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A RENOVATION WAVE FOR EUROPE - Decarbonisation of heating and cooling of detached houses

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A RENOVATION WAVE FOR EUROPE - Greening Our Buildings, Creating Jobs, Improving Lives EU TOTAL RW REDUCTION Copper makes buildings heat a climate solution ENERGY CONSUMPTION TARGETS 2030 pumps

photosolar thermal voltaics photosolar thermal voltaics photosolar thermal Decarbonisation of heating voltaics

Detached houses

40% for buildings

and cooling

In Europe, 31 percent of energy consumed is used for space and water heating and the vast majority of this heat is still generated from fossil fuels. Without decarbonising heating, it will be impossible to reduce carbon emissions to the level needed to keep global warming well below 2°C as put forward in the Paris Agreement. Nearly one fifth (18.6 percent) of the EU population live in semi-detached houses and over one third (34.7 percent) in detached houses. 66.4 percent of EU28 dwellings were built before 1980 and only 9.8 percent after 2001, roughly 75 percent of buildings are energy inefficient.

31% for air and water heating and cooling

EU TOTAL CO₂ EMISSIONS

Air and water heating and cooling

• •

By 2030 the EU should reduce buildings’ greenhouse gas emissions by 60%, their final energy consumption by 14% and energy consumption for heating and cooling by 18%. The RW addresses the low rate of energy renovation, around 1% across the EU, with the aim to at least double this for both residential and non-residential buildings by 2030, fostering deep energy renovation. Mobilising forces at all levels towards these goals will result in the renovation of 35 million units by 2030.

Total energy consumption

WASTE WATER HEAT RECOVERY

RENOVATION TARGET 2030

Renovated 1% per year

In use est. 85-95%

>100%

Renovated 2% per year 35 million

storage tank

low energy buildings Energy efficiency

+

tariffs for load shifting

STORAGE TANK

AIR TO WATER HEAT PUMP

5kg

CO₂ emissions

Built before 2001 ca. 85% 220 million

PHOTOVOLTAIC PANEL

35kg

Energy management

Flexibility

low temperature surface heating

sector integration

Cu

BUILDING FABRIC • flexibility, diurnal energy storage • efficiency

GAS

GAS BOILER

>60%

EU BUILDINGS CONDITION

SOLAR THERMAL COLLECTOR

DRINKING AND HOT WATER

BUILDING FABRIC • low efficiency • limited flexibility

Energy generation 36% from buildings

SURFACE HEATING

BACS

RW DECARBONISATION TARGET 2030

KEY TARGETS OF THE RENOVATION WAVE •

2001

2020

4kg

wastewater home automation heat recovery

energy security

a d

Beyond

Before

>14%

>18%

heat pumps

Decarbonisation of heating and cooling - Detached houses

SPACE HEATING

heat pumps

smart home

16kg

photovoltaics

19kg

21kg

heat pumps solar thermal

On-site renewables

Masses represent copper contents of different technologies applied in deep energy renovation of a 120m² family house - explained on the next pages.

Electrification


A RENOVATION WAVE FOR EUROPE - Greening Our Buildings, Creating Jobs, Improving Lives Copper makes buildings a climate solution

Decarbonisation of heating and cooling - Detached houses

Energy management

ENERGY EFFICIENCY

Whichever low-carbon heat technology is adopted Reduce heat demand and energy efficiency remains thereby the investment critical. It reduces heat required to decarbonise demand and thereby the heat. investment required to decarbonise heat, it is an enabler of buildings that are electrified to act as a flexible resource, and an enabler of low and zero-carbon heating systems operating at higher performance. HOME AUTOMATION Home automation prevents poor energy performance of heating and cooling systems of individual buildings by e.g. room-level heat control.

Deploy home automation as a complementer to deep renovation to optimise the use of on-site renewables, sustainable heating and cooling and the smart grid.

Home automation ensures continual energy performance monitoring, enables control and fault detection of heating & cooling systems, and drives optimal user behaviour.

Energy generation Home automation systems are the missing links between near-zero energy buildings and the smart grid: they harvest the savings potential offered by smart meters, facilitate the use of renewable energy sources, and provide the building stock with load shifting and storage management capabilities. kg

5

Copper is used in sensor and control wires and actuators. Copper content of heating and cooling automation and control systems is not so significant but home automation is an enabler of copper-intensive technologies (e.g. renewables). LOW TEMPERATURE SURFACE HEATING Proper wall insulation and energy efficient windows will ensure that existing radiators will satisfy heat demand at lower hot water temperature. Optionally, surface heating might be the solution.

