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Entries in innovation (97)

Wednesday
Jul012015

Tackling China’s Air Pollution Crisis: An Innovative Solution

 

New UNOSSC banner Dev Cha 2013

China reached an undesired landmark in 2013. While the country’s impressive economic growth has amazed the world, it has come at a price: pollution. China recorded record levels of smog in 2013, with some cities suffering air pollution many times above what is acceptable for human health.

This is evidence of the perils of rapid industrialization using non-green technologies. China relies on coal burning, a highly polluting resource, for 70 to 80 per cent of its electricity. It also uses coal for factories and winter heating.

Burning coal causes smog, soot, acid rain, global warming, and toxic air emissions (http://www.ucsusa.org/clean_energy/coalvswind/c01.html). Environmental group Greenpeace claims 83,500 people died prematurely in 2011 from respiratory diseases in Shandong, Inner Mongolia and Shanxi – the top three coal-consuming provinces in China.

Anyone visiting Beijing or other Chinese cities will notice the high levels of smog and how this interferes with access to sunshine and curbs visibility. Worse still for human beings and the environment, this level of pollution causes severe respiratory problems, and has the potential to cause a rise in cancer rates, among other health problems.

Beijing had record pollution levels in January 2013. That haze, according to China’s Ministry of Environmental Protection, covered 1.43 million square kilometers.

Generated by industry and coal-fired power stations, particulate matter (http://www.epa.gov/pm/) or PM, is a complex mix of extremely small particles and liquid droplets. Particle pollution is made up of a number of components, including acids (such as nitrates and sulfates), organic chemicals, metals, and soil or dust particles.

In October 2013, Beijing announced a series of emergency measures to tackle the record high levels of pollution and smog (http://edition.cnn.com/2013/10/23/world/asia/china-beijing-smog-emergency-measures/index.html). The Heavy Air Pollution Contingency Plan uses a color-coded warning system if serious pollution levels occur in three consecutive days. This means kindergartens, primary and middle schools will need to stop classes. Eighty per cent of government cars must come off the roads and private cars can only enter the city on alternate days based on a ballot system. Emergency measures will come into play when the air quality index for fine particulate matter, called PM2.5 (http://www.epa.gov/pmdesignations/faq.htm#0) – very fine particles that lodge in the lungs and are very harmful to human health – exceed 300 micrograms per cubic meter for three days in a row. According to the World Health Organization (WHO), the safe limit for human beings is 20 micrograms (http://www.who.int/mediacentre/factsheets/fs313/en/).

The only serious, long-term solution is to switch to non or low-polluting green energy sources. But, meanwhile, some are coming up with stop-gap measures that also help to educate people about the necessity to do away with this major threat to human health.

Dutch designer Daan Roosegaarde (studioroosegaarde.net) thinks he has a temporary solution to the pollution problem – a “vacuum cleaner” to clean up the sky. And the city of Beijing is taking the solution seriously.

The proposed technology works like this: a system of buried coils of copper produce an ion electrostatic field that attracts smog particles. The particles are magnetized and are drawn downwards, creating a gap of clean air above the coil.

Called the Smog project, it is already under discussion with the mayor of Beijing. An animation video explains how it works: http://studioroosegaarde.net/video/the-smog-project/.

Talking to CNN, Roosegaarde likened the science behind the invention to what happens when “you have a balloon which has static (electricity) and your hair goes toward it. Same with the smog.”

In a deal with the Beijing city government, the technology will be tested in the city’s parks.

Roosegaarde has successfully tested the technology indoors and found it worked in the experiment.

He told CNN: “Beijing is quite good because the smog is quite low, it’s in a valley so there’s not so much wind. It’s a good environment to explore this kind of thing.”

“We’ll be able to purify the air and the challenge is to get on top of the smog so you can see the sun again.”

Roosegaarde thinks that successfully running the experiment in a Beijing park makes a radical statement and shows the benefits of breathing clean air and being able to see the sun on most days.

But he is not deluded that this is the final solution for pollution: “This is not the real answer for smog. The real answer has to do with clean cars, different industry and different lifestyles.”

With many people resigned to the pollution, at least for now, China’s entrepreneurs are making the face masks and air filters people wear to protect their lungs from the pollution more fashionable and appealing to look at, the South China Morning Post reported.

Xiao Lu, a saleswoman at Panfeng Household Products, explained the varying fashion tastes in masks: “Young people tend to like bright colors. Men prefer blue or black masks. Right now, UV proof masks are popular.”

Lu told the newspaper that customers make their decisions based on comfort and price.

