{"id":2455,"date":"2020-08-19T12:42:30","date_gmt":"2020-08-19T10:42:30","guid":{"rendered":"https:\/\/afrodita.i3a.es\/?page_id=2455"},"modified":"2025-12-02T09:51:34","modified_gmt":"2025-12-02T07:51:34","slug":"academic-news","status":"publish","type":"page","link":"https:\/\/creg.i3a.es\/es\/academic-news\/","title":{"rendered":"Noticias acad\u00e9micas"},"content":{"rendered":"<div id=\"pl-gb2455-69d74d31e1374\"  class=\"panel-layout wp-block-siteorigin-panels-layout-block\" ><div id=\"pg-gb2455-69d74d31e1374-0\"  class=\"panel-grid panel-has-style\" ><div class=\"siteorigin-panels-stretch panel-row-style panel-row-style-for-gb2455-69d74d31e1374-0\" data-stretch-type=\"full-width-stretch\" ><div id=\"pgc-gb2455-69d74d31e1374-0-0\"  class=\"panel-grid-cell\" ><div id=\"panel-gb2455-69d74d31e1374-0-0-0\" class=\"so-panel widget widget_sow-hero panel-first-child panel-last-child\" data-index=\"0\" ><div\n\t\t\t\n\t\t\tclass=\"so-widget-sow-hero so-widget-sow-hero-default-ab32bb46e2b9-2455 so-widget-fittext-wrapper\"\n\t\t\t data-fit-text-compressor=\"0.85\"\n\t\t>\t\t\t\t<div class=\"sow-slider-base\" style=\"display: none\" tabindex=\"0\">\n\t\t\t\t\t<ul\n\t\t\t\t\tclass=\"sow-slider-images\"\n\t\t\t\t\tdata-settings=\"{&quot;pagination&quot;:true,&quot;speed&quot;:800,&quot;timeout&quot;:8000,&quot;paused&quot;:true,&quot;pause_on_hover&quot;:false,&quot;swipe&quot;:true,&quot;nav_always_show_desktop&quot;:&quot;&quot;,&quot;nav_always_show_mobile&quot;:&quot;&quot;,&quot;breakpoint&quot;:&quot;780px&quot;,&quot;unmute&quot;:false,&quot;anchor&quot;:null}\"\n\t\t\t\t\t\t\t\t\t\tdata-anchor-id=\"\"\n\t\t\t\t>\t\t<li class=\"sow-slider-image  sow-slider-image-cover\" style=\"visibility: visible;;background-color: #333333;background-image: url(https:\/\/creg.i3a.es\/wp-content\/uploads\/2020\/08\/typewriter.jpg)\" >\n\t\t\t\t\t<div class=\"sow-slider-image-container\">\n\t\t\t<div class=\"sow-slider-image-wrapper\">\n\t\t\t\t<h1 style=\"text-align: center\"><strong>Noticias acad\u00e9micas<\/strong><\/h1>\n\t\t\t<\/div>\n\t\t<\/div>\n\t\t\t\t<\/li>\n\t\t<\/ul>\t\t\t\t<ol class=\"sow-slider-pagination\">\n\t\t\t\t\t\t\t\t\t\t\t<li><a href=\"#\" data-goto=\"0\" aria-label=\"mostrar diapositiva 1\"><\/a><\/li>\n\t\t\t\t\t\t\t\t\t<\/ol>\n\n\t\t\t\t<div class=\"sow-slide-nav sow-slide-nav-next\">\n\t\t\t\t\t<a href=\"#\" data-goto=\"next\" aria-label=\"diapositiva siguiente\" data-action=\"next\">\n\t\t\t\t\t\t<em class=\"sow-sld-icon-thin-right\"><\/em>\n\t\t\t\t\t<\/a>\n\t\t\t\t<\/div>\n\n\t\t\t\t<div class=\"sow-slide-nav sow-slide-nav-prev\">\n\t\t\t\t\t<a href=\"#\" data-goto=\"previous\" aria-label=\"diapositiva anterior\" data-action=\"prev\">\n\t\t\t\t\t\t<em class=\"sow-sld-icon-thin-left\"><\/em>\n\t\t\t\t\t<\/a>\n\t\t\t\t<\/div>\n\t\t\t\t<\/div><\/div><\/div><\/div><\/div><\/div><\/div>\n\n<div  class=\"ultp-post-grid-block wp-block-ultimate-post-post-grid-1 ultp-block-a6915e\"><div class=\"ultp-block-wrapper\"><div class=\"ultp-loading\"><div class=\"ultp-loading-blocks\" style=\"width:100%;height:100%;\"><div style=\"left: 0;top: 0;animation-delay:0s;\"><\/div><div style=\"left: 21px;top: 0;animation-delay:0.125s;\"><\/div><div style=\"left: 42px;top: 0;animation-delay:0.25s;\"><\/div><div style=\"left: 0;top: 21px;animation-delay:0.875s;\"><\/div><div style=\"left: 42px;top: 21px;animation-delay:0.375s;\"><\/div><div style=\"left: 0;top: 42px;animation-delay:0.75s;\"><\/div><div style=\"left: 42px;top: 42px;animation-delay:0.625s;\"><\/div><div style=\"left: 21px;top: 42px;animation-delay:0.5s;\"><\/div><\/div><\/div><div class=\"ultp-heading-filter\"><div class=\"ultp-heading-filter-in\"><div class=\"ultp-filter-navigation\"><\/div><\/div><\/div><div class=\"ultp-block-items-wrap ultp-block-row ultp-pg1a-style1 ultp-grid1-responsive ultp-block-column-3 ultp-sm-column-1 ultp-xs-column-1 ultp-layout1\"><div class=\"ultp-block-item post-id-5505\"><div class=\"ultp-block-content-wrap\"><div class=\"ultp-block-image ultp-block-image-opacity\"><a href=\"https:\/\/creg.i3a.es\/es\/new-paper-published-low-loading-copper-based-catalysts-for-effective-co2-hydrogenation-to-methanol\/\" ><img decoding=\"async\"  class=\"ultp-block-image-content\"  alt=\"New Paper published: Low loading copper-based catalysts for effective CO2 hydrogenation to methanol\"  src=\"https:\/\/creg.i3a.es\/wp-content\/uploads\/2025\/11\/Imagen7-2-870x404.png\" \/><\/a><\/div><div class=\"ultp-block-content\"><h3 class=\"ultp-block-title\"><a href=\"https:\/\/creg.i3a.es\/es\/new-paper-published-low-loading-copper-based-catalysts-for-effective-co2-hydrogenation-to-methanol\/\" >New Paper published: Low loading copper-based catalysts for effective CO2 hydrogenation to methanol<\/a><\/h3><div class=\"ultp-block-meta