Treated Wastewater Is a Growing Source of Irrigation in Chile’s Arid North

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Water & Sanitation

Alfalfa farmer Dionisio Antiquera stands in front of one of the wastewater treatment ponds at the modernized plant in Cerrillos de Tamaya, a rural community in the Coquimbo region of northern Chile. The thousands of liters captured from the sewers are converted into clear liquid ready for reuse in local small-scale agriculture. CREDIT : Orlando Milesi / IPS

Alfalfa farmer Dionisio Antiquera stands in front of one of the wastewater treatment ponds at the modernized plant in Cerrillos de Tamaya, a rural community in the Coquimbo region of northern Chile. The thousands of liters captured from the sewers are converted into clear liquid ready for reuse in local small-scale agriculture. CREDIT : Orlando Milesi / IPS

COQUIMBO, Chile , Sep 18 2023 (IPS) – The reuse of treated wastewater in vulnerable rural areas of Chile’s arid north is emerging as a new resource for the inhabitants of this long, narrow South American country.


The Coquimbo region, just south of the Atacama Desert, one of the driest in the world, is suffering from a severe drought that has lasted 15 years.

According to data from the Meteorological Directorate, a regional station located in the Andes Mountains measured 30.3 millimeters (mm) of rain per square meter this year as of Sept. 10, compared to 213 mm in all of 2022.

“Rural localities today are already reusing wastewater or gray water. This is going to happen, with or without us, with or without a law. The need for water is so great that the communities are accepting the use of treated wastewater.” — Gerardo Díaz

At another station, in the coastal area, during the same period in 2023, rainfall stood at 10.5 mm compared to the usual level of 83.2 mm.

Faced with this persistent level of drought, vulnerable rural localities in Coquimbo, mostly dedicated to small-scale agriculture, are emerging as a new example of solutions that can be replicated in the country to alleviate water shortages.

The aim is to not waste the water that runs down the drains but to accumulate it in tanks, treat it and then use it to irrigate everything from alfalfa fields to native plants and trees in parks and streets in the localities involved. It is a response to drought and the expansion of the desert.

“We were able to implement five wastewater treatment projects and reuse 9.5 liters per second, which is, according to a comparative value, the consumption of 2,700 people for a year or the water used to irrigate 60 hectares of olive trees,” said Gerardo Díaz, sustainability manager of the non-governmental Fundación Chile.

These five projects, promoted by the Fundación Chile as part of its Water Scenarios 2030 initiative, are financed by the regional government of Coquimbo, which contributed the equivalent of 312,000 dollars. Of this total, 73 percent is dedicated to enabling reuse systems, for which plants in need of upgrading but not reconstruction have been selected.

The common objective of these projects, which together benefit some 6,500 people, is the reuse of wastewater for productive purposes, the replacement of drinking water or the recharge of aquifers.

Díaz told IPS that the amount of reuse obtained is significant because previously this water was discharged into a stream, canal or river where it was perhaps captured downstream.

The Huatulame treatment plant in the rural municipality of Monte Patria in northern Chile is being completely repaired with the support of the local municipality. Waterproof plastic sheeting and boulders have been installed, and in the final stage sawdust and earthworms will be incorporated before receiving wastewater from local households for reuse. CREDIT: Orlando Milesi / IPS

The Huatulame treatment plant in the rural municipality of Monte Patria in northern Chile is being completely repaired with the support of the local municipality. Waterproof plastic sheeting and rocks have been installed, and in the final stage sawdust and earthworms will be incorporated before receiving wastewater from local households for reuse. CREDIT: Orlando Milesi / IPS

A successful pilot experience

In Coquimbo, which has a regional population of some 780,000 people, there are 71 water treatment plants, most of which use activated sludge and almost all of which are linked to the Rural Drinking Water Program (APR) of the state Hydraulic Works Directorate.

Activated sludge systems are biological wastewater treatment processes using microorganisms, which are very sensitive in their operation and maintenance and rural sectors do not have the capacity to maintain them.

