1. Supreme Court throws out DECC appeal on solar

    March 24, 2012

     The long running legal saga over changes to the Feed-in Tariff has come to an end.  The Supreme Court has refused permission for DECC to appeal against the Court of Appeal’s decision on plans to reduce the tariff for solar PV installations.

    The effect of the decision is that solar projects installed between 12 December and 3 March will get the higher rate (43p/kWh for sub 4kW schemes) in place prior to the government cuts. It has no effect on projects since 3 March as new tariffs came into force at that time.

    The decision provides an opportunity to move on from the confusion of the last few months and for the industry to work with DECC to ensure a clear policy framework in which solar pv and microgeneration technologies can develop to their full potential. Regen’s recent report on the benefits of microgeneration showed how the Feed-in Tariff has led to investment in renewables, new businesses and jobs and a flowering of community renewable energy schemes in the south west.  ( Report from Regen www.regensw.co.k)

     


  2. Improvements to the Feed-in Tariffs scheme

    March 18, 2012

    DECC Press release 2012/010

    09 February 2012

    The Government has today announced plans to ensure the future of the Feed-in Tariffs scheme to make it more predictable. Transparency, longevity and certainty are at the heart of the new improved scheme.

    The reforms will provide greater confidence to consumers and industry investing in exciting renewable technologies such as solar power, anaerobic digestion, micro-CHP, wind and hydro power.

    The Feed-in Tariffs (FITs) scheme provides a subsidy, paid for by all consumers through their energy bills, enabling small scale renewable and low carbon technologies to  compete against  higher carbon forms of electricity generation.

    The surge of solar PV installations in the latter part of last year, due to a 45% reduction in estimated installation costs since 2009, has placed a huge strain on the FITs budget.

    Climate Change Minister Greg Barker said: “Today we are announcing plans to improve the Feed-in Tariffs scheme. Instead of a scheme for the few the new improved scheme will deliver for the many. Our new plans will see almost two and a half times more installations than originally projected by 2015 which is good news for the sustainable growth of the industry.  We are proposing a more predictable and transparent scheme as the costs of technologies fall, ensuring a long term, predictable rate of return that will closely track changes in prices and deployment.

    “I want to see a bright and vibrant future for small scale renewables in the UK and allow each of the technologies to reach their potential where they can get to a point where they can stand on their own two feet without the need for subsidy sooner rather than later.”

    A better FIT scheme for consumers and communities

    • A tariff of 21p/kWh will take effect from 1st April this year for domestic-size solar panels with an eligibility date on or after 3rd March 2012. Other tariff reductions apply for larger installations.
    • The Department has listened carefully to feedback on the energy efficiency proposals that we put forward in the consultation of 31st October. Properties installing solar panels on or after 1st April this year will be required to produce an Energy Performance Certificate rating of ‘D’ or above  to qualify for a full FIT. The previous proposals for a ‘C’ rating or a commitment for all Green Deal measures to be installed was seen as impractical at this stage. We estimate that about half of all properties are already eligible for a ‘D’ rating.
    • From 1st April 2012, new ‘multi-installation’ tariff rates set at 80% of the standard tariffs will be introduced for solar PV installations where a single individual or organisation is already receiving FITs for other solar PV installations. This reflects the lower costs of such installations, as they benefit from the economies of scale. Based on the feedback  received, the threshold is set at more than 25 installations. Individuals or organisations with 25 or fewer  installations will still be eligible for the individual rate. DECC is now consulting on a proposal that social housing, community projects and distributed energy schemes be exempt from these multi-installation tariff rates.
    • The tariff for micro-CHP installations will be increased to recognise the benefits this technology could bring and to encourage its development.

    A better FIT scheme for industry

    • In line with the evidence of falling costs for solar PV, DECC is proposing to peg the subsidy levels to cost reductions and industry growth to provide more certainty for future investments.  This will ensure that subsidy levels keep in step with the market. It builds on the best of the existing German system and will remove the need for emergency reviews.
    • Using budget flexibility to cover the overspend resulting from high PV uptake this year, while still allowing £460 million for new installations over the Spending Review period. This won’t have any impact on consumer bills beyond the agreed overall cap on renewable subsidies as it will primarily be funded from an under spend on the budget allocated for large-scale renewables.

  3. Forthcoming amendments to the EPBD Building Regulations

    February 16, 2012

    Reminder from NHER
    In September last year, we received notification from DCLG of their intention to defer the proposed changes to the EPBD Regulations until 6 April 2012. DCLG also advised that they would provide further information and interim guidance in due course and we will let you know any further news as and when we are advised.

