{"id":15524,"date":"2025-01-22T14:02:45","date_gmt":"2025-01-22T12:02:45","guid":{"rendered":"https:\/\/www.sostenibile.unipd.it\/uncategorized\/the-chemical-industry-becomes-sustainable-a-unipd-study-for-the-production-of-pure-ethylene-uses-light-as-an-energy-source\/"},"modified":"2025-03-31T14:04:21","modified_gmt":"2025-03-31T12:04:21","slug":"the-chemical-industry-becomes-sustainable-a-unipd-study-for-the-production-of-pure-ethylene-uses-sunlight-as-an-energy-source","status":"publish","type":"post","link":"https:\/\/www.sostenibile.unipd.it\/en\/news-en\/the-chemical-industry-becomes-sustainable-a-unipd-study-for-the-production-of-pure-ethylene-uses-sunlight-as-an-energy-source\/","title":{"rendered":"The chemical industry becomes sustainable: a Unipd study for the production of pure ethylene uses sunlight as an energy source"},"content":{"rendered":"<!--themify_builder_content-->\n<div id=\"themify_builder_content-15524\" data-postid=\"15524\" class=\"themify_builder_content themify_builder_content-15524 themify_builder tf_clear\">\n    \t<!-- module_row -->\n\t<div  data-css_id=\"iiwe656\" data-lazy=\"1\" class=\"module_row themify_builder_row fullwidth_row_container tb_iiwe656 tb_first tf_clearfix\" >\n\t    \t\t<div class=\"row_inner col_align_top col-count-1 tf_box tf_w tf_rel\">\n\t\t\t<div  data-lazy=\"1\" class=\"module_column tb-column col-full first tb_tu57658 repeat tf_box\">\n\t\t\t    \t        <div class=\"tb-column-inner tf_box tf_w\">\n\t\t    \t<div  data-lazy=\"1\" class=\"module_subrow themify_builder_sub_row tb_lk4d658 tf_w tf_clearfix\">\n\t    \t\t<div class=\"subrow_inner col_align_top col-count-1 tf_box tf_w\">\n\t\t\t<div  data-lazy=\"1\" class=\"sub_column module_column tf_box col-full first tb_yqom658\"> \n\t    \t    \t        <div class=\"tb-column-inner tf_box tf_w\">\n\t\t    <!-- module text -->\n<div  class=\"module module-text tb_241w658   \" data-lazy=\"1\">\n        <div  class=\"tb_text_wrap\">\n    <h1 style=\"text-align: center;\"><strong>The chemical industry becomes sustainable: a Unipd study for the production of pure ethylene uses light as an energy source<\/strong><\/h1>    <\/div>\n<\/div>\n<!-- \/module text --><!-- module image -->\n<div  class=\"module module-image tb_6clq659   image-top tf_mw\" data-lazy=\"1\">\n        <div class=\"image-wrap tf_rel tf_mw\">\n\t\t    <img loading=\"lazy\" decoding=\"async\" src=\"https:\/\/www.sostenibile.unipd.it\/wp-content\/uploads\/2025\/01\/Etilene_inner-860x572.png\" width=\"860\" height=\"572\" class=\"wp-post-image wp-image-15519\" title=\"Etilene_inner\" alt=\"Etilene_inner\" srcset=\"https:\/\/www.sostenibile.unipd.it\/wp-content\/uploads\/2025\/01\/Etilene_inner-860x572.png 860w, https:\/\/www.sostenibile.unipd.it\/wp-content\/uploads\/2025\/01\/Etilene_inner-300x200.png 300w, https:\/\/www.sostenibile.unipd.it\/wp-content\/uploads\/2025\/01\/Etilene_inner-768x512.png 768w, https:\/\/www.sostenibile.unipd.it\/wp-content\/uploads\/2025\/01\/Etilene_inner.png 800w\" sizes=\"auto, (max-width: 860px) 100vw, 860px\" \/>\t\n\t\t<\/div>\n\t<!-- \/image-wrap -->\n    \n    \t<\/div>\n<!-- \/module image -->\t        <\/div>\n\t    \t<\/div>\n\t\t    <\/div>\n\t<\/div><!-- \/themify_builder_sub_row -->\n\t<!-- module text -->\n<div  class=\"module module-text tb_z1zh659  repeat \" data-lazy=\"1\">\n        <div  class=\"tb_text_wrap\">\n    <p>An international research team co-ordinated by Dr <strong>Francesca Arcudi<\/strong> and Professor <strong>Luka \u00d0or\u0111evi\u0107<\/strong> of the <strong>Department of Chemical Sciences<\/strong> at the <strong>University of Padua<\/strong> and Professor Joe Hupp of Northwestern University recently reported an efficient strategy to <strong>convert acetylene to ethylene<\/strong>. The study, P<em>hotocatalytic Semi-Hydrogenation of Acetylene to Polymer-Grade Ethylene with Molecular and Metal-Organic Framework Cobaloximes<\/em>, published in the prestigious journal <em>Advanced Materials<\/em>, represents a sustainable alternative to the process used in industry. <\/p><p><strong>Ethylene<\/strong>, which is the most important chemical in <strong>modern industry<\/strong>, with an annual production of around 200 million tonnes, is used for the synthesis of numerous organic compounds and is <strong>the basis<\/strong> for the production of <strong>more than 60% of all plastics<\/strong>. However, the <strong>petrochemical pyrolysis<\/strong> process that is currently adopted for the synthesis of ethylene, with the purification of the product obtained from the transformation of acetylene, requires high temperatures and noble metals (which are expensive and difficult to obtain) as catalysts. It is therefore a chemical process with <strong>negative consequences in terms of sustainability<\/strong>, not least because of its <strong>limited selectivity<\/strong>, which only allows a partial conversion of acetylene into ethylene.  <\/p><p>Arcudi and \u00d0or\u0111evi\u0107 were the first, in 2022, to find a <strong>sustainable alternative<\/strong> to this industrial reaction <strong>using light<\/strong>. This discovery has been the subject of two previous publications and two patents, but it is this <strong>new study<\/strong>, just published, that represents a significant step forward in terms of the efficiency and selectivity of the ethylene synthesis process. The system reported by the group led by the young researchers from Padova showed <strong>surprising results<\/strong>: compared to traditional processes that achieve a selectivity of around 85% for ethylene with a 90% conversion of acetylene, this new system using light achieves a <strong>selectivity of over 99.9%<\/strong> for <strong>ethylene<\/strong> with a <strong>complete conversion of acetylene<\/strong>. Moreover, these efficiencies and selectivities were achieved in only <strong>less than one hour of irradiation<\/strong>.   <\/p><p><<We have discovered that a <strong>class of molecules based on cobalt<\/strong>, a non-noble metal, is able to <strong>reduce acetylene to ethylene<\/strong> using <strong>light as an energy source<\/strong>. With our system, compared to that used in industry, it is possible to carry out this important <strong>chemical transformation at room temperature<\/strong> using <strong>inexpensive materials<\/strong> >> explains Francesca Arcudi.<\/p><p><<Thanks to the <strong>use of light<\/strong>, we have <strong>generated cobalt hydrides that are highly reactive and selective for this reaction<\/strong>. Furthermore, it is important to emphasise that we have been able to develop <strong>materials that can also be recycled<\/strong> >> adds <strong>Anna Fortunato<\/strong>, research fellow at the Department of Chemical Sciences and first author of the article.<\/p><p><<><The <strong>high efficiencies<\/strong> reported in this study not only make our system a <strong>sustainable alternative<\/strong> to the current ethylene purification process, but also <strong>open up new prospects<\/strong> for producing <strong>pure ethylene<\/strong> directly from acetylene using <strong>sunlight<\/strong>, a <strong>clean<\/strong>, <strong>inexhaustible and renewable<\/strong> energy source>>> explains Luka \u00d0or\u0111evi\u0107. <\/p><p>This study, which makes a significant contribution to the transition towards a more sustainable chemical industry, was carried out as part of Professor Luka \u00d0or\u0111evi\u0107&#8217;s <strong>recently funded <\/strong><strong>European ERC starting grant project<\/strong>, and Dr Francesca Arcudi&#8217;s research projects for the <strong>Rita Levi Montalcini programme of the Ministry of University and Research<\/strong> and the <strong>STARS consolidator grant<\/strong> that was <strong>recently funded by the University of Padua<\/strong>.<\/p><p>For further details, please consult the <a href=\"https:\/\/advanced.onlinelibrary.wiley.com\/doi\/10.1002\/adma.202408658\">full text of the publication<\/a>.