24 research outputs found

    Experiences pertaining to child nutrition and care provision among early care and education stakeholders, sponsors, and center directors during the COVID-19 pandemic: A multi-method study

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    Purpose: This study used multiple methods (interviews, survey) to assess experiences of stakeholders, sponsors, and center-based early care and education (ECE) program directors pertaining to child nutrition (e.g., provision of nutritious foods, mealtime practices, CACFP administration/use) and the provision of child-care (i.e., day-to-day ECE operations and programming) during the COVID-19 pandemic. Methods: Participants included stakeholders from 22 national and state agencies associated with the Child and Adult Care Food Program (CACFP) who also work to promote nutrition and quality child-care, representatives of 17 CACFP sponsor organizations, and 40 center-based ECE program directors who participated in interviews, as well as 100 ECE directors who completed surveys. Data were collected across four states. Thematic analyses of interviews and descriptive methods were used to analyze data collected. Results: Six main themes emerged from stakeholders, sponsors, and ECE program directors' focusing on: experiences during the temporary closure of several ECE programs; additional responsibilities and unanticipated expenses for ECE programs; difficulty in keeping up with constantly changing COVID-19 guidance; encounters during shifts from in-person to virtual training and monitoring; changes to nutrition practices at ECE; and the need to prioritize ECE funding. Conclusions: Findings highlight challenges and supports to ECE programs and could inform future efforts to enhance child-care quality and child nutrition in the U.S. during pandemic situations

    Principles for transformative ocean governance

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    With a focus on oceans, we collaborated across ecological, social and legal disciplines to respond to the United Nations call for transformation in the ‘2030 Agenda for Sustainable Development’. We developed a set of 13 principles that strategically and critically connect transformative ocean research to transformative ocean governance (complementing the UN Decade for Ocean Science). We used a rigorous, iterative and transparent consensus-building approach to define the principles, which can interact in supporting, neutral or sometimes conflicting ways. We recommend that the principles could be applied as a comprehensive set and discuss how to learn from their interactions, particularly those that reveal hidden tensions. The principles can bring and keep together partnerships for innovative ocean action. This action must respond to the many calls to reform current ocean-use practices which are based on economic growth models that have perpetuated inequities and fuelled conflict and environmental decline

    EXPERIMENTAL DESIGN AND DEVELOPMENT OF LOCALLY MADE PARABOLIC TROUGH SOLAR THERMAL COLLECTOR UNIT

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    The design and analysis of Parabolic Trough Solar Thermal Collector (PTSTC) system used to generate hot/steam water for domestic and industrial purposes were carried out. The parametric studies were also conducted on the collector, study the effectiveness of hot water production for potential applications. The PTSC was designed with Parabolic Software version 2.0. The fabrication and design were done with a combination of reflector surface, reflector support, absorber pipe and wooden stand. The absorber pipe was painted in black colour while the trough was manually operated. The flow of water in the system follows the recycling process repeated during data acquisition. The ambient temperature, the inlet and outlet temperature of the receiver and total solar radiation on the PTSC were recorded. Different flow rate of the Heat Transfer Fluid (HTF) was tested at 0.021, 0.022, 0.023 and 0.024 kg/s respectively. Collected data showed the maximum outlet water temperature attained as 72oC. The average outlet temperature increased from 36oC at 10:30 hour to 69.84oC at 16:00 hour. The average beam radiation during the collection period was 699 W/m2. Different flow rates show that the lower the flow rate, the higher the efficiency of the system. The study revealed that the developed parabolic trough solar collector is viable for the production of sterilized water and low stage steam for domestic and industrial purposes
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