5.3.- ENERGI TERBARUKAN

Energi terbarukan adalah sumber energi yang bersih, tidak terbatas, dan semakin kompetitif. Merupakan sumber energi yang didasarkan pada penggunaan sumber daya alam: matahari, angin, air atau tumbuhan atau hewan biomassa. Mereka berbeda dari bahan bakar fosil terutama dalam keanekaragaman, kelimpahannya dan berpotensi untuk digunakan di bagian mana pun di planet ini, tetapi terutama karena fakta bahwa mereka tidak menghasilkan gas rumah kaca.

Lihat Lebih Banyak

Berkat pengembangan energi terbarukan, adalah mungkin untuk memerangi perubahan iklim dan menghindari dampaknya yang menghancurkan. Pemanasan global akibat gas rumah kaca adalah fakta dan itulah mengapa salah satu tujuan yang ditetapkan oleh Perserikatan Bangsa-Bangsa adalah mencapai akses universal ke listrik pada tahun 2030.

Terdapat berbagai jenis energi terbarukan seperti energi angin, energi fotovoltaik, tenaga air, biomassa dan biogas, energi panas bumi, energi pasang surut, tenaga gelombang, bioetanol dan biodiesel.

Mengingat pentingnya energi terbarukan, keunggulan utamanya harus ditekankan: mereka tidak mengeluarkan gas rumah kaca, tidak habis-habisnya dan semakin murah, kurangi ketergantungan energi, dan memiliki cakrawala politik yang menguntungkan.

Karena perkembangan energi terbarukan dan kebutuhan untuk menciptakan sistem tenaga yang lebih efisien dan fleksibel, pembangkit yang terdesentralisasi menjadi semakin banyak populer. Inilah asal mula konsep Micro-Grids. Mereka adalah sistem pembangkit listrik dua arah, sebagian besar didasarkan pada energi terbarukan, yang mendistribusikan listrik dari berbagai titik pembangkit energi ke konsumen melalui teknologi digital dan mendukung integrasi terbarukan energi.

Berkat evolusi teknologi yang telah memunculkan energi terbarukan dan desentralisasinya, kendaraan listrik dapat diintegrasikan dalam masyarakat saat ini. Pada gilirannya, ini telah mengurangi gas rumah kaca (CO2) dan biaya secara signifikan serta meningkatkan keandalan sistem kelistrikan.