ultp-block-meta-dot ultp-block-meta-icon\"><span class=\"ultp-block-date ultp-block-meta-element\"><svg xmlns=\"http:\/\/www.w3.org\/2000\/svg\" viewbox=\"0 0 18 19\"><path d=\"M4.60069444,4.09375 L3.25,4.09375 C2.47334957,4.09375 1.84375,4.72334957 1.84375,5.5 L1.84375,7.26736111 L16.15625,7.26736111 L16.15625,5.5 C16.15625,4.72334957 15.5266504,4.09375 14.75,4.09375 L13.3993056,4.09375 L13.3993056,4.55555556 C13.3993056,5.02154581 13.0215458,5.39930556 12.5555556,5.39930556 C12.0895653,5.39930556 11.7118056,5.02154581 11.7118056,4.55555556 L11.7118056,4.09375 L6.28819444,4.09375 L6.28819444,4.55555556 C6.28819444,5.02154581 5.9104347,5.39930556 5.44444444,5.39930556 C4.97845419,5.39930556 4.60069444,5.02154581 4.60069444,4.55555556 L4.60069444,4.09375 Z M6.28819444,2.40625 L11.7118056,2.40625 L11.7118056,1 C11.7118056,0.534009742 12.0895653,0.15625 12.5555556,0.15625 C13.0215458,0.15625 13.3993056,0.534009742 13.3993056,1 L13.3993056,2.40625 L14.75,2.40625 C16.4586309,2.40625 17.84375,3.79136906 17.84375,5.5 L17.84375,15.875 C17.84375,17.5836309 16.4586309,18.96875 14.75,18.96875 L3.25,18.96875 C1.54136906,18.96875 0.15625,17.5836309 0.15625,15.875 L0.15625,5.5 C0.15625,3.79136906 1.54136906,2.40625 3.25,2.40625 L4.60069444,2.40625 L4.60069444,1 C4.60069444,0.534009742 4.97845419,0.15625 5.44444444,0.15625 C5.9104347,0.15625 6.28819444,0.534009742 6.28819444,1 L6.28819444,2.40625 Z M1.84375,8.95486111 L1.84375,15.875 C1.84375,16.6516504 2.47334957,17.28125 3.25,17.28125 L14.75,17.28125 C15.5266504,17.28125 16.15625,16.6516504 16.15625,15.875 L16.15625,8.95486111 L1.84375,8.95486111 Z\"\/><\/svg>Nov 27, 2025<\/span><\/div><div class=\"ultp-block-excerpt\">Our new paper: Low loading copper-based catalysts for effective CO2 hydrogenation to methanol has been published  (27-11-2025) in Fuel<\/div><div class=\"ultp-block-readmore\"><a aria-label=\"New Paper published: Low loading copper-based catalysts for effective CO2 hydrogenation to methanol\" href=\"https:\/\/creg.i3a.es\/es\/new-paper-published-low-loading-copper-based-catalysts-for-effective-co2-hydrogenation-to-methanol\/\" >Leer m\u00e1s<svg xmlns=\"http:\/\/www.w3.org\/2000\/svg\" viewbox=\"0 0 49.16 37.25\"><path stroke=\"rgba(0,0,0,0)\" stroke-miterlimit=\"10\" d=\"M28.1 36.154a2.048 2.048 0 0 1 0-2.9l12.5-12.5H2.55a2.05 2.05 0 1 1 0-4.1H40.6l-12.5-12.5a2.05 2.05 0 1 1 2.9-2.9l17.45 17.448L31 36.154a2.047 2.047 0 0 1-2.9 0Z\"\/><\/svg><\/a><\/div><\/div><\/div><\/div><div class=\"ultp-block-item post-id-5498\"><div class=\"ultp-block-content-wrap\"><div class=\"ultp-block-image ultp-block-image-opacity\"><a href=\"https:\/\/creg.i3a.es\/es\/new-paper-published-doped-in2o3-zro2-catalysts-to-drive-selectivity-toward-dme-in-one-pot-co2-hydrogenation\/\" ><img decoding=\"async\"  class=\"ultp-block-image-content\"  alt=\"New Paper published: Doped In2O3\/ZrO2 catalysts to drive selectivity toward DME in one-pot CO2 hydrogenation\"  src=\"https:\/\/creg.i3a.es\/wp-content\/uploads\/2025\/11\/Imagen5-870x457.png\" \/><\/a><\/div><div class=\"ultp-block-content\"><h3 class=\"ultp-block-title\"><a href=\"https:\/\/creg.i3a.es\/es\/new-paper-published-doped-in2o3-zro2-catalysts-to-drive-selectivity-toward-dme-in-one-pot-co2-hydrogenation\/\" >New Paper published: Doped In2O3\/ZrO2 catalysts to drive selectivity toward DME in one-pot CO2 hydrogenation<\/a><\/h3><div class=\"ultp-block-meta ultp-block-meta-dot ultp-block-meta-icon\"><span class=\"ultp-block-date ultp-block-meta-element\"><svg xmlns=\"http:\/\/www.w3.org\/2000\/svg\" viewbox=\"0 0 18 19\"><path d=\"M4.60069444,4.09375 L3.25,4.09375 C2.47334957,4.09375 1.84375,4.72334957 1.84375,5.5 L1.84375,7.26736111 L16.15625,7.26736111 L16.15625,5.5 C16.15625,4.72334957 15.5266504,4.09375 14.75,4.09375 L13.3993056,4.09375 L13.3993056,4.55555556 C13.3993056,5.02154581 13.0215458,5.39930556 12.5555556,5.39930556 C12.0895653,5.39930556 11.7118056,5.02154581 11.7118056,4.55555556 L11.7118056,4.09375 L6.28819444,4.09375 L6.28819444,4.55555556 C6.28819444,5.02154581 5.9104347,5.39930556 5.44444444,5.39930556 C4.97845419,5.39930556 4.60069444,5.02154581 4.60069444,4.55555556 L4.60069444,4.09375 Z M6.28819444,2.40625 L11.7118056,2.40625 L11.7118056,1 C11.7118056,0.534009742 12.0895653,0.15625 12.5555556,0.15625 C13.0215458,0.15625 13.3993056,0.534009742 13.3993056,1 L13.3993056,2.40625 L14.75,2.40625 C16.4586309,2.40625 17.84375,3.79136906 17.84375,5.5 L17.84375,15.875 C17.84375,17.5836309 16.4586309,18.96875 14.75,18.96875 L3.25,18.96875 C1.54136906,18.96875 0.15625,17.5836309 0.15625,15.875 L0.15625,5.5 C0.15625,3.79136906 1.54136906,2.40625 3.25,2.40625 L4.60069444,2.40625 L4.60069444,1 C4.60069444,0.534009742 4.97845419,0.15625 5.44444444,0.15625 C5.9104347,0.15625 6.28819444,0.534009742 6.28819444,1 L6.28819444,2.40625 Z M1.84375,8.95486111 L1.84375,15.875 C1.84375,16.6516504 2.47334957,17.28125 3.25,17.28125 L14.75,17.28125 C15.5266504,17.28125 16.15625,16.6516504 16.15625,15.875 L16.15625,8.95486111 L1.84375,8.95486111 Z\"\/><\/svg>Nov 12, 2025<\/span><\/div><div class=\"ultp-block-excerpt\">Our new paper: Doped In2O3\/ZrO2 catalysts to drive selectivity toward DME in one-pot CO2 hydrogenation has been published  (12-11-2025) in Applied Catalysis A.