“Most of these treatment plants are not operating or are operating inefficiently,” Diaz acknowledged.

But one of the plants, once reconditioned, has served as a model for others since 2018. Its creation allowed Dionisio Antiquera, a 52-year-old agricultural technician, to save his alfalfa crop.

“We have had a water deficit for years. This recycled water really helps us grow our crops on our eight hectares of land,” he said in the middle of his alfalfa field in Cerrillos de Tamaya, one of the Coquimbo municipalities that IPS toured for several days to observe five wastewater reuse projects.

Raúl Ángel Flores stands in his nursery, where the plants and trees are irrigated with recycled water from the Punta Azul project in the town of Villa Puclaro, in Chile's Coquimbo region. All profits from the town's wastewater treatment are reinvested in its maintenance. CREDIT: Orlando Milesi / IPS

Raúl Ángel Flores stands in his nursery, where the plants and trees are irrigated with recycled water from the Punta Azul project in the town of Villa Puclaro, in Chile’s Coquimbo region. All profits from the town’s wastewater treatment are reinvested in its maintenance. CREDIT: Orlando Milesi / IPS

He explained that using just reused water he was able to produce six normal alfalfa harvests per year with a yield per hectare of 100 25-kg bales.

“That’s 4500 to 4800 bales in the annual production season,” he said proudly.

These bales are easily sold in the region because they are cheaper than those of other farmers.

The water he uses comes from an APR plant that has 1065 users, 650 of whom provide water, including Antiquera.

On one side of his alfalfa field is a plant that accumulates the sludge that is dehydrated in pools and drying courts, and on the other side, the water is chlorinated and runs into another pond in its natural state.

“This water works well for alfalfa. It is hard water that has about 1400 parts per million of salt. Then it goes through a reverse osmosis process that removes the salt and the water is suitable for human consumption,” the farmer explained.

In Chile, treated wastewater is not considered fresh water or water that can be used directly by people, and its reuse is only indirect.

Antiquera sold half a hectare to the government to install the plant and in exchange uses the water obtained and contributes 20 percent to the local APR.

He recently extended his alfalfa field to another seven hectares, thanks to his success with treated water.

Deysy Cortés, president of a rural drinking water system in Huatulame, stands in front of the dry riverbed of the town of the same name. Today there is no water in the river, where local residents swam and summer vacationers camped on its banks 15 years ago. CREDIT: Orlando Milesi / IPSDeysy Cortés, president of a rural drinking water system in Huatulame, stands in front of the dry riverbed of the town of the same name. Today there is no water in the river, where local residents swam and summer vacationers camped on its banks 15 years ago. CREDIT: Orlando Milesi / IPS

Deysy Cortés, president of a rural drinking water system in Huatulame, stands in front of the dry riverbed of the town of the same name. Today there is no water in the river, where local residents swam and summer vacationers camped on its banks 15 years ago. CREDIT: Orlando Milesi / IPS

Flowers and trees also benefit

In Villa Puclaro, in the Coquimbo municipality of Vicuña, Raúl Ángel Flores, 55, has an ornamental plant nursery.

“I’ve done really well. My nursery has grown with just reuse water….. I have more than 40,000 ornamental, fruit, native and cactus plants. I deliver to retailers in Vicuña and Coquimbo,” a port city in the region, he told IPS.

The nursery is 850 square meters in size, and has an accumulation pond and pumps to pump the water. He has now rented a 2,500-meter plot of land to expand it.

Flores explained to IPS that he manages the nursery together with his wife, Carolina Cáceres, and despite the fact that they have two daughters and a senior citizen in their care, “we make a living just selling the plants…I even hired an assistant,” he added.

In the southern hemisphere summer he uses between 4,000 and 5,000 liters of water a day for irrigation.

“I have water to spare. Here it could be reused for anything,” he said.

Joining the project made it possible for Flores to make efficient use of water with a business model that in this case incorporates a fee for the water to the plant management, which is equivalent to 62 cents per cubic meter used.