Popular brands include Respro (http://respro.com/), Totobobo (totobobo.co.uk) and 3M9010 (http://solutions.3m.com/wps/portal/3M/en_US/3M-PPE-Safety-Solutions/Personal-Protective-Equipment/Products/Product-Catalog/?N=5022986&rt=c3).

But, why not just move out of cities and avoid breathing bad air? Things are not that simple from an economic perspective. The South China Morning Post quoted Rena from Urumqi in China’s western Xinjiang province, who came to Beijing for the better job opportunities.

“Going back to Urumqi means less job opportunities and the air is not necessarily better,” she said. “Staying in Beijing means wearing a mask most days. It’s not very comfortable.

“But I can’t cover my face forever,” she said. “I’d prefer to live in a cleaner environment."

Read more about the harm caused by air pollution and what can be done here: What Are The Causes of Air Pollution and What Can We Do To Prevent It? 

By David South, Development Challenges, South-South Solutions

Published: December 2013

Read more about the impact of air pollution on human health in Beth Gardiner's Choked: The Age of Air Pollution and the Fight for a Cleaner Future (Granta, 2019). 

Beth Gardiner shows off the first galley proof of Choked on Twitter.

Development Challenges, South-South Solutions was launched as an e-newsletter in 2006 by UNDP's South-South Cooperation Unit (now the United Nations Office for South-South Cooperation) based in New York, USA. It led on profiling the rise of the global South as an economic powerhouse and was one of the first regular publications to champion the global South's innovators, entrepreneurs, and pioneers. It tracked the key trends that are now so profoundly reshaping how development is seen and done. This includes the rapid take-up of mobile phones and information technology in the global South (as profiled in the first issue of magazine Southern Innovator), the move to becoming a majority urban world, a growing global innovator culture, and the plethora of solutions being developed in the global South to tackle its problems and improve living conditions and boost human development. The success of the e-newsletter led to the launch of the magazine Southern Innovator.                      

Follow @SouthSouth1

Google Books: https://books.google.co.uk/books?id=hPNcAwAAQBAJ&dq=development+challenges+december+2013&source=gbs_navlinks_s

Slideshare: http://www.slideshare.net/DavidSouth1/development-challenges-december-2013-issue

Southern Innovator Issue 1: https://books.google.co.uk/books?id=Q1O54YSE2BgC&dq=southern+innovator&source=gbs_navlinks_s

Southern Innovator Issue 2: https://books.google.co.uk/books?id=Ty0N969dcssC&dq=southern+innovator&source=gbs_navlinks_s

Southern Innovator Issue 3: https://books.google.co.uk/books?id=AQNt4YmhZagC&dq=southern+innovator&source=gbs_navlinks_s

Southern Innovator Issue 4: https://books.google.co.uk/books?id=9T_n2tA7l4EC&dq=southern+innovator&source=gbs_navlinks_s

Southern Innovator Issue 5: https://books.google.co.uk/books?id=6ILdAgAAQBAJ&dq=southern+innovator&source=gbs_navlinks_s

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This work is licensed under a
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Wednesday
Jul012015

China Pushing Frontiers of Medical Research

New UNOSSC banner Dev Cha 2013

Cutting-edge medical research in China is promising to boost human health and development. Futuristic science is being conducted on a large scale and it is hoped this will increase the pace of discovery.

Around the world, rapid progress is being made in understanding the role played by genes and how they affect our overall health and susceptibility to diseases. Other developments are leading to the possibility of creating replacements for organs and other body parts that have been damaged through accidents, disease or genetic faults – without the need for organ donors.

Medical advances straight out of science fiction could be closer than many believe. By using machines and gene therapy, radical new methods will emerge to deal with damage done to human bodies as a result of accidents or disease. These solutions will become, in time, quicker, smaller and cheaper and will be available to more and more countries. They will spread outwards around the global South just as mobile phones and computing electronics have done.

In China, the government is investing heavily in this cutting-edge research and attracting investment and projects from around the world to increase the pace of progress in these areas.

In September 2013, Reuters reported that a 22-year-old man named Xiaolian in Fuzhou, China had a new nose grown on his forehead to replace his original nose that had been damaged in a car accident. Conventional reconstructive surgery was not possible, so this radical new approach was taken.

The advantages of growing a nose on the patient include a reduced chance of rejection by the body when the new organ is attached. Transplants of body parts from other people come with a high risk of rejection and require many drugs to prevent it. Using skin near where the transplant is to take place, on the face, improves the chances of success and the blood vessels in the forehead offer nourishment to grow the new nose.

