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PRESENTATION OF THE RESULTS OF THE ROADMAP TO CARBON NEUTRALITY 2050

IMAGINING THE FUTURE IN A CARBON-NEUTRAL ECONOMY NOTEBOOKS 2050

SOCIO-ECONOMIC SCENARIOS OF THE ROADMAP TO CARBON NEUTRALITY 2050

LONG-TERM STRATEGY FOR THE CARBON NEUTRALITY OF THE PORTUGUESE ECONOMY IN 2050
PARIS AGREEMENT

KYOTO PROTOCOL
STATE OF THE ENVIRONMENT REPORT 2018

NATIONAL STRATEGY FOR ADAPTATION TO CLIMATE CHANGE

NATIONAL ENERGY AND CLIMATE PLAN
STATE AND TRENDS OF CARBON PRICING 2018

THE ECONOMICS OF CLIMATE CHANGE: THE STERN REVIEW

LAUDATO SI – ON CARE FOR OUR COMMON HOME

EUROPEAN STRATEGY FOR ADAPTATION TO CLIMATE CHANGE

OUR PLANET, OUR FUTURE – FIGHTING CLIMATE CHANGE TOGETHER

AUGUST 2019: IPCC SPECIAL REPORT ON CLIMATE CHANGE AND IMPACTS ON TERRESTRIAL ECOSYSTEMS (FOREST MANAGEMENT, DESERTIFICATION, COASTAL EROSION)

IPCC REPORT: GLOBAL WARMING OF 1.5 °C

REPORT OF THE HIGH-LEVEL COMMISSION ON CARBON PRICES
NATIONAL CLIMATE CHANGE PROGRAM 2020/2030

INTERGOVERNMENTAL PANEL ON CLIMATE CHANGE (IPCC)

SUSTAINABLE DEVELOPMENT GOALS (SDGS)

RNC2050 – ROADMAP TO CARBON NEUTRALITY

STATE OF THE ENVIRONMENT PORTAL

WORLD ENERGY OUTLOOK 2018
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Emissões Simulador

  • Mobility
  • Lighting
  • Efficient Windows
  • Solar Photovoltaic System
  • Solar Thermal System
Download KPIs

Mobility

Diesel vehicle

Diesel consumption per kilometer
0,06L/km

Diesel consumption
18,84L

CO2 emissions
50,30kg/year

CH4 emissions
0,0003kg/year

N2O emissions
0,0017kg/year

GHG emissions
50,30kgCO2e/year

Electric Vehicle

Electricity consumption per kilometer
0,16kWh/km

Electricity consumption
50,24kWh/km

GHG emissions
9,97kgCO2e/year

Reducing Emissions

-40,33GHG kgCO2e/year

-80%GHG kgCO2e/year

Lighting

Lighting simulation in the domestic sector

Assumptions:
4 Hours of use per 365 days for Compact Fluorescent Lamps (CFL), Halogen and Incandescent lamps
2 Hours of use per 365 days for T8 and T5
Emission factor 198.4 g CO2e/kWh (EEA,2020)

CFL LED Halogen LED T8 LED T5 LED INC LED
Power (W) 14 6 15 3 36 18 14 8 25 3,5
Number of bulbs 4 4 4 4 2 2 1 1 4 4
Hours of use 1460 1460 1460 1460 730 730 730 730 1460 1460
Consumption (kWh/year) 81,76 35,04 87,6 17,52 52,56 26,28 10,22 5,84 146 20,44
GHG emissions (kgCO2e/year) 16,22 6,95 17,38 3,48 10,43 5,21 2,03 1,16 28,97 4,06
Reduction -57% -80% -50% -43% -86%

Reduction potential

30-90%

Note: Predominance of light bulbs: ICESD 2010 and 2020

Efficient Windows

Simulating the implementation of efficient windows – Glazed openings

Assumptions:
Considering that 24.1% of electricity consumption is used for air conditioning (heating and cooling)
Emission factor 198.4 g CO2e/kWh (EEA,2020)

Average electricity consumption in a dwelling
0,289tep/aloj

Average electricity consumption in a dwelling
3360,47kWh/year

Average electricity consumption for air conditioning
813,23kWh/year

Energy saving
406,62kWh/year

Reduction in GHG Emissions
80,67kgCO2/year

Reduction potential

up to 50% of air conditioning needs

Solar Photovoltaic System

Simulation of a solar photovoltaic system in the domestic sector

Assumptions:
Average of 3 people per room
Average consumption per dwelling 3 360 kWh/dwelling
Deployment area of 8 m2
Considering 4 photovoltaic modules of 450 W (1.60 kWp)
Emission factor 198.4 g CO2e/kWh (EEA,2020)

