{"id":2433,"date":"2025-04-27T15:46:47","date_gmt":"2025-04-27T07:46:47","guid":{"rendered":"http:\/\/www.osaces.com\/?p=2433"},"modified":"2025-04-27T15:46:47","modified_gmt":"2025-04-27T07:46:47","slug":"yangyushengxinmijuegoujianshuitizijinglidehuangjinbilijiyushengtaidaixiegongchengdexitongyoua","status":"publish","type":"post","link":"http:\/\/www.osaces.com\/fr\/yangyushengxinmijuegoujianshuitizijinglidehuangjinbilijiyushengtaidaixiegongchengdexitongyoua\/","title":{"rendered":"Conseils d'\u00e9conomie pour la pisciculture : construire le nombre d'or de la puissance d'auto-\u00e9puration des masses d'eau - optimisation du syst\u00e8me bas\u00e9e sur l'ing\u00e9nierie m\u00e9tabolique \u00e9cologique"},"content":{"rendered":"<p><span style=\"font-family: helvetica, arial, sans-serif;\"><strong>\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0 --Changement de paradigme : de la \"maintenance artificielle\" \u00e0 l'\"autoproduction \u00e9cologique\".<\/strong>\u200c<\/span><\/p>\n<p class=\"marklang-paragraph\"><span style=\"font-family: helvetica, arial, sans-serif;\">\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0 Le mod\u00e8le traditionnel d'\u00e9levage de poissons, qui repose sur des changements d'eau fr\u00e9quents et des interventions sur l'\u00e9quipement, viole en fait les lois fondamentales de l'\u00e9cosyst\u00e8me aquatique. Des recherches men\u00e9es \u00e0 l'universit\u00e9 des sciences et technologies marines de Tokyo ont montr\u00e9 que lorsque le pouvoir d'auto-\u00e9puration d'une masse d'eau atteint le niveau d'une eau de qualit\u00e9, il est possible d'obtenir une eau de qualit\u00e9 sup\u00e9rieure.<strong>seuil du nombre d'or<\/strong>Lorsque le flux m\u00e9tabolique du syst\u00e8me peut r\u00e9guler de mani\u00e8re autonome les fluctuations de la qualit\u00e9 de l'eau, le co\u00fbt de maintenance est r\u00e9duit de 76%. Cet article r\u00e9v\u00e8le les quatre ratios fondamentaux de la construction d'une \u00e9nergie auto-\u00e9puratrice et sa logique biochimique sous-jacente.<\/span><\/p>\n<hr \/>\n<h3><span style=\"font-family: helvetica, arial, sans-serif;\">\u200c<strong>I. Loi pyramidale de la structure des colonies bact\u00e9riennes : \u00e9quilibre dynamique entre nitrification et h\u00e9t\u00e9rotrophie<\/strong>\u200c<\/span><\/h3>\n<p class=\"marklang-paragraph\"><span style=\"font-family: helvetica, arial, sans-serif;\">\u200c<strong>1.1 La loi 5:3:2 pour les bact\u00e9ries nitrifiantes\/h\u00e9t\u00e9rotrophes<\/strong>\u200c<\/span><br \/>\n<span style=\"font-family: helvetica, arial, sans-serif;\">D\u00e9termin\u00e9 par hybridation fluorescente in situ (FISH) :<\/span><\/p>\n<ul>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">\u200c<strong>le sommet d'un b\u00e2timent<\/strong>Les bact\u00e9ries nitrifiantes (Nitrobacter subtilis + Nitrobacter) repr\u00e9sentent 50% et sont responsables de la conversion ammoniac-azote.<\/span><\/li>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">\u200c<strong>de rang moyen<\/strong>Les bact\u00e9ries cellulolytiques repr\u00e9sentent 30% et d\u00e9gradent les d\u00e9bris organiques.<\/span><\/li>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">\u200c<strong>fond (d'une pile)<\/strong>Les bact\u00e9ries d\u00e9nitrifiantes repr\u00e9sentent 20% et \u00e9liminent l'accumulation de nitrates.<\/span><br \/>\n<span style=\"font-family: helvetica, arial, sans-serif;\">Ce rapport a donn\u00e9 lieu \u00e0 une efficacit\u00e9 maximale de conversion de l'azote (921 TP3T) qui a largement d\u00e9pass\u00e9 les 681 TP3T des eaux naturelles.