<\/p>    <\/div>\n<\/div>\n<!-- \/module text -->\t        <\/div>\n\t    \t<\/div>\n\t\t    <\/div>\n\t    <!-- \/row_inner -->\n\t<\/div>\n\t<!-- \/module_row -->\n\t\t<!-- module_row -->\n\t<div  data-css_id=\"bi2843\" data-lazy=\"1\" class=\"module_row themify_builder_row fullwidth_row_container tb_bi2843 tf_clearfix\" >\n\t    \t\t<div class=\"row_inner col_align_top col-count-1 tf_box tf_w tf_rel\">\n\t\t\t<div  data-lazy=\"1\" class=\"module_column tb-column col-full first tb_84df43 tf_box\">\n\t\t\t    \t        <div class=\"tb-column-inner tf_box tf_w\">\n\t\t    <!-- module plain text -->\n<div  class=\"module module-plain-text tb_yhj743 \" data-lazy=\"1\">\n        <div class=\"tb_text_wrap\">\n\t<div class='post-video'>\r\n  <iframe src=\"https:\/\/www.youtube.com\/embed\/tRUUnbYWWA4?si=df1brH4VtgB5XBQc\"><\/iframe>\r\n<\/div>    <\/div>\n<\/div>\n<!-- \/module plain text -->\t        <\/div>\n\t    \t<\/div>\n\t\t    <\/div>\n\t    <!-- \/row_inner -->\n\t<\/div>\n\t<!-- \/module_row -->\n\t\t<!-- module_row -->\n\t<div  data-css_id=\"d3e9657\" data-lazy=\"1\" class=\"module_row themify_builder_row fullwidth_row_container tb_d3e9657 tf_clearfix\" >\n\t    \t\t<div class=\"row_inner col_align_top col-count-1 tf_box tf_w tf_rel\">\n\t\t\t<div  data-lazy=\"1\" class=\"module_column tb-column col-full first tb_yuci663 tf_box\">\n\t\t\t    \t<\/div>\n\t\t    <\/div>\n\t    <!-- \/row_inner -->\n\t<\/div>\n\t<!-- \/module_row -->\n\t<\/div>\n<!--\/themify_builder_content-->","protected":false},"excerpt":{"rendered":"<p>The international research team co-ordinated by Dr Francesca Arcudi and Professor Luka \u00d0or\u0111evi\u0107 from the Department of Chemical Sciences at the University of Padua and Professor Joe Hupp from Northwestern University recently reported an efficient strategy to convert acetylene to ethylene.<\/p>\n","protected":false},"author":13,"featured_media":15522,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[60],"tags":[61,73],"class_list":["post-15524","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-news-en","tag-research","tag-resources","has-post-title","has-post-date","has-post-category","has-post-tag","has-post-comment","has-post-author",""],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v26.6 - 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The study, P<em>hotocatalytic Semi-Hydrogenation of Acetylene to Polymer-Grade Ethylene with Molecular and Metal-Organic Framework Cobaloximes<\/em>, published in the prestigious journal <em>Advanced Materials<\/em>, represents a sustainable alternative to the process used in industry. <\/p><p><strong>Ethylene<\/strong>, which is the most important chemical in <strong>modern industry<\/strong>, with an annual production of around 200 million tonnes, is used for the synthesis of numerous organic compounds and is <strong>the basis<\/strong> for the production of <strong>more than 60% of all plastics<\/strong>. However, the <strong>petrochemical pyrolysis<\/strong> process that is currently adopted for the synthesis of ethylene, with the purification of the product obtained from the transformation of acetylene, requires high temperatures and noble metals (which are expensive and difficult to obtain) as catalysts. It is therefore a chemical process with <strong>negative consequences in terms of sustainability<\/strong>, not least because of its <strong>limited selectivity<\/strong>, which only allows a partial conversion of acetylene into ethylene. <\/p><p>Arcudi and \u00d0or\u0111evi\u0107 were the first, in 2022, to find a <strong>sustainable alternative<\/strong> to this industrial reaction <strong>using light<\/strong>. This discovery has been the subject of two previous publications and two patents, but it is this <strong>new study<\/strong>, just published, that represents a significant step forward in terms of the efficiency and selectivity of the ethylene