{"id":1159,"date":"2009-02-18T11:29:58","date_gmt":"2009-02-18T11:29:58","guid":{"rendered":"http:\/\/blogs.thesocialmedia.com\/leblogenergie\/2009\/02\/18\/du-biohydrogne\/"},"modified":"2012-07-12T11:23:06","modified_gmt":"2012-07-12T11:23:06","slug":"du-biohydrogne","status":"publish","type":"post","link":"https:\/\/blogs.thesocialmedia.com\/leblogenergie\/2009\/02\/18\/du-biohydrogne\/","title":{"rendered":"Du biohydrog\u00e8ne, une autre fa\u00e7on de valoriser une ressource naturelle limit\u00e9e: la biomasse"},"content":{"rendered":"<p><a href=\"http:\/\/blogs.thesocialmedia.com\/leblogenergie\/files\/2012\/07\/cellobiose1.png\"><img loading=\"lazy\" decoding=\"async\" height=\"258\" alt=\"Cellobiose\" src=\"http:\/\/blogs.thesocialmedia.com\/leblogenergie\/files\/2012\/07\/cellobiose.png\" width=\"250\"  \/><\/a>&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; &nbsp;De nombreuses \u00e9quipes dans le monde travaillent \u00e0 la valorisation de la biomasse, disponible en relative abondance mais tr\u00e8s dispers\u00e9e et n\u00e9cessaire aux fragiles grands \u00e9quilibres de la plan\u00e8te. C&rsquo;est donc par d\u00e9finition une ressource limit\u00e9e qui se r\u00e9g\u00e9n\u00e8re lentement et qui doit \u00eatre exploit\u00e9e avec la plus grande des prudences. La fa\u00e7on la plus commune d&rsquo;utilisation est le feu de bois qui peut alimenter des centrales thermiques en remplacement du charbon ou qui peut alimenter des chaudi\u00e8res domestiques sous forme de granulats, premi\u00e8re forme un peu \u00e9labor\u00e9e de la ressource. D&rsquo;autres, par pyrolyse produisent du Bio-Oil et de la suie qui apr\u00e8s m\u00e9lange peuvent sous forme liquide ou solide alimenter des chaudi\u00e8res. Plus complexe encore certains r\u00eavent de syngas (CO+H2) et de synth\u00e8se Fischer-Tropsch. D&rsquo;autres utilisent les huiles v\u00e9g\u00e9tales pour faire du gasoil. Dans la fili\u00e8re des biotechnologies, les r\u00e9actions de d\u00e9gradation enzymatiques et de fermentation conduisent au bio\u00e9thanol de premi\u00e8re g\u00e9n\u00e9ration, avec l&rsquo;amidon du ma\u00efs, ou de deuxi\u00e8me g\u00e9n\u00e9ration avec les produits ligno-cellulosiques. Enfin, forme la plus aristocratique, l&rsquo;\u00e9lite, travaille \u00e0 la <u>biosynth\u00e8se de l&rsquo;Hydrog\u00e8ne<\/u>. Mais n&rsquo;oublions jamais, pour \u00e9viter tout d\u00e9lire journalo-\u00e9cologique incontr\u00f4l\u00e9, que toutes ces recherches et d\u00e9veloppements portent sur la m\u00eame ressource: la biomasse. On ne peut donc parler que de valorisation et de rendement \u00e9nerg\u00e9tique comparatifs entre les diverses fili\u00e8res et il n&rsquo;est pas \u00e9vident que les voies les plus complexes soient les plus pertinentes.<\/p>\n<p>&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; L&rsquo;Oak Ridge National Laboratory (ORNL) de Virginie et l&rsquo;Universit\u00e9 de G\u00e9orgie travaillent activement sur la g\u00e9n\u00e9ration spontan\u00e9e d&rsquo;hydrog\u00e8ne \u00e0 partir de solutions de produits de d\u00e9gradation chimique ou enzymatique de ressources ligno-cellulosiques et avec l&rsquo;aide de cocktails enzymatiques complexes de leur composition. Le Docteur Percival Zhang et Col. viennent d&rsquo;annoncer qu&rsquo;ils ont r\u00e9ussi \u00e0 partir de la <u>c\u00e9lobiose<\/u>, \u00e9ther issu de deux mol\u00e9cules de glucose (FIG.), d&rsquo;obtenir \u00e0 temp\u00e9rature ambiante de l&rsquo;hydrog\u00e8ne gazeux, avec un rendement de plus de 11 moles d&rsquo;hydrog\u00e8ne par mole de c\u00e9lobiose, selon la r\u00e9action globale suivante:<\/p>\n<p><span style=\"font-size: 