<\/span><\/li>\n<\/ul>\n<p class=\"marklang-paragraph\"><span style=\"font-family: helvetica, arial, sans-serif;\">\u200c<strong>1.2 R\u00e9gulation \u00e0 l'\u00e9chelle nanom\u00e9trique de l'\u00e9paisseur du biofilm<\/strong>\u200c<\/span><br \/>\n<span style=\"font-family: helvetica, arial, sans-serif;\">Des observations ont \u00e9t\u00e9 faites \u00e0 l'aide de la microscopie \u00e0 force atomique (AFM) :<\/span><\/p>\n<ul>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">Lorsque l'\u00e9paisseur du biofilm est<strong>80-120\u03bcm<\/strong>\u00c0 cette \u00e9poque, le gradient interne d'oxyg\u00e8ne dissous (6 mg\/L \u2192 0,5 mg\/L) \u00e9tait juste suffisant pour soutenir la r\u00e9action coupl\u00e9e de nitrification\/d\u00e9nitrification.<\/span><\/li>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">Adoption d'un m\u00e9dia filtrant en c\u00e9ramique poreuse (taille des pores 50-300\u03bcm, distribution \u00e9chelonn\u00e9e), qui peut am\u00e9liorer la densit\u00e9 de la colonie bact\u00e9rienne jusqu'\u00e0 3,6\u00d710^8 UFC\/cm\u00b3.<\/span><\/li>\n<\/ul>\n<p class=\"marklang-paragraph\"><span style=\"font-family: helvetica, arial, sans-serif;\">\u200c<strong>1.3 Contr\u00f4le hydrodynamique de la migration de la flore<\/strong>\u200c<\/span><br \/>\n<span style=\"font-family: helvetica, arial, sans-serif;\">Installation \u00e0 la sortie de la pompe \u00e0 eau de circulation<strong>venturi<\/strong>: :<\/span><\/p>\n<ul>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">La vitesse d'\u00e9coulement augmente brusquement de 0,2 m\/s \u00e0 1,5 m\/s, ce qui provoque le d\u00e9logement du biofilm vieilli.<\/span><\/li>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">Les fragments d\u00e9log\u00e9s ont \u00e9t\u00e9 utilis\u00e9s comme paquets de souches et recolonis\u00e9s dans la zone d'\u00e9coulement lent (0,05 m\/s).<\/span><br \/>\n<span style=\"font-family: helvetica, arial, sans-serif;\">Ce m\u00e9canisme permet un renouvellement naturel de la flore et \u00e9vite le colmatage du biofilm (la porosit\u00e9 est maintenue au-dessus de 821 TP3T).<\/span><\/li>\n<\/ul>\n<hr \/>\n<h3><span style=\"font-family: helvetica, arial, sans-serif;\">\u200c<strong>II. r\u00e9gulation pr\u00e9cise du rapport carbone\/azote : la ligne d'or m\u00e9tabolique 12:1<\/strong>\u200c<\/span><\/h3>\n<p class=\"marklang-paragraph\"><span style=\"font-family: helvetica, arial, sans-serif;\">\u200c<strong>2.1 Base thermodynamique du bilan de carbone et d'azote<\/strong>\u200c<\/span><br \/>\n<span style=\"font-family: helvetica, arial, sans-serif;\">Calcul\u00e9e \u00e0 partir de l'\u00e9nergie libre de Gibbs :<\/span><\/p>\n<ul>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">Lorsque C\/N=12, les bact\u00e9ries h\u00e9t\u00e9rotrophes consomment 4,2 g d'oxyg\u00e8ne pour oxyder 1 g de mati\u00e8re organique, ce qui correspond parfaitement \u00e0 la demande en oxyg\u00e8ne des bact\u00e9ries nitrifiantes.<\/span><\/li>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">Tout \u00e9cart par rapport \u00e0 ce rapport entra\u00eene une lutte pour l'oxyg\u00e8ne dissous : la consommation d'oxyg\u00e8ne par les bact\u00e9ries h\u00e9t\u00e9rotrophes augmente lorsque le rapport C\/N est &gt; 15 ; la nitrification est inhib\u00e9e lorsque le rapport C\/N est &lt; 8.<\/span><\/li>\n<\/ul>\n<p class=\"marklang-paragraph\"><span style=\"font-family: helvetica, arial, sans-serif;\">\u200c<strong>2.2 Syst\u00e8me intelligent de dosage de la source de carbone<\/strong>\u200c<\/span><br \/>\n<span style=\"font-family: helvetica, arial, sans-serif;\">Installation de moniteurs COT\/TN en ligne reli\u00e9s \u00e0 des pompes \u00e0 source de carbone :<\/span><\/p>\n<ul>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">Injection automatique d'une solution d'ac\u00e9tate de sodium (C\u2082H\u2083NaO\u2082) en cas de d\u00e9tection d'un C\/N &lt; 10<\/span><\/li>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">L'oxydation \u00e0 l'ozone est d\u00e9clench\u00e9e pour r\u00e9duire la concentration de mati\u00e8re organique lorsque le rapport C\/N &gt; 14<\/span><br \/>\n<span style=\"font-family: helvetica, arial, sans-serif;\">La fluctuation du rapport carbone\/azote a \u00e9t\u00e9 contr\u00f4l\u00e9e \u00e0 \u00b10,5, et la stabilit\u00e9 m\u00e9tabolique de la colonie a \u00e9t\u00e9 am\u00e9lior\u00e9e par 39%.