Lessons from three African Countries.
Achieving Health for All, and in particular universal health coverage (UHC), will not happen without fully functioning basic water, sanitation and hygiene (WASH) services in all health care facilities. Such services are needed to provide quality care, ensure ad...herence to infection prevention and control (IPC) norms and standards and guarantee that facilities are able to provide environments that respect the dignity and human rights of all care seekers, especially mothers, newborns and children. WHO undertook a series of national situational analyses in three countries (Ghana, Ethiopia and Rwanda) to understand current barriers to change, accountability structures and measures to strengthen WASH in health care facilities and more broadly, the quality of health service delivery.
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The purpose of the report is to present some first recommendation for the development of Myanmar ecological quality criteria using the system of the EU Water Framework Directive (EU WFD) as baseline, with main focus on the characterization and classification processes. As background for the recommen...dations we first give an overview of the main water use categories in Myanmar. We then provide preliminary suggestions for typology criteria and indices for assessing ecological status in lakes and rivers in Myanmar. The typology factors and physico-chemical parameters are based on common used factors in the EU countries. The biological elements include phytoplankton and aquatic macrophytes for lakes, and benthic invertebrates for rivers.
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The Framework serves to guide efforts to deliver safe and sustainable water, sanitation and hygiene (WASH), health care waste management and reliable electricity in all health care facilities. The ultimate aim is to provide quality care for all. The Framework reflects a global consultative process a...nd includes data and recommendations articulated in recent WHO/UNICEF global reports on WASH, waste and electricity in health care facilities. It also provides an operational roadmap for implementing the 2023 United Nations General Assembly (UNGA) resolution on WASH, waste and electricity in health care facilities. The target audiences for this Framework include health leaders and programme managers at the global and national levels; policymakers; WASH, waste and energy leaders and technical experts; development partners and finance institutions; and actors and experts on gender equality, disability and social inclusion and climate; and, more generally, civil society. The Framework addresses the WASH, waste and electricity elements of the WHO comprehensive approach to build safe, climate-resilient and environmentally sustainable health care facilities.
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Content:
National Drinking Water Quality Standards (NDWQS)
Water Safety Plan
Water Quality Surveillance
Objective:
To promote public health, safety and welfare by ensuring quality standards of drinking water
Safe drinking-water management must consider drinking-water quality, acceptability and quantity in the context of public health protection. In this manual, the term “safety” encompasses these three elements. Although the principles in this manual can be broadly applied to all types of drinking-w...ater supplies, the guidance is primarily intended for piped water supplies that are professionally managed (by a water supplier or equivalent management entity).The guidance may be applied to existing drinking-water supplies, or adapted for water supplies that are in the planning stage before construction.
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Water security, or having the right amount and quality of water in the right place at the right time, fosters social and economic progress. Where water is sufficient to meet demand, it can promote economy wide growth and enable countries to reach their food security, energy security, and human devel...opment goals. Where it is scarce, excessive, or unclean it can exacerbate multiple dimensions of poverty. Neither of these two worlds is protected from future water crises, which are heavily influenced by changing local circumstances
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Air pollution’s impact on life expectancy in Nigeria is greater than that of HIV/AIDS and almost on par with malaria and unsafe water and sanitation, shortening the average Nigerian’s life expectancy by 1.8 years, relative to what it would be if the World Health Organization (WHO) guideline of 5... μg/m3 was met.1 Some areas of Nigeria fare much worse than average, with air pollution shortening lives by almost 4 years on average in parts of Taraba state in Northeastern Nigeria.
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The workshop is structured around 13 learning modules. The first module (Introduction) gives an overview of WSPs. The last module (Module 12) introduces participants to the quality assurance tool for WSPs (WHO & IWA, 2012). Modules 1–11 relate explicitly to the WSP manual produced by IWA and WHO (...Bartram et al., 2009), from which the workshop is designed.
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This technical note contains indicators and minimum standards necessary for emergency response in the following topics: quantity of water, access to water, quality of water, sanitation, hygiene, solid waste, cleaning and disinfection, as well as dosages for the preparation of solutions disinfectants... using sodium hypochlorite.
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During the first year of the Covid-19 pandemic, the world’s economy slowed. Yet, the global annual average particulate pollution (PM2.5) was largely unchanged from 2019 levels. At the same time, growing evidence shows air pollution—even when experienced at very low levels—hurts human health. T...his recently led the World Health Organization (WHO) to revise its guideline for what it considers a safe level of exposure of particulate pollution, bringing most of the world—97.3 percent of the global population—into the unsafe zone. The AQLI finds that particulate air pollution takes 2.2 years off global average life expectancy, or a combined 17 billion life-years, relative to a world that met the WHO guideline. This impact on life expectancy is comparable to that of smoking, more than three times that of alcohol use and unsafe water, six times that of HIV/AIDS, and 89 times that of conflict and terrorism.
