{"id":3365,"date":"2022-05-11T09:18:35","date_gmt":"2022-05-11T09:18:35","guid":{"rendered":"https:\/\/nuevaimdeaenergia.es\/porfolio\/heatnmof-heating-triggered-drug-release-from-nanometric-inorganic-metal-organic-framework-composites-2\/"},"modified":"2026-02-10T09:56:30","modified_gmt":"2026-02-10T09:56:30","slug":"hysolchem-hybrid-reactor-for-solar-co2-and-n2-conversion-coupled-to-wastewater-treatment","status":"publish","type":"portfolio","link":"http:\/\/energia.imdea.org\/en\/porfolio\/hysolchem-hybrid-reactor-for-solar-co2-and-n2-conversion-coupled-to-wastewater-treatment\/","title":{"rendered":"HySolChem: Hybrid Reactor for Solar CO2 and N2 Conversion Coupled to WasteWater Treatment"},"content":{"rendered":"<div  class=\"tatsu-h1nk50vmjl1adzcd tatsu-section  tatsu-bg-overlay   tatsu-clearfix\" data-title=\"\"  data-headerscheme=\"background--dark\"><div class='tatsu-section-pad clearfix' data-padding='{\"d\":\"0px 0px 0px 0px\"}' data-padding-top='0px'><div class=\"tatsu-row-wrap  tatsu-wrap tatsu-row-one-col tatsu-row-has-one-cols tatsu-medium-gutter tatsu-reg-cols  tatsu-clearfix tatsu-h1nk50vmmwfvn0yp\" ><div  class=\"tatsu-row \" ><div  class=\"tatsu-column  tatsu-bg-overlay tatsu-one-col tatsu-column-image-none tatsu-column-effect-none  tatsu-h1nk50vmr2bjj5cs\"  data-parallax-speed=\"0\" style=\"\"><div class=\"tatsu-column-inner \" ><div class=\"tatsu-column-pad-wrap\"><div class=\"tatsu-column-pad\" ><div  class=\"tatsu-module tatsu-text-block-wrap tatsu-h1nk50vmtyby6faw  \"><div class=\"tatsu-text-inner tatsu-align-center  clearfix\" ><style>.tatsu-h1nk50vmtyby6faw.tatsu-text-block-wrap .tatsu-text-inner{width: 100%;text-align: left;}.tatsu-h1nk50vmtyby6faw.tatsu-text-block-wrap{margin: 200px 0px 0px 0px;}<\/style>\n<h4><span style=\"font-size: 28pt; color: #ffffff;\"><strong>HySolChem: Hybrid Reactor for Solar CO2 and N2 Conversion Coupled to WasteWater Treatment<\/strong><\/span><\/h4>\n<\/div><\/div><\/div><\/div><div class = \"tatsu-column-bg-image-wrap\"><div class = \"tatsu-column-bg-image\" ><\/div><\/div><div class=\"tatsu-overlay tatsu-column-overlay tatsu-animate-none\" ><\/div><\/div><style>.tatsu-row > .tatsu-h1nk50vmr2bjj5cs.tatsu-column{width: 100%;}.tatsu-h1nk50vmr2bjj5cs.tatsu-column > .tatsu-column-inner > .tatsu-column-overlay{mix-blend-mode: normal;}.tatsu-h1nk50vmr2bjj5cs > .tatsu-column-inner > .tatsu-top-divider{z-index: 9999;}.tatsu-h1nk50vmr2bjj5cs > .tatsu-column-inner > .tatsu-bottom-divider{z-index: 9999;}.tatsu-h1nk50vmr2bjj5cs > .tatsu-column-inner > .tatsu-left-divider{z-index: 9999;}.tatsu-h1nk50vmr2bjj5cs > .tatsu-column-inner > .tatsu-right-divider{z-index: 9999;}@media only screen and (max-width:1377px) {.tatsu-row > .tatsu-h1nk50vmr2bjj5cs.tatsu-column{width: 100%;}}@media only screen and (min-width:768px) and (max-width: 1024px) {.tatsu-row > .tatsu-h1nk50vmr2bjj5cs.tatsu-column{width: 100%;}}@media