{"id":12576,"date":"2020-09-01T10:00:00","date_gmt":"2020-09-01T10:00:00","guid":{"rendered":"https:\/\/zbt.de\/projects\/hipowar-highly-efficient-power-generation-through-green-ammonia-total-oxidation\/"},"modified":"2025-08-21T09:39:24","modified_gmt":"2025-08-21T09:39:24","slug":"hipowar","status":"publish","type":"project","link":"https:\/\/zbt.de\/en\/projects\/hipowar\/","title":{"rendered":"HiPowAR \u2013 Highly efficient power generation through green ammonia total oxidation"},"content":{"rendered":"<section class=\"text-teaser text-teaser--white\">\n  <h2 class=\"text-teaser__heading\">HiPowAR &#8211; Highly efficient power generation through green ammonia total oxidation in a membrane reactor<\/h2>\n  <div class=\"text-teaser__text\"><p>Renewable ammonia is increasingly seen as a carbon-free green fuel that paves the way for a new nitrogen-based energy economy. Its energy density per volume is almost twice that of hydrogen and it is easier to transport, store and distribute. As the market grows due to efforts by various companies (e.g. YARA) to achieve more environmentally friendly production, distribution channels for ammonia imports and ammonia refuelling technologies will follow. The project aims to promote the acceptance of ammonia as a synthetic fuel with no CO2 emissions. It focuses on a breakthrough in the direct conversion of NH3 fuel into electricity.<\/p>\n<p>To this end, a new, promising process based on a membrane reactor is being implemented and experimentally characterised. The process is comparable to an internal short-circuit fuel cell, but without the typical electrical connections to avoid electrical losses. This makes the system much simpler and cheaper than a SOFC (solid oxide fuel cell). The chemical energy of the liquid ammonia is converted into a highly compressed gas (N2 + H2O) by means of so-called self-pressurised combustion in a pressure vessel with a constant volume. The energy is obtained through the expansion work with the aid of a gas expander, e.g. in a gas expander such as a steam turbine or an engine. Since high pressure increases the overall efficiency of the process, the membrane reactor consists of tubular ceramic membranes that can withstand very high external gas pressures. The membranes are conductive for oxide ions and electronic charge carriers and realise the internal electrical short circuit in a single element. They are also called MIEC (Mixed Ionic Electronic Conductor), ITM (Ion Transporting Membranes) and OTM (Oxygen Transporting Membranes). Similar to fuel cells, the thermodynamic efficiency of the process is not limited. In contrast to combustion engines, steam power plants or other processes based on the cycle of a working medium, a significantly higher efficiency is expected.<\/p>\n<p>This project has been funded by the European Union&#8217;s Horizon 2020 research and innovation programme under grant agreement No. 951880.<\/p>\n<p>Partner: INP Greifswald, ZBT GmbH, POLIMI, Fraunhofer IKTS, PBS, RANOTOR<\/p>\n<p>Further links:<\/p>\n<ul>\n<li><a href=\"https:\/\/www.hipowar.eu\/en\/home\">www.hipowar.eu<\/a><\/li>\n<li><a class=\"external-link-new-window\" title=\"Opens external link in new window\" href=\"https:\/\/cordis.europa.eu\/project\/id\/951880\/de\" target=\"_blank\" rel=\"noopener\">cordis.europa.eu<\/a><\/li>\n<li><a class=\"external-link-new-window\" title=\"Opens external link in new window\" href=\"https:\/\/ec.europa.eu\/programmes\/horizon2020\/en\/news\/hipowar-powering-way-renewable-ammonia\" target=\"_blank\" rel=\"noopener\">ec.europa.eu<\/a><\/li>\n<\/ul>\n<\/div>\n<\/section>\n\n\n<section class=\"latest-project latest-project--white\">\n            <h2 