 Arnoldo Olivares operates the water treatment and recycling plant in Plan de Hornos, northern Chile. The plant's infrastructure and operation have been upgraded, and it can now deliver water to rural residents to irrigate trees and plants, instead of using potable water. CREDIT: Orlando Milesi / IPS

Arnoldo Olivares operates the water treatment and recycling plant in Plan de Hornos, northern Chile. The plant’s infrastructure and operation have been upgraded, and it can now deliver water to rural residents to irrigate trees and plants, instead of using potable water. CREDIT: Orlando Milesi / IPS

Eliminating odors, and creating new gardens

In the community of Huatulame, in the municipality of Monte Patria, Fundación Chile built an artificial surface wetland to put an end to the bad odors caused by effluents from a deficient waste-eater earthworm vermifilter treatment plant.

“This wetland has brought us peace because the odors have been eliminated. For the past year people have been able to walk along the banks of the old riverbed,” Deysy Cortés, 72, president of the APR, told IPS.

The municipality of Monte Patria is financing the repair of the plant with the equivalent of 100,000 dollars.

“The sprinklers will be changed, the filtering system will be replaced, and sawdust and worms will be added. It will be up and running in a couple of months,” explained agronomist Jorge Núñez, a consultant for Fundación Chile.

As in other renovated plants, safe infiltration of wastewater is ensured while the project simultaneously promotes the protection of nearby wells to provide water to the villagers.

The Huatulame treatment plant in the rural municipality of Monte Patria in northern Chile is being completely repaired with the support of the local municipality. Waterproof plastic sheeting and boulders have been installed, and in the final stage sawdust and earthworms will be incorporated before receiving wastewater from local households for reuse. CREDIT: Orlando Milesi / IPS

The Huatulame treatment plant in the rural municipality of Monte Patria in northern Chile is being completely repaired with the support of the local municipality. Waterproof plastic sheeting and boulders have been installed, and in the final stage sawdust and earthworms will be incorporated before receiving wastewater from local households for reuse. CREDIT: Orlando Milesi / IPS

Cortés warned of serious difficulties if no more rain falls in the rest of 2023, despite the relief provided by the plant for irrigation.

“I foresee a very difficult future if it doesn’t rain. We will go back to what we experienced in 2019 when in every house there were bottles filled with water and a little jug to bathe once a week,” she said.

During a recent crisis, the local APR paid 2500 dollars to bring in water from four 20,000-liter tanker trucks.

In Plan de Hornos, a town in the municipality of Illapel, irrigation technology was installed using reused water instead of drinking water to create a green space for the community to enjoy.

The project included water taps in people’s homes for residents to water trees and flowers.

Arnoldo Olivares, 59, is in charge of the plant, which has 160 members.

“I run both systems,” he told IPS. “I pour drinking water into the pond. After passing through the houses, the water goes into the drainage system, where there is a procedure to reclaim and treat it.”

“This water was lost before, and now we reuse it to irrigate the saplings. We used to work manually, now it is automated. It’s a tremendous change, we’re really happy,” he said.

Antiquera the alfalfa farmer is happy with his success in Cerrillos de Tamaya, but warns that in his area 150 to 160 mm of rainfall per year is normal and so far only 25 mm have fallen in 2023.

“The water crisis forces us to find alternatives and to be 100 percent efficient. Not a drop of water can be wasted. They have forecast very high temperatures for the upcoming (southern hemisphere) summer, which means that plants will require more water in order to thrive,” he said.

Díaz, the sustainability manager of Fundación Chile, said the Coquimbo projects are fully replicable in other water-stressed areas of Chile if a collaborative model is used.

He noted that “in Chile there is no law for the reuse of treated wastewater. There is only a gray water law that was passed years ago, but there are no regulations to implement it.”

He explained, however, that due to the drought, “rural localities today are already reusing wastewater or gray water. This is going to happen, with or without us, with or without a law. The need for water is so great that the communities are accepting the use of treated wastewater.”

The governor of Coquimbo, Krist Naranjo, argued that “a broader vision is needed to value water resources that are essential for life, especially in the context of global climate change.”

