{"id":11656,"date":"2025-10-10T07:07:41","date_gmt":"2025-10-10T07:07:41","guid":{"rendered":"https:\/\/energia.imdea.org\/porfolio\/phonon-aprovechamiento-total-del-espectro-solar-para-la-produccion-escalable-de-amoniaco-fototermico-utilizando-materiales-no-criticos\/"},"modified":"2025-10-10T07:31:39","modified_gmt":"2025-10-10T07:31:39","slug":"phonon-aprovechamiento-total-del-espectro-solar-para-la-produccion-escalable-de-amoniaco-fototermico-utilizando-materiales-no-criticos","status":"publish","type":"portfolio","link":"https:\/\/energia.imdea.org\/en\/porfolio\/phonon-aprovechamiento-total-del-espectro-solar-para-la-produccion-escalable-de-amoniaco-fototermico-utilizando-materiales-no-criticos\/","title":{"rendered":"PHONON: Full solar-spectrum exploitation for scalable photothermal ammonia production using non-critical materials"},"content":{"rendered":"<div  class=\"tatsu-i36rxqqo6wd9aww2 tatsu-section  tatsu-bg-overlay   tatsu-clearfix\" data-title=\"\"  data-headerscheme=\"background--dark\"><div class='tatsu-section-pad clearfix' data-padding='{\"d\":\"90px 0px 15px 0px\"}' data-padding-top='90px'><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-i36rxqqo8he2uers\" ><div  class=\"tatsu-row \" ><div  class=\"tatsu-column  tatsu-bg-overlay tatsu-one-col tatsu-column-image-none tatsu-column-effect-none  tatsu-i36rxqqo9xg2j11l\"  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-i36rxqqob74kuyq0  \"><div class=\"tatsu-text-inner tatsu-align-center  clearfix\" ><style>.tatsu-i36rxqqob74kuyq0.tatsu-text-block-wrap .tatsu-text-inner{width: 100%;text-align: left;}<\/style><p><\/p>\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-i36rxqqo9xg2j11l.tatsu-column{width: 100%;}.tatsu-i36rxqqo9xg2j11l.tatsu-column > .tatsu-column-inner > .tatsu-column-overlay{mix-blend-mode: normal;}.tatsu-i36rxqqo9xg2j11l > .tatsu-column-inner > .tatsu-top-divider{z-index: 9999;}.tatsu-i36rxqqo9xg2j11l > .tatsu-column-inner > .tatsu-bottom-divider{z-index: 9999;}.tatsu-i36rxqqo9xg2j11l > .tatsu-column-inner > .tatsu-left-divider{z-index: 9999;}.tatsu-i36rxqqo9xg2j11l > .tatsu-column-inner > .tatsu-right-divider{z-index: 9999;}<\/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-i36rxqqo6wd9aww2 .tatsu-section-pad{padding: 90px 0px 15px 0px;}.tatsu-i36rxqqo6wd9aww2 > .tatsu-bottom-divider{z-index: 9999;}.tatsu-i36rxqqo6wd9aww2 > .tatsu-top-divider{z-index: 9999;}.tatsu-i36rxqqo6wd9aww2 .tatsu-section-overlay{mix-blend-mode: normal;}<\/style><\/div><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>PHONON: Full solar-spectrum exploitation for scalable photothermal ammonia production using non-critical materials<\/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-r1-ZVU4L6ge 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-BJxZV848ale\" ><div  class=\"tatsu-row \" ><div  class=\"tatsu-column  tatsu-bg-overlay tatsu-one-col tatsu-column-image-none tatsu-column-effect-none  tatsu-ByZNIVI6gg\"  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-H1mVINLTgx  \"><div class=\"tatsu-text-inner tatsu-align-center  clearfix\" ><style>.tatsu-H1mVINLTgx.tatsu-text-block-wrap .tatsu-text-inner{width: 100%;text-align: left;}<\/style>\n<p>Research project corresponding to the call 2024 and reference PID2024-162925OB-I00, for grants for \u00abProyectos de Generaci\u00f3n de Conocimiento\u00bb.<\/p>\n<p>A transformative solution to the growing energy crisis and global warming relies on the massive exploitation of renewables, and the use of chemical energy storage to guarantee security and flexibility. A good candidate for achieving both goals is solar ammonia, which has recently emerged as one of the biggest premises of our time to help to confront two of the most pressing global challenges: food and energy security in the context of a low-carbon economy.<\/p>\n<p>In this context, PHONON aims to go a step beyond the state-of-the-art in solar ammonia production technologies by exploring a scalable photothermocatalytic N<sub>2<\/sub> conversion route (nitrogen reduction reaction, NRR) based on affordable, non toxic and non-critical catalysts prepared by simple synthetic routes.<\/p>\n<p>NRR is a newly and fast-growing approach for ammonia production at an early stage of development at laboratory scale. More significantly, photothermal NRR using plasmonic semiconductors is an almost unexplored research field with potential benefits for industrial scale production of solar ammonia. Based on the above, PHONON will go one step further by bridging basic and applied research (lab-scale and semi-pilot plant experiments, respectively) for a future solar NH3 industrial development. Interestingly, no previous solarization examples have been found in literature for photothermal ammonia production. Further, our proposal will fit a circular economy approach on the premises of more sustainable catalysts and renewable energy processes. Indeed, this project will investigate the production of solar ammonia using green hydrogen generated from bioethanol photoreforming. This challenging approach would target two ambitious objectives: (i) waste valorization (biomass waste or organic fraction of municipal solid waste), and (ii) development of an overall renewable technology for a circular energy transition.