<\/div><div class=\"ultp-block-readmore\"><a aria-label=\"New Paper published: Doped In2O3\/ZrO2 catalysts to drive selectivity toward DME in one-pot CO2 hydrogenation\" href=\"https:\/\/creg.i3a.es\/es\/new-paper-published-doped-in2o3-zro2-catalysts-to-drive-selectivity-toward-dme-in-one-pot-co2-hydrogenation\/\" >Leer m\u00e1s<svg xmlns=\"http:\/\/www.w3.org\/2000\/svg\" viewbox=\"0 0 49.16 37.25\"><path stroke=\"rgba(0,0,0,0)\" stroke-miterlimit=\"10\" d=\"M28.1 36.154a2.048 2.048 0 0 1 0-2.9l12.5-12.5H2.55a2.05 2.05 0 1 1 0-4.1H40.6l-12.5-12.5a2.05 2.05 0 1 1 2.9-2.9l17.45 17.448L31 36.154a2.047 2.047 0 0 1-2.9 0Z\"\/><\/svg><\/a><\/div><\/div><\/div><\/div><div class=\"ultp-block-item post-id-5462\"><div class=\"ultp-block-content-wrap\"><div class=\"ultp-block-image ultp-block-image-opacity\"><a href=\"https:\/\/creg.i3a.es\/es\/new-paper-published-tuning-of-e-fuel-selectivity-in-sorption-enhanced-co2-hydrogenation-over-in2o3-zro2-the-effect-of-lta-and-fau-zeolites\/\" ><img decoding=\"async\"  class=\"ultp-block-image-content\"  alt=\"New Paper published: Tuning of e-fuel selectivity in sorption-enhanced CO2 hydrogenation over In2O3\/ZrO2: The effect of LTA and FAU zeolites\"  src=\"https:\/\/creg.i3a.es\/wp-content\/uploads\/2025\/10\/Imagen3-870x457.png\" \/><\/a><\/div><div class=\"ultp-block-content\"><h3 class=\"ultp-block-title\"><a href=\"https:\/\/creg.i3a.es\/es\/new-paper-published-tuning-of-e-fuel-selectivity-in-sorption-enhanced-co2-hydrogenation-over-in2o3-zro2-the-effect-of-lta-and-fau-zeolites\/\" >New Paper published: Tuning of e-fuel selectivity in sorption-enhanced CO2 hydrogenation over In2O3\/ZrO2: The effect of LTA and FAU zeolites<\/a><\/h3><div class=\"ultp-block-meta ultp-block-meta-dot ultp-block-meta-icon\"><span class=\"ultp-block-date ultp-block-meta-element\"><svg xmlns=\"http:\/\/www.w3.org\/2000\/svg\" viewbox=\"0 0 18 19\"><path d=\"M4.60069444,4.09375 L3.25,4.09375 C2.47334957,4.09375 1.84375,4.72334957 1.84375,5.5 L1.84375,7.26736111 L16.15625,7.26736111 L16.15625,5.5 C16.15625,4.72334957 15.5266504,4.09375 14.75,4.09375 L13.3993056,4.09375 L13.3993056,4.55555556 C13.3993056,5.02154581 13.0215458,5.39930556 12.5555556,5.39930556 C12.0895653,5.39930556 11.7118056,5.02154581 11.7118056,4.55555556 L11.7118056,4.09375 L6.28819444,4.09375 L6.28819444,4.55555556 C6.28819444,5.02154581 5.9104347,5.39930556 5.44444444,5.39930556 C4.97845419,5.39930556 4.60069444,5.02154581 4.60069444,4.55555556 L4.60069444,4.09375 Z M6.28819444,2.40625 L11.7118056,2.40625 L11.7118056,1 C11.7118056,0.534009742 12.0895653,0.15625 12.5555556,0.15625 C13.0215458,0.15625 13.3993056,0.534009742 13.3993056,1 L13.3993056,2.40625 L14.75,2.40625 C16.4586309,2.40625 17.84375,3.79136906 17.84375,5.5 L17.84375,15.875 C17.84375,17.5836309 16.4586309,18.96875 14.75,18.96875 L3.25,18.96875 C1.54136906,18.96875 0.15625,17.5836309 0.15625,15.875 L0.15625,5.5 C0.15625,3.79136906 1.54136906,2.40625 3.25,2.40625 L4.60069444,2.40625 L4.60069444,1 C4.60069444,0.534009742 4.97845419,0.15625 5.44444444,0.15625 C5.9104347,0.15625 6.28819444,0.534009742 6.28819444,1 L6.28819444,2.40625 Z M1.84375,8.95486111 L1.84375,15.875 C1.84375,16.6516504 2.47334957,17.28125 3.25,17.28125 L14.75,17.28125 C15.5266504,17.28125 16.15625,16.6516504 16.15625,15.875 L16.15625,8.95486111 L1.84375,8.95486111 Z\"\/><\/svg>Oct 6, 2025<\/span><\/div><div class=\"ultp-block-excerpt\">Our new paper: Tuning e-fuel selectivity in sorption-enhanced CO2 hydrogenation over\nIn2O3\/ZrO2: The effect of LTA and FAU zeolites has been published  (06-10-2025) in Fuel<\/div><div class=\"ultp-block-readmore\"><a aria-label=\"New Paper published: Tuning of e-fuel selectivity in sorption-enhanced CO2 hydrogenation over In2O3\/ZrO2: The effect of LTA and FAU zeolites\" href=\"https:\/\/creg.i3a.es\/es\/new-paper-published-tuning-of-e-fuel-selectivity-in-sorption-enhanced-co2-hydrogenation-over-in2o3-zro2-the-effect-of-lta-and-fau-zeolites\/\" >Leer m\u00e1s<svg xmlns=\"http:\/\/www.w3.org\/2000\/svg\" viewbox=\"0 0 49.16 37.25\"><path stroke=\"rgba(0,0,0,0)\" stroke-miterlimit=\"10\" d=\"M28.1 36.154a2.048 2.048 0 0 1 0-2.9l12.5-12.5H2.55a2.05 2.05 0 1 1 0-4.1H40.6l-12.5-12.5a2.05 2.05 0 1 1 2.9-2.9l17.45 17.448L31 36.154a2.047 2.047 0 0 1-2.9 0Z\"\/><\/svg><\/a><\/div><\/div><\/div><\/div><div