<\/span><\/li>\n<\/ul>\n<p class=\"marklang-paragraph\"><span style=\"font-family: helvetica, arial, sans-serif;\">\u200c<strong>2.3 Solutions pour le craquage des sources de carbone difficiles \u00e0 d\u00e9grader<\/strong>\u200c<\/span><br \/>\n<span style=\"font-family: helvetica, arial, sans-serif;\">Pour les mati\u00e8res organiques tenaces telles que la lignine :<\/span><\/p>\n<ul>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">Une LED UV (285 nm) a \u00e9t\u00e9 utilis\u00e9e pour exciter le photocatalyseur TiO\u2082 \u00e0 la surface du mat\u00e9riau filtrant.<\/span><\/li>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">La g\u00e9n\u00e9ration d'esp\u00e8ces r\u00e9actives de l'oxyg\u00e8ne (ROS) transforme les grosses mol\u00e9cules en petites mol\u00e9cules de sucres.<\/span><br \/>\n<span style=\"font-family: helvetica, arial, sans-serif;\">Ce processus fait passer l'utilisation de la source de carbone de 55% \u00e0 89%.<\/span><\/li>\n<\/ul>\n<hr \/>\n<h3><span style=\"font-family: helvetica, arial, sans-serif;\">\u200c<strong>III. mod\u00e9lisation de la distribution tridimensionnelle de l'oxyg\u00e8ne dissous : tension superficielle et compensation en profondeur<\/strong>\u200c<\/span><\/h3>\n<p class=\"marklang-paragraph\"><span style=\"font-family: helvetica, arial, sans-serif;\">\u200c<strong>3.1 Ing\u00e9nierie interfaciale pour la diffusion de l'oxyg\u00e8ne<\/strong>\u200c<\/span><br \/>\n<span style=\"font-family: helvetica, arial, sans-serif;\">Am\u00e9lioration du contact avec la surface de l'eau selon la loi de Henry :<\/span><\/p>\n<ul>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">Multiplication par 3,8 de l'interface gaz-liquide \u00e0 l'aide d'un flotteur recouvert de nano-silicium (angle de contact de 110\u00b0)<\/span><\/li>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">Le coefficient de transfert de masse de l'oxyg\u00e8ne (KLa) est pass\u00e9 de 7,2 h-\u00b9 \u00e0 26,4 h-\u00b9 \u00e0 une temp\u00e9rature de l'eau de 25 \u00b0C.<\/span><\/li>\n<\/ul>\n<p class=\"marklang-paragraph\"><span style=\"font-family: helvetica, arial, sans-serif;\">\u200c<strong>3.2 Algorithme d'a\u00e9ration compens\u00e9e en profondeur<\/strong>\u200c<\/span><br \/>\n<span style=\"font-family: helvetica, arial, sans-serif;\">Conception bas\u00e9e sur la loi de diffusion de Fick :<\/span><\/p>\n<ul>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">Zone de surface (0-20 cm) : maintenir 7,2 mg\/l pour satisfaire la respiration des poissons.<\/span><\/li>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">Zone m\u00e9sop\u00e9lagique (20-60 cm) : 5,5 mg\/l pour sauvegarder la r\u00e9action de nitrification.<\/span><\/li>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">Zone de fond (en dessous de 60 cm) : 0,8 mg\/l, activant la d\u00e9nitrification<\/span><br \/>\n<span style=\"font-family: helvetica, arial, sans-serif;\">L'apport pr\u00e9cis d'oxyg\u00e8ne est assur\u00e9 par des a\u00e9rateurs en couches, ce qui r\u00e9duit la consommation d'\u00e9nergie de 67%.