{"id":6300,"date":"2024-05-22T14:37:40","date_gmt":"2024-05-22T12:37:40","guid":{"rendered":"https:\/\/xcaliburmp.com\/solution\/underground-storage-of-co2\/"},"modified":"2024-06-27T11:25:37","modified_gmt":"2024-06-27T09:25:37","slug":"almacenamiento-subterraneo-de-co2","status":"publish","type":"solution","link":"https:\/\/xcaliburmp.com\/es\/solution\/almacenamiento-subterraneo-de-co2\/","title":{"rendered":"Almacenamiento subterr\u00e1neo de CO2"},"content":{"rendered":"\r\n<div id=\"Breadcrumb-block_f5704150218624d8079581741316f3ba\" class=\"Breadcrumb\" >\r\n    <section class=\"breadcrumb\" id=\"breadcrumbs\">\r\n        <div class=\"container\">\r\n            <nav aria-label=\"Breadcrumb\" class=\"breadcrumb\">\r\n                <ul class=\"breadcrumb_list\">\r\n                                                                        <li class=\"breadcrumb_item\"><a target=\"\" class=\" breadcrumb_link\" href=\"\/\">Home<\/a><\/li>\r\n                                                    <li class=\"breadcrumb_item\"><a target=\"\" class=\" breadcrumb_link\" href=\"https:\/\/xcaliburmp.com\/solutions-technology\/\">Solutions &amp; Technology<\/a><\/li>\r\n                                                                <li class=\"breadcrumb_item\"><span class=\" breadcrumb_current\">Almacenamiento subterr\u00e1neo de CO2<\/span><\/li>\r\n                <\/ul>\r\n            <\/nav>\r\n        <\/div>\r\n    <\/section>\r\n<\/div>\n\n\r\n<div id=\"FixedText-block_2bc739c1486688fe6d6687716d94142d\" class=\"FixedText\" >\r\n    <div class=\"text\">SOLUCIONES<\/div>\r\n<\/div>\n\n\r\n<div id=\"OpeningImageWithIcon-block_8c0b661ab60ecc301a62c1f2f659e301\" class=\"OpeningImageWithIcon\" style=\"background-image: url('https:\/\/xcaliburmp.com\/wp-content\/uploads\/2024\/05\/christian-buehner-U8bqDvBcZRE-unsplash-1.jpg')\">\r\n    <section class=\"openingimagewithicon\" id=\"openingimagewithicon\">\r\n        <div class=\"container\">\r\n            <div class=\"iconTextCont\">\r\n                <div class=\"iconText\">\r\n                                        <div class=\"title\"><h2>Almacenamiento subterr\u00e1neo de CO\u2082<\/h2>\n<\/div>\r\n                <\/div>\r\n            <\/div>\r\n        <\/div>\r\n    <\/section>\r\n<\/div>\r\n\r\n\n\n\r\n<div id=\"CondensedTitleText-block_0f54ee937e86327bc555c9ca145a1a18\" class=\"v1 CondensedTitleText\" >\r\n    <section class=\"condensedtitletext\" id=\"condensedtitletext\">\r\n        <div class=\"container\">\r\n            <div class=\"content\">\r\n                <div class=\"title\"><div class=\"flex-shrink-0 flex flex-col relative items-end\">\n<div>\n<div class=\"pt-0.5 juice:pt-0\">\n<div class=\"gizmo-bot-avatar flex h-6 w-6 items-center justify-center overflow-hidden rounded-full juice:h-8 juice:w-8\">\n<h3 class=\"relative p-1 rounded-sm flex items-center justify-center bg-token-main-surface-primary text-token-text-primary h-8 w-8\">La Importancia del Almacenamiento de CO\u2082 en la Mitigaci\u00f3n del Cambio Clim\u00e1tico y la Econom\u00eda Descarbonizada<\/h3>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\r\n                <div class=\"description v1\"><p>La exploraci\u00f3n del almacenamiento de CO2 es crucial para abordar el urgente desaf\u00edo de las emisiones de di\u00f3xido de carbono y su impacto en el cambio clim\u00e1tico global. En Xcalibur Smart Mapping reconocemos la urgente necesidad de mitigar las consecuencias de las emisiones de CO2, tal y como destaca el Grupo Intergubernamental de Expertos sobre el Cambio Clim\u00e1tico. Nuestro enfoque va m\u00e1s all\u00e1 de la transici\u00f3n a fuentes de energ\u00eda renovables, abarcando soluciones como la captura, uso y almacenamiento de carbono (CCUS) y la preservaci\u00f3n y mejora de los sumideros naturales de CO2.