class=\"ultp-block-item post-id-5452\"><div class=\"ultp-block-content-wrap\"><div class=\"ultp-block-image ultp-block-image-opacity\"><a href=\"https:\/\/creg.i3a.es\/es\/new-paper-published-intensifying-synthetic-natural-gas-production-by-functionalization-of-a-nife-%ce%b3-al2o3-catalyst-with-alkaline-and-alkaline-earth-materials\/\" ><img decoding=\"async\"  class=\"ultp-block-image-content\"  alt=\"New Paper published: Intensifying synthetic natural gas production by functionalization of a NiFe\/\u03b3-Al2O3 catalyst with alkaline and alkaline-earth materials\"  src=\"https:\/\/creg.i3a.es\/wp-content\/uploads\/2025\/09\/Imagen4-870x406.png\" \/><\/a><\/div><div class=\"ultp-block-content\"><h3 class=\"ultp-block-title\"><a href=\"https:\/\/creg.i3a.es\/es\/new-paper-published-intensifying-synthetic-natural-gas-production-by-functionalization-of-a-nife-%ce%b3-al2o3-catalyst-with-alkaline-and-alkaline-earth-materials\/\" >New Paper published: Intensifying synthetic natural gas production by functionalization of a NiFe\/\u03b3-Al2O3 catalyst with alkaline and alkaline-earth materials<\/a><\/h3><div class=\"ultp-block-meta ultp-block-meta-dot ultp-block-meta-icon\"><span class=\"ultp-block-date ultp-block-meta-element\"><svg xmlns=\"http:\/\/www.w3.org\/2000\/svg\" viewbox=\"0 0 18 19\"><path d=\"M4.60069444,4.09375 L3.25,4.09375 C2.47334957,4.09375 1.84375,4.72334957 1.84375,5.5 L1.84375,7.26736111 L16.15625,7.26736111 L16.15625,5.5 C16.15625,4.72334957 15.5266504,4.09375 14.75,4.09375 L13.3993056,4.09375 L13.3993056,4.55555556 C13.3993056,5.02154581 13.0215458,5.39930556 12.5555556,5.39930556 C12.0895653,5.39930556 11.7118056,5.02154581 11.7118056,4.55555556 L11.7118056,4.09375 L6.28819444,4.09375 L6.28819444,4.55555556 C6.28819444,5.02154581 5.9104347,5.39930556 5.44444444,5.39930556 C4.97845419,5.39930556 4.60069444,5.02154581 4.60069444,4.55555556 L4.60069444,4.09375 Z M6.28819444,2.40625 L11.7118056,2.40625 L11.7118056,1 C11.7118056,0.534009742 12.0895653,0.15625 12.5555556,0.15625 C13.0215458,0.15625 13.3993056,0.534009742 13.3993056,1 L13.3993056,2.40625 L14.75,2.40625 C16.4586309,2.40625 17.84375,3.79136906 17.84375,5.5 L17.84375,15.875 C17.84375,17.5836309 16.4586309,18.96875 14.75,18.96875 L3.25,18.96875 C1.54136906,18.96875 0.15625,17.5836309 0.15625,15.875 L0.15625,5.5 C0.15625,3.79136906 1.54136906,2.40625 3.25,2.40625 L4.60069444,2.40625 L4.60069444,1 C4.60069444,0.534009742 4.97845419,0.15625 5.44444444,0.15625 C5.9104347,0.15625 6.28819444,0.534009742 6.28819444,1 L6.28819444,2.40625 Z M1.84375,8.95486111 L1.84375,15.875 C1.84375,16.6516504 2.47334957,17.28125 3.25,17.28125 L14.75,17.28125 C15.5266504,17.28125 16.15625,16.6516504 16.15625,15.875 L16.15625,8.95486111 L1.84375,8.95486111 Z\"\/><\/svg>Sep 22, 2025<\/span><\/div><div class=\"ultp-block-excerpt\">Our new paper: Intensifying synthetic natural gas production by functionalization of a NiFe\/\u03b3-Al2O3 catalyst with alkaline and alkaline-earth materials has been published  (22-09-2025) in Fuel<\/div><div class=\"ultp-block-readmore\"><a aria-label=\"New Paper published: Intensifying synthetic natural gas production by functionalization of a NiFe\/\u03b3-Al2O3 catalyst with alkaline and alkaline-earth materials\" href=\"https:\/\/creg.i3a.es\/es\/new-paper-published-intensifying-synthetic-natural-gas-production-by-functionalization-of-a-nife-%ce%b3-al2o3-catalyst-with-alkaline-and-alkaline-earth-materials\/\" >Leer m\u00e1s<svg xmlns=\"http:\/\/www.w3.org\/2000\/svg\" viewbox=\"0 0 49.16 37.25\"><path stroke=\"rgba(0,0,0,0)\" stroke-miterlimit=\"10\" d=\"M28.1 36.154a2.048 2.048 0 0 1 0-2.9l12.5-12.5H2.55a2.05 2.05 0 1 1 0-4.1H40.6l-12.5-12.5a2.05 2.05 0 1 1 2.9-2.9l17.45 17.448L31 36.154a2.047 2.047 0 0 1-2.9 0Z\"\/><\/svg><\/a><\/div><\/div><\/div><\/div><div class=\"ultp-block-item post-id-5424\"><div class=\"ultp-block-content-wrap\"><div class=\"ultp-block-image ultp-block-image-opacity\"><a href=\"https:\/\/creg.i3a.es\/es\/new-paper-published-proof-of-concept-for-a-sorption-enhanced-reactor-with-continuous-sorbent-feeding-csf-application-to-green-methanol-production\/\" ><img decoding=\"async\"  class=\"ultp-block-image-content\"  alt=\"New Paper published: Proof of concept for a sorption-enhanced reactor with continuous sorbent feeding (CSF): application to green methanol production\"  src=\"https:\/\/creg.i3a.es\/wp-content\/uploads\/2025\/06\/Imagen8-870x453.png\" \/><\/a><\/div><div class=\"ultp-block-content\"><h3 class=\"ultp-block-title\"><a href=\"https:\/\/creg.i3a.es\/es\/new-paper-published-proof-of-concept-for-a-sorption-enhanced-reactor-with-continuous-sorbent-feeding-csf-application-to-green-methanol-production\/\" >New Paper published: Proof of concept for a sorption-enhanced