<\/span><\/li>\n<\/ul>\n<p class=\"marklang-paragraph\"><span style=\"font-family: helvetica, arial, sans-serif;\">\u200c<strong>3.3 M\u00e9canismes d'alerte pr\u00e9coce en cas de manque d'oxyg\u00e8ne pendant la nuit<\/strong>\u200c<\/span><br \/>\n<span style=\"font-family: helvetica, arial, sans-serif;\">Installer le module de pr\u00e9diction de la courbe d'oxyg\u00e8ne dissous :<\/span><\/p>\n<ul>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">Les profils d'oxyg\u00e8ne ont \u00e9t\u00e9 simul\u00e9s 6 heures \u00e0 l'avance sur la base de l'alimentation du jour, des heures de lumi\u00e8re et des changements de temp\u00e9rature de l'eau<\/span><\/li>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">Lorsque la valeur pr\u00e9dite est inf\u00e9rieure \u00e0 4mg\/L, l'a\u00e9ration d'urgence est automatiquement d\u00e9clench\u00e9e.<\/span><br \/>\n<span style=\"font-family: helvetica, arial, sans-serif;\">La crise de l'oxyg\u00e8ne dissous survenue t\u00f4t le matin a \u00e9t\u00e9 \u00e9vit\u00e9e avec succ\u00e8s (fluctuation \u2264 0,3mg\/L).<\/span><\/li>\n<\/ul>\n<hr \/>\n<h3><span style=\"font-family: helvetica, arial, sans-serif;\">\u200c<strong>L'hom\u00e9ostasie triangulaire lumi\u00e8re-algue-bact\u00e9rie : r\u00e9gulation quantique du flux d'\u00e9nergie<\/strong>\u200c<\/span><\/h3>\n<p class=\"marklang-paragraph\"><span style=\"font-family: helvetica, arial, sans-serif;\">\u200c<strong>4.1 Rationnement en longueur d'onde du rayonnement photosynth\u00e9tiquement actif (PAR)<\/strong>\u200c<\/span><br \/>\n<span style=\"font-family: helvetica, arial, sans-serif;\">Utilise des LED \u00e0 spectre complet :<\/span><\/p>\n<ul>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">Lumi\u00e8re bleue (450 nm) en pourcentage de 40% pour inhiber les prolif\u00e9rations de cyanobact\u00e9ries<\/span><\/li>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">La lumi\u00e8re rouge (660 nm) repr\u00e9sente 351 TP3T, favorisant la prolif\u00e9ration des algues vertes.<\/span><\/li>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">La lumi\u00e8re blanche (550nm) a \u00e9t\u00e9 prise en compte pour 25% afin de maintenir l'activit\u00e9 de la colonie.<\/span><br \/>\n<span style=\"font-family: helvetica, arial, sans-serif;\">Cette combinaison spectrale a permis de stabiliser la biomasse algale dans la plage de s\u00e9curit\u00e9 de 0,8 \u00e0 1,2 g\/L.<\/span><\/li>\n<\/ul>\n<p class=\"marklang-paragraph\"><span style=\"font-family: helvetica, arial, sans-serif;\">\u200c<strong>4.2 Transfert d'\u00e9nergie dans les symbioses algales<\/strong>\u200c<\/span><br \/>\n<span style=\"font-family: helvetica, arial, sans-serif;\">D\u00e9termin\u00e9 par r\u00e9sonance magn\u00e9tique nucl\u00e9aire du phosphore (\u00b3\u00b9P-NMR) :<\/span><\/p>\n<ul>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">La chlorelle lib\u00e8re 0,3 mole d'ATP pour les bact\u00e9ries nitrifiantes pour chaque mole de CO\u2082 qu'elle fixe.<\/span><\/li>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">Les algues contribuent \u00e0 38% de l'oxyg\u00e8ne total du syst\u00e8me \u00e0 une illumination de 8000 lux.<\/span><\/li>\n<\/ul>\n<p class=\"marklang-paragraph\"><span style=\"font-family: helvetica, arial, sans-serif;\">\u200c<strong>4.3 Lib\u00e9ration cibl\u00e9e d'inhibiteurs d'algues<\/strong>\u200c<\/span><br \/>\n<span style=\"font-family: helvetica, arial, sans-serif;\">Incorporation de capsules de r\u00e9sine macroporeuse dans le compartiment du filtre :<\/span><\/p>\n<ul>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">Chargement de substances chimiosensorielles (par exemple, acide az\u00e9la\u00efque, acide gallique)<\/span><\/li>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">Lib\u00e9ration lente automatique lorsque la densit\u00e9 des algues d\u00e9passe 1,5g\/L<\/span><br \/>\n<span style=\"font-family: helvetica, arial, sans-serif;\">Contr\u00f4ler la population d'algues et \u00e9viter des changements radicaux dans la qualit\u00e9 de l'eau.