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10 Facts About Sanitation in Morocco
Morocco has made significant progress in sanitation during the past decade. Although there are still many issues, improvements in water sanitation in Morocco are in the near future. Here are 10 facts about sanitation in Morocco.

10 Facts About Sanitation in Morocco

  1. H2O Maghreb: USAID and the United Nations Industrial Development Organization (UNIDO) implemented an activity called H2O Maghreb in order to help establish advanced and sustainable water management practices in Morocco. H2O Maghreb includes a two-year degree accredited by the government of Morocco. Furthermore, the H20 Maghreb activity provides training and job opportunities in waste management. About 80 percent of the students participating are women.
  2. The Douira Sea Water Desalination Plant: Morocco plans to build the world’s largest seawater desalination plant in the city of Agadir in 2021. The Douira Sea Water Desalination Plant will provide drinking water to the people of the Chtouka Ait Baha region in Morocco. Further, the Douira Sea Water Desalination Plant should be able to irrigate 15,000 hectares of land and produce up to 450,000 cubic meters of desalinated water every day.
  3. Dakhla’s Wasterwater Treatment Plant: Morocco is also building a wastewater treatment plant in Dakhla. The plant will help prevent wastewater from polluting groundwater resources. Additionally, the wastewater sludge can also act as a fertilizer.
  4. Improvements to the Wastewater Sector: During the past decade, Morocco has made many improvements in its wastewater sector. Of the 34 million people in Morocco, 25 percent of the people are not connected to the sewer network and 38 percent of the people are not connected to wastewater treatment plants.
  5. Leprosy: Leprosy is on the decline in Morocco. From 2000 to 2012, the number of leprosy cases decreased by 4.68 percent each year. In 2012, Morocco began a program to distribute rifampicin to help prevent the spread of leprosy. From 2012 to 2017, the number of cases of leprosy in Morocco decreased by 16.38 percent each year. The rifampicin program helped prevent leprosy and improved sanitation in Morocco
  6. Trachoma: Morocco eliminated trachoma in 2016. Trachoma is an infectious disease that causes blindness. Morocco implemented the World Health Organization-endorsed SAFE strategy in the 1990s. This included surgery for trichiasis, antibiotics to treat trachoma, facial cleanliness and environmental improvements to help prevent the spread of trachoma.
  7. Acid Mine Drainage: Acid mine drainage is an issue in Morocco. When people do not clean mine sites, the acid mine drainage at the mines can contaminate the land and the groundwater.
  8. Water, Sanitation and Hygiene in Schools (WinS): Morocco implemented the program Water, sanitation and hygiene in schools (WinS) in order to provide clean water and improve sanitary facilities in 19 primary schools in the country. Improving sanitary facilities at schools can help prevent water-related diseases and encourage children to stay in school and graduate.
  9. European Space Agency Technology: The University of Kenitra utilizes technology developed by the European Space Agency to clean groundwater so that it is safe for people to drink. The water treatment facility will provide water for 1,200 students.
  10. Safely-Managed Drinking Services: As of 2017, 70.266 percent of the people in Morocco have access to safely-managed drinking water services. This also means that as of 2017, 29.734 percent of the people in Morocco do not have access to safely-managed drinking water services.

These 10 facts about sanitation in Morocco show that the water supply is improving and will continue to improve. As technology and new initiatives increase the water supply, more people will gain access to safe drinking water.

Frank Decapio
Photo: Wikimedia Commons

Satellites and Food Security
Nearly 800 million people in the world do not have enough food to eat. It is no secret that more efficient farming and agricultural practices can help yield more crops to feed more people as well as bring in more income to poor farmers. In conjunction with traditional ground-based data collection of farmland, satellite imaging and sensing can help farmers monitor their crops and land condition in real time. Satellite-based technology can map cropland area and crop type, estimate area planted, estimate product yield and even detect early signs of droughts and floods. With this kind of technology, farmers may be better equipped to make informed choices about their land to protect their products. With more informed farmers, better use of resources and ultimately more crops, satellites may be an important part of ensuring global food security.