<\/p>\n<p>Estas estrategias no s\u00f3lo ofrecen v\u00edas para mitigar el cambio clim\u00e1tico, sino que tambi\u00e9n son importantes para configurar la futura econom\u00eda descarbonizada. Con nuestro compromiso con las tecnolog\u00edas y soluciones innovadoras de almacenamiento de CO2, nos esforzamos por liderar el camino hacia un futuro sostenible.<\/p>\n<\/div>\r\n            <\/div>\r\n        <\/div>\r\n    <\/section>\r\n<\/div>\r\n\r\n\n\n\r\n<div id=\"CroppedVideo-block_fabafa9ebbf24251914b9e378e1571d5\" class=\"CroppedVideo\" >\r\n    <section class=\"infographyrdi\" id=\"infographyrdi\">\r\n        <div class=\"crop\">\r\n            <video muted autoplay loop playsinline>\r\n                <source src=\"https:\/\/xcaliburmp.com\/wp-content\/uploads\/2024\/05\/Solutions-6.mp4\" type=\"video\/mp4\">\r\n            <\/video>\r\n        <\/div>\r\n    <\/section>\r\n<\/div>\r\n\r\n\r\n\n\n\r\n<div id=\"CondensedTitleText-block_695e0dc0cd91f55a843bffd1a49afb16\" class=\"v1 CondensedTitleText\" >\r\n    <section class=\"condensedtitletext\" id=\"condensedtitletext\">\r\n        <div class=\"container\">\r\n            <div class=\"content\">\r\n                <div class=\"title\"><h2>Almacenamiento subterr\u00e1neo de CO\u2082<\/h2>\n<\/div>\r\n                <div class=\"description v1\"><p>El almacenamiento subterr\u00e1neo de CO2 forma parte del conjunto de tecnolog\u00edas de captura, uso y almacenamiento de carbono (CCUS), que consiste en capturar el CO2 emitido por procesos industriales o fuentes de generaci\u00f3n de energ\u00eda e inyectarlo a gran profundidad bajo tierra en formaciones geol\u00f3gicas adecuadas. De este modo, se pueden almacenar grandes vol\u00famenes de CO2 de forma segura durante largos periodos, evitando que el CO2 vuelva a liberarse a la atm\u00f3sfera. Entre las formaciones de almacenamiento adecuadas se encuentran los yacimientos de petr\u00f3leo y gas agotados, los acu\u00edferos salinos, las vetas de carb\u00f3n, los esquistos ricos en materia org\u00e1nica y las rocas bas\u00e1lticas o ultram\u00e1ficas. Cada tipo de almacenamiento es diferente, y el CO2 puede quedar atrapado f\u00edsicamente en los espacios porosos de la roca, disolverse en el agua o quedar atrapado qu\u00edmicamente por adsorci\u00f3n (o adherencia) o por reacci\u00f3n para formar un mineral carbonatado estable, logrando un almacenamiento permanente.<\/p>\n<p>La metodolog\u00eda de caracterizaci\u00f3n\/evaluaci\u00f3n del almacenamiento de CO2 requiere la recopilaci\u00f3n de datos, la modelizaci\u00f3n geol\u00f3gica est\u00e1tica en 3D, la modelizaci\u00f3n din\u00e1mica, la caracterizaci\u00f3n de la sensibilidad y la evaluaci\u00f3n de riesgos. Los datos hidrogeol\u00f3gicos, geol\u00f3gicos y geof\u00edsicos deben integrarse para cartografiar la estructura geol\u00f3gica y realizar la modelizaci\u00f3n geol\u00f3gica est\u00e1tica en 3D (Bergmo, P.E.S., et al, 2016. Clasificaci\u00f3n de calidad de los mejores acu\u00edferos de almacenamiento de CO2 en los pa\u00edses n\u00f3rdicos).