Mail & Guardian

A different kind of power plant

This invasive weed clogs our dams and rivers but in Kenya, it’s become the next big thing in renewable energy

- Gilbert Nakweya

It is 9am on the shores of Lake Victoria’s Winam Gulf in Kenya’s Kisumu County. Tourists are arriving on the beach in droves, preparing to spend the day sunbathing and riding boats. Behind them, enormous marabou storks on spindly grey legs are pacing the beach, waiting for scraps. Nearby, a group of women is scanning the horizon, looking for the fishing boats that will soon arrive with their daily catch.

But there’s something else on the horizon too, a sheet of water hyacinth pulled over the surface of the lake, the floating plant’s leaves extending like an oversized green shag carpet, rolling gently in the wind.

“We hope that the boats arrive before the hyacinth covers this area, [because] it will be difficult for [the fishermen] to access the dry land and get us fish,” says Elizabeth Keita, a fishmonger in the village of Dunga, as she eyes the bobbing green sheet in the distance.

Water hyacinth, an aquatic plant native to South America, first appeared in South Africa in the early 1900s. Scientists there have dubbed it the “world’s worst aquatic weed” after it spread from the Cape in the early 1900s and now clogs up major dams and rivers.

In East Africa, the nefarious invader arrived with Belgian colonists in Rwanda, who liked the look of its glossy leaves and delicate purple flowers floating in their garden ponds.

But by the 1980s, it had slipped out of Rwanda via the Kagera River and made its way downstream to Lake Victoria.

There, with no natural predators and perfect temperatur­e conditions, the plant began gobbling up open space, choking off fishing routes and providing a welcomed new habitat for disease-carrying mosquitos. For women like Keita, it has meant dwindling income, as the boats that once brought slippery silver lake fish to shore by the hundreds struggle to navigate the clogged waters.

But water hyacinth isn’t her only headache. Like most women here, to smoke the fish she buys, Keita must gather massive quantities of firewood, sometimes walking as far as 10km each way to collect enough kindling to complete her work. And each day as she cooks, she breathes in the thick, grey woodfire smoke.

“I have had chest complicati­ons a number of times in the last years,” says Keita, who is the chairperso­n of the local fishmonger­s’ associatio­n.

Indeed, that’s not unusual in Kenya.

About three out of four families in the country depend on wood or charcoal to cook their daily meals, and this rate is even higher in rural areas, Kenya’s latest demographi­c and health survey shows.

Using solid fuels like these for cooking increases indoor pollution. The World Health Organisati­on estimates that about 14 300 Kenyans die annually from conditions linked to indoor air pollution — most of which is caused by cooking and heating sources, the most recent estimates released in 2009 show.

Outside Keita’s home on the shores of Lake Victoria, piles of cleared water hyacinth left to rot were a common site. But buried in those decaying waxy leaves was a renewable energy gold mine.

It turns out the floating plant isn’t just good at being abundant — its foliage also contains a high ratio of carbon to nitrogen. It’s a magic combinatio­n that has captivated researcher­s’ imaginatio­ns since as early as the 1980s when, across the world, they began to explore its potential as a biofuel. Just about 4kg of the dried plant was enough to cater for a large family’s daily energy needs, early research predicted.

In 2014, Nigerian academics announced they got better yields of the gas when the invasive plant was mixed with sanitised chicken manure at a 2014 thermodyna­mics conference. A few years later, Kenyan scientists confirmed what their Nigerian peers and others had already found: animal dung worked to power charge the process of converting the weed into gas. In India, scientists took this idea and ran with it, mixing water hyacinth with the more famous Cannabis sativa, the same family of plants that marijuana comes from, as a proposed answer for periodic shortages of cow dung.

In 2018, the technology finally came to Dunga in a move that promised to be a two-for-one solution to the dual menaces of the water hyacinth and dependence on firewood. The community received two donated biogas digesters — machines that would transform a mix of water hyacinth and cow dung into biogas for cooking, as well as material for other household tasks such as incubating chicks and purifying water.

The “digesters” work a bit like a stomach. Food goes in one end — think of it as a mouth — and over the next 20 to 30 days, it ferments and breaks down, giving off gas that comes out the other end. From there, the clean-burning gas is piped to the point of use, just like traditiona­l gas in your gas stove at home.

Currently, there are about 50 of these biogas digesters slated for Kenya. In Dunga, some are connected to multiple family stoves so that altogether they produce enough gas to serve about 60% of the village’s population.

Kenya’s Biogas Internatio­nal company installed the stoves in partnershi­p with the pharmaceut­ical firm Astrazenec­a and the University of Cambridge’s Institute for Sustainabi­lity.

The project will test whether biogas can provide an effective alternativ­e to firewood and charcoal in rural Kenyan communitie­s.

The programme is only months old but, anecdotall­y, it seems to be working. Keita says the members of her fishmonger­s’ associatio­n are already getting sick less often. And because they don’t have to devote hours a day to walking long distances to collect firewood, they’re making more money as well.

Muindi Kanyiva is an epidemiolo­gist and air pollution research fellow from the African Population and Health Research Centre in Nairobi. She told Bhekisisa that families who switch to the smokeless cooking method could expect to see fewer respirator­y issues and even some forms of cancer in the long run.

That’s because half of Kenyan households prepare their meals inside their homes and, with a dependance on wood, charcoal and even paraffin, that makes for smoky conditions, but breathing problems like Keita’s aren’t the only risk.

Where there’s smoke, there’s PAHS — polycyclic aromatic hydrocarbo­ns, a carcinogen released when certain materials such as wood, maize cobs or cow dung burn, researcher­s recently told Bhekisisa.

Women, young girls and children are particular­ly exposed because they spend so much time in the kitchen. Internatio­nally, scientists are still exploring whether PAHS are linked to pockets of high rates of oesophagea­l cancer in the country.

How much better Dunga’s donated biogas stoves will be for the community’s health still needs more research, says Dominic Kahumbu Wanjihia, Biogas Internatio­nal’s chief executive. But unless the price of the digesters drops, it’s pretty clear that most communitie­s will never be able to afford the machines, which sell for the massive sum of about $750 (R10 700).

Affordabil­ity is a challenge Kanyiva says is worth addressing, given the massive health and environmen­tal dangers posed by “dirty” fuels such as wood, charcoal and kerosene. If biogas could become affordable on a large scale, she writes, it “would be life-changing for millions on the African continent and beyond”.

For Keita, meanwhile, one of the most unexpected benefits of the stoves has been the way they have changed her view of water hyacinth. For years, she has regarded it as little more than a menace. But now, she says with surprise, “the hyacinth is becoming a useful resource!”

This story was produced by the M&G Centre for Health Journalism, Bhekisisa www.bhekisisa.org

 ??  ?? Photo: Yasuyoshi Chiba/afp
Photo: Yasuyoshi Chiba/afp
 ??  ?? Green machines: Water hyacinth isn’t just good at being abundant – its foliage also contains a high ratio of carbon to nitrogen. The combinatio­n makes it ideal as a renewable gas source via bio digesters (below) like this one.
Green machines: Water hyacinth isn’t just good at being abundant – its foliage also contains a high ratio of carbon to nitrogen. The combinatio­n makes it ideal as a renewable gas source via bio digesters (below) like this one.

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