reactor with continuous sorbent feeding (CSF): application to green methanol production<\/a><\/h3><div class=\"ultp-block-meta ultp-block-meta-dot ultp-block-meta-icon\"><span class=\"ultp-block-date ultp-block-meta-element\"><svg xmlns=\"http:\/\/www.w3.org\/2000\/svg\" viewbox=\"0 0 18 19\"><path d=\"M4.60069444,4.09375 L3.25,4.09375 C2.47334957,4.09375 1.84375,4.72334957 1.84375,5.5 L1.84375,7.26736111 L16.15625,7.26736111 L16.15625,5.5 C16.15625,4.72334957 15.5266504,4.09375 14.75,4.09375 L13.3993056,4.09375 L13.3993056,4.55555556 C13.3993056,5.02154581 13.0215458,5.39930556 12.5555556,5.39930556 C12.0895653,5.39930556 11.7118056,5.02154581 11.7118056,4.55555556 L11.7118056,4.09375 L6.28819444,4.09375 L6.28819444,4.55555556 C6.28819444,5.02154581 5.9104347,5.39930556 5.44444444,5.39930556 C4.97845419,5.39930556 4.60069444,5.02154581 4.60069444,4.55555556 L4.60069444,4.09375 Z M6.28819444,2.40625 L11.7118056,2.40625 L11.7118056,1 C11.7118056,0.534009742 12.0895653,0.15625 12.5555556,0.15625 C13.0215458,0.15625 13.3993056,0.534009742 13.3993056,1 L13.3993056,2.40625 L14.75,2.40625 C16.4586309,2.40625 17.84375,3.79136906 17.84375,5.5 L17.84375,15.875 C17.84375,17.5836309 16.4586309,18.96875 14.75,18.96875 L3.25,18.96875 C1.54136906,18.96875 0.15625,17.5836309 0.15625,15.875 L0.15625,5.5 C0.15625,3.79136906 1.54136906,2.40625 3.25,2.40625 L4.60069444,2.40625 L4.60069444,1 C4.60069444,0.534009742 4.97845419,0.15625 5.44444444,0.15625 C5.9104347,0.15625 6.28819444,0.534009742 6.28819444,1 L6.28819444,2.40625 Z M1.84375,8.95486111 L1.84375,15.875 C1.84375,16.6516504 2.47334957,17.28125 3.25,17.28125 L14.75,17.28125 C15.5266504,17.28125 16.15625,16.6516504 16.15625,15.875 L16.15625,8.95486111 L1.84375,8.95486111 Z\"\/><\/svg>Jun 9, 2025<\/span><\/div><div class=\"ultp-block-excerpt\">Our new paper Proof of concept for a sorption-enhanced reactor with continuous sorbent feeding (CSF): application to green methanol production has been published  (09-06-2025) in Chemical Engineering Journal<\/div><div class=\"ultp-block-readmore\"><a aria-label=\"New Paper published: Proof of concept for a sorption-enhanced reactor with continuous sorbent feeding (CSF): application to green methanol production\" href=\"https:\/\/creg.i3a.es\/es\/new-paper-published-proof-of-concept-for-a-sorption-enhanced-reactor-with-continuous-sorbent-feeding-csf-application-to-green-methanol-production\/\" >Leer m\u00e1s<svg xmlns=\"http:\/\/www.w3.org\/2000\/svg\" viewbox=\"0 0 49.16 37.25\"><path stroke=\"rgba(0,0,0,0)\" stroke-miterlimit=\"10\" d=\"M28.1 36.154a2.048 2.048 0 0 1 0-2.9l12.5-12.5H2.55a2.05 2.05 0 1 1 0-4.1H40.6l-12.5-12.5a2.05 2.05 0 1 1 2.9-2.9l17.45 17.448L31 36.154a2.047 2.047 0 0 1-2.9 0Z\"\/><\/svg><\/a><\/div><\/div><\/div><\/div><div class=\"ultp-block-item post-id-5393\"><div class=\"ultp-block-content-wrap\"><div class=\"ultp-block-image ultp-block-image-opacity\"><a href=\"https:\/\/creg.i3a.es\/es\/new-paper-published-process-intensification-for-co2-hydrogenation-to-liquid-fuels\/\" ><img decoding=\"async\"  class=\"ultp-block-image-content\"  alt=\"New Paper published: Process Intensification for CO2 Hydrogenation to Liquid Fuels\"  src=\"https:\/\/creg.i3a.es\/wp-content\/uploads\/2025\/05\/Imagen2-1-870x463.png\" \/><\/a><\/div><div class=\"ultp-block-content\"><h3 class=\"ultp-block-title\"><a href=\"https:\/\/creg.i3a.es\/es\/new-paper-published-process-intensification-for-co2-hydrogenation-to-liquid-fuels\/\" >New Paper published: Process Intensification for CO2 Hydrogenation to Liquid Fuels<\/a><\/h3><div class=\"ultp-block-meta ultp-block-meta-dot ultp-block-meta-icon\"><span class=\"ultp-block-date ultp-block-meta-element\"><svg xmlns=\"http:\/\/www.w3.org\/2000\/svg\" viewbox=\"0 0 18 19\"><path d=\"M4.60069444,4.09375 L3.25,4.09375 C2.47334957,4.09375 1.84375,4.72334957 1.84375,5.5 L1.84375,7.26736111 L16.15625,7.26736111 L16.15625,5.5 C16.15625,4.72334957 15.5266504,4.09375 14.75,4.09375 L13.3993056,4.09375 L13.3993056,4.55555556 C13.3993056,5.02154581 13.0215458,5.39930556 12.5555556,5.39930556 C12.0895653,5.39930556 11.7118056,5.02154581 11.7118056,4.55555556 L11.7118056,4.09375 L6.28819444,4.09375 L6.28819444,4.55555556 C6.28819444,5.02154581 5.9104347,5.39930556 5.44444444,5.39930556 C4.97845419,5.39930556 4.60069444,5.02154581 4.60069444,4.55555556 L4.60069444,4.09375 Z M6.28819444,2.40625 L11.7118056,2.40625 L11.7118056,1 C11.7118056,0.534009742 12.0895653,0.15625 12.5555556,0.15625 C13.0215458,0.15625 13.3993056,0.534009742 13.3993056,1 L13.3993056,2.40625 L14.75,2.40625 C16.4586309,2.40625 17.84375,3.79136906 17.84375,5.5 L17.84375,15.875 C17.84375,17.5836309 16.4586309,18.96875 14.75,18.96875 L3.25,18.96875 C1.54136906,18.96875 0.15625,17.5836309 0.15625,15.875 L0.15625,5.5 C0.15625,3.79136906 1.54136906,2.40625 3.25,2.40625 L4.60069444,2.40625 L4.60069444,1 C4.60069444,0.534009742 4.97845419,0.15625 5.44444444,0.15625 C5.9104347,0.15625 6.28819444,0.534009742 6.28819444,1 L6.28819444,2.40625 Z M1.84375,8.95486111 L1.84375,15.875 C1.84375,16.6516504 2.47334957,17.28125 3.25,17.28125 L14.75,17.28125 C15.5266504,17.28125 16.15625,16.6516504 16.15625,15.875 L16.15625,8.95486111 L1.84375,8.95486111 Z\"\/><\/svg>May 29, 2025<\/span><\/div><div class=\"ultp-block-excerpt\">Our new paper Process Intensification for CO2 Hydrogenation to Liquid Fuels has been published  (25-05-2025) in Catalysts.