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Showing posts with label Award. Show all posts
Showing posts with label Award. Show all posts

Tuesday, 11 August 2015

A breath of fresh air: SECSB wins energy award

Camfil, the leading global manufacturer of air filtration products awarded the Sudbury English Catholic School Board with the prestigious 5-Star Energy award.


Sudbury English Catholic School qualified for this award by demonstrating their continued commitment to saving energy while providing quality indoor air throughout their facilities.


Sudbury English Catholic School Board selection of air filters have the 5-Star Energy Cost Index (ECI) rating placing the company in the top 20 per cent of customers worldwide that have chosen to make a difference in energy usage globally.


Presented by Sling Choker Manufacturing, an exclusive distributor of Camfil air filtration products, the award recognizes facilities that conserve our natural resources and put their employees, visitors and customers first when improved indoor air quality is considered.


Air handling equipment accounts for up to 40 per cent of all energy usage and the selection of 5-Star products can reduce a users energy cost to move air through an air handler by up to 30 per cent.


Sudbury English Catholic School Board was nominated by Sling Choker Manufacturing, who presented the award to Jim Morgan, Maintenance Coordinator at Sudbury Catholic School Board.
 



A breath of fresh air: SECSB wins energy award

Friday, 12 June 2015

Intersolar Award: And the winner is ...

At the start of the Intersolar Europe, particularly innovative solutions in the areas ‘Photovoltaics’ and ‘Solar Projects in Europe’ received the Intersolar Award. The prize was awarded for the eighth time as part of an official ceremony at the trade fair’s Innovation Exchange.


The exhibiting companies at all Intersolar trade fairs worldwide were called upon to demonstrate their outstanding innovations to the jury. In order to be eligible to apply, the submitted products, projects, services and solutions had to be in the testing phase or already in the field. In addition, it either had to be the first time they were displayed at the Intersolar or they had to be significant further developments of existing products. On top of that, the solar projects had to have been fully implemented during the last two years. The evaluation criteria were based on existing challenges on the market. The areas evaluated included the level of technological innovation, benefit for industry, environment and society, economic efficiency, and proof of innovation.


The relatively new Californian manufacturer HiQ Solar won an Intersolar Award in the ‘PV’ category for its three-phase inverter TrueString 480V, LG Electronics Deutschland GmbH won it for the PV module MonoX NeON 2 and REC Solar EMEA GmbH received the award for its TwinPeak module. The winners in the category ‘Solar Projects in Europe’ are IBC Solar AG for its project ‘EnFa – The Energy Factory’, solarnova Deutschland GmbH for its ‘Aktiv-Stadthaus’ in the Gutleutviertel district of Frankfurt and Ritter Energie- und Umwelttechnik GmbH & Co. KG together with Ritter XL Solar GmbH, the Fraunhofer Institute UMSICHT, GEA Wiegand GmbH and the University of Karlsruhe, which jointly implemented a project for solar air conditioning in buildings.


Lightweight and durable: An inverter for industrial rooftop installations


The three-phase inverter TrueString 480V from HiQ Solar was designed primarily for industrial rooftop systems. It is equipped with two independent 1000-V DC inputs with individual MPP tracking. Cutting-edge semiconductor technology based on silicon carbide gives it a CEC efficiency rating (in accordance with the California Energy Commission) of 98% as well as a high power density. The device only weighs 11 kg and is so robust that it can even be used in extreme desert and coastal conditions.


Cleverly wired: CELLO makes for a more sustainable module


LG Electronics was able to increase the efficiency of the MonoX NeON 2 module while reducing the amount of materials used to manufacture it, allowing the module to be produced and sold at a cheaper price in the future. Its CELLO technology uses twelve wires to make contact with the front side of the cells. The wires reflect the incoming light, thereby optimising solar power generation. “This solution puts LG at the forefront of a technology that is currently being discussed by many people and will likely be used increasingly in the future,” the jury said.


First cut in half, then soldered back together: a useful innovation in module technology


To manufacture its TwinPeak module, REC Solar first cuts the PERC (Passivated Emitter Rear Cell) cells in half and then solders them together again, creating a low-loss electrical connection. In addition, four busbars make the electrical connection to the cells instead the three that were used previously. Also, two separate junction boxes are connected to each terminal pole. Thanks to this electrical connection concept, the TwinPeak modules have an output 10 W higher than standard modules.


Brave pioneering: decentralised supply using renewable energy is possible


‘EnFa – The Energy Factory’ from IBC Solar is a further step towards off-grid operation of commercial enterprises. The building, which was constructed in Neuenstadt am Kocher in 2014, generates all of the energy it needs for heating, cooling, e-mobility and electricity requirements itself. Biogas is used to cover its energy requirements during months when the yield is low. This is made possible by a smart energy management system that integrates the photovoltaics, power storage, combined heating and power plant as well as heat pumps. EnFa is proof that it is possible to implement a decentralised energy supply in Germany that is based purely on renewable sources, is uninterrupted, provides a stable local grid, and has low costs.