The procedure works like this: tissue expanders are placed on the patient’s forehead. As it grows, the doctors cut the mass of tissue into the shape of a nose and cartilage from the patient’s ribs is placed inside to give the nose shape. The new proboscis (http://en.wikipedia.org/wiki/Proboscis) grows under the skin until it is the right size and then transplanted onto the patient’s face where their old nose was.

Many believe this is just the beginning and that in the future replacement organs will be also grown in a lab. And this is where the new medical technology of 3D bioprinting comes into play.

3D printing machines (http://www.k8200.eu/), or fabricators, can create 3D objects based on a design sent from a computer. This concept is now also being applied to biological materials with 3D bioprinters.

Hangzhou Dianzi University of Electronic Science and Technology (hdu.edu.cn) in China launched the Regenovo 3D Bio-printer in August 2013. It prints living tissue and looks like a silver metal frame with various nozzles situated above a platform for printing the tissue. Its makers claim it can print a liver in 40 minutes to an hour or an ear in 50 minutes.

A sheet of hydrogel is placed on the platform and then the bioprinter deposits cells into the hydrogel. As the process is repeated over and over again, layer after layer, a 3D biological structure emerges.

Unique Technology (sinounic.com) in Qingdao, Shandong province has also launched a 3D printer called “Re-human”. It is capable of printing at 15 microns and can operate in temperatures of between 0 and 300 degrees Celsius. Scientists there are working on clinical trials of 3D-printed tissue scaffolds and bones.

China is very advanced in the development of 3D manufacturing technology, and is home to the world’s largest 3D printers, developed by Dalian University of Technology (http://www.dlut.edu.cn/en/). Another Chinese company pioneering this technology is Shaanxi Hengtong Intelligent Machines (http://www.china-rpm.com/english/), which sells various laser-using rapid prototyping machines and 3D machines.

Around the world, bioprinting is currently being pioneered for printing heart valves, ears, artificial bones, joints, vascular tubes, and skin for grafts.

The number of scientific papers mentioning bioprinting tripled between 2008 and 2011 according to Popular Science. But why is this happening? Three things are occurring at once: sophisticated 3D printers are now available, there are significant advances in regenerative medicine, and CAD (computer-aided design) (http://en.wikipedia.org/wiki/Computer-aided_design) software continues to become more advanced.

San Diego, California’s Organovo (organovo.com), a company that designs and creates functional human tissues using 3D bioprinting, has big ambitions for the technology.

“Getting to a whole organ-in-a-box that’s plug-and-play and ready to go, I believe that could happen in my lifetime,” its chief technology officer, Sharon Presnell, told Popular Science.

In the field of gene science, China is also investing significant resources to make rapid progress. China is working to make its genetic research industry into one of the country’s pillar industries.

Beijing Genomics Institute (BGI) (http://www.genomics.cn/en/index) is the world’s largest genome-mapping institute, with more than 1,000 biological analysis devices working with top-of-the-line genome-sequencing machines. What makes BGI different is scale: it can handle data in vast quantities and industrialize its research, according to China Daily.

The China National Genebank in Shenzhen (http://www.nationalgenebank.org/en/index.html), associated with BGI and its Cognitive Genetics Project, is one of the largest gene banks in the world. It has collected the DNA (http://www.biologycorner.com/bio1/DNA.html) samples of some of the world’s smartest people to sequence their genomes and work out which alleles (http://www.sciencedaily.com/articles/a/allele.htm) determine human intelligence.

But what will they do with this information? By doing embryo screening, it will be possible to pick the brightest zygote (http://en.wikipedia.org/wiki/Zygote) and ensure an entire generation’s intelligence is increased by five to 15 IQ (intelligence quotient) points. This could have a significant impact on the country’s economic performance, the researchers believe, and help in the country making more rapid economic and development gains. This line of research is also seen globally as being fraught with ethical dilemmas and is controversial.

But the Chinese researchers believe the country’s economic productivity, business success, international competitiveness and the amount of innovation in the economy could all increase with an IQ boost.

The eggs are fertilized in the lab with the father’s sperm and the embryos are tested until they find the smartest one.

Embryo analysis could take place on a large scale in a few years. But it is not just better brains that are possible with this technique: choices can be made about hair and eye colors, and physical attributes such as body shape.

This level of research is benefiting from vast investments in higher education in China.

And it isn’t just human beings receiving the vast investment in gene research.