1.2em\">C<\/span>12<span style=\"font-size: 1.2em\">H<\/span>22<span style=\"font-size: 1.2em\">O<\/span>11 + 7 <span style=\"font-size: 1.2em\">H<\/span>2<span style=\"font-size: 1.2em\">O<\/span>&nbsp; &#8212;&#8212;&#8212;&#8212;-&gt;&nbsp; &nbsp; <span style=\"font-size: 1.2em\">C<\/span>6<span style=\"font-size: 1.2em\">H<\/span>12<span style=\"font-size: 1.2em\">O<\/span>6 + 12 <span style=\"font-size: 1.2em\">H<\/span>2 + 6 <span style=\"font-size: 1.2em\">CO<\/span>2<\/p>\n<p>&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; Pour les auteurs, le rendement&nbsp; en hydrog\u00e8ne serait encore plus proche de la th\u00e9orie dans un proc\u00e9d\u00e9 en continu.<\/p>\n<p>&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; Rappelons que pour l&rsquo;instant 95% de l&rsquo;hydrog\u00e8ne produit dans le monde provient du syngas obtenu \u00e0 partir de gaz naturel selon deux r\u00e9actions successives.<\/p>\n<p>CH4 + H2O &#8212;&#8212;&gt; CO + 3 H2&nbsp; syngas suivi de l&rsquo;hydroconversion du CO en CO2 selon <\/p>\n<p>CO + H2O &#8212;&#8212;&#8211;&gt; CO2 + H2 soit un bilan global<\/p>\n<p>CH4 + 2 H2O &#8212;&#8211;&gt; CO2 + 4H2 qui permet d&rsquo;obtenir 4 moles d&rsquo;hydrog\u00e8ne \u00e0 partir d&rsquo;une mole de CH4.<\/p>\n<p>&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; &nbsp; Ces recherches sont bien entendu passionnantes, puisqu&rsquo;elles permettent de synth\u00e9tiser un produit de forte valeur ajout\u00e9e comme l&rsquo;hydrog\u00e8ne. Cependant il ne faut jamais oublier que c&rsquo;est un gaz, forme de l&rsquo;\u00e9nergie peu appr\u00e9ci\u00e9e des moyens de transport. Pour s&rsquo;en convaincre il suffit de constater le faible enthousiasme du march\u00e9 des v\u00e9hicules pour le gaz naturel, produit pourtant abondant et beaucoup moins on\u00e9reux que le p\u00e9trole et ses d\u00e9riv\u00e9s.<\/p>\n<p>Le 18 F\u00e9vrier 2009.<\/p>\n<p>&#8211;<\/p>\n","protected":false},"excerpt":{"rendered":"<p>&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; &nbsp;De nombreuses \u00e9quipes dans le monde travaillent \u00e0 la valorisation de la biomasse, disponible en relative abondance mais tr\u00e8s dispers\u00e9e et n\u00e9cessaire aux fragiles grands \u00e9quilibres de la plan\u00e8te. C&rsquo;est donc par d\u00e9finition une ressource limit\u00e9e qui se r\u00e9g\u00e9n\u00e8re lentement et qui doit \u00eatre exploit\u00e9e avec la [&hellip;]<\/p>\n","protected":false},"author":341,"featured_media":11879,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[6],"tags":[],"class_list":["post-1159","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-rechauffement-climatique"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v26.0 - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>Du biohydrog\u00e8ne, une autre fa\u00e7on de valoriser une ressource naturelle limit\u00e9e: la biomasse - leblogenergie.com<\/title>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/blogs.thesocialmedia.com\/leblogenergie\/2009\/02\/18\/du-biohydrogne\/\" \/>\n<meta name=\"twitter:card\" content=\"summary_large_image\" \/>\n<meta name=\"twitter:title\" content=\"Du biohydrog\u00e8ne, une autre fa\u00e7on de valoriser une ressource naturelle limit\u00e9e: la biomasse - leblogenergie.com\" \/>\n<meta name=\"twitter:description\" content=\"&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; &nbsp;&nbsp; &nbsp;De nombreuses \u00e9quipes dans le monde travaillent \u00e0 la valorisation de la biomasse, disponible en relative abondance mais tr\u00e8s dispers\u00e9e et n\u00e9cessaire aux fragiles grands \u00e9quilibres de la plan\u00e8te. 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