5.3.- ERNEUERBARE ENERGIEN

Erneuerbare Energien sind saubere, unbegrenzte und zunehmend wettbewerbsfähige Energiequellen. Sie sind Energiequellen, die auf der Nutzung von natürlichen Ressourcen basieren: Sonne, Wind, Wasser oder pflanzliche oder tierische Biomasse. Sie unterscheiden sich von fossilen Brennstoffen vor allem durch ihre Vielfalt, ihren Reichtum und ihr Potential für den Einsatz in jedem Teil des Planeten, vor allem aber durch die Tatsache, dass sie keine Treibhausgase produzieren.

Mehr sehen

Dank der Entwicklung von erneuerbaren Energien ist es möglich, Klimaveränderungen zu bekämpfen und ihre verheerenden Auswirkungen zu vermeiden. Die Globale Erwärmung durch Treibhausgase ist eine Tatsache, und deshalb ist eines der Ziele der Vereinten Nationen, bis 2030 den universellen Zugang zu Elektrizität zu erreichen.

Es gibt verschiedene Arten von erneuerbarer Energie wie z.B. Windenergie, Photovoltaikenergie, Wasserkraft, Biomasse und Biogas, Geothermische Energie, Triebwerksenergie, Wellenleistung, Bioethanol und Biodiesel. Biodiesel.

Angesichts der Bedeutung von erneuerbaren Energien sind ihre Hauptvorteile hervorzuheben: sie emittieren keine Treibhausgase, sind unerschöpflich und immer weniger teuer, verringern die Energieabhängigkeit und haben einen günstigen politischen Horizont.

Aufgrund der Verbreitung von erneuerbaren Energien und der Notwendigkeit, effizientere und flexiblere Energiesysteme zu schaffen, wird dezentrale Erzeugung immer populärer. Dies ist der Ursprung des Konzepts Mikro-Grids. Es handelt sich dabei um bidirektionale Stromerzeugungssysteme, die meist auf erneuerbaren Energien basieren und die Elektrizität von verschiedenen Punkten der Energieerzeugung durch Digitaltechnik an die Verbraucher verteilen und die Integration von erneuerbaren Energien begünstigen.

Dank dieser technologischen Evolution, die erneuerbare Energien hervorgebracht hat, und ihrer Dezentralisierung ist es gelungen, das Elektrofahrzeug in die heutige Gesellschaft zu integrieren. Dies wiederum hat die Treibhausgase (CO2) und die Kosten signifikant reduziert und die Zuverlässigkeit des Elektrosystems.

Siehe Produkte
Verwandte Materialien

ERNEUERBARE ENERGIEN SYSTEME FÜR TECHNISCHE AUSBILDUNG

37 - 72 von 72 Artikel(n)
PUMPING STORAGE POWER PLANT APPLICATION, WITH SCADA - AEL-GAD-01S
  • AEL-GAD-01S
Available
5.3.6.- HYDRAULISCHE ENERGIE

AEL-GAD-01S

Anwendung von Pumpspeicher-Hydraulikkraftwerken mit SCADA

The Pumping Storage Power Plant Application, with SCADA, "AEL-GAD-01S", has been developed by Edibon to study the pumped storage power stations and their applications. Pumping Storage Power Plants Applications are a type of hydroelectric energy...
COMPUTER CONTROLLED PELTON TURBINE - TPC
  • TPC
Available
5.3.6.- HYDRAULISCHE ENERGIE

TPC

Pelton-Turbine, computergesteuert (PC)

The Computer Controlled Pelton Turbine, "TPC", designed by EDIBON, consists of a small-scale Pelton turbine, with a valve that allows the flow to be regulated. The turbine includes a PELTON runner with 16 buckets, which can be clearly seen through...
COMPUTER CONTROLLED FRANCIS TURBINE - TFC
  • TFC
Available
5.3.6.- HYDRAULISCHE ENERGIE

TFC

Francis-Turbine, computergesteuert (PC)