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Climate-induced water insecurity poses one of the biggest threats to humanity and will lead to more hunger, disease and displacement
Oxfam water engineers are having to drill deeper, more expensive and harder-to-maintain water boreholes used by some of the poorest communities around the world, mo...re often now only to find dry, depleted or polluted reservoirs.
Today, during World Water Week, Oxfam publishes the first of its series of reports, “Water Dilemmas”, about the growing water crisis, in large part driven by global heating from greenhouse gas emissions. The report describes how climate change will impact water security in different regions, leading to more hunger, disease and displacement.
Carlos Calderon, Humanitarian Advocacy and Partnerships Lead for Oxfam Aotearoa said, “This new Oxfam research is focused on the global Water, Sanitation and Hygiene (WaSH) situation, but it paints a picture that illustrates the complexity of elements that, combined, will continue to increasingly affect women, girls, boys and men in the decades to come. Changing weather, poverty, inequality, gender-based violence, political instability and conflicts are impacting the availability and quality of adequate water systems. All governments, particularly those from rich countries, should responsively take action at a global scale. The clock is ticking. Our children will judge us for our actions today, or for the lack of them.”
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PLOS Glob Public Health 2(8): e0000272. https://doi.org/10.1371/journal.pgph.0000272
Sepsis is a major global health problem, especially in sub-Saharan Africa. Improving patient care requires that healthcare providers understand patients’ priorities and provide quality care within the confines of... the context they work. We report the perspectives of patients, caregivers and healthcare workers regarding care quality for patients admitted for sepsis to public hospitals in Uganda and Malawi. This qualitative descriptive study in two hospitals included face-to face semi-structured interviews with purposively selected patients recovering from sepsis, their caregivers and healthcare workers. In both Malawi and Uganda, sepsis care often occurred in resource-constrained environments which undermined healthcare workers’ capacity to deliver safe, consistent and accessible care. Constraints included limited space, strained; water, sanitation and hygiene (WASH) amenities and practices, inadequate human and material resources and inadequate provision for basic needs including nutrition. Heavy workloads for healthcare workers strained relationships, led to poor communication and reduced engagement with patients and caregivers.
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The document focuses on household water treatment methods to ensure access to safe drinking water, particularly in areas with limited access to clean water sources. It highlights the importance of safe water, noting that contaminated water is a major cause of waterborne diseases such as diarrhea and... cholera. Treating water at the household level is emphasized as an effective way to reduce health risks.
The document outlines several treatment methods, including boiling, which kills most pathogens; chlorination, which disinfects water by adding chlorine; filtration, which removes dirt and certain microbes using simple or advanced filters; and solar disinfection (SODIS), which involves exposing water in clear plastic bottles to sunlight for several hours to kill microbes. Additionally, it stresses the importance of safe water storage, such as using clean and covered containers to prevent recontamination, and practicing good hygiene, including regular handwashing and maintaining cleanliness around water sources.
By promoting these methods, the document aims to raise awareness and provide practical solutions for improving water quality at the household level, thereby reducing the spread of diseases and enhancing public health.
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Cholera is a transmissible diarrhoeal infection caused by Vibrio cholerae. Endemic and/or epidemic in over 40 countries (mainly in Africa and Asia), cholera continues to be a major global public health issue.
The World Health Organization (WHO) estimates that the number of cases reported worldwid...e represents in reality only 5 to 10% of actual cases.
This guide is intended for medical and non-medical staff responding to a cholera outbreak. It attempts to provide concrete answers to the questions and problems faced by staff, based on the recommendations of reference organisations, such as WHO and UNICEF, as well as Médecins Sans Frontières’ experience in the field.
It is divided into 8 chapters. Chapter 1, Cholera overview, outlines the epidemiological and clinical features of cholera. Chapter 2, Outbreak investigation, explains the method and stages of a field investigation, from the alert to implementation of initial activities. Chapter 3, Cholera control measures, details measures and tools to prevent and/or control cholera transmission and mortality in populations affected, or at risk of being affected, by an epidemic (curative care, prevention means and health promotion activities). Chapter 4, Strategies for epidemic response, addresses the roll-out strategies of the measures described in Chapter 3 which depend on context (e.g. urban, rural, endemic, non-endemic setting, etc.), resources and particular constraints. Chapter 5, Cholera case management, details the different stages of cholera treatment, from diagnosis through to cure.