only screen and (max-width: 767px) {.tatsu-row > .tatsu-h1nk50vmr2bjj5cs.tatsu-column{width: 100%;}}<\/style><\/div><\/div><\/div><\/div><div class=\"tatsu-section-background-wrap\"><div class = \"tatsu-section-background\" ><\/div><\/div><div class=\"tatsu-overlay tatsu-section-overlay\"><\/div><style>.tatsu-h1nk50vmjl1adzcd .tatsu-section-background{background-image: url(http:\/\/energia.imdea.org\/wp-content\/uploads\/2022\/04\/cabe-proyectos02.jpg);background-repeat: no-repeat;background-attachment: scroll;background-position: top left;background-size: cover;}.tatsu-h1nk50vmjl1adzcd .tatsu-bg-blur{background-repeat: no-repeat;background-attachment: scroll;background-position: top left;background-size: cover;}.tatsu-h1nk50vmjl1adzcd.tatsu-section{margin: 0px 0px 80px 0px;}.tatsu-h1nk50vmjl1adzcd .tatsu-section-offset-wrap{transform: translateY(-0px);}.tatsu-h1nk50vmjl1adzcd > .tatsu-bottom-divider{z-index: 9999;}.tatsu-h1nk50vmjl1adzcd > .tatsu-top-divider{z-index: 9999;}.tatsu-h1nk50vmjl1adzcd .tatsu-section-overlay{mix-blend-mode: normal;}<\/style><\/div><div  class=\"tatsu-h1ncdeje3e604amt tatsu-section  tatsu-bg-overlay   tatsu-clearfix\" data-title=\"\"  data-headerscheme=\"background--dark\"><div class='tatsu-section-pad clearfix' data-padding='{\"d\":\"0px 0px 90px 0px\"}' data-padding-top='0px'><div class=\"tatsu-row-wrap  tatsu-wrap tatsu-row-one-col tatsu-row-has-one-cols tatsu-medium-gutter tatsu-reg-cols  tatsu-clearfix tatsu-h1ncdeje69fa2d4j\" ><div  class=\"tatsu-row \" ><div  class=\"tatsu-column  tatsu-bg-overlay tatsu-one-col tatsu-column-image-none tatsu-column-effect-none  tatsu-h1ncdeje8od2bruo\"  data-parallax-speed=\"0\" style=\"\"><div class=\"tatsu-column-inner \" ><div class=\"tatsu-column-pad-wrap\"><div class=\"tatsu-column-pad\" ><div  class=\"tatsu-module tatsu-text-block-wrap tatsu-h1ncdejebe9xo0k9  \"><div class=\"tatsu-text-inner tatsu-align-center  clearfix\" ><style>.tatsu-h1ncdejebe9xo0k9.tatsu-text-block-wrap .tatsu-text-inner{width: 100%;text-align: left;}.tatsu-h1ncdejebe9xo0k9.tatsu-text-block-wrap .tatsu-text-inner *{font-size : 14px;}<\/style>\n<p class=\"rtejustify\"><span style=\"font-size: 14pt;\">HySolChem propone el desarrollo de un reactor innovador y de bajo coste para producir combustibles y productos qu\u00edmicos de alto valor a\u00f1adido (CH<sub>4<\/sub>, C<sub>2<\/sub>H<sub>4<\/sub>, C<sub>3<\/sub>H<sub>6<\/sub>\u00a0 y NH<sub>3<\/sub>) a partir de CO<sub>2<\/sub>\u00a0y N<sub>2<\/sub>, mientras se eliminan de manera simult\u00e1nea contaminantes de las aguas residuales y se reducen y valorizan gases de efecto invernadero (GEI). La tecnolog\u00eda del reactor se basa en la fotos\u00edntesis artificial. A trav\u00e9s de este ambicioso objetivo, HySolChem aborda la valorizaci\u00f3n de CO<sub>2<\/sub>, la fotos\u00edntesis artificial, la fijaci\u00f3n de N<sub>2<\/sub>\u00a0y la descontaminaci\u00f3n por micropl\u00e1sticos.