class=\"latest-project__heading\">Further projects<\/h2>\n    \n            <div class=\"latest-project__grid\">\n                                                                                                <div class=\"latest-project__item\">\n                            <a href=\"https:\/\/zbt.de\/en\/projects\/past-el\/\" class=\"project-card\" title=\"pAST-EL - Predictive AST Protocols for Alkaline Electrolysis\">\n    <div class=\"project-card__header\">\n        <figure class=\"project-card__figure\">\n            <img loading=\"lazy\" decoding=\"async\" width=\"1024\" height=\"644\" src=\"https:\/\/zbt.de\/app\/uploads\/2026\/08\/DSC_7095-1024x644.jpg\" class=\"project-card__image wp-post-image\" alt=\"\" srcset=\"https:\/\/zbt.de\/app\/uploads\/2026\/08\/DSC_7095-1024x644.jpg 1024w, https:\/\/zbt.de\/app\/uploads\/2026\/08\/DSC_7095-300x189.jpg 300w, https:\/\/zbt.de\/app\/uploads\/2026\/08\/DSC_7095-768x483.jpg 768w, https:\/\/zbt.de\/app\/uploads\/2026\/08\/DSC_7095-1536x966.jpg 1536w, https:\/\/zbt.de\/app\/uploads\/2026\/08\/DSC_7095-2048x1287.jpg 2048w, https:\/\/zbt.de\/app\/uploads\/2026\/08\/DSC_7095-1320x830.jpg 1320w\" sizes=\"auto, (max-width: 1024px) 100vw, 1024px\" \/>\n        <\/figure>\n    <\/div>\n    <div class=\"project-card__body\">\n        <time class=\"project-card__published\" datetime=\"2026-08-17T15:41:27+00:00\">\n            17. August, 2026\n        <\/time>\n        <h4 class=\"project-card__title\">pAST-EL &#8211; Predictive AST Protocols for Alkaline Electrolysis<\/h4>\n        <p class=\"project-card__text\">As part of the pAST-EL project, ZBT and DLR are developing predictive stress tests and machine learning models to detect degradation more quickly, predict service life more reliably, and optimise operating strategies for electrolysers.<\/p>\n    <\/div>\n    <div class=\"project-card__footer\">\n        <div class=\"project-card__action\">\n            <span class=\"project-card__more\">Read more<\/span>\n            <i class=\"project-card__arrow\"><svg xmlns=\"http:\/\/www.w3.org\/2000\/svg\" fill=\"currentColor\" viewBox=\"0 0 448 512\"><path d=\"M435.3 267.3L446.6 256l-11.3-11.3-168-168L256 65.4 233.4 88l11.3 11.3L385.4 240 16 240 0 240l0 32 16 0 369.4 0L244.7 412.7 233.4 424 256 446.6l11.3-11.3 168-168z\"\/><\/svg><\/i>\n        <\/div>\n    <\/div>\n<\/a>                        <\/div>\n                                                                                                        <div class=\"latest-project__item\">\n                            <a href=\"https:\/\/zbt.de\/en\/projects\/greljet\/\" class=\"project-card\" title=\"grELjet\">\n    <div class=\"project-card__header\">\n        <figure class=\"project-card__figure\">\n            <img loading=\"lazy\" decoding=\"async\" width=\"1024\" height=\"674\" src=\"https:\/\/zbt.de\/app\/uploads\/2026\/07\/membran-mea-xrm-1024x674.jpg\" class=\"project-card__image wp-post-image\" alt=\"R\u00f6ntgenmikroskopaufnahmer einer Membran-Elektroden-Einheit (MEA)\" srcset=\"https:\/\/zbt.de\/app\/uploads\/2026\/07\/membran-mea-xrm-1024x674.jpg 1024w, https:\/\/zbt.de\/app\/uploads\/2026\/07\/membran-mea-xrm-300x197.jpg 300w, https:\/\/zbt.de\/app\/uploads\/2026\/07\/membran-mea-xrm-768x505.jpg 768w, https:\/\/zbt.de\/app\/uploads\/2026\/07\/membran-mea-xrm.jpg 1152w\" sizes=\"auto, (max-width: 1024px) 100vw, 1024px\" \/>\n        <\/figure>\n    <\/div>\n    <div class=\"project-card__body\">\n        <time class=\"project-card__published\" datetime=\"2026-08-03T15:35:00+00:00\">\n            3. August, 2026\n        <\/time>\n        <h4 class=\"project-card__title\">grELjet<\/h4>\n        <p class=\"project-card__text\">As part of the grELjet project, ZBT is collaborating with Fraunhofer ENAS to develop spatially resolved, optimised catalyst layers designed to reduce the iridium requirements of PEM electrolysers and increase their efficiency.