<\/div><div class=\"ultp-block-readmore\"><a aria-label=\"New Paper published: Process Intensification for CO2 Hydrogenation to Liquid Fuels\" href=\"https:\/\/creg.i3a.es\/es\/new-paper-published-process-intensification-for-co2-hydrogenation-to-liquid-fuels\/\" >Leer m\u00e1s<svg xmlns=\"http:\/\/www.w3.org\/2000\/svg\" viewbox=\"0 0 49.16 37.25\"><path stroke=\"rgba(0,0,0,0)\" stroke-miterlimit=\"10\" d=\"M28.1 36.154a2.048 2.048 0 0 1 0-2.9l12.5-12.5H2.55a2.05 2.05 0 1 1 0-4.1H40.6l-12.5-12.5a2.05 2.05 0 1 1 2.9-2.9l17.45 17.448L31 36.154a2.047 2.047 0 0 1-2.9 0Z\"\/><\/svg><\/a><\/div><\/div><\/div><\/div><div class=\"ultp-block-item post-id-5378\"><div class=\"ultp-block-content-wrap\"><div class=\"ultp-block-image ultp-block-image-opacity\"><a href=\"https:\/\/creg.i3a.es\/es\/new-paper-published-catalytic-co2-methanation-for-biogas-upgrading-using-a-polytropic-fixed-bed-reactor\/\" ><img decoding=\"async\"  class=\"ultp-block-image-content\"  alt=\"New Paper published: Catalytic CO2 methanation for biogas upgrading using a polytropic fixed bed reactor\"  src=\"https:\/\/creg.i3a.es\/wp-content\/uploads\/2025\/05\/Imagen2-870x464.png\" \/><\/a><\/div><div class=\"ultp-block-content\"><h3 class=\"ultp-block-title\"><a href=\"https:\/\/creg.i3a.es\/es\/new-paper-published-catalytic-co2-methanation-for-biogas-upgrading-using-a-polytropic-fixed-bed-reactor\/\" >New Paper published: Catalytic CO2 methanation for biogas upgrading using a polytropic fixed bed reactor<\/a><\/h3><div class=\"ultp-block-meta ultp-block-meta-dot ultp-block-meta-icon\"><span class=\"ultp-block-date ultp-block-meta-element\"><svg xmlns=\"http:\/\/www.w3.org\/2000\/svg\" viewbox=\"0 0 18 19\"><path d=\"M4.60069444,4.09375 L3.25,4.09375 C2.47334957,4.09375 1.84375,4.72334957 1.84375,5.5 L1.84375,7.26736111 L16.15625,7.26736111 L16.15625,5.5 C16.15625,4.72334957 15.5266504,4.09375 14.75,4.09375 L13.3993056,4.09375 L13.3993056,4.55555556 C13.3993056,5.02154581 13.0215458,5.39930556 12.5555556,5.39930556 C12.0895653,5.39930556 11.7118056,5.02154581 11.7118056,4.55555556 L11.7118056,4.09375 L6.28819444,4.09375 L6.28819444,4.55555556 C6.28819444,5.02154581 5.9104347,5.39930556 5.44444444,5.39930556 C4.97845419,5.39930556 4.60069444,5.02154581 4.60069444,4.55555556 L4.60069444,4.09375 Z M6.28819444,2.40625 L11.7118056,2.40625 L11.7118056,1 C11.7118056,0.534009742 12.0895653,0.15625 12.5555556,0.15625 C13.0215458,0.15625 13.3993056,0.534009742 13.3993056,1 L13.3993056,2.40625 L14.75,2.40625 C16.4586309,2.40625 17.84375,3.79136906 17.84375,5.5 L17.84375,15.875 C17.84375,17.5836309 16.4586309,18.96875 14.75,18.96875 L3.25,18.96875 C1.54136906,18.96875 0.15625,17.5836309 0.15625,15.875 L0.15625,5.5 C0.15625,3.79136906 1.54136906,2.40625 3.25,2.40625 L4.60069444,2.40625 L4.60069444,1 C4.60069444,0.534009742 4.97845419,0.15625 5.44444444,0.15625 C5.9104347,0.15625 6.28819444,0.534009742 6.28819444,1 L6.28819444,2.40625 Z M1.84375,8.95486111 L1.84375,15.875 C1.84375,16.6516504 2.47334957,17.28125 3.25,17.28125 L14.75,17.28125 C15.5266504,17.28125 16.15625,16.6516504 16.15625,15.875 L16.15625,8.95486111 L1.84375,8.95486111 Z\"\/><\/svg>May 5, 2025<\/span><\/div><div class=\"ultp-block-excerpt\">Our new paper Catalytic CO2 methanation for biogas upgrading using a polytropic fixed bed reactor has been published  (05-05-2025) in Catalysis Today.<\/div><div class=\"ultp-block-readmore\"><a aria-label=\"New Paper published: Catalytic CO2 methanation for biogas upgrading using a polytropic fixed bed reactor\" href=\"https:\/\/creg.i3a.es\/es\/new-paper-published-catalytic-co2-methanation-for-biogas-upgrading-using-a-polytropic-fixed-bed-reactor\/\" >Leer m\u00e1s<svg xmlns=\"http:\/\/www.w3.org\/2000\/svg\" viewbox=\"0 0 49.16 37.25\"><path stroke=\"rgba(0,0,0,0)\" stroke-miterlimit=\"10\" d=\"M28.1 36.154a2.048 2.048 0 0 1 0-2.9l12.5-12.5H2.55a2.05 2.05 0 1 1 0-4.1H40.6l-12.5-12.5a2.05 2.05 0 1 1 2.9-2.9l17.45 17.448L31 36.154a2.047 2.047 0 0 1-2.9 0Z\"\/><\/svg><\/a><\/div><\/div><\/div><\/div><div class=\"ultp-block-item post-id-5348\"><div class=\"ultp-block-content-wrap\"><div class=\"ultp-block-image ultp-block-image-opacity\"><a