<\/span><\/p>\n<p class=\"rtejustify\"><span style=\"font-size: 14pt;\">Para construir este innovador prototipo de fotorreactor, el proyecto se enfrenta a diversos retos tales como:<\/span><\/p>\n<ol>\n<li class=\"rtejustify\"><span style=\"font-size: 14pt;\">Dise\u00f1o y s\u00edntesis de fotoc\u00e1todos con elevada eficiencia y estabilidad para la reducci\u00f3n de CO<sub>2<\/sub>\u00a0y N<sub>2<\/sub>;<\/span><\/li>\n<li class=\"rtejustify\"><span style=\"font-size: 14pt;\">Desarrollo de \u00e1nodos de bajo coste y larga duraci\u00f3n para la electro-oxidaci\u00f3n de micropl\u00e1sticos y otros contaminantes org\u00e1nicos de aguas residuales;<\/span><\/li>\n<li class=\"rtejustify\"><span style=\"font-size: 14pt;\">Dise\u00f1o y fabricaci\u00f3n de membranas de intercambio i\u00f3nico rentables, selectivas y fotoestables;<\/span><\/li>\n<li class=\"rtejustify\"><span style=\"font-size: 14pt;\">Caracterizaci\u00f3n avanzada de materiales a diferentes niveles con t\u00e9cnicas espectrosc\u00f3picas de \u00faltima generaci\u00f3n;<\/span><\/li>\n<li class=\"rtejustify\"><span style=\"font-size: 14pt;\">Integraci\u00f3n de los materiales desarrollados, los fotoc\u00e1todos para la reducci\u00f3n de CO<sub>2<\/sub>\/N<sub>2<\/sub>, los \u00e1nodos para la oxidaci\u00f3n de contaminantes y micropl\u00e1sticos y las membranas de intercambio i\u00f3nico, en un reactor de flujo solar para la descontaminaci\u00f3n de agua y la valorizaci\u00f3n simult\u00e1nea de CO<sub>2<\/sub>\/N<sub>2<\/sub>;<\/span><\/li>\n<li class=\"rtejustify\"><span style=\"font-size: 14pt;\">Validaci\u00f3n del prototipo en una planta de tratamiento de aguas residuales;<\/span><\/li>\n<li class=\"rtejustify\"><span style=\"font-size: 14pt;\">Estudio de los materiales y dispositivos desarrollados desde un punto de vista medioambiental, econ\u00f3mico y social.<\/span><\/li>\n<\/ol>\n<p class=\"rtejustify\"><span style=\"font-size: 14pt;\">El prototipo desarrollado en el proyecto HySolChem se dise\u00f1ar\u00e1 teniendo en cuenta aplicaciones port\u00e1tiles y su escalado, con el fin de adecuarlo a una amplia gama de industrias intensivas o de producci\u00f3n de energ\u00eda.<\/span><\/p>\n<p class=\"rtejustify\"><span style=\"font-size: 14pt;\">HySolChem es un proyecto de alto riesgo \/ alta ganancia, que incluir\u00e1 el dise\u00f1o, desarrollo, prueba y validaci\u00f3n industrial de un prototipo de fotorreactor, con potencial para convertirse en una poderosa tecnolog\u00eda para la reducci\u00f3n de emisiones de gases de efecto invernadero.<\/span><\/p>\n<p class=\"rtejustify\"><span style=\"font-size: 14pt;\">El consorcio del proyecto HySolChem, que coordina IMDEA Energ\u00eda, consta de socios acad\u00e9micos y tres PYMES (Diamond Light Source LTD, APRIA Systems SL y Amer-Sil SA), especializados en cat\u00e1lisis, ciencia de materiales, bater\u00edas, tratamiento de aguas, impacto social y medioambiental y propiedad intelectual, con representaci\u00f3n de socios de Espa\u00f1a, Italia, Luxemburgo y Reino Unido.