<\/p>\n    <\/div>\n    <div class=\"project-card__footer\">\n        <div class=\"project-card__action\">\n            <span class=\"project-card__more\">Read more<\/span>\n            <i class=\"project-card__arrow\"><svg xmlns=\"http:\/\/www.w3.org\/2000\/svg\" fill=\"currentColor\" viewBox=\"0 0 448 512\"><path d=\"M435.3 267.3L446.6 256l-11.3-11.3-168-168L256 65.4 233.4 88l11.3 11.3L385.4 240 16 240 0 240l0 32 16 0 369.4 0L244.7 412.7 233.4 424 256 446.6l11.3-11.3 168-168z\"\/><\/svg><\/i>\n        <\/div>\n    <\/div>\n<\/a>                        <\/div>\n                                                                                                        <div class=\"latest-project__item\">\n                            <a href=\"https:\/\/zbt.de\/en\/projects\/nh3-hrs\/\" class=\"project-card\" title=\"NH3-HRS\">\n    <div class=\"project-card__header\">\n        <figure class=\"project-card__figure\">\n            <img loading=\"lazy\" decoding=\"async\" width=\"1024\" height=\"684\" src=\"https:\/\/zbt.de\/app\/uploads\/2026\/04\/DSC_6097-Bearbeitet-1024x684.jpg\" class=\"project-card__image wp-post-image\" alt=\"Teststand f\u00fcr Ammoniak-Craccker in gro\u00dfem Labor\" srcset=\"https:\/\/zbt.de\/app\/uploads\/2026\/04\/DSC_6097-Bearbeitet-1024x684.jpg 1024w, https:\/\/zbt.de\/app\/uploads\/2026\/04\/DSC_6097-Bearbeitet-300x200.jpg 300w, https:\/\/zbt.de\/app\/uploads\/2026\/04\/DSC_6097-Bearbeitet-768x513.jpg 768w, https:\/\/zbt.de\/app\/uploads\/2026\/04\/DSC_6097-Bearbeitet-1536x1025.jpg 1536w, https:\/\/zbt.de\/app\/uploads\/2026\/04\/DSC_6097-Bearbeitet-2048x1367.jpg 2048w, https:\/\/zbt.de\/app\/uploads\/2026\/04\/DSC_6097-Bearbeitet-1320x881.jpg 1320w\" sizes=\"auto, (max-width: 1024px) 100vw, 1024px\" \/>\n        <\/figure>\n    <\/div>\n    <div class=\"project-card__body\">\n        <time class=\"project-card__published\" datetime=\"2026-08-03T13:11:09+00:00\">\n            3. August, 2026\n        <\/time>\n        <h4 class=\"project-card__title\">NH3-HRS<\/h4>\n        <p class=\"project-card__text\">The NH3-HRS project is developing a compact system that converts ammonia directly into high-purity hydrogen at hydrogen refueling stations.<\/p>\n    <\/div>\n    <div class=\"project-card__footer\">\n        <div class=\"project-card__action\">\n            <span class=\"project-card__more\">Read more<\/span>\n            <i class=\"project-card__arrow\"><svg xmlns=\"http:\/\/www.w3.org\/2000\/svg\" fill=\"currentColor\" viewBox=\"0 0 448 512\"><path d=\"M435.3 267.3L446.6 256l-11.3-11.3-168-168L256 65.4 233.4 88l11.3 11.3L385.4 240 16 240 0 240l0 32 16 0 369.4 0L244.7 412.7 233.4 424 256 446.6l11.3-11.3 168-168z\"\/><\/svg><\/i>\n        <\/div>\n    <\/div>\n<\/a>                        <\/div>\n                                                                        <\/div>\n    <\/section>","protected":false},"excerpt":{"rendered":"<p>As part of the EU project HiPowAR, ZBT is responsible for assessing the economic feasibility and competitiveness as well as the environmental impact of the developed technology compared to the use of ammonia in solid oxide fuel cells (SOFC) and internal combustion engines (ICE) using LCC\/LCOE and LCA methods.<\/p>\n","protected":false},"featured_media":3138,"parent":0,"template":"","class_list":["post-12576","project","type-project","status-publish","has-post-thumbnail","hentry"],"acf":{"date":"20200901"},"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v24.9 - 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