To help agriculture and agribusiness, the National Center for Gene Research (NCGR) (ncgr.ac.cn) is mapping and sequencing the rice genome, and genomes of other organisms. Since 2007, it has been using the latest generation sequencing technology to map the rice genome to identify common genetic factors. It has 50 million base pairs of rice genomic DNA sequences in its public database. It is hoped this will lead to more robust rice varieties that can withstand disease and climate fluctuations and help meet the food needs of a growing global population.

By David South, Development Challenges, South-South Solutions

Published: November 2013

Development Challenges, South-South Solutions was launched as an e-newsletter in 2006 by UNDP's South-South Cooperation Unit (now the United Nations Office for South-South Cooperation) based in New York, USA. It led on profiling the rise of the global South as an economic powerhouse and was one of the first regular publications to champion the global South's innovators, entrepreneurs, and pioneers. It tracked the key trends that are now so profoundly reshaping how development is seen and done. This includes the rapid take-up of mobile phones and information technology in the global South (as profiled in the first issue of magazine Southern Innovator), the move to becoming a majority urban world, a growing global innovator culture, and the plethora of solutions being developed in the global South to tackle its problems and improve living conditions and boost human development. The success of the e-newsletter led to the launch of the magazine Southern Innovator.  

Follow @SouthSouth1

Google Books: https://books.google.co.uk/books?id=2fdcAwAAQBAJ&dq=development+challenges+november+2013&source=gbs_navlinks_s

Slideshare: http://www.slideshare.net/DavidSouth1/development-challenges-november-2013-issue

Southern Innovator Issue 1: https://books.google.co.uk/books?id=Q1O54YSE2BgC&dq=southern+innovator&source=gbs_navlinks_s

Southern Innovator Issue 2: https://books.google.co.uk/books?id=Ty0N969dcssC&dq=southern+innovator&source=gbs_navlinks_s

Southern Innovator Issue 3: https://books.google.co.uk/books?id=AQNt4YmhZagC&dq=southern+innovator&source=gbs_navlinks_s

Southern Innovator Issue 4: https://books.google.co.uk/books?id=9T_n2tA7l4EC&dq=southern+innovator&source=gbs_navlinks_s

Southern Innovator Issue 5: https://books.google.co.uk/books?id=6ILdAgAAQBAJ&dq=southern+innovator&source=gbs_navlinks_s

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This work is licensed under a
Creative Commons Attribution-Noncommercial-No Derivative Works 3.0 License.

 

 

Tuesday
Jun302015

New 3D Technology Makes Innovation Breakthrough and Puts Mind over Matter

 

Revolutions in technology are placing more and more power into the hands of the individual, and 3D printing and fabrication machines are opening a whole new chapter.

These devices come in many forms, but they all do one thing: they can manufacture pretty well any three-dimensional object on the spot, from digital plans. These machines come in many sizes, from factory scale to smaller, home versions which are no bigger than personal computer printers, such as the well-known MakerBot Replicator 2 (makerbot.com).

3D printers introduce sophisticated precision manufacturing to the individual much in the same way the personal computer and the Internet have empowered people to make their own software, build websites and start online businesses.

A pioneering educational innovation in Chile is taking the technology even further, in a way that is truly mind-blowing. Thinker Thing (thinkerthing.com) promises to transform the way people interact with this new technology. “We have built a machine that will allow you to make real objects with your mind,” its website states.

And, it wants to do more: “We want to use our invention to light a fire of inspiration throughout the remote and often disadvantaged schools of South America and we can do this with your help.”

Thinker Thing allows the user to wear a headset and communicate through brain waves to the 3D printer. The printer then manufactures a three-dimensional model of the thoughts. These can be squiggly shapes or even, it is hoped, more sophisticated forms.

Thinker Thing’s Chilean Chief Technology Officer is George Laskowsky. Laskowsky has a games console engineering background and was a research assistant in charge of high-energy particle experiments.

The Chilean government is funding this experiment to help children to improve their creative skills. The idea is to use the technology to eliminate the technical side of creating objects and focus the effort on the creative thought process. Thinker Thing was selected from more than 1,400 applicants to participate in the prestigious global accelerator program, “Start Up Chile” (http://startupchile.org). Start-Up Chile is a program created by the Chilean government that seeks to attract early-stage high potential entrepreneurs to develop startups using Chile as a platform to go global, in line with the national goal of converting Chile into the innovation and entrepreneurship hub of Latin America.

Based in Santiago, Chile, Laskowsky is seeking support for further development on IndieGoGo (http://www.indiegogo.com/projects/children-creating-real-objects-with-their-mind), an international crowdfunding platform for projects.

