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1.
Am J Health Syst Pharm ; 78(5): 416-425, 2021 02 19.
Article in English | MEDLINE | ID: mdl-33386406

ABSTRACT

PURPOSE: As Coronavirus disease 19 (COVID-19) has spread globally, hospital systems have seen an increasing strain on their ability to accommodate the growing caseload. This demand has led countries to adopt varying surge-facility or alternate care site (ACS) models to manage patient overflow. This report describes the experience of setting up pharmacy services at a city-run surge facility in Philadelphia. SUMMARY: The COVID-19 Surge Facility at the Liacouras Center (CSF-L) was initially developed to serve as a site for patients convalescing from acute inpatient stays in order to free up healthcare resources in surrounding hospitals. The CSF-L site required a distinct set of services to provide the desired level of care. This report details the preparations and challenges faced by the CSF-L pharmacy team in this endeavor, including identifying a pharmacy location that met regulatory requirements, obtaining proper licenses, coordinating drug procurement, filling staffing requirements, developing a formulary, defining the pharmacy and medication management workflow, and ensuring safety protocols were followed. This report explains the rational for developing certain processes and suggests alternative options and ideal plans for developing future pharmacy services in an ACS. CONCLUSION: Identifying a pharmacy leadership team early in the ACS planning process can lead to more efficient plans for pharmacy services. This report details the important steps taken, decisions made, and challenges faced in setting up pharmaceutical services at a COVID-19 field hospital.


Subject(s)
COVID-19/therapy , Mobile Health Units , Pharmacists , Pharmacy Service, Hospital/methods , Students, Pharmacy , Workflow , Basketball , COVID-19/epidemiology , Humans , Mobile Health Units/trends , Pharmacists/trends , Pharmacy Service, Hospital/trends
2.
Ultrason Sonochem ; 19(5): 1044-50, 2012 Sep.
Article in English | MEDLINE | ID: mdl-22421063

ABSTRACT

Nanoparticles, when homogeneously dispersed in a base fluid, e.g. water, ethylene glycol etc. are commonly known as nanofluids. Nanofluids have gained attention in the scientific community for their enhanced thermal properties. One of the major problems in using nanofluids as a heat transfer medium for commercial applications is that, in most of the closed circuit industrial cooling processes, the cooling fluid has to be replaced after several cycles of cooling operation because of an increased presence of contaminants. If nanofluids were used as a coolant, it would be very hard to separate the nanoparticles from the waste fluid. The present work is aimed at the separation and recycling of nanoparticles from fluid waste by means of quick settling of titanium dioxide nanoparticles using silver nanoparticles along with ultrasonic treatment. It is observed that with increasing silver concentration and time of ultrasonication, the stability of the dispersion decreases. There is a value for both the silver concentration and ultrasonication time above which the settling time decreases drastically.

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