In the Dutch countryside, about 130 km east of Amsterdam, an unusual-looking hill towers and glistens above farmhouses, leafless trees, and muddy grassland. Contact online >>
In the Dutch countryside, about 130 km east of Amsterdam, an unusual-looking hill towers and glistens above farmhouses, leafless trees, and muddy grassland.
The hill - 25 metres tall - is built from 15 years'' worth of household and business waste. What''s remarkable is what''s covering it: 23,000 solar panels.
Dutch solar developer TPSolar opened the array, which can produce up to 8.9 megawatts of power, in Armhoede, in the east of the Netherlands, in mid-2020. The former landfill now generates enough electricity for about 2,500 households.
The project reflects a wider drive in the Netherlands - which now has more than 48 million solar panels installed - to find innovative places to put new renewable energy capacity.
The Netherlands today has an average of two solar panels per inhabitant - and installed capacity of more than 1 kilowatt (KW) per person - making it Europe''s per-capita solar powerhouse, according to industry association Solar Power Europe.
With land for renewables short nearly everywhere in the world, the Dutch experience - including putting solar on car parks, commercial lakes, sheep grazing fields, strawberry farms, disused churches, train stations and airfields - could inspire better placing of renewables globally.
"Because we have so little space in the Netherlands, it''s important to use the ground for multiple reasons," said Bernd Nijen Twilhaar, a coordinator at Dutch solar developer Solarfields, which manages large solar farms and has installed at least 450,000 panels in the country.
"We have to be innovative and creative so we can produce the electricity the Netherlands needs to go green," he added.
Solar developers and analysts say the Dutch expansion has been driven by a huge drop in equipment prices, an effective energy subsidy scheme, and ambitious government targets to reduce greenhouse gas emissions.
The Dutch government aims to make 70 per cent of its electricity renewable by 2030, mainly through expanding solar and wind power capacity as it seeks to cut its emissions. It currently stands as one of Europe''s top six polluting countries.
Like many EU nations, the Netherlands is cutting energy reliance on Russia following its invasion of Ukraine.
Dutch solar and wind farms have helped fill the electricity supply gap left by gas-fired power stations that have become unprofitable amidst record high gas prices.
But the Netherlands'' farmland is among the most expensive in the EU, making finding space for solar costly.
In recent years, the Netherlands has enshrined climate targets like its renewable energy goal into law, vowed to limit onshore gas and oil drilling, and boosted green spending generally.
Last year, the Netherlands generated 14 per cent of its electricity from solar farms - up from 1 per cent in 2015 - overtaking coal-fired power generation for the first time.
The proportion of electricity from solar was the highest generated in the EU, said Ember Climate, a consultancy group.
In parallel, the country''s "net metering" system - set up in 2004 and allowing households with solar panels to offset their green electricity production against their consumption - now has more than two million homes generating renewable power, according to the energy ministry.
Joeri Jacobs, who focuses on building green energy projects at waste management company Afvalzorg, describes the Dutch approach to renewables as "extremely MacGyver-ish" - referring to a 1980s US TV show about a resourceful secret agent who assembled ingenious devices from everyday objects.
"We take the different energy technologies, we stack them and we try to make a combination that really works," says Jacobs, whose company has teamed up with a local utility to turn disused landfill sites into solar farms.
"It takes a while but once everybody hops on the train we actually execute relatively quickly in the Netherlands."
The company has installed more than 500,000 solar panels on Dutch waters, leaving the Netherlands behind only China globally in such siting, it noted.
"This idea of floating solar came up in the Netherlands earlier than in other countries," says Benedikt Ortmann, global director of solar projects at German renewable energy company BayWa r.e., which acquired GroenLeven in 2018.
Inspired by the Dutch example, BayWa r.e. said it now is rolling out more floating solar sites in European countries such as Belgium, Austria and France.
Dutch firms are also looking for ways to make solar plants work alongside agricultural production.
"Rather than having to fight over who''s going to get the access to the land, we come up with solutions to jointly use it," says Carel Kooij, business development manager for large-scale photovoltaic (PV) at the Dutch subsidiary of Swedish utility Vattenfall.
One so-called ''Agri-PV'' project involves growing strawberries and raspberries below a solar panel roof, replacing the plastic cover traditionally used by farmers.
Halfway through a four year pilot, project leaders said the plants needed 25 per cent less water because they were sheltered from the sun, potentially saving irrigation water in a future where climate change brings hotter and drier summers.
The country''s 2019 climate plan, for instance, stipulates that renewable energy projects should aim to allocate 50 per cent of the green energy they produce to local inhabitants.
While this is not legally binding, developers tend to invest in the community - from sending a percentage of renewable power generated to local energy cooperatives, for example, or setting up a socioeconomic fund to make energy efficiency improvements.
"Because the Netherlands is so small, you are always working in someone''s backyard," says Robert van der Horst, project developer at TPSolar.
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Floating solar will make a significant contribution to the energy transition. Some scenarios predict 200 gigawatt peak (GWp) of solar power in the Netherlands in 2050, 25 GWp of which will be on inland waters and 45 GWp at sea. The knowledge level is still insufficient. For example, on the effect of wind and waves on solar panels and the lifetime of floating solar energy systems. Therefore, we are conducting plenty of research that fits with our mission to make solar energy applicable to different types of surface.
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