Water, sanitation, and hygiene (WASH) services in healthcare facilities are essential to ensure quality health care and to facilitate infection, prevention, and control practices. They are critical to responding to outbreaks and preventing healthcare-associated infections and, therefore, critical to global health security. Many healthcare facilities in low-and middle-income settings have limited WASH services. One tool to address this issue is the World Health Organization (WHO) and United Nations Children's Fund (UNICEF) Water and Sanitation for Health Facility Improvement Tool, or ''WASH FIT.'' WASH FIT is a continuous improvement tool based on key WHO environmental health and infection, prevention, and control standards. While using WASH FIT, internal teams regularly perform self-assessments at their facilities, using up to 65 WASH indicators to develop and implement an improvement plan. The Ministry of Health and Social Protection (MSPS) in Togo, with support from WHO and the US Centers for Disease Control and Prevention (CDC), piloted this tool in 3 healthcare facilities. The pilot included facility assessments at 3 time points and in-depth interviews and document review 7 months after initiating WASH FIT. Facilities made improvements without significant external financial or material support. On average, pilot facilities improved from 18% of total indicators meeting standards at baseline to 44% after 7 months. Examples included improved drinking water supply, medical waste segregation, and increased soap at handwashing stations. Participants reported improvements in staff and patient satisfaction, hand hygiene, and occupational safety. Findings suggest that WASH FIT, coupled with training and supervision, may help facilities improve WASH services and practices, thus contributing to global health security. Based on these findings, the Togolese MSPS plans to scale up nationwide.
Healthcare facilities (HCFs) in low- and middle-income countries frequently lack water, sanitation and hygiene (WASH) services that are adequate to implement infection prevention and control (IPC) practices, decrease healthcare-associated infections and antimicrobial resistance, and provide quality healthcare. The Water and Sanitation for Health Facility Improvement Tool (WASH FIT), initially published in 2017 and updated in 2018, is a risk-based, continuous improvement framework. The tool aims to improve WASH and related facility management and may contribute to quality of care (QoC) efforts. To date, there is no guidance available on how to monitor and evaluate the use of this tool nor is there rigorous evidence on its effectiveness. We developed a conceptual WASH FIT evaluation framework by drawing from the broader WASH, health systems strengthening, and QoC evidence base. This framework provides a common basis to plan, implement, monitor, and evaluate potential inputs, outputs, outcomes, and impacts from applying WASH FIT. Routine use of the tool, coupled with WASH infrastructure improvements as guided by the tool, can lead to better IPC practices, and may support improvements in occupational safety, QoC, global health security, and ultimately progress towards achieving Sustainable Development Goals 3 (good health and well-being) and 6 (clean water and sanitation).
. In August 2015, an outbreak of cholera was reported in Tanzania. In cholera-affected areas of urban Dar es Salaam and Morogoro, many households obtained drinking water from vendors, who sold water from tanks ranging in volume from 1,000 to 20,000 L. Water supplied by vendors was not adequately chlorinated. The Tanzanian Ministry of Health, Community Development, Gender, Elderly and Children and the U.N. Children’s Fund, Tanzania, collaborated to enroll and train vendors to treat their water with 8.68-g sodium dichloroisocyanurate tablets (Medentech, Ireland). The Centers for Disease Control and Prevention (CDC) provided monitoring and evaluation support. Vendors were provided a 3-month supply of chlorine tablets. A baseline assessment and routine monitoring were conducted by ward environmental health officers. Approximately 3 months after chlorine tablet distribution, an evaluation of the program was conducted. The evaluation included a full enumeration of all vendors, an in-depth survey with half of the vendors enumerated, and focus group discussions. In total, 797 (88.9%) vendors were included in the full enumeration and 392 in the in-depth survey. Free residual chlorine (FRC) was detected in 12.0% of tanks at baseline and 69.6% of tanks during the evaluation; however, only 17.4% of these tanks had FRC ≥ 0.5 mg/L. The results suggest high acceptability and use of the chlorine tablets by water vendors. However, given variation in the water source used and longer storage times, dosing could be increased in future programming. Bulk chlorination using chlorine tablets offers an efficient community-level approach to treating water closer to the point of use.
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