The plan is to tour Thinker Thing all around Chile and use the science, art and engineering principles behind the invention to help very young children in remote rural regions to learn through understanding the project. Its creators also hope to take the exhibition – called the Monster Dreamer School Outreach Program and the Fantastical Mind Creatures of Chile Exhibition – on the road and show it in major global cities.

The children are being asked to imagine fantastical creatures that will then be made into 3D forms with the machine. The idea is to then sell these 3D creatures to supporters of the project to help fund the initiative. As well, these creatures will go on display in an exhibition to help educate visitors about Chile’s children and their communities.

To increase interest, exclusive photographic prints and limited edition figurines are available of the creatures the children create.

The prototype uses what is called an EmotivEPOC, basically a wireless neuroheadset collecting signals from the user’s brain. In operation, the software allows users to make 3D models with the power of thought which are then made into a plastic model using a MakerBot Industries Replicator.

This is experimental stuff and neurotechnology is in its early stages. It can detect simple emotions such as excitement or boredom and cognitive thoughts such as push and pull. Despite being in its early stages, the technology can evolve a 3D object over a number of steps by detecting the user’s emotional response to design changes.

Thinker Thing has been working alongside neuroscientists to understand the workings of the brain. Amazingly, in one experiment they were able to get a person to control the leg of a cockroach using their own thoughts. Called the Salt Shaker (http://www.thinkerthing.com/about-2/salt-shaker/), it is an experimental kit for young students and hobbyists that allows them to take control of a biological limb quickly and simply.

The 3D printing revolution is energizing for large and small-scale manufacturers alike. It means a business can now engage in precision manufacturing of products and spare parts quickly. It means it is possible to download from the Internet plans for new innovations and manufacture them within minutes. It also means communities off the mainstream supply line can make what they need and repair machinery without needing to wait weeks or months for items to be shipped from afar or spend vast sums on shipping costs.

The Fab Labs project based at the Massachusetts Institute of Technology (MIT) has been at the forefront of pioneering and prototyping this technology, including running testing labs across the global South to prove the relevance of the technology to the world’s poorest communities.

As of 2012, these include Fab Lab Afghanistan (http://www.fablab.af/), in Chile the FabLab Santiago (www.designlab.uai/fablab), Fab Lab Egypt (www.fablab-egypt.com), in Colombia the FabLab Medellin (http://www.fablabcolombia.com), in Ghana the Takoradi Technical Institute (http://ttifab.wikispaces.com/How+to+Use+the+TTI+Fab+Lab+Wiki), in India at various locations, Indonesia’s HONFablab (http://honfablab.org), ARO FabLab Kenya West (http://www.fablab.co.ke), and in Peru, South Africa, Suriname and many more are in the works (http://fab.cba.mit.edu/about/labs/).

If Thinker Thing has its way, maybe people in the future will say “I think, therefore I print!”

By David South, Development Challenges, South-South Solutions

Published: August 2013

Development Challenges, South-South Solutions was launched as an e-newsletter in 2006 by UNDP's South-South Cooperation Unit (now the United Nations Office for South-South Cooperation) based in New York, USA. It led on profiling the rise of the global South as an economic powerhouse and was one of the first regular publications to champion the global South's innovators, entrepreneurs, and pioneers. It tracked the key trends that are now so profoundly reshaping how development is seen and done. This includes the rapid take-up of mobile phones and information technology in the global South (as profiled in the first issue of magazine Southern Innovator), the move to becoming a majority urban world, a growing global innovator culture, and the plethora of solutions being developed in the global South to tackle its problems and improve living conditions and boost human development. The success of the e-newsletter led to the launch of the magazine Southern Innovator.  

Follow @SouthSouth1

Google Books: https://books.google.co.uk/books?id=YfRcAwAAQBAJ&dq=development+challenges+august+2013&source=gbs_navlinks_s

Slideshare: http://www.slideshare.net/DavidSouth1/development-challenges-august-2013-issue

Southern Innovator Issue 1: https://books.google.co.uk/books?id=Q1O54YSE2BgC&dq=southern+innovator&source=gbs_navlinks_s

Southern Innovator Issue 2: https://books.google.co.uk/books?id=Ty0N969dcssC&dq=southern+innovator&source=gbs_navlinks_s

Southern Innovator Issue 3: https://books.google.co.uk/books?id=AQNt4YmhZagC&dq=southern+innovator&source=gbs_navlinks_s

Southern Innovator Issue 4: https://books.google.co.uk/books?id=9T_n2tA7l4EC&dq=southern+innovator&source=gbs_navlinks_s

Southern Innovator Issue 5: https://books.google.co.uk/books?id=6ILdAgAAQBAJ&dq=southern+innovator&source=gbs_navlinks_s

Creative Commons License
This work is licensed under a
Creative Commons Attribution-Noncommercial-No Derivative Works 3.0 License.