“We’re working on different initiatives with different executors, but the essential thing is to value the reuse of graywater recycling,” she told IPS from La Serena, the regional capital.

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‘Passion Seeds’ Fertilize Brazil’s Semiarid Northeast

Ligoria Felipe dos Santos poses for a photo on her agroecological farm that mixes corn, squash, fruits, vegetables and medicinal herbs. She is part of the women's movement that is trying to prevent the installation of wind farms in the Borborema mountain range, in the northeastern Brazilian state of Paraíba. CREDIT: Mario Osava / IPS

Ligoria Felipe dos Santos poses for a photo on her agroecological farm that mixes corn, squash, fruits, vegetables and medicinal herbs. She is part of the women’s movement that is trying to prevent the installation of wind farms in the Borborema mountain range, in the northeastern Brazilian state of Paraíba. CREDIT: Mario Osava / IPS

By Mario Osava
ESPERANÇA, Brazil , Jul 14 2023 (IPS)

Zé Pequeno cried when he learned that the heirloom seeds he had inherited from his father were contaminated by the transgenic corn his neighbor had brought from the south. Fortunately, he was able to salvage the native seeds because he had shared them with other neighbors.


Euzébio Cavalcanti recalls this story from one of his colleagues to highlight the importance of “passion seeds” for family farming in Brazil’s semiarid low-rainfall ecoregion which extends over 1.1 million square kilometers, twice the size of France, in the northeastern interior of the country.”These are seeds adapted to the semiarid climate. They can withstand long droughts, without irrigation.” Euzébio Cavalcanti

Saving heirloom seeds is a peasant tradition, but two decades ago the Brazilian Semiarid Articulation (ASA), a network of 3,000 social organizations that emerged in the 1990s, named those who practice it as individual and community guardians of seeds. By September 2021, it had registered 859 banks of native seeds in the region.

Cavalcanti, a 56-year-old farmer with multiple skills such as poet, musician and radio broadcaster, coordinates the network of these banks in the Polo de Borborema, a joint action area of 14 rural workers’ unions and 150 community organizations in central-eastern Paraíba, one of the nine states of the Brazilian Northeast.

“These are seeds adapted to the semiarid climate. They can withstand long droughts, without irrigation, that is why they are so important,” he explained. They also preserve the genetic heritage of many local crop species and family history; they have sentimental value.

“Don’t plant transgenics, don’t erase my history”, is a slogan of the movement that promotes agroecological practices and is opposed to the expansion of genetically modified organisms in local agriculture. “Corn free of transgenics and agrotoxins (agrochemicals)” is the goal of their campaign.

In Paraíba, the name “passion seeds” has been adopted, instead of native or heirloom seeds, since 2003, when the state government announced that it would provide seeds from a specialized company to family farmers.

“If the government offers these seeds, I don’t want them. I have family seeds and I have passion for them,” reacted a farmer in a meeting with the authorities.

“‘Passion seeds’ spread throughout Paraíba. In other states they’re called ‘seeds of resistance’,” Cavalcanti said.

Agroecology is one of the banners of the Polo de Borborema, as it is for ASA in the entire semiarid ecosystem that covers most of the Northeast region and a northern strip of the southeastern state of Minas Gerais.

"Passion seeds," as heirloom seeds are known locally, ensure better harvests on semiarid lands, free of transgenics or "agricultural poisons," according to Euzébio Cavalcanti, a small farmer, poet and musician who helped lead the struggle for agrarian reform and cares for the seeds in the highlands of Borborema, in northeastern Brazil. CREDIT: Mario Osava / IPS

“Passion seeds,” as heirloom seeds are known locally, ensure better harvests on semiarid lands, free of transgenics or “agricultural poisons,” according to Euzébio Cavalcanti, a small farmer, poet and musician who helped lead the struggle for agrarian reform and cares for the seeds in the highlands of Borborema, in northeastern Brazil. CREDIT: Mario Osava / IPS

Learning to coexist with semiarid conditions

This approach arose from a change in the development strategy adopted on the part of local society, especially ASA, since the 1990s. “Coexisting with semiarid conditions” replaced the traditional, failed focus on “fighting the drought”.