Everything planned for: block of flats in Frankfurt produces an energy surplus


The ‘Aktiv-Stadthaus’, which solarnova participated in building, generates more energy than the residents of the 75 flats consume. Passive efficiency through insulation as well as active energy generation are perfectly combined in this ‘Efficiency House Plus’. The most innovative part of this concept is that the energy requirements of the users as well as urban planning integration were taken into consideration during the design phase. “The Aktiv-Stadthaus clearly demonstrates that the EU’s Energy Efficiency Directive for the year 2020 can be achieved,” the jury said of their reasons for giving the project the Intersolar Award.


Strong partners: consortium combines various new developments


The joint project for solar air conditioning in buildings, which uses a solar collector array with plasma technology to generate steam, convinced the jury. Its key component is a high-efficiency vacuum tube collector. Thanks to its special anti-reflective coating, the collector can even achieve a remarkable level of efficiency at temperatures between 100 and 150 ° C. In addition, a steam jet ejector chiller with a cooling capacity of 80 kW that was designed specifically for the project is installed. The solution is complemented by a specially developed heating and cooling storage system, which provides largely consistent operating conditions. The solar thermal system impressively demonstrates that it is possible to provide effective, economical and environmentally friendly air conditioning using solar energy, even with German weather conditions.


Katharina Garus



Intersolar Award: And the winner is ...

Thursday, 27 November 2014

GWE Raptor Waste-to-energy Technology Wins IChemE Energy Award

From left to right, Kate Silverton, host of the awards, Pascal Pipyn, GWE EVP Process and R&D, Jean Pierre Ombregt, GWE Chairman and CEO and a representative from PM Group, who sponsored the Energy Award (Image: Global Water Engineering)


Worldwide wastewater treatment and green energy authority Global Water Engineering (GWE) has won a major international chemical engineering award for its process by which it transforms food processing sludge waste from an environmental problem into profitable green energy.


GWE Chairman and CEO Mr Jean Pierre Ombregt accepted the IChemE Energy Award from the Institute of Chemical Engineers (IChemE), which represents more than 40,000 chemical engineers worldwide and which staged the 2014 awards in the UK this month this month to recognise and reward chemical engineering innovation and excellence.


The IChemE Energy Award – sponsored by PM Group – recognises the best project or process to demonstrate innovation in renewable energy, alternative energy sources, efficient energy use or the development of energy production methods that reduce energy and water intensity.


GWE’s entry involved a world first with Chok Chai Starch in Thailand, where a GWE Raptor system is used to convert wet pulp waste product from the processing of cassava roots into biogas (methane) green energy, at their tapioca starch plant in Uthai Thani.


Mr Ombregt said the IChemE award was an outstanding confirmation from a world-respected body of the practical, profitable and immediate benefits of anaerobic treatments of waste water and sludge, which etc.


“Green energy alternatives such as wind power and solar power get most of the headlines for their achievements, but this anaerobic process is even more suited to industry in many instances, given that it provides reliable base load power and simultaneously treats wastewater to high discharge standards,” said Mr Ombregt.


Anaerobic biogas production is also proven in more than 60 successful GWE projects globally and has massive further potential worldwide wherever industry is dealing with a biological waste stream such as those produced by industries including food and beverage, dairy, beef, livestock, agribusiness and primary product processing.


The Raptor system greatly reduces an environmental pollution issue by processing and converting to useful green energy the leftover fresh pulp, which starts to ferment once stored. The rotting organic material can generate considerable odor and release heavily polluted wastewater leaching out of mountainous pulp piles.


“Advanced anaerobic technology such as that installed at Chok Chai Starch is also strongly applicable to any factory or process with one or more digestible solid waste streams.” says Mr Ombregt.


“Such plants – including breweries, fruit, food waste, agro industries, and energy crops including corn – can easily use this technology to generate energy. It opens the door to environmental and production efficiency gains globally,” he said.


The Institution of Chemical Engineers (IChemE) is the global professional membership organisation founded in 1922 as a professional institution for chemical and process engineers, IChemE has grown to its current status of over 40,000 members across 120 countries, with offices in Australia, Malaysia, New Zealand, Singapore and the UK.


Picture: From left to right, Kate Silverton, host of the awards, Pascal Pipyn, GWE EVP Process and R&D, Jean Pierre Ombregt, GWE Chairman and CEO and a representative from PM Group, who sponsored the Energy Award (Image: Global Water Engineering)


Source: Global Water Engineering



GWE Raptor Waste-to-energy Technology Wins IChemE Energy Award