_keyword/f6b97280-74d0-4233-bd17-f9f3d9dd21c2" -> "LHYDROCHLOROFLUOROCARBONS|Datatype: xsd:string" [ label="rdfs:label" ];
	"Rhttps://data.globalchange.gov/gcmd_keyword/f6b97280-74d0-4233-bd17-f9f3d9dd21c2" -> "LHCFCs, with one or more hydrogen-carbon bonds  are slated to replace CFCs\nin most of the current applications. HCFCs are more unstable and subject\nto hydroxyl radical and  ozone attack early in their gas phase career in\nthe atmosphere. Therefore, their atmospheric lifetime is projected to be\nshorter  and their chance of reaching the stratosphere\ndecreased. [Spectator; v 272; p 9-11; 1994][New Scientist; v 141; p 6-7;\n1994.]|Datatype: xsd:string" [ label="dcterms:description" ];
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	"LHCFCs, with one or more hydrogen-carbon bonds  are slated to replace CFCs\nin most of the current applications. HCFCs are more unstable and subject\nto hydroxyl radical and  ozone attack early in their gas phase career in\nthe atmosphere. Therefore, their atmospheric lifetime is projected to be\nshorter  and their chance of reaching the stratosphere\ndecreased. [Spectator; v 272; p 9-11; 1994][New Scientist; v 141; p 6-7;\n1994.]|Datatype: xsd:string" [ label="HCFCs, with one or more hydrogen-carbon bonds  are slated to replace CFCs\nin most of the current applications. HCFCs are more unstable and subject\nto hydroxyl radical and  ozone attack early in their gas phase career in\nthe atmosphere. Therefore, their atmospheric lifetime is projected to be\nshorter  and their chance of reaching the stratosphere\ndecreased. [Spectator; v 272; p 9-11; 1994][New Scientist; v 141; p 6-7;\n1994.]|Datatype: xsd:string", shape = record ];

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