Average electricity consumption per room
0,289tep/aloj

Average electricity consumption per room
3360,47kWh/room

Power
383,61W

No. of photovoltaic panels
4

Photovoltaic power
1,8kWp

Self-consumption
1256kWh/year

GHG reduction
249,19kgCO2e/year

Reduction potential

-37%

Solar Thermal System

Simulating a solar thermal system

Assumptions:
Housing for 4 people
Need for water heating – 60 L/inhab/day (at a temperature of 45 °C – approximately 2750.20 kwh/year
2 South-facing collectors with a 35º inclination (panel with a 4.0 m2 opening)
Emission factor 198.4 g CO2e/kWh (EEA,2020)

Average electricity consumption of a 100 L class C electric water heater
2717kWh/year

Average area occupied by solar thermal collectors
4,3m2

Hot water needs per inhabitant
60L/d

Need for heating
2750,20

No. of collectors
2

Deposit
200L/d

Solar energy production
2414,9kWh/year

Reducing emissions

479,11616kgCO2e/year
88%

Emissões

  • Total ETS Emissions
  • Evolution of GHG emissions
  • Evolution of GHG emissions by category
  • Emissions by category (without LULUCF)
  • Carbon intensity

  • Did you know...

  • Mobility
  • Lighting
  • Efficient Windows
  • Solar Photovoltaic System
  • Solar Thermal System
Download KPIs

Total EU ETS Emissions

(ton CO2e)

Total ETS Emissions by Sector

(ton CO2e)

Evolution of Greenhouse Gas Emissions

(Mt CO2e)

GHG emissions by category

(Mt CO2e)

Emissions by category (without LULUCF)

(2020)

Carbon intensity

The economy’s carbon intensity indicator results from the ratio between total CO 2 emissions and the Gross Domestic Product (GDP), thus making it possible to quantify the relationship between greenhouse gas emissions associated with obtaining all the goods and services produced. The indicator depends on the energy mix and energy intensity, and as such, the lower the indicator, the lower the use of fossil fuels in the energy mix. Portugal has seen a reduction over the years, driven by the reduction of coal for electricity production and the strong growth in investment in renewable energies.

Mobility

Diesel vehicle

Diesel consumption per kilometer

0,06L/km

Diesel consumption

18,84L

CO2 emissions

50,30kg/year

CH4 emissions

0,0003kg/year

N2O emissions

0,0017kg/year

GHG emissions

50,30kgCO2e/year

Electric Vehicle

Electricity consumption per kilometer

0,16kWh/km

Electricity consumption

50,24kWh/km

GHG emissions

9,97kgCO2e/year

Reducing Emissions

-40,33GHG kgCO2e/year

-80%GHG kgCO2e/year

Lighting

Lighting simulation in the domestic sector

Assumptions:
4 Hours of use per 365 days for Compact Fluorescent Lamps (CFL), Halogen and Incandescent lamps
2 Hours of use per 365 days for T8 and T5
Emission factor 198.4 g CO2e/kWh (EEA,2020)

CFL LED Halogen LED T8 LED T5 LED INC LED
Power (W) 14 6 15 3 36 18 14 8 25 3,5
Number of bulbs 4 4 4 4 2 2 1 1 4 4
Hours of use 1460 1460 1460 1460 730 730 730 730 1460 1460
Consumption (kWh/year) 81,76 35,04 87,6 17,52 52,56 26,28 10,22 5,84 146 20,44
GHG emissions (kgCO2e/year) 16,22 6,95 17,38 3,48 10,43 5,21 2,03 1,16 28,97 4,06
Reduction -57% -80% -50% -43% -86%

Reduction potential

30-90%

Note: Predominance of light bulbs: ICESD 2010 and 2020

Efficient Windows

Simulating the implementation of efficient windows – Glazed openings

Assumptions:
Considering that 24.1% of electricity consumption is used for air conditioning (heating and cooling)
Emission factor 198.4 g CO2e/kWh (EEA,2020)

Average electricity consumption in a dwelling

0,289tep/aloj

Average electricity consumption in a dwelling

3360,47kWh/year

Average electricity consumption for air conditioning

813,23kWh/year

Energy saving

406,62kWh/year

Reduction in GHG Emissions

80,67kgCO2/year

Reduction potential

up to 50% of air conditioning needs

Solar Photovoltaic System

Simulation of a solar photovoltaic system in the domestic sector

Assumptions:
Average of 3 people per room
Average consumption per dwelling 3 360 kWh/dwelling
Deployment area of 8 m2
Considering 4 photovoltaic modules of 450 W (1.60 kWp)
Emission factor 198.4 g CO2e/kWh (EEA,2020)