 

Tuesday
Jun302015

African Innovators Celebrated in Prize

 

Innovation is increasingly being recognized as the key to tackling long-standing development problems in Africa, as well as across the developing and developed world. While it is easy to draw up a list of challenges facing the global South, it takes a special person to see not problems but solutions.

Innovation tends to mean fresh thinking brought to bear to old problems, or completely radical new technologies, insights and ways of doing things that are transformative.

The Oslo Manual for measuring innovation (http://www.oecd.org/innovation/inno/oslomanualguidelinesforcollectingandinterpretinginnovationdata3rdedition.htm) has defined four types of innovation: product innovation, process innovation, marketing innovation and organizational innovation (OECD).

Product innovation is a good or service that is new or significantly improved. This includes significant improvements in technical specifications, components and materials, software in the product, user friendliness or other functional characteristics. Process innovation is a new or significantly improved production or delivery method. This includes significant changes in techniques, equipment and/or software. Marketing innovation is defined as a new marketing method involving significant changes in product design or packaging, product placement, product promotion or pricing. And finally, organizational innovation is a new organizational method in business practices, workplace organization or external relations.

How quickly these can be brought to the marketplace, and the level of innovation in society, will be critical to a country’s success in the coming decade, according to the Organization for Economic Cooperation and Development (OECD). Importantly, innovation is being seen as the big driver of economic progress and well-being and the best way to deal with the plethora of challenges facing human health and the environment.

As an example, in the past decade, communications innovation has given more and more of the world’s population access to mobile phones and the Internet. This has led to the success of many new companies, from the search engine giant Google to multiple software innovations such as Kenya’s M-Pesa mobile phone banking application (http://www.safaricom.co.ke/personal/m-pesa/m-pesa-services-tariffs/relax-you-have-got-m-pesa), to small and innovative companies spreading the innovation bug such as Pico Crickets (http://www.picocricket.com/) or the Raspberry Pi (http://www.raspberrypi.org/).

As the OECD has said, “Not only has innovation moved to centre stage in economic policymaking, but there is a realization that a coordinated, coherent, ‘whole of government’ approach is required.

“Even countries that have generally refrained from active industrial policy in recent years now seek new ways to improve the environment for innovation in order to boost productivity and growth. Today, innovation performance is a crucial determinant of competitiveness and national progress.”

In the past, African innovators mostly went unacknowledged, unsupported and unrecognized. But this is changing, as new resources come online to support, finance, encourage and champion African innovators. Until very recently, people outside the continent heard little positive news about what was happening there. But the African innovator story is an inspiration to people around the world.

The Innovation Prize for Africa (http://innovationprizeforafrica.org), begun in 2011, awards US $100,000 for the top innovation that matches its criteria of marketability, originality, scalability, social impact and business potential.

The prize aims to encourage people to come up with practical solutions to the continent’s long-standing problems. This year’s prize received 900 applications from 45 countries.

The 2013 prize went to the South Africa-based AgriProtein (http://www.agriprotein.com) team for an innovation that uses waste and fly larvae to produce animal feed. The solution collects biodegradable waste and then feeds it to flies. The larvae the flies produce are then ground into a protein which is used as a feed for animals. Not only does this approach improve the nutritional quality of the feed, it also lowers the cost for African processors and farmers.

This year’s finalists offer a mixed bag of innovations, including creative ways to find new energy sources, improving access to clean water and preventing diseases.

Joining a clutch of other South African finalists, Dr. Dudley Jackson has created the SavvyLoo, a waterless toilet for use in rural areas and makeshift settlements. It separates the waste into liquids and solids to reduce the risk of disease, odour, and harm to the environment and eases waste removal.

Another South African, Professor Eugene Cloete, is the inventor of the TBag Water Filter that cleverly uses material recovered from tea bags to filter polluted water until it is completely safe to drink.

When it comes to the thorny issue of finding new energy sources for an energy-hungry continent, the prize unearthed some interesting solutions. One is Justus Nwaoga, a Nigerian finalist, who developed a way to turn a common weed into a source of renewable solar energy.