The Computer Controlled Francis Turbine, "TFC", consists of a small-scale Francis Turbine, with a valve that allows flow regulation and has a ring with adjustable guide vanes that allows control of the angle of incidence of the water in the...
COMPUTER CONTROLLED KAPLAN TURBINE - TKC
  • TKC
Available
5.3.6.- HYDRAULISCHE ENERGIE

TKC

Kaplan-Turbine, computergesteuert (PC)

The Computer Controlled Kaplan Turbine, "TKC", consists of a small-scale Kaplan turbine that has a ring with adjustable guide vanes, which allow the control of water flow in the turbine.In order to raise the fluid, it has a computer controlled...
COMPUTER CONTROLLED RADIAL FLOW TURBINE - TFRC
  • TFRC
Available
5.3.6.- HYDRAULISCHE ENERGIE

TFRC

Radialturbine, computergesteuert (PC)

The Computer Controlled Radial Flow Turbine, "TFRC", consists of a small-scale radial flow turbine with two nozzles at 90 degrees to the perpendicular direction of the axis of rotation.In order to raise the fluid, it has a computer controlled pump...
COMPUTER CONTROLLED AXIAL FLOW TURBINE - TFAC
  • TFAC
Available
5.3.6.- HYDRAULISCHE ENERGIE

TFAC

Axialturbine, computergesteuert (PC)

The Computer Controlled Axial Flow Turbine, "TFAC", consists of a small-scale turbine with single-stage axial flow input. It has eight nozzles that act as water rings to the rotor, four of which have an incidence angle of 20º and the other four of...
BIOETHANOL PROCESS UNIT - EBEB
  • EBEB
Available
5.3.7.- BIOKRAFTSTOFFE

EBEB

Gerät für den Bioethanolprozess

The Bioethanol Process Unit (EBEB) has been designed to study and control the bioethanol production process on a laboratory scale. This unit allows to monitor and examine all the important processes, from liquefaction and saccharification of the...
COMPUTER CONTROLLED BIOGAS PROCESS UNIT - EBGC
  • EBGC
Available
5.3.7.- BIOKRAFTSTOFFE

EBGC

Gerät für den Biogasprozess, computergesteuert (PC)

The Computer Controlled Biogas Process Unit, "EBGC", is supplied with two packed anaerobic digesters. In this way, the user can work either in only one stage or in two stages, separating the different phases of the digestion process (the processes...
BIOGAS PROCESS UNIT - EBGB
  • EBGB
Available
5.3.7.- BIOKRAFTSTOFFE

EBGB

Gerät für den Biogasprozess

The Biogas Process Unit, "EBGB", is supplied with two packed anaerobic digesters. In this way, the user can work either in only one stage or in two stages, separating the different phases of the digestion process (the processes of hydrolysis,...
BIODIESEL PROCESS UNIT - EBDB
  • EBDB
Available
5.3.7.- BIOKRAFTSTOFFE

EBDB

Gerät für den Biodieselprozess

The process carried out by the Biodiesel Process Unit, "EBDB", consists on transforming the fatty acids contained in vegetable oils into a high energy content biofuel.Basically, the process consists of two well-defined stages:Stage I: Mixing the...
BIOMASS PROCESS UNIT - EBMB
  • EBMB
Available
5.3.7.- BIOKRAFTSTOFFE

EBMB

Gerät für den Biomasseprozess

The main element of the unit is the biomass boiler, which will heat the water that will flow through the other components transferring its heat.The boiler is a biomass boiler of 16 kW that works with pellet and other granulated fuels. The body of...
FUEL CELL ENERGY APPLICATION - AEL-FCLL
  • AEL-FCLL
Available
5.3.9.- WASSERSTOFFKRAFTSTOFFZELLEN

AEL-FCLL

Anwendung von Brennstoffzellenenergie

The Fuel Cell Energy Application, "AEL-FCLL", has been designed by EDIBON to demonstrate how fuel cells work.This application includes a proton exchange membrane (PEM) fuel cell stack composed of several cells in the shape of a ribbed plate that...
PEM FUEL CELL ADVANCED UNIT - EC6B
  • EC6B
Available
5.3.9.- WASSERSTOFFKRAFTSTOFFZELLEN