synthesis process. The system reported by the group led by the young researchers from Padova showed <strong>surprising results<\/strong>: compared to traditional processes that achieve a selectivity of around 85% for ethylene with a 90% conversion of acetylene, this new system using light achieves a <strong>selectivity of over 99.9%<\/strong> for <strong>ethylene<\/strong> with a <strong>complete conversion of acetylene<\/strong>. Moreover, these efficiencies and selectivities were achieved in only <strong>less than one hour of irradiation<\/strong>. <\/p><p><<We have discovered that a <strong>class of molecules based on cobalt<\/strong>, a non-noble metal, is able to <strong>reduce acetylene to ethylene<\/strong> using <strong>light as an energy source<\/strong>. With our system, compared to that used in industry, it is possible to carry out this important <strong>chemical transformation at room temperature<\/strong> using <strong>inexpensive materials<\/strong> >> explains Francesca Arcudi.<\/p><p><<Thanks to the <strong>use of light<\/strong>, we have <strong>generated cobalt hydrides that are highly reactive and selective for this reaction<\/strong>. Furthermore, it is important to emphasise that we have been able to develop <strong>materials that can also be recycled<\/strong> >> adds <strong>Anna Fortunato<\/strong>, research fellow at the Department of Chemical Sciences and first author of the article.<\/p><p><<><The <strong>high efficiencies<\/strong> reported in this study not only make our system a <strong>sustainable alternative<\/strong> to the current ethylene purification process, but also <strong>open up new prospects<\/strong> for producing <strong>pure ethylene<\/strong> directly from acetylene using <strong>sunlight<\/strong>, a <strong>clean<\/strong>, <strong>inexhaustible and renewable<\/strong> energy source>>> explains Luka \u00d0or\u0111evi\u0107. <\/p><p>This study, which makes a significant contribution to the transition towards a more sustainable chemical industry, was carried out as part of Professor Luka \u00d0or\u0111evi\u0107's <strong>recently funded <\/strong><strong>European ERC starting grant project<\/strong>, and Dr Francesca Arcudi's research projects for the <strong>Rita Levi Montalcini programme of the Ministry of University and Research<\/strong> and the <strong>STARS consolidator grant<\/strong> that was <strong>recently funded by the University of Padua<\/strong>.<\/p><p>For further details, please consult the <a href=\"https:\/\/advanced.onlinelibrary.wiley.com\/doi\/10.1002\/adma.202408658\">full text of the publication<\/a>.<\/p>\n<iframe src=\"https:\/\/www.youtube.com\/embed\/tRUUnbYWWA4?si=df1brH4VtgB5XBQc\"><\/iframe>","_links":{"self":[{"href":"https:\/\/www.sostenibile.unipd.it\/en\/wp-json\/wp\/v2\/posts\/15524","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/www.sostenibile.unipd.it\/en\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/www.sostenibile.unipd.it\/en\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/www.sostenibile.unipd.it\/en\/wp-json\/wp\/v2\/users\/13"}],"replies":[{"embeddable":true,"href":"https:\/\/www.sostenibile.unipd.it\/en\/wp-json\/wp\/v2\/comments?post=15524"}],"version-history":[{"count":5,"href":"https:\/\/www.sostenibile.unipd.it\/en\/wp-json\/wp\/v2\/posts\/15524\/revisions"}],"predecessor-version":[{"id":15533,"href":"https:\/\/www.sostenibile.unipd.it\/en\/wp-json\/wp\/v2\/posts\/15524\/revisions\/15533"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/www.sostenibile.unipd.it\/en\/wp-json\/wp\/v2\/media\/15522"}],"wp:attachment":[{"href":"https:\/\/www.sostenibile.unipd.it\/en\/wp-json\/wp\/v2\/media?parent=15524"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/www.sostenibile.unipd.it\/en\/wp-json\/wp\/v2\/categories?post=15524"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/www.sostenibile.unipd.it\/en\/wp-json\/wp\/v2\/tags?post=15524"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}