Preloader Close

JABABEKA NZICC

CLUSTER ROADMAP

Jababeka Industrial Cluster has a roadmap that was created in collaboration with cluster members using a SYSTEMIC DECARBONIZATION strategy to make Jababeka as net zero industrial cluster in 2050. Systemic decarbonization is a systemic mitigation strategy or strategy that affects the cluster systemically.


#1

WASTE TO STEAM, POWER, COOLING

  • Displacement of fossil based thermal steam
  • Displacement of Gas-Based Electric Cooling & Refrigerant Use
  • Displacement of Gas-Based Power
Solving solid waste management
Organic MSW from City to Get Decarbonization Effect

#2

FOOD & SEWAGE ANAEROBIC DIGESTER

  • CH4 Avoidance from Sewage & Food Treatment
  • Displacement of Fossil Gas with Renewable Biogas
Interconnectivity between Cikarang & Semarang Dry Port for low Carbon Logistic

#3

INTENSIFICATION OF RAILWAY UTILIZATION FOR LOGISTIC

  • CO2 Reduction from Use of FossilBased Fuel

#4

ELECTRICITY BLEND WITH SOLAR FARM TANJUNG LESUNG IPP

  • Reduction of Carbon-Intensity (tCO2/kWh) from Bekasi Power’s Power Plant with Renewable Electricity Mix
Organic MSW from City to Get Decarbonization Effect

#5

ADOPTION OF EV FEEDER & DISTRIBUTION FLEET

  • CO2 Reduction from Use of Fossil-Based Fuel for Feeder & Distribution Fleet to Dry Ports using Bekasi Power Low Carbon Power
Low Carbon Logistics
Reduction of Private Transport Use

#6

PUBLIC TRANSPORT PROJECTS

  • CO2 Reduction from Avoidance of Fuel from Private Vehicle using Bekasi Power Low Carbon Power
Hydrogen Power Generation & Logistics

#7

MOROTAI’s GREEN AMMONIA | HYDROGEN HUB

  • Generation of Green Ammonia at Jababeka’s Morotai Logistical Hub, and distributed for Industrial Uses in Cikarang & Kendal

#8

CARBON CAPTURE & UTILIZATION

  • Removal of CO2 from Waste to Energy Plant
Carbon Neutral Waste to Energy Plant

#1

WASTE TO STEAM, POWER, COOLING

Solving solid waste management
  • Displacement of fossil based thermal steam
  • Displacement of Gas-Based Electric Cooling & Refrigerant Use
  • Displacement of Gas-Based Power

#2

FOOD & SEWAGE ANAEROBIC DIGESTER

Organic MSW from City to Get Decarbonization Effect
  • CH4 Avoidance from Sewage & Food Treatment
  • Displacement of Fossil Gas with Renewable Biogas

#3

INTENSIFICATION OF RAILWAY UTILIZATION FOR LOGISTIC

Interconnectivity between Cikarang & Semarang Dry Port for low Carbon Logistic
  • CO2 Reduction from Use of FossilBased Fuel

#4

ELECTRICITY BLEND WITH SOLAR FARM TANJUNG LESUNG IPP

Organic MSW from City to Get Decarbonization Effect
  • Reduction of Carbon-Intensity (tCO2/kWh) from Bekasi Power’s Power Plant with Renewable Electricity Mix

#5

ADOPTION OF EV FEEDER & DISTRIBUTION FLEET

Low Carbon Logistics
  • CO2 Reduction from Use of Fossil-Based Fuel for Feeder & Distribution Fleet to Dry Ports using Bekasi Power Low Carbon Power

#6

PUBLIC TRANSPORT PROJECTS

Reduction of Private Transport Use
  • CO2 Reduction from Avoidance of Fuel from Private Vehicle using Bekasi Power Low Carbon Power

#7

MOROTAI’s GREEN AMMONIA | HYDROGEN HUB

Hydrogen Power Generation & Logistics
  • Generation of Green Ammonia at Jababeka’s Morotai Logistical Hub, and distributed for Industrial Uses in Cikarang & Kendal

#8

CARBON CAPTURE & UTILIZATION

Carbon Neutral Waste to Energy Plant
  • Removal of CO2 from Waste to Energy Plant
FAQ