href=\"https:\/\/creg.i3a.es\/es\/techno-economic-assessment-of-a-plant-for-the-upgrading-or-msw-biogas-to-synthetic-natural-gas-by-thermocatalytic-methanation\/\" ><img decoding=\"async\"  class=\"ultp-block-image-content\"  alt=\"New Paper published: Techno-economic assessment of a plant for the upgrading of MSW biogas to synthetic natural gas by thermocatalytic methanation\"  src=\"https:\/\/creg.i3a.es\/wp-content\/uploads\/2025\/04\/Imagen-870x463.jpg\" \/><\/a><\/div><div class=\"ultp-block-content\"><h3 class=\"ultp-block-title\"><a href=\"https:\/\/creg.i3a.es\/es\/techno-economic-assessment-of-a-plant-for-the-upgrading-or-msw-biogas-to-synthetic-natural-gas-by-thermocatalytic-methanation\/\" >New Paper published: Techno-economic assessment of a plant for the upgrading of MSW biogas to synthetic natural gas by thermocatalytic methanation<\/a><\/h3><div class=\"ultp-block-meta ultp-block-meta-dot ultp-block-meta-icon\"><span class=\"ultp-block-date ultp-block-meta-element\"><svg xmlns=\"http:\/\/www.w3.org\/2000\/svg\" viewbox=\"0 0 18 19\"><path d=\"M4.60069444,4.09375 L3.25,4.09375 C2.47334957,4.09375 1.84375,4.72334957 1.84375,5.5 L1.84375,7.26736111 L16.15625,7.26736111 L16.15625,5.5 C16.15625,4.72334957 15.5266504,4.09375 14.75,4.09375 L13.3993056,4.09375 L13.3993056,4.55555556 C13.3993056,5.02154581 13.0215458,5.39930556 12.5555556,5.39930556 C12.0895653,5.39930556 11.7118056,5.02154581 11.7118056,4.55555556 L11.7118056,4.09375 L6.28819444,4.09375 L6.28819444,4.55555556 C6.28819444,5.02154581 5.9104347,5.39930556 5.44444444,5.39930556 C4.97845419,5.39930556 4.60069444,5.02154581 4.60069444,4.55555556 L4.60069444,4.09375 Z M6.28819444,2.40625 L11.7118056,2.40625 L11.7118056,1 C11.7118056,0.534009742 12.0895653,0.15625 12.5555556,0.15625 C13.0215458,0.15625 13.3993056,0.534009742 13.3993056,1 L13.3993056,2.40625 L14.75,2.40625 C16.4586309,2.40625 17.84375,3.79136906 17.84375,5.5 L17.84375,15.875 C17.84375,17.5836309 16.4586309,18.96875 14.75,18.96875 L3.25,18.96875 C1.54136906,18.96875 0.15625,17.5836309 0.15625,15.875 L0.15625,5.5 C0.15625,3.79136906 1.54136906,2.40625 3.25,2.40625 L4.60069444,2.40625 L4.60069444,1 C4.60069444,0.534009742 4.97845419,0.15625 5.44444444,0.15625 C5.9104347,0.15625 6.28819444,0.534009742 6.28819444,1 L6.28819444,2.40625 Z M1.84375,8.95486111 L1.84375,15.875 C1.84375,16.6516504 2.47334957,17.28125 3.25,17.28125 L14.75,17.28125 C15.5266504,17.28125 16.15625,16.6516504 16.15625,15.875 L16.15625,8.95486111 L1.84375,8.95486111 Z\"\/><\/svg>Abr 11, 2025<\/span><\/div><div class=\"ultp-block-excerpt\">Our new paper: Techno-economic assessment of a plant for the upgrading of MSW biogas to synthetic natural gas by thermocatalytic methanation has been published  (11-04-2025) in Biomass and Bioenergy.<\/div><div class=\"ultp-block-readmore\"><a aria-label=\"New Paper published: Techno-economic assessment of a plant for the upgrading of MSW biogas to synthetic natural gas by thermocatalytic methanation\" href=\"https:\/\/creg.i3a.es\/es\/techno-economic-assessment-of-a-plant-for-the-upgrading-or-msw-biogas-to-synthetic-natural-gas-by-thermocatalytic-methanation\/\" >Leer m\u00e1s<svg xmlns=\"http:\/\/www.w3.org\/2000\/svg\" viewbox=\"0 0 49.16 37.25\"><path stroke=\"rgba(0,0,0,0)\" stroke-miterlimit=\"10\" d=\"M28.1 36.154a2.048 2.048 0 0 1 0-2.9l12.5-12.5H2.55a2.05 2.05 0 1 1 0-4.1H40.6l-12.5-12.5a2.05 2.05 0 1 1 2.9-2.9l17.45 17.448L31 36.154a2.047 2.047 0 0 1-2.9 0Z\"\/><\/svg><\/a><\/div><\/div><\/div><\/div><div class=\"ultp-block-item post-id-5339\"><div class=\"ultp-block-content-wrap\"><div class=\"ultp-block-image ultp-block-image-opacity\"><a href=\"https:\/\/creg.i3a.es\/es\/optimizing-sorption-enhanced-methanation-sem-of-co2-with-ni3fe-lta-5a-mixtures\/\" ><img decoding=\"async\"  class=\"ultp-block-image-content\"  alt=\"New Paper published: Optimizing Sorption Enhanced Methanation (SEM) of CO2 with Ni3Fe + LTA 5A mixtures\"  src=\"https:\/\/creg.i3a.es\/wp-content\/uploads\/2025\/03\/Imagen3-1-870x463.png\" \/><\/a><\/div><div class=\"ultp-block-content\"><h3 class=\"ultp-block-title\"><a href=\"https:\/\/creg.i3a.es\/es\/optimizing-sorption-enhanced-methanation-sem-of-co2-with-ni3fe-lta-5a-mixtures\/\" >New Paper published: Optimizing Sorption Enhanced Methanation (SEM) of CO2 with Ni3Fe + LTA 5A mixtures<\/a><\/h3><div class=\"ultp-block-meta ultp-block-meta-dot ultp-block-meta-icon\"><span class=\"ultp-block-date ultp-block-meta-element\"><svg xmlns=\"http:\/\/www.w3.org\/2000\/svg\" viewbox=\"0 0 18 19\"><path d=\"M4.60069444,4.09375 L3.25,4.09375 C2.47334957,4.09375 1.84375,4.72334957 1.84375,5.5 L1.84375,7.26736111 L16.15625,7.26736111 L16.15625,5.5 C16.15625,4.72334957 15.5266504,4.09375 14.75,4.09375 L13.3993056,4.09375 