Nwaoga, a researcher from the Department of Pharmaceutical and Medicinal Chemistry at the University of Nigeria Nsukka (http://unn.edu.ng/), found the common tropical weed Mimosa pudica (http://en.wikipedia.org/wiki/Mimosa_pudica) surprisingly provides a way to tap into the sun’s energy.

The weed has leaves which fold in on themselves when touched, but spring quickly back into their normal form when exposed to daylight. The plant opens up in the morning and closes in the evening – an indicator of how sensitive it is to sunlight.

Nwaoga began to experiment with the plant, subjecting it to artificial light at night to see if the leaves would open up again. But they didn’t. He came to the conclusion there were properties in the leaves that only responded to natural, solar light. He further concluded it had something to do with electrical transmission in the leaves. He isolated the element that was making the leaves respond to solar light, finding it more sensitive than the silicon solar cell used in solar panels.

Other innovators recognized by the prize include a Tunisian research and development startup called Saphon Energy (http://www.saphonenergy.com/), which makes bladeless wind turbines, and Muna Majoud Mahoamed Ahmed from Sudan, who has created the Agroforestry Model Farm in Khartoum.

“We see a strong trend emerging of innovations that have significant social impact for Africa,” Dr.Francois Bonnici, director of the Bertha Centre for Social Innovation at the University of Cape Town’s Graduate School of Business, told Ventures Africa.

The call for applications for the 2014 Prize will be announced in July 2013.

By David South, Development Challenges, South-South Solutions

Published: June 2013

Development Challenges, South-South Solutions was launched as an e-newsletter in 2006 by UNDP's South-South Cooperation Unit (now the United Nations Office for South-South Cooperation) based in New York, USA. It led on profiling the rise of the global South as an economic powerhouse and was one of the first regular publications to champion the global South's innovators, entrepreneurs, and pioneers. It tracked the key trends that are now so profoundly reshaping how development is seen and done. This includes the rapid take-up of mobile phones and information technology in the global South (as profiled in the first issue of magazine Southern Innovator), the move to becoming a majority urban world, a growing global innovator culture, and the plethora of solutions being developed in the global South to tackle its problems and improve living conditions and boost human development. The success of the e-newsletter led to the launch of the magazine Southern Innovator.  

Follow @SouthSouth1

Google Books: https://books.google.co.uk/books?id=HfZcAwAAQBAJ&dq=development+challenges+june+2013&source=gbs_navlinks_s

Slideshare: http://www.slideshare.net/DavidSouth1/development-challenges-june-2013-issue

Southern Innovator Issue 1: https://books.google.co.uk/books?id=Q1O54YSE2BgC&dq=southern+innovator&source=gbs_navlinks_s

Southern Innovator Issue 2: https://books.google.co.uk/books?id=Ty0N969dcssC&dq=southern+innovator&source=gbs_navlinks_s

Southern Innovator Issue 3: https://books.google.co.uk/books?id=AQNt4YmhZagC&dq=southern+innovator&source=gbs_navlinks_s

Southern Innovator Issue 4: https://books.google.co.uk/books?id=9T_n2tA7l4EC&dq=southern+innovator&source=gbs_navlinks_s

Southern Innovator Issue 5: https://books.google.co.uk/books?id=6ILdAgAAQBAJ&dq=southern+innovator&source=gbs_navlinks_s

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This work is licensed under a
Creative Commons Attribution-Noncommercial-No Derivative Works 3.0 License.

Tuesday
Jun302015

New Beer Helping to Protect Elephants

 

How to match the often conflicting goals of protecting animal habitats and supporting local economies? One clever solution may draw amusement but is actually a sharp marketing strategy to get attention for a product that is helping to preserve the elephants of Thailand’s Golden Triangle (http://en.wikipedia.org/wiki/Golden_Triangle_(Southeast_Asia).

A beer flavored with a special ingredient – coffee beans that have passed through elephants – is generating profits that are plowed back into improving health services for the animals. The coffee beans excreted by elephants are roasted and turned into a high-quality coffee by a company in Thailand; this coffee is then used by a Japanese company to make a special beer brand that is getting attention and winning rave reviews.

The elephant dung coffee beans used in the beer are called Black Ivory (http://www.blackivorycoffee.com) and come from Thailand’s Golden Triangle Asian Elephant Foundation (http://www.helpingelephants.org). According to The Drinks Business, the coffee beans retail for US $100 per 35 grams.

The beans are of the Thai Arabica variety and grow at an elevation of 1,500 metres. Elephants consume the coffee cherries and excrete the beans as part of their diet. Once the elephants have excreted the beans in their faeces they are harvested, processed, sun dried and roasted.