Satisfy heat demand at lower temperature with proper insulation and renewable energy based heat generators, such as heat pumps or solar.

Surface (underfloor, wall, ceiling) heating (and cooling) systems operate with very low water temperatures. The building structure becomes a draught-free low-temperature radiator, which emits warmth as gentle radiant heat and provides a pleasant living environment. Enhanced temperature uniformity of the wall surfaces and direct heat emission by radiation allow the air temperature in the room to be lowered by 2 to 3 degrees without reducing comfort. It is estimated that each 1°C reduction in temperature results in savings of around 6% in heating costs.

In summer, the system is reversible, i.e. it can be used for cooling and enables a reduction in temperature in the order of 2 to 3 degrees. kg

35

High efficiency surface heating systems rely on copper tubes thanks to the metal’s excellent thermal conductivity (low wall thickness tubes).

FLEXIBILITY

STORAGE With integration of electricity and heat, heat flexibility becomes highly relevant. To avoid an increase in peak load, load shifting is critical. At times of abundant electricity production from renewable sources, heat generated by a heat pump can be stored in the structure of the building or in a thermal energy storage tank. ENCOURAGE LOAD SHIFTING WITH TARIFFS Electricity tariffs should Store heat as hot water, encourage the use of electricity when this is the or in the existing thermal most beneficial for the mass of buildings as a power system and positively lower cost alternative to affects carbon emissions. storing electricity. Electricity pricing is a key strategy to encourage flexibility and deliver economic benefits to consumers, in return for providing such flexibility. Enabler of copper-intensive solutions

ELECTRIFICATION

WASTE WATER HEAT RECOVERY (WWHR)

While most energy Harvest heat from efficiency efforts in homes currently focus on space building shower drains to heating, the energy needed save around 40 percent to heat domestic hot water of wasted energy and CO₂ is gaining importance as it emissions. can represent up to 45% of energy consumption in new buildings. This heat ends up in the drain still hot and wasted. Harvesting heat from shower drains in buildings could be a simple and costeffective way to save at least 40 percent of wasted energy and CO₂ emissions. kg

Heating and cooling account for nearly 80% of the energy consumption of buildings, with 83% of this energy currently produced from carbon-intensive fuels such as heating oil and fossil gas.

4

Copper is used in highly efficient heat exchanging pipes in heat recovery systems.

HEAT PUMP

Facilitate direct electrification of heating and cooling of buildings to urgently transition away from carbon-intensive fossil-based heating solutions toward full decarbonisation by 2050.

Heat pumps constitute market-ready solutions that can be deployed at scale and which can produce up to 4 units of heat for each unit of electricity consumed. They take a major share of the useful energy out of the environment, and the carbon emissions of the electricity used will gradually evolve to zero with the decarbonisation of the electricity sector. kg

21

Copper is used in air source heat pump evaporator, condenser, compressor, piping, connection, control, and sensor cabling.

ON-SITE RENEWABLES

A deep renovation should seek to use the full potential of on-site, cost-effective, zero-carbon emission renewable energy generation.

SOLAR THERMAL Solar radiation is collected and the resulting heat conveyed to a heat transfer medium such as a liquid or air. Systems are longlasting, reliable, require very low maintenance and have stable energy costs over lifetime of 20 to 25 years. kg

Deploy solar thermal as a decentralised, highly efficient (capturing 70% of the incident radiation) technology with no fuel requirements and zero carbon emissions in use.

19

According to a 2020 worldwide survey, 99% of piping inside flat-plate collectors is copper. Copper is used in collector and system piping, electrical and sensor cables and in pumping station. PHOTOVOLTAIC Photovoltaic power systems are installed in locations with high solar exposure, such as on rooftops. kg

16

An average PV installation of 4kWp on the roof of a family house contains 16kg of copper. Copper is used mostly in cables.

Deploy solar rooftop systems to save 680TWh, equivalent to 24.4% of current electricity consumption, two thirds of which (467TWh) could be generated at a cost lower than today’s residential tariffs. www.copperalliance.eu


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