<\/p>\n<p>Las fases de desarrollo del subsuelo para el almacenamiento de carbono incluyen el cribado regional, la evaluaci\u00f3n de la capacidad, la reducci\u00f3n del riesgo de almacenamiento, la integridad del emplazamiento y la supervisi\u00f3n (CGG Industry Application\/Energy Transition\/CCUS Subsurface Development).<\/p>\n<p>La primera fase consiste en realizar un cribado regional para identificar los mejores emplazamientos potenciales de almacenamiento de CO2 en el subsuelo, evaluando los yacimientos de petr\u00f3leo y gas agotados para la recuperaci\u00f3n mejorada de petr\u00f3leo (EOR) y el almacenamiento de CO2 en acu\u00edferos salinos profundos y yacimientos someros en tierra. El tipo de cuenca, el entorno tect\u00f3nico\/estructural (sistema de fallas, fracturas), la litolog\u00eda del yacimiento, la profundidad y el espesor son los criterios geol\u00f3gicos para el cribado regional y la selecci\u00f3n de emplazamientos. Al igual que en la prospecci\u00f3n de petr\u00f3leo y gas, los sistemas Xcalibur de gradiente gravim\u00e9trico y magn\u00e9tico de alta resoluci\u00f3n (FALCON\u00ae airborne gravity gradiometry &#8211; AGG) y electromagn\u00e9tico aerotransportado (AEM) como TDEM (TEMPEST\u00ae y HELITEM\u00ae) pueden integrarse con otros datos geof\u00edsicos y geol\u00f3gicos para apoyar el c\u00e1lculo de estos par\u00e1metros clave.<\/p>\n<p>La segunda fase se ocupa de la evaluaci\u00f3n de la capacidad de almacenamiento de CO2 utilizando los modelos de yacimientos existentes para comprender mejor el rendimiento y la incertidumbre de la interacci\u00f3n roca-fluidos, relacionando la inyecci\u00f3n y el almacenamiento de CO2. La contenci\u00f3n de un emplazamiento de almacenamiento se eval\u00faa en funci\u00f3n de la capacidad de sellado, las caracter\u00edsticas de las rocas de recubrimiento, las fallas y las fracturas que rodean el yacimiento. Las propiedades del yacimiento son el espesor, la distribuci\u00f3n espacial (por ejemplo, profundidad, extensi\u00f3n), las distribuciones de porosidad y permeabilidad y la continuidad hidr\u00e1ulica entre yacimientos. FALCON\u00ae AGG puede utilizarse para cartografiar litolog\u00edas y fallas, contribuyendo a la determinaci\u00f3n de las propiedades del yacimiento, mientras que los sistemas TDEM aerotransportados (TEMPEST\u00ae y HELITEM\u00ae) son fundamentales para obtener datos de conductividad para la determinaci\u00f3n de la salinidad del acu\u00edfero.<\/p>\n<p>La tercera fase consiste en la gesti\u00f3n del almacenamiento de riesgo mediante la modelizaci\u00f3n de las plumas de desplazamiento e inyecci\u00f3n de CO2, el an\u00e1lisis de las tasas de inyecci\u00f3n y la optimizaci\u00f3n de los planes de desarrollo de la inyecci\u00f3n de CO2. Esta fase se centra en el marco estructural para eliminar el riesgo de migraci\u00f3n de fluidos y fugas verticales. FALCON\u00ae AGG es potencialmente una tecnolog\u00eda rentable y complementaria cuando las fallas y fracturas no se visualizan bien a partir de los datos s\u00edsmicos disponibles.<\/p>\n<p>En la cuarta fase, la construcci\u00f3n de un modelo geomec\u00e1nico en 3D garantiza la integridad del subsuelo para una gesti\u00f3n segura y responsable del almacenamiento. La predicci\u00f3n de la presi\u00f3n del subsuelo y el an\u00e1lisis de trampas y sellos son cruciales.