Chapter 6, Setting up cholera treatment facilities, focuses on the installation of treatment facilities that vary in size and complexity according to operational requirements (treatment centres and units and oral rehydration points). Chapter 7, Organisation of cholera treatment facilities, describes the organisation of these specialized facilities in terms of human resources, supply, water, hygiene and sanitation, etc. Chapter 8, Monitoring and evaluation, presents the key data to be collected and analysed during an epidemic to facilitate a tailored response and evaluate its quality and effectiveness.
The guide includes various practical tools in the appendices to facilitate activities (e.g. water quality tests, job descriptions, documents, etc.). Moreover, the toolbox also contains additional tools in editable formats (individual patient file, cholera case register, pictograms).
Despite all efforts, it is possible that certain errors may have been overlooked in this guide. Please inform the authors of any errors detected.
To ensure that this guide continues to evolve while remaining adapted to field realities, please send any comments or suggestions.
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WASH FIT Digital is a free, open-access digital tool, based on the WASH FIT guide developed by WHO and UNICEF. WASH FIT is designed to help health care facilities improve quality of care through improved water, sanitation, and hygiene (WASH). Built on the mWater digital monitoring platform, WASH FIT... Digital includes a set of forms for implementing a risk-based management approach developed by WHO and UNICEF. The site also includes a dashboard to visualize the process and keep track of progress
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The Water and Sanitation for Health Facility Improvement Tool (WASH FIT) presents a framework and acts as a guide to support multisectoral action to improve water, sanitation and hygiene (WASH) in health care. Central to the WASH FIT methodology is training and incremental improvements.
Implementat...ion of WASH FIT requires six preparatory steps at the national level, one of which is conducting national sensitization and training of trainers, followed by facility-level training. At the facility level, step 1 (of five) involves establishing and training a WASH FIT team.
The WASH FIT methodology is outlined in WASH FIT: A practical guide for improving quality of care through water, sanitation and hygiene in health care facilities. Second edition. (the WASH FIT guide), which includes a set of templates designed to help users with each phase of the improvement cycle.
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The document is part of the briefing package for Ethiopia's Water, Sanitation, and Hygiene (WASH) Cluster, which consists of resources that provide greater clarity and guidance to the cluster partners and other humanitarian actors.
The document is divided into four sections. Each section represen...ts the cluster’s coordination system (i) WASH Cluster coordination management, (ii) HPC process, (iii) Response monitoring, (iv) WASH response, and (v) Cluster meeting coordination.
Cluster Overview
The WASH Cluster in Ethiopia is part of and supports the Ministry of Water and Energy (MoWE). MoWE leads the WASH cluster emergency task force (ETF), which is co-led by the WASH Cluster secretariat hosted by UNICEF. In Ethiopia, the WASH Cluster was established with the activation of the cluster approach in 2006, and UNICEF, as the global Cluster Lead Agency, was assigned to appoint the WASH Cluster Coordinator.
The WASH Cluster aims to provide guidance and support to its partners to ensure well-coordinated, quality assistance reaches those in need in accordance with humanitarian standards and principles. Conflict, severe drought conditions, seasonal flooding, and Cholera remain the key drivers of WASH needs in Ethiopia.
In 2024, the WASH Cluster aims to work with 79 partners to preserve life, well-being, and dignity and reduce the risk of WASH-related disease through timely interventions to vulnerable populations and preparedness to respond to shocks. Significant humanitarian WASH needs in 2024 are projected with a rigorous HPC process in Ethiopia.
The Humanitarian Program Cycle
The humanitarian program cycle (HPC) is a coordinated series of actions to help prepare for, manage, and deliver humanitarian response. It consists of five coordinated elements, each step logically building on the previous and leading to the next. Successful implementation of the HPC depends on effective emergency preparedness, effective coordination with national/local authorities and humanitarian actors, and information management. Affected people are central to the response; preparedness, coordination, and information management processes continually occur.
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Cholera is a diarrhoeal disease that is usually contracted when drinking water contaminated with Vibrio cholerae bacteria. The fight against this disease requires a multidisciplinary approach that combines a water, hygiene and sanitation (WaSH) response with a monitoring system, improved water suppl...y and quality, sanitation and hygiene, and a health response with the treatment of the disease itself.
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Climate change is a public health crisis – impacting our weather and environment, along with the quality of the air we breathe, the water we drink, and the food we eat. The most vulnerable members of our communities – children, people of color, the poor, people with disabilities or chronic disea...ses, and the elderly – are the ones who suffer the most.
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SITUATION ANALYSIS
• In Syria, nine years into the crisis, access to sucient quantities of safe water remains limited, with increased water quality assurances and support to water systems rehabilitation, operation and maintenance unconditionally needed.
• There is a need to maintain the provis...ion of adequate WASH services and supplies for IDPs especially in the northeast and northwest, and to promote transition to more sustainable solutions while acknowledging that more emphasis on IDPs in collective centers and open areas is also needed.
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