Large dams and reservoirs, which only benefit large landowners and do not help the majority of small farmers, gave way to more than 1.2 million tanks for collecting rainwater from household or school rooftops and various ways of storing water for crops and livestock.

It is a process of decolonization of agriculture, education and science, which prioritizes knowledge of the climate and the regional biome, the Caatinga, characterized by low, twisted, drought-resilient vegetation. It also includes the abandonment of monoculture, with the implementation of traditional local horticultural and family farming techniques.

The Northeast, home to 26.9 percent of the national population, or 54.6 million inhabitants according to the 2022 demographic census, concentrates 47.2 percent of the country’s family farmers, according to the 2017 agricultural census. There are 1.84 million small farms worked mainly by family labor.

Brazil’s semiarid region is one of the rainiest in the world for this type of climate, with 200 to 800 millimeters of rain per year on average, although there are drier areas in the process of desertification.

A stand at the ecological market in the municipality of Esperança, in northeastern Brazil, is a link between urban consumers and family farmers opposed to agrochemicals, monoculture and transgenic products. CREDIT: Mario Osava / IPS

A stand at the ecological market in the municipality of Esperança, in northeastern Brazil, is a link between urban consumers and family farmers opposed to agrochemicals, monoculture and transgenic products. CREDIT: Mario Osava / IPS

Borborema, the name of a high plateau that obstructs the humidity coming from the sea, making the territory to its west drier, is the scene of various peasant struggles, such as the mobilization for agrarian reform since the 1980s and for small-scale agriculture “without poisons” or agrochemicals, of which the “seeds of passion” are a symbol.

Cavalcanti is a living memory of local history, also as a founder of the local Landless Workers Movement (MST) and an activist in the occupations of unproductive land to create rural settlements, on one of which he gained his own small farm where he grows beans, corn and, vegetables and has two rainwater collection tanks.

Women help drive the expansion of agroecology

Women have played a key role in the drive towards agroecology. The March for Women’s Lives and Agroecology is an annual demonstration that since 2010 has defended family farming and the right to a healthy life.

This year, on Mar. 16, 5,000 women gathered in Montadas, a municipality of 5,800 inhabitants, to block the creation of wind farms that have already caused damage to the health of small farmers by being installed near their homes.

Borborema is “a territory of resistance,” say the women. About 15 years ago, they succeeded in abolishing the cultivation of tobacco.

The president of the Union of Rural Workers of the municipality of Esperança, Alexandre Lira (C) and other leaders pose in front of a poster declaring the union's current goals: "Agroecological Borborema is no place for a wind farm," he says about this area in Brazil's semiarid Northeast region. CREDIT: Mario Osava / IPS

The president of the Union of Rural Workers of the municipality of Esperança, Alexandre Lira (C) and other leaders pose in front of a poster declaring the union’s current goals: “Agroecological Borborema is no place for a wind farm,” he says about this area in Brazil’s semiarid Northeast region. CREDIT: Mario Osava / IPS

When the citrus blackfly arrived, the government tried to combat it with pesticides, but “we resisted; we used natural products and solved the problem for our oranges and lemons,” said Ligoria Felipe dos Santos, a 54-year-old mother of three.

“That is agroecology, which is strengthened in the face of threats. Farmers are aware, they resort to alternative defenses, they know that it is imbalance that leads to pests,” she told IPS.

“Agroecology is a good banner for union activity,” said Lexandre Lira, 42, president of the Rural Workers Union of Esperança, a municipality of 31,000 people in the center of the Polo de Borborema.

It is also a factor in keeping farmers’ children on the farms, because it awakens the interest of young people in agriculture, said Edson Johny da Silva, 27, the union’s youth coordinator.