<\/p>\n<p>La \u00faltima y quinta es la aplicaci\u00f3n de soluciones para controlar el CO\u2082 inyectado, incluida su migraci\u00f3n, crecimiento y escape. Esta fase se dedica a la detecci\u00f3n y predicci\u00f3n de las trayectorias de migraci\u00f3n y fuga de CO2 a lo largo del tiempo. La interpretaci\u00f3n multif\u00edsica de los datos s\u00edsmicos 4D, gravim\u00e9tricos y electromagn\u00e9ticos es esencial para integrarlos en la interpretaci\u00f3n geol\u00f3gica de las im\u00e1genes de fluidos. Los sistemas electromagn\u00e9ticos aerotransportados como RESOLVE\u00ae, TEMPEST\u00ae y HELITEM\u00ae podr\u00edan utilizarse para modelizar los cambios de resistividad de los yacimientos poco profundos en tierra firme.<\/p>\n<p>Adem\u00e1s, en el caso del almacenamiento de CO\u2082 en yacimientos de petr\u00f3leo y gas agotados, los pozos hu\u00e9rfanos (o abandonados) suponen un alto riesgo, ya que servir\u00e1n como v\u00edas de fuga, liberando el CO\u2082 de nuevo a la atm\u00f3sfera. Localizar estos pozos, para poder taponarlos, es una tarea esencial aunque dif\u00edcil que puede abordarse con los sistemas magn\u00e9ticos de ultra alta resoluci\u00f3n de Xcalibur (Midas\u00ae).<\/p>\n<\/div>\r\n            <\/div>\r\n        <\/div>\r\n    <\/section>\r\n<\/div>\r\n\r\n\n\n<div class=\"wp-block-image is-style-default\">\n<figure class=\"aligncenter size-full is-resized\"><img loading=\"lazy\" decoding=\"async\" width=\"1109\" height=\"655\" src=\"https:\/\/xcaliburmp.com\/wp-content\/uploads\/2024\/05\/detection-and-prediction-of-CO2.jpg\" alt=\"\" class=\"wp-image-5927\" style=\"width:679px;height:auto\" srcset=\"https:\/\/xcaliburmp.com\/wp-content\/uploads\/2024\/05\/detection-and-prediction-of-CO2.jpg 1109w, https:\/\/xcaliburmp.com\/wp-content\/uploads\/2024\/05\/detection-and-prediction-of-CO2-300x177.jpg 300w, https:\/\/xcaliburmp.com\/wp-content\/uploads\/2024\/05\/detection-and-prediction-of-CO2-1024x605.jpg 1024w, https:\/\/xcaliburmp.com\/wp-content\/uploads\/2024\/05\/detection-and-prediction-of-CO2-768x454.jpg 768w\" sizes=\"auto, (max-width: 1109px) 100vw, 1109px\" \/><figcaption class=\"wp-element-caption\"><em>Representaci\u00f3n esquem\u00e1tica de los mecanismos de almacenamiento geol\u00f3gico de di\u00f3xido de carbono<br>Fuente: Yang, Q., Yu, Y., Zhang, Y., Shi, Y., Zhang, B., &amp; Liu, G. (2023). Avances recientes en el almacenamiento geol\u00f3gico de di\u00f3xido de carbono, procedimientos experimentales, par\u00e1metros influyentes y perspectivas futuras. Journal of Environmental Sciences, 101, 123-135.<\/em><\/figcaption><\/figure>\n<\/div>\n\n\r\n<div id=\"Portfolios-block_5aab589652430d2d8ed21a351c6fb1bd\" class=\"Portfolios\" >\r\n\r\n    <section class=\"portfolioSection\" id=\"portfolio\">\r\n        <div class=\"container\">\r\n            <div class=\"wrapper\">\r\n                <div class=\"title\">Nuestros proyectos <\/div>\r\n                <div class=\"portfoliosContainer\">\r\n                                                <div data-aos=\"fade-up\" data-aos-delay=\"0\" class=\"portfolio noCta\">\r\n                                <div>\r\n                                    <h2 class=\"portfolioTitle\">Almacenamiento CO\u2082<\/h2>\r\n                                    <div class=\"portfolioDescription\"><p>Pr\u00f3ximamente<\/p>\n<\/div>\r\n                                <\/div>\r\n                                                            <\/div>\r\n                                        <\/div>\r\n            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