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In the face of rapid increases in the number of hospitalizations due to COVID-19 in Latin America and the Caribbean, coupled with shortages of human and material resources, including medical equipment and gases, there is a need to redesign models of care in the Region to optimize available resources
...
and ensure that more patients receive the quantity and quality of oxygen they need. Oxygen is included in the World Health Organization’s list of essential medicines and is used to care for patients at all levels of integrated health services networks. The efficacy of oxygen use in the treatment of patients with respiratory conditions caused by COVID-19 has been demonstrated, but there is great opportunity to improve the effectiveness of its use if it is used in a rational, sustainable, and safe way. Bearing in mind that the efficacy of a health technology is measured by its benefit under actual conditions of use, practical actions can be taken to improve the use of medical oxygen and avoid oxygen shortages. A drug is considered to be used rationally when patients receive it according to their clinical needs, in doses appropriate to their individual needs, for an appropriate period, and at a low cost to them and their community. By providing instruction on the rational use of oxygen and promoting it, negative repercussions can be avoided, such as loss of efficacy as a result of activities related to oxygen storage, distribution, and administration. Rational use of oxygen also involves controlling waste due to leaks in storage and distribution systems, use of gas at incorrect pressures, use of incorrectly adjusted flowmeters, and disconnections, among other problems. Another aspect to consider is the provision of adequate technical support for all oxygen production systems, in terms of maintenance and calibration, availability of electrical energy, and specific knowledge about these systems. For these reasons, a set of guidelines has been put together for the development of an efficient management system to deal with situations of oxygen scarcity, both now and in the future.
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PNAS 119 (8) e2113947119 | https://doi.org/10.1073/pnas.2113947119
Environmental exposure to active pharmaceutical ingredients (APIs) can have negative effects on the health of ecosystems and humans. While numerous studies have monitored APIs in rivers, these employ different analytical methods, m
...
easure different APIs, and have ignored many of the countries of the world. This makes it difficult to quantify the scale of the problem from a global perspective. Furthermore, comparison of the existing data, generated for different studies/regions/continents, is challenging due to the vast differences between the analytical methodologies employed. Here, we present a global-scale study of API pollution in 258 of the world’s rivers, representing the environmental influence of 471.4 million people across 137 geographic regions. Samples were obtained from 1,052 locations in 104 countries (representing all continents and 36 countries not previously studied for API contamination) and analyzed for 61 APIs. Highest cumulative API concentrations were observed in sub-Saharan Africa, south Asia, and South America. The most contaminated sites were in low- to middle-income countries and were associated with areas with poor wastewater and waste management infrastructure and pharmaceutical manufacturing. The most frequently detected APIs were carbamazepine, metformin, and caffeine (a compound also arising from lifestyle use), which were detected at over half of the sites monitored. Concentrations of at least one API at 25.7% of the sampling sites were greater than concentrations considered safe for aquatic organisms, or which are of concern in terms of selection for antimicrobial resistance. Therefore, pharmaceutical pollution poses a global threat to environmental and human health, as well as to delivery of the United Nations Sustainable Development Goals.
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This Teacher’s Guide accompanies the WHO publication Management of wastes from health-care activities . It provides teaching materials and recommendations for a three day training course, designed mainly for managers of health-care establishments, public health professionals and policy makers
Ce document fournit une vue d'ensemble des technologies spécifiques aux déchets d'activités de soins de santé pour le traitement des déchets solides infectieux et piquants. Pour chaque technologie, les détails de son fonctionnement, ses effets sur l'environnement et la santé, les exigences d'
...
installation, les capacités de traitement des déchets, des exemples de consommables et les avantages et inconvénients sont décrits. Ce document est destiné aux administrateurs et planificateurs des établissements de santé, au personnel chargé de l'eau, de l'assainissement et de la prévention des infections, aux planificateurs nationaux, aux donateurs et aux partenaires.
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Los residuos generados por las actividades sanitarias, desde agujas infectadas hasta isótopos radiactivos, pueden ser una fuente de infecciones o lesiones y su gestión inadecuada puede tener graves consecuencias para la salud pública y efectos nocivos para el medio ambiente.
... lave de la gestión segura de los residuos médicos para orientar a los responsables políticos, a los profesionales y a los gestores de las instalaciones para mejorar estos servicios en los centros sanitarios. more
... lave de la gestión segura de los residuos médicos para orientar a los responsables políticos, a los profesionales y a los gestores de las instalaciones para mejorar estos servicios en los centros sanitarios. more
Depuis les années ‘80, la politique et les pratiques de gestion des déchets ont connu une évolution considérable, tant pour les ménages que pour les entreprises et le secteur public. Plus récemment, l’obligation de tri pour les entreprises est entrée en
vigueur progressivement à partir
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de 2015. Depuis lors, les objectifs de recyclage se sont sensiblement accrus pour de nombreux flux de déchets.
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Le présent guide a été conçu comme un outil simple et pratique pour aider les administrateurs sanitaires des districts à élaborer un plan réaliste à leur niveau, afin de mieux gérer l'élimination des déchets produits par les injectio
Les déchets générés par les activités de soins de santé, depuis les aiguilles infectées jusqu'aux isotopes radioactifs, peuvent être source d'infection ou de blessures et leur gestion inadéquate peut avoir des conséquences sérieuses pour la santé publique et des effets délétères sur l
...
'environnement.
Ce document souligne les aspects clés de la gestion sécurisée des déchets médicaux afin de guider les décideurs politiques, les praticiens et les gestionnaires des centres afin d’améliorer ces services dans les établissements de santé. more
Ce document souligne les aspects clés de la gestion sécurisée des déchets médicaux afin de guider les décideurs politiques, les praticiens et les gestionnaires des centres afin d’améliorer ces services dans les établissements de santé. more
Technical lessons learnt report UNDP GEF Project
Sanitation In Emergencies
WHO
(2015)
excreta disposal in emergencies
SWITCH Africa Green
Mazibuko, T.
National Department of Health South Africa; Consumer Goods Council, Plastics SA
(2020)
CC
Regional Meeting – Kampala,
Uganda
24-25 February 2020
SODIS manual - updated version
The SODIS manual contains detailed information about technical and promotional aspects of the SODIS method.
Former version also available in French, Portuguese, Spanish, Uzbek, Russian
Manual for step-by-step risk management for safely managed sanitation systems. 2nd edition.
This Sanitation safety planning (SSP) manual provides practical, step-by-step guidance to assist in the implementation of the 2018 World Health Organization (WHO) Guidelines on sanitation and health and the
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2006 WHO Guidelines for safe use of wastewater, excreta and greywater in agriculture and aquaculture. The approach and tools should be applied to all sanitary systems to ensure that they are managed to meet health objectives.
The SSP manual is targeted at a variety of users at different levels including; health authorities and regulators, local authorities, sanitation utility managers, sanitation enterprises and farmers, community-based organizations, farmers associations and nongovernmental organizations.
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A Snapshot of European Collection Schemes