Maria das Graças Vicente and Givaldo Firmino dos Santos stand next to the machine they use for making pulp from native fruits little known outside Brazil, such as the umbu (Brazil plum), cajá (hog plum), acerola (Amazon or Barbados cherry), along with cashews, mangos, and guava. CREDIT: Mario Osava / IPS

Maria das Graças Vicente and Givaldo Firmino dos Santos stand next to the machine they use for making pulp from native fruits little known outside Brazil, such as the umbu (Brazil plum), cajá (hog plum), acerola (Amazon or Barbados cherry), along with cashews, mangos, and guava. CREDIT: Mario Osava / IPS

Pulp, added value

Maria das Graças Vicente, known as Nina, 51, along with her husband Givaldo Firmino dos Santos, 52, is an example of agroecological productivity. On 1.25 hectares of land they produce citrus fruits, passion fruit, acerola (Amazon or Barbados cherry), mango and other fruits, as well as sugar cane, corn, beans and other vegetables.

Grafted fruit tree seedlings are another of the products they use to expand their income, as IPS was shown during a visit to their farm.

Using their own harvest and fruit they buy from neighbors, they make pulp in a small shed separate from their home, with a small machine purchased with the support of the Advisory and Services to Projects in Alternative Agriculture (AS-PTA), a non-governmental organization that supports farmers in Borborema and other parts of Brazil.

“Luckily we have a microclimate in the valley, where it rains more than in the surrounding areas. Everything grows here,” Santos told IPS.

But the couple created three reservoirs to collect rainwater and withstand droughts: a 16,000-liter water tank for household use, another that collects water on the paved ground for irrigation, and a small lagoon dug in the lower part of the farm.

But in 2016 the lagoon dried up, because of the “great drought” that lasted from 2012 to 2017, Vicente said.

The fruit pulp factory has grown in recent years and now has seven small freezers to store fruit and pulp for sale to the town’s stores and restaurants. The couple decided to purchase a cold room with the capacity of 30 freezers.

“I work in the mornings on the land, in the afternoons I make pulp and my husband is in charge of the sales,” she said.

Hiring workers from outside the family to reduce the workload costs too much and “we try to save as much as possible on everything, to sell the pulp at a fair price,” Santos said.

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Semiarid Regions of Latin America Cooperate to Adapt to Climate

Civil Society, Combating Desertification and Drought, Development & Aid, Economy & Trade, Editors’ Choice, Environment, Featured, Food & Agriculture, Green Economy, Headlines, Integration and Development Brazilian-style, Latin America & the Caribbean, Projects, Regional Categories, South-South, TerraViva United Nations, Water & Sanitation

Combating Desertification and Drought

A rural settlement in the state of Pernambuco, in Brazil's semiarid ecoregion. Tanks that collect rainwater from rooftops for drinking water and household usage have changed life in this parched land, where 1.1 million 16,000-litre tanks have been installed so far. CREDIT: Mario Osava/IPS

A rural settlement in the state of Pernambuco, in Brazil’s semiarid ecoregion. Tanks that collect rainwater from rooftops for drinking water and household usage have changed life in this parched land, where 1.1 million 16,000-litre tanks have been installed so far. CREDIT: Mario Osava/IPS

RIO DE JANEIRO, Aug 27 2020 (IPS) – After centuries of poverty, marginalisation from national development policies and a lack of support for positive local practices and projects, the semiarid regions of Latin America are preparing to forge their own agricultural paths by sharing knowledge, in a new and unprecedented initiative.


In Brazil’s semiarid Northeast, the Gran Chaco Americano, which is shared by Argentina, Bolivia and Paraguay, and the Central American Dry Corridor (CADC), successful local practices will be identified, evaluated and documented to support the design of policies that promote climate change-resilient agriculture in the three ecoregions.

This is the objective of DAKI-Semiárido Vivo, an initiative financed by the United Nations International Fund for Agricultural Development (IFAD) and implemented by the Brazilian Semiarid Articulation (ASA), the Argentinean Foundation for Development in Justice and Peace (Fundapaz) and the National Development Foundation (Funde) of El Salvador.

DAKI stands for Dryland Adaptation Knowledge Initiative.