A New Wave of Tech

Precision farming is the use of technologies to inform farmers about their products. This method is not new, however, the systems in place are changing. Traditional, ground-based tests, such as soil sampling, have long been used to test the arity, salinity, and other conditions of land. These tests help instruct farmers about the optimal mix of fertilizer, pesticide and water that should be used to yield the most crops. While these tests are useful, they are expensive, time-consuming and can only provide data for a small area of land.

Satellites may provide a comprehensive solution. Equipped with imaging and sensing technology, satellites may analyze entire fields at more regular intervals for a more timely and lower-cost option. With land-use mapping and monitoring technologies, satellites cater to a variety of farmers’ needs. Farmers are using satellite technology to:

  • Analyze soil fertility.
  • Map irrigated land.
  • Monitor crop growth.
  • Produce crop yield forecasts.
  • Track crop development.
  • Measure soil moisture content.
  • Test soil chemical composition.

Depending on the program and type of imaging, the costs of satellite data may differ. The Sentinel-2, a land-monitoring system of two satellites that the European Space Agency (ESA) controls, provides vegetation imagery and moisture maps to farmers for $0.20 per acre per two months of service.

Satellites: Prediction, Protection and Prevention

In places like sub-Saharan Africa where agriculture accounts for 64 percent of all employment, satellite-based technology is vital to the survival of farmers. Ninety-five percent of sub-Saharan Africa’s farmable land lacks irrigation systems, thus making the farmland more susceptible to drastic land conditions like droughts and floods. With satellite technology and remote sensing, farmers can shift their focus from reacting to disasters after they occur to planning response before the disasters cause damage. Because low soil moisture content is an indicator of drought, satellites can measure the soil’s moisture content using microwave radiation and send an early warning to farmers in the affected area.

With these early response mechanisms, insured farmers can apply early to their insurers and receive money. Programs like the Ethiopian Productive Safety Net Program provides cash-transfers to poor households using this satellite-based technology.

People have used satellite drought imaging combined with data on local market supply and demand to bring the right amount of food aid to countries in need. Molly Brown, a researcher for NASA, uses satellite images of cropland in Niger, where farmers not only grow food for markets but also eat the crops, to estimate rising market costs. During droughts, these farmers cannot grow enough food to feed themselves and sell locally, thus demand and market prices increase. Since many rural families in Niger live on only around $400 a year, drastic price increases may mean that they cannot get enough to eat.

The goal of Brown’s research is to predict rising market prices before they occur based on satellite images of farmland. It is also to bring in enough food aid when people need it and to stop food aid when it is not necessary. Brown hopes satellites will be an important step toward ensuring food security.

Already at Work

Many organizations, large and small, have already begun harnessing the power of satellite technology and its use in agriculture. NASA has rolled out several satellite-driven initiatives to help combat food security. The Famine Early Warning Systems (FEWS) Network, established in 2000, uses NASA’s Landsat satellite imaging and remote sensing to gather data, forecast weather trends and hazards and create maps for vegetation, rainfall and water use. In order to make satellite imaging and data more accessible to the communities that could best utilize them, NASA established a web-based visualization and monitoring system, for Africa and Central America, called SERVIR, in collaboration with USAID.

Working with more than 200 institutions and training around 1,800 regional support staffers, SERVIR provides previously inaccessible satellite data, imaging and forecasts to local governments and researchers. With this information, SERVIR hopes that developing nations will be able to respond better to natural disasters, improve their food security and manage water and other natural resources.

Even private companies like Planet Labs, are investing in satellite-based technology. Planet uses many smaller, relatively inexpensive satellites for its imaging force. The company has around 140 currently deployed, enough to capture an image of the entire Earth every day. It sells imaging and monitoring data to over 200 customers, many of whom are agricultural companies.

In 2015, at the U.N. Sustainable Development Summit, Planet Labs introduced its Open Regions initiative. By making $60 million worth of its satellite imagery for certain regions available to the global public and directly accessible online, Planet Lab’s imagery brings data vital to the health of crops directly to farmers. With the U.N. deadline to end global hunger and ensure global food security by 2030, it is important for governments and organizations to look for new, sustainable opportunities to increase productivity. By looking beyond conventional, ground-based agricultural solutions and turning to the skies, farmers may find that satellites may be an important part of ensuring global food security.

– Maya Watanabe
Photo: Wikipedia Commons