Lihat Produk
Materi Terkait
ENERGI TERBARUKAN UNITS
Menampilkan 49 -72 dari 73 produk
COMPUTER CONTROLLED BIOETHANOL PROCESS UNIT - EBEC
  • EBEC
Available
5.3.7.- BIOFUEL
EBEC
Unit Komputer Kontrol Proses Bioethanol.
The Computer Controlled Bioethanol Process Unit, "EBEC", 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...
BIOETHANOL PROCESS UNIT - EBEB
  • EBEB
Available
5.3.7.- BIOFUEL
EBEB
Unit Proses Bioethanol.
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.- BIOFUEL
EBGC
Peralatan Pengolahan Biogas, Komputer Terkendali (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.- BIOFUEL
EBGB
Unit Proses Biogas.
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,...
COMPUTER CONTROLLED BIODIESEL PROCESS UNIT - EBDC
  • EBDC
Available
5.3.7.- BIOFUEL
EBDC
Unit Komputer Kontrol Proses Biodiesel.
The process carried out by the Computer Controlled Biodiesel Process Unit, "EBDC", consists of the transformation of the fatty acids from vegetable oils into a biofuel of high energetic power.The process basically consists of two well-defined...
BIODIESEL PROCESS UNIT - EBDB
  • EBDB
Available
5.3.7.- BIOFUEL
EBDB
Unit Proses Biodiesel.
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...
COMPUTER CONTROLLED BIOMASS PROCESS UNIT - EBMC
  • EBMC
Available
5.3.7.- BIOFUEL
EBMC
Unit Komputer Kontrol Proses Biomass.
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...
BIOMASS PROCESS UNIT - EBMB
  • EBMB
Available
5.3.7.- BIOFUEL
EBMB
Biomass Process Unit
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.- SEL BAHAN BAKAR HYDROGEN
AEL-FCLL
Aplikasi Energi dengan Sel Bahan Bakar
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...
COMPUTER CONTROLLED PEM FUEL CELL ADVANCED UNIT - EC6C
  • EC6C
Available
5.3.9.- SEL BAHAN BAKAR HYDROGEN
EC6C
Unit Komputer Kontrol Energi Bahan Bakar Cell PEM Lanjut.
The Computer Controlled PEM Fuel Cell Advanced Unit, "EC6C", 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...
PEM FUEL CELL ADVANCED UNIT - EC6B
  • EC6B
Available
5.3.9.- SEL BAHAN BAKAR HYDROGEN
EC6B
Unit Energi Bahan Bakar Cell PEM Lanjut.
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...
COMPUTER CONTROLLED PEM FUEL CELL UNIT - EC5C
  • EC5C
Available
5.3.9.- SEL BAHAN BAKAR HYDROGEN
EC5C
Unit Komputer Kontrol Energi Bahan Bakar Cell PEM.
The Computer Controlled PEM Fuel Cell Unit, "EC5C", 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...
PEM FUEL CELL UNIT - EC5B
  • EC5B
Available
5.3.9.- SEL BAHAN BAKAR HYDROGEN
EC5B
Unit Energi Bahan Bakar Cell PEM.
The PEM Fuel Cell Unit, "EC5B", 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 a PEM...
ELECTROLYZER (3 NL/H) - EDILAB-ELEC1
  • EDILAB-ELEC1
Available
5.3.9.- SEL BAHAN BAKAR HYDROGEN
EDILAB-ELEC1
Elektrolizer (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.- SEL BAHAN BAKAR HYDROGEN
EDILAB-ELEC2
Elektrolizer (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.- TURBIN STEAM DAN SIKLUS RANKINE ORGANIK
TTVC
Computer Controlled Steam Turbine
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 1.5 KW STEAM POWER PLANT - TPTVC/1.5kW
  • TPTV/1.5kW/CTS
Available
5.3.10.- TURBIN STEAM DAN SIKLUS RANKINE ORGANIK
TPTV/1.5kW/CTS
Computer Controlled and Touch Screen 1.5 kW Steam Power Plant
The Computer Controlled and Touch Screen 1.5 kW Steam Power Plant,"TPTV/1.5kW/CTS", allows the detailed study of the power generation cycle using steam as process fluid.In addition to the main TPTV unit, the unit has three required units, Water...
COMPUTER CONTROLLED STEAM POWER PLANT ADJUSTABLE UP TO 20 KW - TPTVC/20kW
  • TPTV/20kW/CTS
Available
5.3.10.- TURBIN STEAM DAN SIKLUS RANKINE ORGANIK
TPTV/20kW/CTS
Computer Controlled and Touch Screen 20 kW Steam Power Plant
The Computer Controlled and Touch Screen 20 kW Steam Power Plant,"TPTV/20kW/CTS", allows the detailed study of the power generation cycle using steam as process fluid.In addition to the main TPTV unit, the unit has three required units, Water...
COMPUTER CONTROLLED SOLAR/HEAT SOURCE VAPOUR TURBINE - HTVC
  • HTVC
Available
5.3.10.- TURBIN STEAM DAN SIKLUS RANKINE ORGANIK
HTVC
Computer Controlled Solar/Heat Source Vapour Turbine
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 ORGANIC RANKINE CYCLE UNIT - TORC
  • TORC
Available
5.3.10.- TURBIN STEAM DAN SIKLUS RANKINE ORGANIK
TORC
Unit Komputer Kontrol Siklus Rankine Organik.
The Computer Controlled Organic Rankine Cycle Unit, "TORC", allows the student to study the complete process and the components of an organic Rankine Cycle, as well as the main variables that take part in the process. The working fluid (coolant...
COMPUTER CONTROLLED STIRLING MOTOR - TMSC
  • TMSC
Available
5.3.11.- SISTEM NON-KONVENSIONAL LAINNYA
TMSC
Unit Komputer Kontrol Motor Stirling.
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...
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