The project, launched on Aug. 18 in a special webinar where some of its creators were speakers, will last four years and involve 2,000 people, including public officials, rural extension agents, researchers and small farmers. Indirectly, 6,000 people will benefit from the training.

“The aim is to incorporate public officials from this field with the intention to influence the government’s actions,” said Antonio Barbosa, coordinator of DAKI-Semiárido Vivo and one of the leaders of the Brazilian organisation ASA.

The idea is to promote programmes that could benefit the three semiarid regions, which are home to at least 37 million people – more than the total populations of Chile, Ecuador and Peru combined.

The residents of semiarid regions, especially those who live in rural areas, face water scarcity aggravated by climate change, which affects their food security and quality of life.

Zulema Burneo, International Land Coalition coordinator for Latin America and the Caribbean and moderator of the webinar that launched the project, stressed that the initiative was aimed at “amplifying and strengthening” isolated efforts and a few longstanding collectives working on practices to improve life in semiarid areas.

Abel Manto, an inventor of technologies that he uses on his small farm in the state of Bahia, in Brazil's semiarid ecoregion, holds up a watermelon while standing among the bean crop he is growing on top of an underground dam. The soil is on a waterproof plastic tarp that keeps near the surface the water that is retained by an underground dam. CREDIT: Mario Osava/IPS

Abel Manto, an inventor of technologies that he uses on his small farm in the state of Bahia, in Brazil’s semiarid ecoregion, holds up a watermelon while standing among the bean crop he is growing on top of an underground dam. The soil is on a waterproof plastic tarp that keeps near the surface the water that is retained by an underground dam. CREDIT: Mario Osava/IPS

The practices that represent the best knowledge of living in the drylands will be selected not so much for their technical aspects, but for the results achieved in terms of economic, ecological and social development, Barbosa explained to IPS in a telephone interview from the northeastern Brazilian city of Recife, where the headquarters of ASA are located.

After the process of systematisation of the best practices in each region is completed, harnessing traditional knowledge through exchanges between technicians and farmers, the next step will be “to build a methodology and the pedagogical content to be used in the training,” he said.

One result will be a platform for distance learning. The Federal Rural University of Pernambuco, also in Recife, will help with this.

Decentralised family or community water supply infrastructure, developed and disseminated by ASA, a network of 3,000 social organisations scattered throughout the Brazilian Northeast, is a key experience in this process.

In the 1.03 million square kilometres of drylands where 22 million Brazilians live, 38 percent in rural areas according to the 2010 census, 1.1 million rainwater harvesting tanks have been built so far for human consumption.

An estimated 350,000 more are needed to bring water to the entire rural population in the semiarid Northeast, said Barbosa.

But the most important aspect for agricultural development involves eight “technologies” for obtaining and storing water for crops and livestock. ASA, created in 1999, has helped install this infrastructure on 205,000 farms for this purpose and estimates that another 800 peasant families still need it.

There are farms that are too small to install the infrastructure, or that have other limitations, said Barbosa, who coordinates ASA’s One Land and Two Waters and native seed programmes.

The “calçadão” technique, where water runs down a sloping concrete terrace or even a road into a tank that has a capacity to hold 52,000 litres, is the most widely used system for irrigating vegetables.

A group of peasant farmers from El Salvador stand in front of one of the two rainwater tanks built in their village, La Colmena, in the municipality of Candelaria de la Frontera. The pond is part of a climate change adaptation project in the Central American Dry Corridor. Central American farmers like these and others from Brazil's semiarid Northeast have exchanged experiences on solutions for living with lengthy droughts. CREDIT: Edgardo Ayala/IPS

A group of peasant farmers from El Salvador stand in front of one of the two rainwater tanks built in their village, La Colmena, in the municipality of Candelaria de la Frontera. The pond is part of a climate change adaptation project in the Central American Dry Corridor. Central American farmers like these and others from Brazil’s semiarid Northeast have exchanged experiences on solutions for living with lengthy droughts. CREDIT: Edgardo Ayala/IPS

And in Argentina’s Chaco region, 16,000-litre drinking water tanks are mushrooming.

