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http://worldcat.org/entity/work/id/772780767

Small and micro combined heat and power (CHP) systems : advanced design, performance, materials and applications

Small and micro combined heat and power (CHP) systems are a form of cogeneration technology suitable for domestic and community buildings, commercial establishments and industrial facilities, as well as local heat networks. One of the benefits of using cogeneration plant is a vastly improved energy efficiency: in some cases achieving up to 80-90% systems efficiency, whereas small-scale electricity production is typically at well below 40% efficiency, using the same amount of fuel. This higher efficiency affords users greater energy security and increased long-term sustainability of energy reso.

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http://schema.org/description

  • "Small and micro combined heat and power (CHP) systems are a form of cogeneration technology suitable for domestic and community buildings, commercial establishments and industrial facilities, as well as local heat networks. One of the benefits of using cogeneration plant is a vastly improved energy efficiency: in some cases achieving up to 80-90% systems efficiency, whereas small-scale electricity production is typically at well below 40% efficiency, using the same amount of fuel. This higher efficiency affords users greater energy security and increased long-term sustainability of energy reso."@en

http://schema.org/genre

  • "Electronic books"@en
  • "Livres électroniques"

http://schema.org/name

  • "Small and micro combined heat and power (CHP) systems : advanced design, performance, materials and applications"@en
  • "Small and micro combined heat and power (CHP) systems : advanced design, performance, materials and applications"
  • "Small- and micro combined heat and power (CHP) systems : advanced design, performance, materials and applications"
  • "Small and micro combined heat and power (CHP) systems advanced design, performance, materials and applications"@en
  • "Small and micro combined heat and power (CHP) systems advanced design, performance, materials and applications"