{"id":2070,"date":"2019-04-08T13:41:21","date_gmt":"2019-04-08T04:41:21","guid":{"rendered":"https:\/\/www.acap.asia\/?post_type=achievecustom&#038;p=2070"},"modified":"2020-11-12T10:18:08","modified_gmt":"2020-11-12T01:18:08","slug":"571","status":"publish","type":"achievecustom","link":"https:\/\/www.acap.asia\/en\/achievecustom\/2070\/","title":{"rendered":"\u67fb\u8aad\u4ed8\u304d\u8ad6\u6587 (Peer-reviewed Articles) &#8211; 2017"},"featured_media":0,"template":"","achievecustom-category":[],"acf":{"ac_field":[{"ac_field_ group":"Atmospheric deposition","ac_field_list":[{"list_paper":"K.Sasaka, Q.Wang, <u>K. Sakamoto<\/u>, Comparison of Plant-derived Carbonaceous Components (Organic Molecular Markers and 14Carbon) in PM2.5 in Summer and Autumn at Kazo, Japan, Asian Journal of Atmospheric Environment, 11: 165-175 (2017)"},{"list_paper":"K. Sato, Y. Nakashima, Y. Morino, Y. Imamura, <u>J. Kurokawa<\/u>, and Y. 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