EC6B

Fortgeschrittenes Gerät für PEM-Brennstoffzellen

The PEM Fuel Cell Advanced Unit, "EC6B", has been designed to allow the students to understand the fuel cells technology, especially that of a proton exchange membrane fuel cell (PEM). It also enables to calculate several fundamental parameters of...
PEM FUEL CELL UNIT - EC5B
  • EC5B
Available
5.3.9.- WASSERSTOFFKRAFTSTOFFZELLEN

EC5B

Gerät für PEM-Brennstoffzellen

The PEM Fuel Cell Unit, "EC5B", has been designed by EDIBON to allow the students to understand the fuel cells technology, especially that of a proton exchange membrane fuel cell (PEM). It also enables to calculate several fundamental parameters...
ELECTROLYZER (3 NL/H) - EDILAB-ELEC1
  • EDILAB-ELEC1
Available
5.3.9.- WASSERSTOFFKRAFTSTOFFZELLEN

EDILAB-ELEC1

Elektrolysegerät (3 Nl/h)

The Electrolyzer (3 Nl/h), "EDILAB-ELEC1", consists of an electrolyzer to generate hydrogen which uses a high performance and efficiency system based on water electrolysis. Hydrogen to be used safely is obtained from it. The electrolysis cell is a...
ELECTROLYZER (60 NL/H) - EDILAB-ELEC2
  • EDILAB-ELEC2
Available
5.3.9.- WASSERSTOFFKRAFTSTOFFZELLEN

EDILAB-ELEC2

Elektrolysegerät (60 Nl/h)

The Electrolyzer (60 Nl/h), "EDILAB-ELEC2", designed by EDIBON, can separate hydrogen and oxygen from water by applying electricity.The "EDILAB-ELEC2", consists of an electrolyzer to generate hydrogen which uses a high performance and efficiency...
COMPUTER CONTROLLED STEAM TURBINE - TTVC
  • TTVC
Available
5.3.10.- DAMPFTURBINEN UND ORGANIC RANKINE CYCLES

TTVC

Dampfturbine, computergesteuert (PC)

The Computer Controlled Steam Turbine, "TTVC", consists of a single stage impulse steam turbine. It includes an injector, a brake, a water cooled condenser, safety mechanisms and all the necessary controls and instrumentation.The steam passes...
COMPUTER CONTROLLED SOLAR/HEAT SOURCE VAPOUR TURBINE - HTVC
  • HTVC
Available
5.3.10.- DAMPFTURBINEN UND ORGANIC RANKINE CYCLES

HTVC

Dampfturbine mit Solarenergiequelle, computergesteuert (PC)

The Computer Controlled Solar/Heat Source Vapour Turbine, "HTVC", has been designed to provide an easily understood vapour power plant and to demonstrate, on a lab scale, the ability to produce shaft power from Solar Radiation.It is a bench-top...
COMPUTER CONTROLLED STIRLING MOTOR - TMSC
  • TMSC
Available
5.3.11.- ANDERE NICHTKONVENTIONELLE SYSTEME

TMSC

Stirling-Motor, computergesteuert (PC)

The Computer Controlled Stirling Motor, "TMSC", is used to demonstrate the operation of a thermodynamic machine for the conversion of energy. It converts thermal energy into mechanical energy and operates as a motor (heat engine). Additionally it...
COMPUTER CONTROLLED THERMO-ELECTRIC HEAT PUMP - TBTC
  • TBTC
Available
5.3.11.- ANDERE NICHTKONVENTIONELLE SYSTEME

TBTC

Thermoelektrische Wärmepumpe, computergesteuert (PC)

The Computer Controlled Thermo-Electric Heat Pump, "TBTC", has been designed by EDIBON to study of different phenomena in which heat and electricity take place (Thermoelectricity). Some of them are the Peltier effect, the Thomson or Lenz effect...
Informationen anfordern