<\/p>\n<p>In addition, this project will ultimately contribute to generate knowledge on key mechanistic aspects of the photothermal NRR. Great efforts will be made to perform in situ and operando surface analysis to understand the reactivity of photothermal catalysts, and the main reaction pathways and limiting steps. The current lack of in-situ\/operando spectroscopic investigations in reported literature, due to the complexity of the simultaneous thermal and photonic activation controlling the reactivity of the catalytic systems, strongly reinforces the high-risk\/high-gain character of this proposal.<\/p>\n<p><strong>Partners: <\/strong>IMDEA Energy Institute<\/p>\n<p><strong>Funding Institution\/Program:<\/strong> Ministry of Science, Innovation and Universities\/AEI &#8211; FEDER-UE \/ Proyectos de Generaci\u00f3n de Conocimiento 2024<\/p>\n<p><strong>Period:<\/strong> 01\/09\/2025 &#8211; 31\/08\/2028<\/p>\n<p><strong>IMDEA Energy Institute external funding: <\/strong>172.500 \u20ac<\/p>\n<p><strong>IP IMDEA Energy:<\/strong> Dr. Laura Collado \/ Dr. Javier Fermoso (ICP-CSIC)<\/p>\n<\/div><\/div><div  class=\"tatsu-single-image tatsu-module tatsu-image-lazyload tatsu-BylB8EIpxx  \" ><div class=\"tatsu-single-image-inner \" style=\"width : 551px;\" ><div class = \"tatsu-single-image-padding-wrap\" style = \"padding-bottom : 22.686025408348%;\" ><\/div><img class = \"tatsu-gradient-border\" alt = \"\" title = \"logo ministe agata\" data-src = \"https:\/\/energia.imdea.org\/wp-content\/uploads\/2025\/04\/logo-ministe-agata-1.jpg\" src =\"data:image\/png;base64,iVBORw0KGgoAAAANSUhEUgAAAAEAAAABCAQAAAC1HAwCAAAAC0lEQVR42mNkYAAAAAYAAjCB0C8AAAAASUVORK5CYII=\"  \/><\/div><style>.tatsu-BylB8EIpxx .tatsu-single-image-inner{border-style: solid;max-width: 100%;}.tatsu-BylB8EIpxx.tatsu-single-image{transform: translate3d(0px,0px, 0);}<\/style><\/div><div  class=\"tatsu-module tatsu-text-block-wrap tatsu-B1ZUUV86xl  \"><div class=\"tatsu-text-inner tatsu-align-center  clearfix\" ><style>.tatsu-B1ZUUV86xl.tatsu-text-block-wrap .tatsu-text-inner{width: 100%;text-align: left;}<\/style>\n<p><em>Grant <\/em><em>PID2024-162925OB-I00 funded by MICIU\/AEI \/10.13039\/501100011033, and by FEDER, UE<\/em><\/p>\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-ByZNIVI6gg.tatsu-column{width: 100%;}.tatsu-ByZNIVI6gg.tatsu-column > .tatsu-column-inner > .tatsu-column-overlay{mix-blend-mode: normal;}.tatsu-ByZNIVI6gg > .tatsu-column-inner > .tatsu-top-divider{z-index: 9999;}.tatsu-ByZNIVI6gg > .tatsu-column-inner > .tatsu-bottom-divider{z-index: 9999;}.tatsu-ByZNIVI6gg > .tatsu-column-inner > .tatsu-left-divider{z-index: 9999;}.tatsu-ByZNIVI6gg > .tatsu-column-inner > .tatsu-right-divider{z-index: 9999;}@media only screen and (max-width:1377px) {.tatsu-row > .tatsu-ByZNIVI6gg.tatsu-column{width: 100%;}}@media only screen and (min-width:768px) and (max-width: 1024px) {.tatsu-row > .tatsu-ByZNIVI6gg.tatsu-column{width: 100%;}}@media only screen and (max-width: 767px) {.tatsu-row > .tatsu-ByZNIVI6gg.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-r1-ZVU4L6ge .tatsu-section-pad{padding: 0px 0px 90px 0px;}.tatsu-r1-ZVU4L6ge .tatsu-section-offset-wrap{transform: translateY(-0px);}.tatsu-r1-ZVU4L6ge > .tatsu-bottom-divider{z-index: 9999;}.tatsu-r1-ZVU4L6ge > .tatsu-top-divider{z-index: 9999;}.tatsu-r1-ZVU4L6ge .tatsu-section-overlay{mix-blend-mode: normal;}<\/style><\/div>\n","protected":false},"excerpt":{"rendered":"<p><a href=\"https:\/\/energia.imdea.org\/en\/porfolio\/phonon-aprovechamiento-total-del-espectro-solar-para-la-produccion-escalable-de-amoniaco-fototermico-utilizando-materiales-no-criticos\/\" class=\"more-link style1-button\">Read More<\/a><\/p>","protected":false},"author":3,"featured_media":11655,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","format":"standard","meta":{"_vp_format_video_url":"","_vp_image_focal_point":[],"footnotes":""},"portfolio_category":[60,60,63,63,65,65,70,70],"portfolio_tag":[],"class_list":["post-11656","portfolio","type-portfolio","status-publish","format-standard","has-post-thumbnail","hentry","portfolio_category-en-activo-ingles","portfolio_category-nacionales-ingles","portfolio_category-proyectos-ingles","portfolio_category-unidades-de-procesos-fotoactivados-ingles"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v28.2 - 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