Please use this identifier to cite or link to this item: http://hdl.handle.net/20.500.12323/4736
Title: Toxic Site Identification Program in Azerbaijan
Authors: Abbasov, Rovshan
Cervantes de Blois, Chelsea L.
Sharov, Petr
Temnikova, Alena
Karimov, Rovshan
Karimova, Gunay
Keywords: Toxic sites
Pollution
Pesticides
Benzene
Metals
Health impacts
Issue Date: Oct-2019
Publisher: Springer Science+Business Media, LLC, part of Springer Nature
Citation: Environmental Management
Abstract: The need to protect communities from hazardous waste is an important agenda for any nation. Although pollutant management and policy development are attempted in many developing countries, it is not always successful due to limited funds, project resources, and access to trained experts to conduct toxic site identification projects. For this reason, Pure Earth created the Toxic Site Identification Program (TSIP). The goal of the TSIP program is to provide reliable information and data that identifies location of toxic sites and the level of toxic severity. TSIP is significant because it provides developing countries a database of ranked toxic sites identified as hazardous risk to human health. For example, Azerbaijan is one of the most polluted post-Soviet nations, but has limited resources to address and manage its polluted sites. The Azerbaijani TSIP database is the first reliable data source that identifies hazardous pollutants in the country. Our study is significant because it discusses how the TSIP labels and ranks the level of toxic severity to human health. It is also the first data source in Azerbaijan that identifies which Soviet legacy toxic sites are affecting local communities. Although our study is specific to Azerbaijan, the TSIP method can be applied to nations with similar data limitations and the need for a database that identifies country specific environmental and hazardous locations. The data sampling method and results are mapped and accompanied by tables of the collected pollutant types to identify communities at greatest health-risk to legacy toxic sites.
URI: http://hdl.handle.net/20.500.12323/4736
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