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Shtyle.fm : View Photo - 0 views

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    fluxogranma desenvolvido por alunos turma 2005
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    desenho desenvolvidos pelo alunos
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Fuel cell power generation system - Google Patents - 0 views

  • Patent number: 5658681Filing date: Sep 27, 1995Issue date: Aug 19, 1997AbstractA fuel cell power generation system including a reforming reactor for reacting a fuel with water to produce a hydrogen-rich reformed gas including carbon monoxide; a CO shift reactor for carrying out a CO shift reaction to decrease the concentration of carbon monoxide in the reformed gas;...About this patent
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    Patent number: 5658681 Filing date: Sep 27, 1995 Issue date: Aug 19, 1997 Abstract A fuel cell power generation system including a reforming reactor for reacting a fuel with water to produce a hydrogen-rich reformed gas including carbon monoxide; a CO shift reactor for carrying out a CO shift reaction to decrease the concentration of carbon monoxide in the reformed gas;... About this patent
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    Patent number: 5658681 Filing date: Sep 27, 1995 Issue date: Aug 19, 1997 Abstract A fuel cell power generation system including a reforming reactor for reacting a fuel with water to produce a hydrogen-rich reformed gas including carbon monoxide; a CO shift reactor for carrying out a CO shift reaction to decrease the concentration of carbon monoxide in the reformed gas;... About this patent
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slide 2: Tidia-Ae : PLP_course_DEQ_1sem_2008 solar eletrica - 0 views

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    Fluxograma do projeto planta de Pyrolises e carbonização slide 2: Tidia-Ae : PLP_course_DEQ_1sem_2008 solar eletrica
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    Fluxograma do projeto planta de Pyrolises e carbonização slide 2: Tidia-Ae : PLP_course_DEQ_1sem_2008 solar eletrica
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pirolise_lento | Gestão de Projeto Slack - 0 views

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    waste2gaspower | Gestão de Projeto Slack https://projetobiomassa.slack.com/messages/C02EY3NFZ/search/bioenergia/ pirolise_lento | Gestão de Projeto Slack https://projetobiomassa.slack.com/messages/C02F718T1/mentions/ @ufrngpec #pirolise_lenta #waste2 gaspower #biodr #biofuel
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An integrated engineering system for maximizing bioenergy production from food waste - 0 views

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    "Fig. 3. Effects of different operation parameters on glucose production from food waste pretreated with fungal mash. (a) Effect of food waste loading on saccharification at the fungal mash loading of 5%, mixing speed of 200 rpm and 50 °C; (b) Effect of hydrolysis time (0-24 h) and temperature (40-70 °C) on saccharification at the fungal mash loading of 5%, mixing speed of 200 rpm and the food waste loading of 200 g/L; (c) Effect of mixing speed"
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waste2gaspower | Gestão de Projeto Slack - 0 views

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Utilities prepare to open natural gas pipes to biogas - 0 views

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    bioga utlity
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biosistemas11 - Apresentações Google - 0 views

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    biosistemas - Apresentações Google @ufrngpec gestao ambiental biogas integrado gestao miniempresa energia limpa https://docs.google.com/presentation/d/1rfB73wlltqgJ9M0urO4sGJ7Qpp3nedRVYZTPlue7Kvk/edit#slide=id.i174
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grupo6economiaenergia | Gestão de Projeto Slack - 0 views

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    waste2gaspower | Gestão de Projeto Slack https://projetobiomassa.slack.com/messages/C02EY3NFZ/search/bioenergia/ pirolise_lento | Gestão de Projeto Slack https://projetobiomassa.slack.com/messages/C02F718T1/mentions/ @ufrngpec #pirolise_lenta #waste2 gaspower #biodr #biofuel
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Biproduct Market place - 0 views

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    Bookmark Web Builder @bookmark · 19,406 FOLLOWERS · 773 TWEETS Follow Bookmark Website Builder is the Future of Website Creation and Design. Meet Aida, Your Artificial Intelligence Design Assistant.
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Thermal Pretreatment of Sewage Sludge to Enhance Anaerobic Digestion: A Review - 1 views

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    "stract This review summarizes the effect of high- and low-temperature thermal pretreatment (TPT) on sludge dewaterability, anaerobic digestion (AD), and biogas production efficiencies. The AD of the TPT sludge has demonstrated the following observations: reduced sludge retention time, increased biogas generation, higher organics degradation, improved dewaterability, and lower digester volume than the conventional AD of sludge. Energy balance of the TPT process was energetically self-sustainable and produced surplus energy at solids concentration greater than 3%. Net energy and energy ratio of TPT and AD revealed that net energy and energy ratio are increased with increase in total solids concentration"
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