     DCLG has confirmed that although RDSAP 9.91 will go live as of 1 April 2012, the amendment to the Regulations will not come into force until 6 April 2012.  The reason for this discrepancy is that in order to minimise disruption, Landmark always schedule updates for a Sunday evening.  However, Regulations must generally come into force on a single Common Commencement Date – either 6 April or 1 October.  As a result, the RDSAP date and the date the Regulations come into force are slightly out of sync.

     The summary of the changes to the EPBD Regulations are as follows:

     The changes will extend the current requirements to commission an EPC that apply to residential buildings to all residential and non residential buildings when sold or rented out

     The requirements for the provision of an EPC with written particulars will be extended to all buildings sold or rented out and the option to attach the asset rating will be removed. The requirement will only extend to the first page of the EPC (the new EPC will consist of two pages, with four pages of recommendations)

     The requirement for the statutory lodgement of air conditioning inspection reports onto the central EPC Register


  4. Full Government Documents for New EPC Regulations

    February 16, 2012

     For those who are interested here are the Statutory Instrument and Explanatory Memorandum from the DCLG regarding the new EPC Regulations effective from 6th April 2012 : 
    EPC Regs April 2012 Statutory Instrument
    EPC Regs April 2012 Memo


  5. Doubts about the likely success of Green Deal

    January 13, 2012

    Carbon Commentary have doubts about Green Deal success : Green Deal Failure


  6. Green Deal or No Deal?

    January 13, 2012

    Report in Building.co.uk predicts collapse in cavity and wall insulation after lauch of Green Deal due to withdrawl of other funding. Click on this link to read more:

    Collapse in cavity and loft insulation

     


  7. Could this solar power breakthrough kill off nuclear power?

    December 23, 2011

    Tata Steel and Dyesol team with the world’s largest dye sensitised PV module.

     

    New breakthroughs in solar technology have been announced which could mean a complete game changer in the way electricity is generated.

    The technology involves printing a new type of solar photovoltaic (PV) cell onto building materials, such as steel and glass, and allowing them to generate electricity.

    The chief announcement is the result of joint ventures between Australian company Dyesol and, in Wales, Tata Steel, and in America Pilkington Glass.

    Researchers are being cautious as to the timescale, but it is estimated that in about five years time industrial production on a large scale could begin.

    Speaking at a recent conference on solar power, James Durrant of the Department of Chemistry and Energy Futures Lab at Imperial College London, said: “If just 10% of Tata’s annual steel output were coated with DSSC, this would represent the output capacity equivalent to a 1GW nuclear power station per year”.

    Dye-sensitised solar cells (DSSC)

    These ‘dye-sensitised solar cells’ (DSSC) employ a photoelectrochemical system similar to that employed by plants to capture solar energy.

    In the manufacturing process, a nanocrystalline titanium oxide film plus a sensitiser dye are printed onto glass, polymer or steel and covered with glass or plastic.

    Modules made from the cells currently have efficiencies up to 8% depending upon a compromise between stability and cost, but cells in the lab have reached 13% efficiency, and Dyesol is confident they can reach 10% under mass-production conditions in five years time.

    DSSC has the following advantages over conventional silicon photovoltaic modules:

    • it can output a constant operating voltage in all light conditions, including low light and dappled conditions typical of urban and city environments, making it an ideal renewable resource for closely packed buildings
    • it has an optimum working temperature of 40o-50oC, unlike silicon PV, which becomes less efficient at higher temperatures
    • it uses little energy in manufacture due to the low temperature processes and absence of high vacuum technology needed for second generation technologies (thin film PV)
    • due to the nanoparticulate nature of the titanium dioxide, modules can generate electricity from light from any direction, removing the need for them to be pointed directly at the sun
    • it can be produced in a range of natural colours and light transmission effects including transparent, translucent or opaque
    • it uses no polluting dopant
    • the ability to produce a constant operating voltage in all light conditions
    • it is ideal for integrating into building cladding.

    The race to mass production

    Many companies are racing to produce this type of cell at an industrial scale.

    Notable organic and dye-sensitized solar cell (DSSC) developers include, beside Dyesol: Eight19, EPFL, G24i, Heliotek, Konarka (printing large molecule polymers), Mitsubishi, Peccell, Plextronics, Solarmer, SolarPress and SolarPrint.

    SolarPrint is also developing nanomaterials and processes to print the cells onto polymer substrates. Other researchers are experimenting with printing on fibreglass.

    Eight19 Limited has raised $5 million from the Carbon Trust and Rhodia to develop plastic organic solar cells. The name “Eight19” refers to the time it takes sunlight to reach the earth.

    The reason why Dyesol is a front-runner is because of its teamwork with Pilkington and Tata Steel. These joint ventures are already ahead of the game in terms of applying coatings on a continuous roll, as opposed to a batch process, output.