Average electricity consumption per room

0,289tep/aloj

Average electricity consumption per room

3360,47kWh/room

Power

383,61W

No. of photovoltaic panels

4

Photovoltaic power

1,8kWp

Self-consumption

1256kWh/year

GHG reduction

249,19kgCO2e/year

Reduction potential

-37%

Solar Thermal System

Simulating a solar thermal system

Assumptions:
Housing for 4 people
Need for water heating – 60 L/inhab/day (at a temperature of 45 °C – approximately 2750.20 kwh/year
2 South-facing collectors with a 35º inclination (panel with a 4.0 m2 opening)
Emission factor 198.4 g CO2e/kWh (EEA,2020)

Average electricity consumption of a 100 L class C electric water heater

2717kWh/year

Average area occupied by solar thermal collectors

4,3m2

Hot water needs per inhabitant

60L/d

Need for heating

2750,20

No. of collectors

2

Deposit

200L/d

Solar energy production

2414,9kWh/year

Reducing emissions

479,11616kgCO2e/year
88%

Technical sheet

PORDATA – Contemporary Portugal Database

Economia circular

  • Municipal Waste Produced
  • Municipal Waste Produced Per Capita
  • Tons of Municipal Waste Recycled
  • Recycled Municipal Waste
  • Type of Municipal Waste Treatment
  • Circularity rate
  • Recycled packaging

Municipal Waste Produced

(tons)

Municipal Waste Produced Per Capita

(tons)

Tons of Municipal Waste Recycled

(tons)

Recycled Municipal Waste

(% vs total waste)

Type of Municipal Waste Treatment

Circularity rate

Recycled packaging

(% vs total recyclable packaging)

Technical sheet

PORDATA – Contemporary Portugal Database

Mobilidade dinâmica

  • Número postos abastecimento eléctrico
  • Veículos Alimentados com Combustíveis Alternativos
  • Novos automóveis por tipo combustível
  • Total Matrículas Mercado Automóvel
  • Passageiros por modo de transporte
  • Consumo de electricidade das empresas de transporte rodoviário de passageiros
  • Ciclovias

Number of electric filling stations

Portugal has
15
electric chargers per
100km

Alternative Fuel Vehicles

Electrical

Hybrids

New cars by fuel type

Total Registrations Car Market

Passengers by mode of transport

Electricity consumption by road passenger transport companies

kW (thousands)

Cycle paths

Kms of cycle paths in 2022
4120
Bicycle parks
2599

Technical sheet

eco.sapo.pt
MOTORDATA – Automotive Statistics
IMT – Institute of Mobility and Transport
INE – National Statistics Institute
Ciclovias.pt

Uso do solo

  • Agricultural Area Used
  • Utilized Agricultural Area
  • Organic Agricultural Area
  • Number of farms
  • Area Occupied by Woods and Forests
  • Permanent Pasture Area
  • Fruit Tree Area
  • Nitrogen Balance by Utilized Agricultural Area
  • Grain Area
  • Total Irrigated Area
  • Energy Consumption per Utilized Agricultural Area
  • Scorched surface
  • Greenhouse Gas Emissions per Utilized Agricultural Area

Agricultural Area Used

in Portugal (hectares)

Utilized Agricultural Area

in Portugal (%)

Organic Agricultural Area

Number of farms

Area Occupied by Woods and Forests

Permanent Pasture Area

Fruit Tree Area

Nitrogen Balance by Utilized Agricultural Area

Grain Area

Total Irrigated Area

2007

2019

Energy Consumption per Utilized Agricultural Area

in Portugal (GJ/ha)

Scorched surface

in Portugal

Greenhouse Gas Emissions per Utilized Agricultural Area

in Portugal (kgCO2e/ha)

Technical sheet

PORDATA – Contemporary Portugal Database
REA – State of the Environment Portal

Energia sustentável

  • Produção e Consumo de Energia Elétrica
  • Peso da Energia Elétrica Renovável Produzida
  • Evolução da Potência Instalada
  • Potência instalada nas centrais de produção elétrica
  • Produção anual de Energia Renovável por Região
  • Consumo de energia eléctrica
  • Número de parques eólicos

Electricity Production and Consumption

in mainland Portugal (TWh)

Weight of Renewable Electricity Produced

in mainland Portugal (%)

Evolution of Installed Power

in Portugal (MW)

Installed power in power stations

from renewable sources (MW)

Annual Renewable Energy Production

Production by Region (GWh)

Electricity Consumption per Capita

in Portugal (kWh)

Number of Wind Farms

in Portugal

Technical sheet

APREN – Portuguese Renewable Energy Association
DGEG – Directorate-General for Energy and Geology
PORDATA – Contemporary Portugal Database

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