It takes 10,000 beans to make a kilogram of roasted coffee, according to the Black Ivory website. A total of 33 kilograms of coffee cherries are consumed by the elephants to make a kilogram of the Black Ivory coffee.

Elephants in Thailand are used for various activties, from heavy work to providing rides for tourists. The riders of the elephants – called mahouts (http://en.wikipedia.org/wiki/Mahout) – and their wives also benefit from the manufacturing and sale of the coffee. The income is used to pay for health costs, school fees, food and clothing.

Additionally, 8 per cent of the proceeds from the sale of the coffee beans pays for a veterinarian to provide care to the elephants. The money is also used to pay for their medicine and the setting up of a laboratory.

Elephants are much-revered in Thailand and feature in the country’s national iconography. They are listed as Protected Animals under Thailand’s Conservation Act 1992 (FAO). Many believe they should be classified as endangered. The last survey on the population was conducted in 1991 and elephant numbers were recorded as 1,900 (FAO).

The main threat to elephants comes from humans – in the form of poaching for the animals’ ivory tusks, their abuse in begging on the streets, and the destruction of forests where the elephants live.

The natural habitat and feeding grounds for the elephants have shrunk over the past decades. It is estimated the forest area in Thailand shrank from 80 per cent to 20 per cent between 1957 and 1992. Causes include major infrastructure projects, increasing farmland and the building of large resorts, all encroaching on the elephants’ territory. Limited space means elephants increasingly come into conflict with humans and this can lead to them being poisoned or killed.

But the success of the Japanese-brewed Kono Kuro beer is creating a new funding source for helping the elephants and doing some good.

The beer is brewed by Sankt Gallen Brewery (http://www.sanktgallenbrewery.com) in Kanagawa, Japan using the Black Ivory coffee beans, imparting the beer with an earthy flavour. It may sound like a gimmick, but consumers have remarked on the beer’s distinctive taste, and sales do not lie: it has been a quick success, selling out within minutes of its launch in Japan.

The beer comes in dark bottles with a sandy coloured label elegantly illustrated with pictograms showing the process of turning the beans excreted by the elephants into beer. It is a humorous visual tale that makes the label stand out from other beer brands.

Brewer Sankt Gallen calls it a “chocolate stout” because of its rich, earthy flavour (it does not contain any chocolate, however).

Although bottles of the stout sold out after going on sale on the Sankt Gallen website, the brewery has said that it has plans to put the beer on tap at its new shop, which opened in Tokyo recently.

By David South, Development Challenges, South-South Solutions

Published: June 2013

Development Challenges, South-South Solutions was launched as an e-newsletter in 2006 by UNDP's South-South Cooperation Unit (now the United Nations Office for South-South Cooperation) based in New York, USA. It led on profiling the rise of the global South as an economic powerhouse and was one of the first regular publications to champion the global South's innovators, entrepreneurs, and pioneers. It tracked the key trends that are now so profoundly reshaping how development is seen and done. This includes the rapid take-up of mobile phones and information technology in the global South (as profiled in the first issue of magazine Southern Innovator), the move to becoming a majority urban world, a growing global innovator culture, and the plethora of solutions being developed in the global South to tackle its problems and improve living conditions and boost human development. The success of the e-newsletter led to the launch of the magazine Southern Innovator.  

Follow @SouthSouth1

Google Books: https://books.google.co.uk/books?id=HfZcAwAAQBAJ&dq=development+challenges+june+2013&source=gbs_navlinks_s

Slideshare: http://www.slideshare.net/DavidSouth1/development-challenges-june-2013-issue

Southern Innovator Issue 1: https://books.google.co.uk/books?id=Q1O54YSE2BgC&dq=southern+innovator&source=gbs_navlinks_s

Southern Innovator Issue 2: https://books.google.co.uk/books?id=Ty0N969dcssC&dq=southern+innovator&source=gbs_navlinks_s

Southern Innovator Issue 3: https://books.google.co.uk/books?id=AQNt4YmhZagC&dq=southern+innovator&source=gbs_navlinks_s

Southern Innovator Issue 4: https://books.google.co.uk/books?id=9T_n2tA7l4EC&dq=southern+innovator&source=gbs_navlinks_s

Southern Innovator Issue 5: https://books.google.co.uk/books?id=6ILdAgAAQBAJ&dq=southern+innovator&source=gbs_navlinks_s

Creative Commons License
This work is licensed under a
Creative Commons Attribution-Noncommercial-No Derivative Works 3.0 License.

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