    Existing coatings applied to steel include galvanising layers to prevent rust, colours, anti-static, and self cleaning layers, all of which are guaranteed for 40 years.

    Tata’s Rodney Rice, speaking from their DSSC Demonstration Roof at the PV Accelerator in Shotton, North Wales, where the process is being tested, told Energy and Environmental Management: “We use high speed large scale coating, on steel rolls 1.5m wide, put through at a speed of 200 metres per minute.

    “This adds up to 200 million square metres of steel per annum, of which half ends up on buildings. If we assume 10 to 20% of this is on a roof or wall and the PV is operating at between 8 and 10% efficiency, then this will easily equate to 1 GW per year.

    “We are developing our knowledge of printing coatings to printing the ability to generate electricity and to steel. It uses reasonably straightforward materials which are reliable, simple to apply and easy to scale up as there is no vacuum and fewer people involved.

    “This means it has the perfect attributes for the mass-market and the technology will work well in northern Europe where there are large surface areas of roof tops.”

    The Dyesol-Tata partnership has obtained considerable support from the Welsh Government, and over the last four years has spent £11 million on R&D.

    “Lowering the price is the objective and we are now developing processes that will allow us to do this in manufacture,” continued Rodney.

    “Initially steel rolls will be one metre wide with 10% efficiency leading to a production of 400 MW per year,” he said.

    Tata use coated steel and coated polymer electrodes, whereas Pilkington are using coated glass electrodes.

    In America, the Pilkington-Tata joint venture has won $1 million from the Ohio Third Frontier Fund and intends to complete its proof of concept project for large glass substrate panels by the summer of 2012.

    Its chief competitor’s technology, American company Konarka, is a photo-reactive polymer material invented by Konarka co-founder and Nobel Prize winner, Dr. Alan Heeger.

    This can be printed or coated inexpensively onto flexible substrates, again using roll-to-roll manufacturing.

    It can work indoors too, capturing ambient light.

    Like Dyesol, Konarka has recently entered a partnership agreement with a steel producer, ThyssenKrupp Steel Europe to develop solar steel roof, facades and other construction elements for building-integrated photovoltaics (BIPV) in Germany.

    Dr. Lars Pfeiffer, head of quality and development at the Color/Construction unit, said: “Unlike conventional silicon-based photovoltaic systems, the joint solar solution will not need to be mounted on a raised structure but will integrate smoothly into the building envelope. We look forward to providing the valuable, added benefits of solar to our customers at a low cost.”

    Challenges

    Some problems remain to be solved. For example, could it survive 25 years?

    Rodney Rice says at the moment Tata can produce several square metres, and has installed a 15 m² demonstration roof can be used to test the output and performance.

    “We are now developing our abilities in the process, durability, assembly and manufacturing,” he said.

    It is the dye which is crucial for the generation of the electricity from light. Different dyes are being researched all over the world.

    “We are looking for the perfect dye,” said Rice. “The ability to capture light energy from a wide range of wavelengths is required in order to maximise efficiency. More than half research in world is looking at new dyes, extending wavelengths, including into the infrared,” he said.

    Dyesol is now ramping up more aggressive performance targets under a revised Technology Road Map, to achieve grid parity at an earlier date.

    Whichever company is the first to successfully produce cladding for buildings which can cheaply produce electricity, will find themselves at the head of a multibillion dollar market.

    Even supposing half of what these companies are claiming is hyperbole, then we are perhaps looking at a ten year timescale rather than five years before the technology reaches mass production.

    Even so, this would be before the anticipated timescale for new nuclear power stations to come online. So, the big question is: would it obviate the need for new nuclear power by rendering it uncompetitive?

    Thinking about the ease and convenience of producing, installing and using this technology at the point of use, it is clearly going to be a massive game changer.

    The missing part of the jigsaw is still electricity storage, since, although this technology can produce energy at night time from indoor lighting, this will not meet peak demands.

    This topic will be the subject of another special Energy and Environmental Management technology report in 2012.


  8. Wind turbine blows up in wind!

    December 9, 2011


  9. IMPROVED AND REDESIGNED ENERGY PERFORMANCE CERTIFICATE

    December 2, 2011

    DCLG have announced a new look and redesigned EPC that will make it easier to read and focus on the recommendations and Green Deal options. Click on the link below for the DCLG press release:

    DCLG EPC changes 29 Nov 11


  10. Holiday Lets – What Type of Agreement Are They?

    November 22, 2011

    The attached useful document discusses the different types of letting agreements that are used in practice ( with thanks to www.landlordZONE.co.uk). Click on the document name below:

    Types of Letting Agreements and Tenancies