Javascript must be enabled to continue!
Pfas Incineration and Environmental Justice in East Liverpool, Ohio
View through CrossRef
Per- and polyfluoroalkyl substances (PFAS) are a class of synthetic compounds widely used in industrial and consumer products. While PFAS provide product durability, these chemicals are ubiquitous, persistent, bioaccumulative, and toxic. These characteristics make the ultimate disposal of PFAS a challenge. One current disposal method is incineration; however, little research has been conducted on the safety and effectiveness of PFAS incineration. The characteristics of communities with incinerators that have received PFAS shipments indicate that more individuals with lower incomes and individuals with less education than the US average are at higher risk of exposure, which presents important environmental justice and health equity concerns of PFAS incineration. Situated in eastern Ohio, East Liverpool is an Appalachian community that is home to a large hazardous-waste incinerator, operated by Heritage WTI, that began accepting PFAS in 2019. Residents are concerned that the disposal lacks the research necessary to assure safety for the residents. Due to both community interest and data gaps regarding PFAS incineration, our research team conducted a pilot study to examine the distribution and concentration of PFAS in soil samples surrounding the incinerator. All 35 soil samples had measurable amounts of PFAS including Perfluorobutanesulfonic Acid (PFBS), Perfluorooctanesulfonic Acid (PFOS), Perfluorooctanoic Acid (PFOA), and Hexafluoropropylene oxide dimer acid (HFPO-DA)/GenX. PFOS was measured in the majority of soil samples (97%) with a range of 50-8,300 ng/Kg. PFOA was measured in 94% of soil samples with a range of 51 ng/Kg to 1300 ng/Kg. HFPO-DA/GenX was measurable in 12 soil samples with concentrations of ranging from 150 ng/Kg to 1500 ng/Kg. To our knowledge, this is one of the first studies to investigate soil deposition near incinerators. Further research on incineration safety will advance knowledge and action related to regulatory requirements and exposure prevention, ultimately improving individual and community protections and health equity.
Title: Pfas Incineration and Environmental Justice in East Liverpool, Ohio
Description:
Per- and polyfluoroalkyl substances (PFAS) are a class of synthetic compounds widely used in industrial and consumer products.
While PFAS provide product durability, these chemicals are ubiquitous, persistent, bioaccumulative, and toxic.
These characteristics make the ultimate disposal of PFAS a challenge.
One current disposal method is incineration; however, little research has been conducted on the safety and effectiveness of PFAS incineration.
The characteristics of communities with incinerators that have received PFAS shipments indicate that more individuals with lower incomes and individuals with less education than the US average are at higher risk of exposure, which presents important environmental justice and health equity concerns of PFAS incineration.
Situated in eastern Ohio, East Liverpool is an Appalachian community that is home to a large hazardous-waste incinerator, operated by Heritage WTI, that began accepting PFAS in 2019.
Residents are concerned that the disposal lacks the research necessary to assure safety for the residents.
Due to both community interest and data gaps regarding PFAS incineration, our research team conducted a pilot study to examine the distribution and concentration of PFAS in soil samples surrounding the incinerator.
All 35 soil samples had measurable amounts of PFAS including Perfluorobutanesulfonic Acid (PFBS), Perfluorooctanesulfonic Acid (PFOS), Perfluorooctanoic Acid (PFOA), and Hexafluoropropylene oxide dimer acid (HFPO-DA)/GenX.
PFOS was measured in the majority of soil samples (97%) with a range of 50-8,300 ng/Kg.
PFOA was measured in 94% of soil samples with a range of 51 ng/Kg to 1300 ng/Kg.
HFPO-DA/GenX was measurable in 12 soil samples with concentrations of ranging from 150 ng/Kg to 1500 ng/Kg.
To our knowledge, this is one of the first studies to investigate soil deposition near incinerators.
Further research on incineration safety will advance knowledge and action related to regulatory requirements and exposure prevention, ultimately improving individual and community protections and health equity.
Related Results
Detection of multiple per- and polyfluoroalkyl substances (PFAS) using a biological brain-based gas sensor
Detection of multiple per- and polyfluoroalkyl substances (PFAS) using a biological brain-based gas sensor
Abstract
Per- and polyfluoroalkyl substances (PFAS) are man-made compounds that bioaccumulate in environments. Current PFAS detection technologie...
Per- and poly-fluoroalkyl substances (PFAS) in river discharge: modeling loads upstream and downstream of a PFAS manufacturing plant in the Cape Fear watershed, North Carolina.
Per- and poly-fluoroalkyl substances (PFAS) in river discharge: modeling loads upstream and downstream of a PFAS manufacturing plant in the Cape Fear watershed, North Carolina.
The Cape Fear River is an important source of drinking water in North Carolina, and many drinking water intakes in the watershed are affected by per- and polyfluoroalkyl substances...
Bioaccumulation and effects of per- and polyfluoroalkyl substances (PFAS) in bivalves: A review
Bioaccumulation and effects of per- and polyfluoroalkyl substances (PFAS) in bivalves: A review
Abstract
Per- and polyfluoroalkyl substances (PFAS) are a large group of anthropogenic chemicals. Due to their chemical properties, they are used heavily in comme...
Plasmon-Induced Degradation of Short-Chain PFAS by Noble Metal Nanoclusters
Plasmon-Induced Degradation of Short-Chain PFAS by Noble Metal Nanoclusters
Per- and polyfluoroalkyl substances (PFAS) are widely used in industries and consumer products due to their unique physical and chemical properties. However, due to their toxicity ...
Perfluoroalkyl and polyfluoroalkyl substances thermal desorption evaluation
Perfluoroalkyl and polyfluoroalkyl substances thermal desorption evaluation
AbstractPer‐ and polyfluoroalkyl substances (PFAS) are highly resistant to biotic and abiotic degradation and can withstand very high temperatures before breaking down. The storage...
Evaluating Maternal Exposure to an Environmental Per and Polyfluoroalkyl Substances (Pfas) Mixture During Pregnancy: Adverse Maternal and Fetoplacental Effects in a New Zealand White (Nzw) Rabbit Model
Evaluating Maternal Exposure to an Environmental Per and Polyfluoroalkyl Substances (Pfas) Mixture During Pregnancy: Adverse Maternal and Fetoplacental Effects in a New Zealand White (Nzw) Rabbit Model
Background: Per- and polyfluoroalkyl substances (PFAS) are often found in drinking water, and serum PFAS are detected in up to 99% of the population. However, very little is known...
Electrochemical Destruction of per- and Polyfluoroalkyl Substances (PFAS) in Complex Solution Matrices
Electrochemical Destruction of per- and Polyfluoroalkyl Substances (PFAS) in Complex Solution Matrices
Per- and Polyfluoroalkyl substances (PFAS) are a group of manmade chemicals which are persistent in the environment and have shown to be toxic to human health. They have accumulate...
Modeling the long-term leaching of PFAS in heterogeneous vadose zones
Modeling the long-term leaching of PFAS in heterogeneous vadose zones
<p>PFAS are emergent contaminants of which the fate and transport in the environment remain poorly understood. A growing body of site investigations have demonstrated...

