Showing posts with label supply. Show all posts
Showing posts with label supply. Show all posts

Japan's Rare Earth Recycling Efforts

Japan is the world's leading importer of rare earth elements or REEs. To compensate for its lack of indigenous REEs, the Japanese government and some of the country's leading companies are working on REEs recycling programs. In 2010 Hitachi first revealed its REEs recycling program than in 2012 Honda announced that it would be launching a program of its own.

One of the primary reason Hitachi has developed the system is to reduce it reliance on China's supply of REEs (China has a virtual monopoly on REEs producing 97 per cent of the world's supply). Hitachi is hopeful that the recycled minerals will supply 10 per cent of its REE needs.

REEs are commonly used to manufacture important renewable energy infrastructure including wind turbines, solar panels. They are also instrumental in the manufacturing of electric vehicles. They are also used for common technologies like smartphones and computers.

In 2012, the Japanese government offered a total of $100 million in subsidies. The government sees real opportunties in the nation's waste. According to Japan's Environment Ministry, the country discards 650,000 tons of products containing REEs. The government believes that they can recycle 280,000 tons of rare earth and other metal resources which are worth ¥84.4 billion [$1.03 billion].

Tokyo-based Hitachi has a REE recycling plan that is cost effective and less environmentally harmful than traditional methods. In 2010, the Japanese electronics and engineering company announced that it was developing machinery for the purpose of recycling REEs. Its mineral harvesting machinery came online in 2013, and is capable of extracting about 100 rare earth magnets per hour from old hard disk drives. The new automated process is eight times faster than traditional manual approaches. The company also indicated it has developed more efficient cutting and demagnetising equipment designed to extract rare earth magnets from compressors.

Hitachi's new system is both more cost effective and less environmentally destructive than traditional methods of extracting rare earth metals from discarded machinery. Rather than use acids and chemicals the company uses a new dry extraction method.

In 2012 Honda and Japan Metals & Chemicals Co. started the first mass-production process to recapture rare earth metals from used Honda parts. In particular, Honda is focusing on used nickel-metal hydride batteries (NiMH). According to Honda their process can recover 80 percent of rare earth metals contained in the used NiMH batteries.

While Japanese companies are looking towards recycling of REEs, South Korean company Samsung is seeking alternatives. Through its Future Technology Cultivation Project, the massive manufacturing conglomerate is financing 27 projects, including research on materials that can substitute the use of rare earths.

While Hitachi is actively recycling REEs, they are also looking into developing REE free technology.  In 2012 they produced an energy-efficient motor that does not use rare earth elements.

© 2013, Richard Matthews. All rights reserved.

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Rare Earth Recycling In Europe

Nowhere is the recycling of Rare Earth Elements (REEs) more of an active concern than in Europe. REEs recycling in increasingly being seen as an important way of harvesting these scarce metals. China has largely cornered the market in REEs with an estimated 35-40 percent of global reserves. With restrictions on their export from China and increasing worldwide demand, REEs recycling is seen as a way around import dependence. REEs include 17 metals essential in the production of many high-tech products including electric cars and wind turbines.

In February 2012, the European Commission highlighted the importance of technological innovation including reycling as a means of securing raw materials. In September 2011 resolution, the European Parliament specifically pointed to the importance of REE recycling.

REE recycling is still in its infancy and a number of technological and regulatory challenges will need to be addressed.

For more information on the issue of REEs recycling see the document entitled ‘Rare earth elements and recycling possibilities‘, which provides a comprehensive overview of what REEs are, and the current challenges faced by the EU with regard to REE supply and recycling.

© 2013, Richard Matthews. All rights reserved.

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Video - World Water Day: What Individuals Can Do



United Nations Regional Information Centre (UNRIC) - Video in English created by United Kingdom based students at the University of Creative Arts in Farnham, for World Water Day. The contribution is part of UNRIC's partnership with Fabrica.

To help promote a series of UN International Days, prestigious European design schools and academies produce short videos part of a partnership between UNRIC and Fabrica, the Benetton research centre on communication.

The schools belong to a network established by Fabrica to promote youth creativity. Video content produced by the students is promoted by the UN and showcased on Benetton storefront Live Windows.

Author: Rory Tatton
Tutor: Craig Burston
Institute: UCA Farnham, United Kingdom
Cover: Gastón Lisak (Fabrica resident)
Music: Jhon William Castaño (Fabrica resident)


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Video: World Water Day: Problems and Solutions Animated Short


This animated short video offers a condensed review of water related issues in the developing world and what we can do to address it.


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Video - The Big Thirst the Business of Water



The golden age of water—where water is unlimited, safe, and free—is over. Award-winning investigative journalist Charles Fishman reports on his three-year odyssey to uncover how the world of water is changing and the enormous implications for each of us, no matter where we live. This video briefly explores the cutting edge of waters bio-chemistry. Our relationship with water is one of the deciding things of the next century.

Water is not only a matter of life and death. Dirty water is not only deadly, treating water-born illnesses is a very expensive proposition. India spends more on diarrhea than the total economic output of half of the nations in the world.

The US uses more water in a day than oil throughout an average year, and more water in four days than the entire world uses oil in a year. However, the US uses less water than it did in 1980. In the last 25 years the country has more than doubled its water productivity. This makes the point that it is possible to be a modern economy and use substantially less water.

We need to pay attention to what businesses are doing, this includes both risks and the opportunities. Positive change starts with putting a price on water. This will not only reduce use it will drive innovation. Fishman goes on to cite three examples of water innovation by businesses around the world.

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Documentary - Water on the Table

This documentary about water was the Winner of the Best Canadian Feature Film at the 2010 Planet in Focus International Film and Video Festival.  The film features Maude Barlow, who has earned the nickname “Water Warrior.” She is the National Chairperson for the Council of Canadians and former Senior Advisor on Water at the United Nations General Assembly. Maude cares about the environment and she won’t back down from a fight with corporations who threaten the access to clean and free water.

Water sustains life, but in many countries water has also become a commodity. Barlow wants to put a stop to considering water a profit-generating good and have it declared a human right. Marshall takes us on the road with Barlow as she works to preserve Canada’s freshwater systems. We travel with them to Canadian and international speaking engagements and get to watch as they crash political meetings. Marshall’s character-driven social commentary is a visually stunning meditation on the beauty and all-encompassing need for clean water.

For more information click here.

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The Carbon Trust's Water Standard

The Carbon Trust's Water Standard is a new resource that helps companies to measure and manage their water usage. Carbon Trust worked with Sainsbury’s, Coca-Cola Enterprises, Sunlight and Branston — the four companies that have already adopted the Carbon Trust Water Standard — to develop the methodology for the new standard.

To achieve the Carbon Trust Water Standard organizations must:


  • Measure water input from mains supply, surface water abstraction, groundwater abstraction and rainwater collection. 
  •  Measure water output as trade effluent. Demonstrate reductions over time in both water inputs and wastewater produced. This can be done either in absolute terms, or in water intensity reduction in relation to turnover or product. 
  •  Achieve a passing score of 60 percent on a qualitative assessment of water governance, measurement and management. 
For more information click here.

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