<\/span><\/p>\n<div class=\"rtejustify\"><span style=\"font-size: 14pt;\"><strong>Participantes:<\/strong>\u00a0Fundaci\u00f3n IMDEA Energ\u00eda (Coordinador), Universidad Rey Juan Carlos, Katholieke Universiteit Leuven, INNOVA Srl, Amer-Sil SA, Diamond Light Source LTD, APRIA Systems SL<\/span><\/div>\n<div class=\"rtejustify\"><span style=\"font-size: 14pt;\"><strong>Entidad financiadora\/Programa:<\/strong>\u00a0Este proyecto ha recibido financiaci\u00f3n del Programa Marco de Investigaci\u00f3n e Innovaci\u00f3n de la Uni\u00f3n Europea Horizonte 2020 bajo el contrato N\u00ba 101017928.<\/span><\/div>\n<div class=\"rtejustify\"><span style=\"font-size: 14pt;\"><strong>Convocatoria:<\/strong>\u00a0H2020-FETPROACT-2020 &#8211; FET Proactive: Boosting emerging technologies (Topic: FETPROACT-EIC-07-2020)<\/span><\/div>\n<div class=\"rtejustify\"><span style=\"font-size: 14pt;\"><strong>Tipo de acci\u00f3n:\u00a0<\/strong>Acci\u00f3n de Investigaci\u00f3n e Innovaci\u00f3n (RIA)<\/span><\/div>\n<div class=\"rtejustify\"><span style=\"font-size: 14pt;\"><strong>Periodo de realizaci\u00f3n:<\/strong> Enero 2021 &#8211; Abril 2025<\/span><\/div>\n<div class=\"rtejustify\"><span style=\"font-size: 14pt;\"><strong>Investigador Principal:<\/strong>\u00a0Dr. V\u00edctor Antonio de la Pe\u00f1a O&#8217;Shea<\/span><\/div>\n<div class=\"rtejustify\">\n<div class=\"rtejustify\"><strong>Subvenci\u00f3n Instituto IMDEA Energ\u00eda:<\/strong> 801.875 \u20ac<\/div>\n<div class=\"rtejustify\"><strong>P\u00e1gina web:<\/strong> https:\/\/www.hysolchem.eu\/<\/div>\n<\/div>\n<\/div><\/div><div  class=\"tatsu-single-image tatsu-module tatsu-image-lazyload tatsu-B1xLGxYLq  \" ><div class=\"tatsu-single-image-inner \" style=\"width : 112px;\" ><div class = \"tatsu-single-image-padding-wrap\" style = \"padding-bottom : 67.857142857143%;\" ><\/div><img class = \"tatsu-gradient-border\" alt = \"\" title = \"UE-SOLOTATATA\" data-src = \"http:\/\/energia.imdea.org\/wp-content\/uploads\/2022\/05\/UE-SOLOTATATA.jpg\" src =\"data:image\/png;base64,iVBORw0KGgoAAAANSUhEUgAAAAEAAAABCAQAAAC1HAwCAAAAC0lEQVR42mNkYAAAAAYAAjCB0C8AAAAASUVORK5CYII=\"  \/><\/div><style>.tatsu-B1xLGxYLq .tatsu-single-image-inner{border-style: solid;max-width: 100%;}.tatsu-B1xLGxYLq.tatsu-single-image{transform: translate3d(0px,0px, 0);}<\/style><\/div><\/div><\/div><div class = \"tatsu-column-bg-image-wrap\"><div class = \"tatsu-column-bg-image\" ><\/div><\/div><div class=\"tatsu-overlay tatsu-column-overlay tatsu-animate-none\" ><\/div><\/div><style>.tatsu-row > .tatsu-h1ncdeje8od2bruo.tatsu-column{width: 100%;}.tatsu-h1ncdeje8od2bruo.tatsu-column > .tatsu-column-inner > 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