{"created":"2021-03-01T06:00:09.030932+00:00","id":7694,"links":{},"metadata":{"_buckets":{"deposit":"255bd4eb-350b-4d58-a3b5-4532b79dec3f"},"_deposit":{"id":"7694","owners":[],"pid":{"revision_id":0,"type":"depid","value":"7694"},"status":"published"},"_oai":{"id":"oai:kitami-it.repo.nii.ac.jp:00007694","sets":["1:86"]},"author_link":["39528","39529","39530","39531","39524","39525","39526","44875"],"item_1646810750418":{"attribute_name":"\u51fa\u7248\u30bf\u30a4\u30d7","attribute_value_mlt":[{"subitem_version_resource":"http://purl.org/coar/version/c_970fb48d4fbd8a85","subitem_version_type":"VoR"}]},"item_3_alternative_title_198":{"attribute_name":"\u305d\u306e\u4ed6\u306e\u30bf\u30a4\u30c8\u30eb","attribute_value_mlt":[{"subitem_alternative_title":"Iron-Catalyzed Carbonization of Woody Biomass for Coproduction of Liquid Fuels and Functional Carbon(Transformation Technology of Biomass -Overview of Utilization and Development of Catalysts-"}]},"item_3_biblio_info_186":{"attribute_name":"\u66f8\u8a8c\u60c5\u5831","attribute_value_mlt":[{"bibliographicIssueDates":{"bibliographicIssueDate":"2011-06","bibliographicIssueDateType":"Issued"},"bibliographicIssueNumber":"6","bibliographicPageEnd":"546","bibliographicPageStart":"541","bibliographicVolumeNumber":"90","bibliographic_titles":[{"bibliographic_title":"Journal of the Japan Institute of Energy"}]}]},"item_3_description_184":{"attribute_name":"\u6284\u9332","attribute_value_mlt":[{"subitem_description":"Wood loaded with 3% iron is carbonized at 500\u2103 to yield char together with liquid fuel fraction, and subsequently the 500\u2103-char is re-carbonized at 850\u2103 for obtaining both crystallized mesoporous carbon (CMC) and hydrogen-rich gas. This iron-catalyzed carbonization of wood carried out at 900\u2103 is evaluated in terms of fluid fuel production by comparing with corresponding 2% nickel-catalyzed and non-catalyzed carbonizations. The results showed that 3% iron loading exceeded non-loading in both the upgrading of oil and the production of hydrogen, and the effect of the former was almost equal to that of 2% nickel loading. For CMC, its post-treatments to produce practical electroconductive carbon and adsorbent for macromolecules in liquid phase are described to demonstrate the effectiveness.","subitem_description_type":"Abstract"}]},"item_3_full_name_183":{"attribute_name":"\u8457\u8005\u5225\u540d","attribute_value_mlt":[{"nameIdentifiers":[{"nameIdentifier":"39528","nameIdentifierScheme":"WEKO"}],"names":[{"name":"SUZUKI, Tsutomu","nameLang":"en"}]},{"nameIdentifiers":[{"nameIdentifier":"39529","nameIdentifierScheme":"WEKO"}],"names":[{"name":"KAWAKAMI, Daisuke","nameLang":"en"}]},{"nameIdentifiers":[{"nameIdentifier":"39530","nameIdentifierScheme":"WEKO"}],"names":[{"name":"SUZUKI, Kyoko","nameLang":"en"}]},{"nameIdentifiers":[{"nameIdentifier":"39531","nameIdentifierScheme":"WEKO"}],"names":[{"name":"HATTORI, 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