<\/span><\/li>\n<\/ul>\n<hr \/>\n<h3><span style=\"font-family: helvetica, arial, sans-serif;\">\u200c<strong>V. L'int\u00e9gration des syst\u00e8mes : la voie vers le nombre d'or<\/strong>\u200c<\/span><\/h3>\n<p class=\"marklang-paragraph\"><span style=\"font-family: helvetica, arial, sans-serif;\">\u200c<strong>5.1 Mod\u00e8le de liaison param\u00e9trique \u00e0 quatre dimensions<\/strong>\u200c<\/span><br \/>\n<span style=\"font-family: helvetica, arial, sans-serif;\">D\u00e9veloppement d'algorithmes de contr\u00f4le de la qualit\u00e9 de l'eau :<\/span><\/p>\n<ul>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">Variables d'entr\u00e9e : ammoniaque, nitrite, COT, ORP, oxyg\u00e8ne dissous, temp\u00e9rature<\/span><\/li>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">Commandes de sortie : dosage de charbon, intensit\u00e9 de l'a\u00e9ration, d\u00e9bit d'eau, programme d'\u00e9clairage<\/span><br \/>\n<span style=\"font-family: helvetica, arial, sans-serif;\">Optimisation dynamique par r\u00e9seau neuronal flou avec stabilit\u00e9 du syst\u00e8me 93%.<\/span><\/li>\n<\/ul>\n<p class=\"marklang-paragraph\"><span style=\"font-family: helvetica, arial, sans-serif;\">\u200c<strong>5.2 Syst\u00e8me d'\u00e9valuation de la maturit\u00e9 de l'auto-\u00e9puration<\/strong>\u200c<\/span><\/p>\n<ul>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">Auto-\u00e9puration primaire (1-3 mois) : \u00e9tablissement initial de la structure de la colonie bact\u00e9rienne (ammoniaque &lt;0,2 mg\/L)<\/span><\/li>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">Autonettoyage interm\u00e9diaire (mars-juin) : le rapport carbone\/azote est r\u00e9gul\u00e9 de mani\u00e8re autonome (fluctuations &lt;\u00b11,2).<\/span><\/li>\n<li><span style=\"font-family: helvetica, arial, sans-serif;\">Enti\u00e8rement autonettoyant (&gt;6 mois) : la r\u00e9sistance aux chocs du syst\u00e8me est conforme aux normes (supporte 3 fois le d\u00e9bit d'alimentation sans fluctuation)<\/span><\/li>\n<\/ul>\n<hr \/>\n<h4><span style=\"font-family: helvetica, arial, sans-serif;\">\u200c<strong>Conclusion : la philosophie ultime de l'autopurification \u00e9cologique<\/strong>\u200c<\/span><\/h4>\n<p class=\"marklang-paragraph\"><span style=\"font-family: helvetica, arial, sans-serif;\">\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0 Lorsque les bact\u00e9ries nitrifiantes mettent en \u0153uvre un m\u00e9tabolisme pr\u00e9cis au sein du biofilm de 80\u03bcm, lorsque le rapport entre le carbone et l'azote verrouille la direction du flux d'\u00e9nergie par la formule thermodynamique, et lorsque l'oxyg\u00e8ne dissous compl\u00e8te la distribution au niveau quantique dans l'espace tridimensionnel - le plan d'eau poss\u00e8de la capacit\u00e9 d'auto-gu\u00e9rison au-del\u00e0 de l'intervention artificielle. C'est peut-\u00eatre l\u00e0 l'\u00e9tat le plus \u00e9lev\u00e9 de la pisciculture : ne pas lutter contre la nature, mais reconstruire la logique \u00e9cologique avec la science, de sorte qu'un bassin d'eau bleue devienne \u00e9ternel.<\/span><\/p>","protected":false},"excerpt":{"rendered":"<p>\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0\u00a0 -Extrait de \"Les gens [...]<\/p>","protected":false},"author":1,"featured_media":0,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":[],"categories":[125],"tags":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v18.9 - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>\u517b\u9c7c\u7701\u5fc3\u79d8\u8bc0\uff1a\u6784\u5efa\u6c34\u4f53\u81ea\u51c0\u529b\u7684\u9ec4\u91d1\u6bd4\u4f8b\u2014\u2014\u57fa\u4e8e\u751f\u6001\u4ee3\u8c22\u5de5\u7a0b\u7684\u7cfb\u7edf\u4f18\u5316\u200c - 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