When our daily energy requirements are met by ’Green Energy’, then we are using resources such as wind, tides or geothermal heat. When ’Green’, they are all thought to be replenishable and natural. When considering elements such as Wind Power and Windmills, in many cases we are looking back at the history of energy production. This idea is preserved by the use of technology, eco-efficient options and planet friendly alternatives.
The range of renewable energy technologies utilised within the home environment includes both Solar Thermal, and Solar Water Heating Collectors. For electricity created through roof-installed panels, you would need Photovoltaic Panels or PV’s. Then there are Stoves that burn Bio-Pellets – which make up the subject commonly known as Biomass Energy. What shouldn’t be forgotten is the heat stored in the ground from the Sun – often simply referred to as Ground Source Heat Pumps. At the end there are two of the most mature forms of energy production in the UK – albeit renamed now to Wind Turbines and Hydropower.
Thermal Solar Energy – This technology is based around two core types of system. First, we have Solar Water Heating Collectors, which absorb energy from the Sun and transfer this into hot water. Then we have the work of the Photovoltaic Heat Collectors, often called Solar Electrical Panels – which transform solar radiation into electricity. Typically, these panels are found on roofs – and need to be away from any light blocks such as trees, chimneys and other buildings.
With Solar Power being so common within the UK, it’s Solar Water Power that is most often used. With the capacity to deliver 50 percent plus of a household’s hot water requirement annually, Solar Water heating systems are crucial to energy in the UK. There are two options to fit these items. The first is to get a professional fit and the second is a DIY system, the first will cost around 2-5k and the second between 500 and 1500 pounds.
Biomass Energy Technology: Historically, this has come from plants and animals, though nowadays this also includes new genetcially engineered ’energy crops’. Due to its adaptability, it can produce a range of energy forms – from heat and electricity through to combinations of both. It is interesting to note that the UK has some of the largest quantities of Biomass material to generate electricity within Europe. Considering all this, and the relative lack of C02 produced, makes the whole process highly green overall. To that end, many wood crops come from sustainable sources (as one tree is felled, another is planted in its place; thus the new tree absorbs the CO2 produced during the heating process.)
By the growth of Short Rotation Crops (SRC), the UK is able to maximise the ’Energy Crops’ return overall. Perennial grasses are also responsible for large quantities of dry matter. Municipal and Agricultural waste products are both little known, but essential materials to this field. Under normal agricultural activity, agricultural waste is a natural by-product. Whereas Municipal Waste is derived from wood or food – and can be used for biomass energy.
Geo-Thermal Energy Technology: Used in the generation of both warm water and electricity, this energy mainly comes from the Sun and heats the Earth. Using the ground temperature of around 12 degrees in the UK – we can both heat and cool buildings. Although heat pumps require energy to function, their rate of return is superb – being a four-fold benefit over the energy put in. Heat source pump energy can go one step further (by gaining a 100 percent return) if the energy to power them comes from items such as wind turbines or solar electrical panels.
Systems Based On Wind Energy: In use for milling grain or pumping water, wind energy has been with us for a very long time, although its modern uses are complex. That aside, the ability to generate energy and both transfer this into the home or the local grid has been a relatively new option. In the European union, it is the UK which is seen to have the largest wind capacity. Although, within the UK we currently only utilise 1 percent of electricity from wind, yet the potential rests at a surprising 10 percent. Instead of producing electricity at a rate of 2-10p per kWh, we could be generating at 2p per kWh. From this, the estimation of the cost recovery period is around 6-9 months overall.
Finally, we have Hydropower; an area in which the UK does well within Europe. Just like a thousand years ago, we are utilising the energy from water. Interestingly enough, this type of energy production meets around 2 percent of the UK electrical total demand.
Using a turbine, a Hydropower system can transform the energy of water into other forms. The important thing is that, without having to rely on water storage, the turbines can generate electricity. ’Micro-Hydro’ however, uses the dam and sluice systems that have been made redundant by the larger national distributions. Although a lesser known form of electricity output, this process could supply 200mW of UK demand. Installing systems like this could cost between 200 pounds and 3k per kW of energy created.
The demand on ’Green Energy’ continues to develop – in light of the energy demands worldwide. The UK is very well placed to provide most of the schemes set out above, and the UK domestic market again is one of the key beneficiaries of this technology.
Once again, it is the Electrician and Plumbing trades that are set to capitalise on the domestic installation process. Grants and financial aid is also set to increase within the EEC and the UK – as ’Green Energy’ gets ever higher status. This is a new industry – but getting the right certification can only improve job security and opportunities for the future. Look for combined electrical and plumbing training, with a key emphasis on practical green systems and installation.
Copyright Scott Edwards 2009. Hop over to Solar Energy Courses or Click HERE.