L13.3993056,4.55555556 C13.3993056,5.02154581 13.0215458,5.39930556 12.5555556,5.39930556 C12.0895653,5.39930556 11.7118056,5.02154581 11.7118056,4.55555556 L11.7118056,4.09375 L6.28819444,4.09375 L6.28819444,4.55555556 C6.28819444,5.02154581 5.9104347,5.39930556 5.44444444,5.39930556 C4.97845419,5.39930556 4.60069444,5.02154581 4.60069444,4.55555556 L4.60069444,4.09375 Z M6.28819444,2.40625 L11.7118056,2.40625 L11.7118056,1 C11.7118056,0.534009742 12.0895653,0.15625 12.5555556,0.15625 C13.0215458,0.15625 13.3993056,0.534009742 13.3993056,1 L13.3993056,2.40625 L14.75,2.40625 C16.4586309,2.40625 17.84375,3.79136906 17.84375,5.5 L17.84375,15.875 C17.84375,17.5836309 16.4586309,18.96875 14.75,18.96875 L3.25,18.96875 C1.54136906,18.96875 0.15625,17.5836309 0.15625,15.875 L0.15625,5.5 C0.15625,3.79136906 1.54136906,2.40625 3.25,2.40625 L4.60069444,2.40625 L4.60069444,1 C4.60069444,0.534009742 4.97845419,0.15625 5.44444444,0.15625 C5.9104347,0.15625 6.28819444,0.534009742 6.28819444,1 L6.28819444,2.40625 Z M1.84375,8.95486111 L1.84375,15.875 C1.84375,16.6516504 2.47334957,17.28125 3.25,17.28125 L14.75,17.28125 C15.5266504,17.28125 16.15625,16.6516504 16.15625,15.875 L16.15625,8.95486111 L1.84375,8.95486111 Z\"\/><\/svg>Mar 25, 2025<\/span><\/div><div class=\"ultp-block-excerpt\">Our new paper Optimizing Sorption Enhanced Methanation (SEM) of CO2 with Ni3Fe + LTA 5A mixtures has been published  (19-03-2025) in Catalysis Today.<\/div><div class=\"ultp-block-readmore\"><a aria-label=\"New Paper published: Optimizing Sorption Enhanced Methanation (SEM) of CO2 with Ni3Fe + LTA 5A mixtures\" href=\"https:\/\/creg.i3a.es\/es\/optimizing-sorption-enhanced-methanation-sem-of-co2-with-ni3fe-lta-5a-mixtures\/\" >Leer m\u00e1s<svg xmlns=\"http:\/\/www.w3.org\/2000\/svg\" viewbox=\"0 0 49.16 37.25\"><path stroke=\"rgba(0,0,0,0)\" stroke-miterlimit=\"10\" d=\"M28.1 36.154a2.048 2.048 0 0 1 0-2.9l12.5-12.5H2.55a2.05 2.05 0 1 1 0-4.1H40.6l-12.5-12.5a2.05 2.05 0 1 1 2.9-2.9l17.45 17.448L31 36.154a2.047 2.047 0 0 1-2.9 0Z\"\/><\/svg><\/a><\/div><\/div><\/div><\/div><\/div><div class=\"ultp-pagination-wrap ultp-pagination-ajax-action\" data-paged=\"1\" data-expost=\"\"  data-blockid=\"a6915e\" data-postid=\"2455\" data-pages=\"3\" data-blockname=\"ultimate-post_post-grid-1\" data-selfpostid=\"yes\"><ul class=\"ultp-pagination\"><li class=\"ultp-prev-page-numbers\" style=\"display:none\"><a href=\"https:\/\/creg.i3a.es\/es\/wp-json\/wp\/v2\/pages\/2455\/\"><svg enable-background=\"new 0 0 477.175 477.175\" version=\"1.1\" viewbox=\"0 0 477.18 477.18\"><path d=\"m145.19 238.58 215.5-215.5c5.3-5.3 5.3-13.8 0-19.1s-13.8-5.3-19.1 0l-225.1 225.1c-5.3 5.3-5.3 13.8 0 19.1l225.1 225c2.6 2.6 6.1 4 9.5 4s6.9-1.3 9.5-4c5.3-5.3 5.3-13.8 0-19.1l-215.4-215.5z\"><\/path><\/svg> Previous<\/a><\/li><li class=\"ultp-center-item pagination-active\" data-current=\"1\"><a href=\"https:\/\/creg.i3a.es\/es\/wp-json\/wp\/v2\/pages\/2455\/\">1<\/a><\/li><li class=\"ultp-center-item\" data-current=\"2\" ><a href=\"https:\/\/creg.i3a.es\/es\/wp-json\/wp\/v2\/pages\/2455\/page\/2\/\">2<\/a><\/li><li class=\"ultp-center-item\" data-current=\"3\" ><a href=\"https:\/\/creg.i3a.es\/es\/wp-json\/wp\/v2\/pages\/2455\/page\/3\/\">3<\/a><\/li><li class=\"ultp-next-page-numbers\"><a href=\"https:\/\/creg.i3a.es\/es\/wp-json\/wp\/v2\/pages\/2455\/page\/2\/\">Next<svg enable-background=\"new 0 0 477.175 477.175\" version=\"1.1\" viewbox=\"0 0 477.18 477.18\"><path d=\"m360.73 229.08-225.1-225.1c-5.3-5.3-13.8-5.3-19.1 0s-5.3 13.8 0 19.1l215.5 215.5-215.5 215.5c-5.3 5.3-5.3 13.8 0 19.1 2.6 2.6 6.1 4 9.5 4s6.9-1.3 9.5-4l225.1-225.1c5.3-5.2 5.3-13.8 0.1-19z\"><\/path><\/svg><\/a><\/li><\/ul><\/div><\/div><div class=\"pagination-block-html\" aria-hidden=\"true\" style=\"display: none;\"><\/div><\/div>","protected":false},"excerpt":{"rendered":"","protected":false},"author":1,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"class_list":["post-2455","page","type-page","status-publish"],"_links":{"self":[{"href":"https:\/\/creg.i3a.es\/es\/wp-json\/wp\/v2\/pages\/2455","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/creg.i3a.es\/es\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/creg.i3a.es\/es\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/creg.i3a.es\/es\/wp-json\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"https:\/\/creg.i3a.es\/es\/wp-json\/wp\/v2\/comments?post=2455"}],"version-history":[{"count":57,"href":"https:\/\/creg.i3a.es\/es\/wp-json\/wp\/v2\/pages\/2455\/revisions"}],"predecessor-version":[{"id":5582,"href":"https:\/\/creg.i3a.es\/es\/wp-json\/wp\/v2\/pages\/2455\/revisions\/5582"}],"wp:attachment":[{"href":"https:\/\/creg.i3a.es\/es\/wp-json\/wp\/v2\/media?parent=2455"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}