But tanks for intensive and small farming irrigation are not suitable for the dry Chaco, where livestock is raised on large estates of hundreds of hectares, said Gabriel Seghezzo, executive director of Fundapaz, in an interview by phone with IPS from the city of Salta, capital of the province of the same name, one of those that make up Argentina’s Gran Chaco region.

“Here we need dams in the natural shallows and very deep wells; we have a serious water problem,” he said. “The groundwater is generally of poor quality, very salty or very deep.”

First, peasants and indigenous people face the problem of formalising ownership of their land, due to the lack of land titles. Then comes the challenge of access to water, both for household consumption and agricultural production.

“In some cases there is the possibility of diverting rivers. The Bermejo River overflows up to 60 km from its bed,” he said.

Currently there is an intense local drought, which seems to indicate a deterioration of the climate, urgently requiring adaptation and mitigation responses.

Reforestation and silvopastoral systems are good alternatives, in an area where deforestation is “the main conflict, due to the pressure of the advance of soy and corn monoculture and corporate cattle farming,” he said.

Mariano Barraza of the Wichí indigenous community (L) and Enzo Romero, a technician from the Fundapaz organisation, stand next to the tank built to store rainwater in an indigenous community in the province of Salta, in the Chaco ecoregion of northern Argentina, where there are six months of drought every year. CREDIT: Daniel Gutman/IPS

Mariano Barraza of the Wichí indigenous community (L) and Enzo Romero, a technician from the Fundapaz organisation, stand next to the tank built to store rainwater in an indigenous community in the province of Salta, in the Chaco ecoregion of northern Argentina, where there are six months of drought every year. CREDIT: Daniel Gutman/IPS

More forests would be beneficial for the water, reducing evaporation that is intense due to the heat and hot wind, he added.

Of the “technologies” developed in Brazil, one of the most useful for other semiarid regions is the “underground dam,” Claus Reiner, manager of IFAD programmes in Brazil, told IPS by phone from Brasilia.

The underground dam keeps the surrounding soil moist. It requires a certain amount of work to dig a long, deep trench along the drainage route of rainwater, where a plastic tarp is placed vertically, causing the water to pool during rainy periods. A location is chosen where the natural layer makes the dam impermeable from below.

This principle is important for the Central American Dry Corridor, where “the great challenge is how to infiltrate rainwater into the soil, in addition to collecting it for irrigation and human consumption,” said Ismael Merlos of El Salvador, founder of Funde and director of its Territorial Development Area.

The CADC, which cuts north to south through Guatemala, Honduras and El Salvador, is defined not as semiarid, but as a sub-humid region, because it rains slightly more there, although in an increasingly irregular manner.

Some solutions are not viable because “75 percent of the farming areas in the Corridor are sloping land, unprotected by organic material, which makes the water run off more quickly into the rivers,” Merlos told IPS by phone from San Salvador.

“In addition, the large irrigation systems that we’re familiar with are not accessible for the poor because of their high cost and the expensive energy for the extraction and pumping of water, from declining sources,” he said.

The most viable alternative, he added, is making better use of rainwater, by building tanks, or through techniques to retain moisture in the soil, such as reforestation and leaving straw and other harvest waste on the ground rather than burning it as peasant farmers continue to do.

“Harmful weather events, which four decades ago occurred one to three times a year, now happen 10 or more times a year, and their effects are more severe in the Dry Zone,” Merlos pointed out.

Funde is a Salvadoran centre for development research and policy formulation that together with Fundapaz, four Brazilian organisations forming part of the ASA network and seven other Latin American groups had been cooperating since 2013, when they created the Latin American Semiarid Platform.

The Platform paved the way for the DAKI-Semiárido Vivo which, using 78 percent of its two million dollar budget, opened up new horizons for synergy among Latin America’s semiarid ecoregions. To this end, said Burneo, it should create a virtuous alliance of “good practices and public policies.”

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