by David Miller
Loveland, Ohio – Today, April 10, the United States Environmental Protection Agency (USEPA) issued the first-ever national, legally enforceable drinking water standard to protect communities from exposure to harmful per-and polyfluoroalkyl substances (PFAS), also known as “forever chemicals.” Exposure to PFAS has been linked to deadly cancers, impacts to the liver and heart, and immune and developmental damage to infants and children. The final rule will reduce PFAS exposure for approximately 100 million people, prevent thousands of deaths, and reduce tens of thousands of serious illnesses.
PFAS are synthetic man-made chemicals.
As reported by Loveland Magazine last December, Loveland’s drinking water is contaminated with some of the highest in the Cincinnati area of forever chemicals.
Now that the new rules are in effect, enforceable, and mandated, Loveland could face sanctions if they do not comply.
Forever chemicals get their name because they bioaccumulate. This means the toxic chemicals become concentrated inside the human body as time goes by. Because Forever Chemicals have a long “half-life” and if the chemicals are continuously ingested it’s a one-step forward, two-steps-back scenario.
Public records obtained by Loveland Magazine reveal that Loveland officials were informed by the Ohio EPA about its contaminated drinking water in 2020 and should have known the danger of the “Forever Chemicals” in the tap water they were selling, but remained mostly silent or downplayed the danger to the public. They have offered no immediate solution to residents such as financial help for filtering household tap water or offering safe bottled water to residents, businesses, or schools.
In November of 2023 City Council passed a resolution to engage a consulting company to explore the cost to determine the extent of the problem and recommend solutions. City Hall is awaiting the report.
Loveland resident Sharon Scovanner has been researching this issue extensively, collecting public records from City Hall and the Ohio EPA and is assisting the Miami Group of the Sierra Club in organizing a public information session. According to Scovanner, this session will provide additional information to local residents so they understand the problem and provide actions they can personally take to protect their own drinking water.
Scovanner told Loveland Magazine this morning, “This new enforceable rule is a positive step forward in protecting people’s health. US EPA has acknowledged that no levels of PFAS are safe without the risk of negative health impacts. Until the rule is completely codified (cities will have 5 years to comply), individuals and businesses should take necessary steps to filter their drinking water. Reverse osmosis and carbon filtration are two known treatments for PFAS removal.”
“Cities such as Loveland with elevated PFAS levels should provide thorough and transparent information about PFAS and mitigation measures to all their water customers,” Scovanner added.
Sally Dannemiller the Chair of the Executive Committee of the Miami Group Sierra Club told Loveland Magazine this morning, “The Miami Group Sierra Club welcomes the US EPA’s long overdue decision to regulate the most common PFAS forever chemicals. It bears repeating that testing of Ohio’s public water systems more than four years ago uncovered some 1,500 instances of PFAS, including many communities in close proximity to the Little Miami River.”
Dannemiller added, “This action will prompt the Ohio EPA and local governments to take a more aggressive approach to protecting our rivers and streams as well as public water systems from hazardous effects of forever chemicals. The Sierra Club will be working to make sure our elected officials take appropriate action.”
Just yesterday, City Hall said on their FaceBook page, “The city is working with an engineering firm to address PFAS. Our water system meets all current Ohio EPA and federal water quality requirements. The Ohio EPA has not set a maximum contaminant level for PFAS. Currently the federal and Ohio EPA does not have any standards for PFAS. We anticipate they will in the future, so that is why we proactively started working with an engineer to figure out ways to remove PFAS.”
To diminish public concern the City also posted, “PFAS levels are measured on a part per trillion (ppt) ratio, which is equivalent to one drop of water per trillion gallons. For comparison, one part per trillion is equal to one drop of ink in 20 Olympic-sized swimming pools.”
However, the federal agency says that there is no level of forever chemicals in drinking water that is safe for human consumption and that do not have adverse health impacts.
PFAS exposure through drinking water can be reduced by treating the water using reverse osmosis or certified carbon filtration units, or by using an alternative source of water that is not contaminated.
Look for products identified as certified to NSF International’s Standard P473. Products tested and certified by the Water Quality Association can be found here: https://www.wqa.org/find-products#/. (Source OEPA)
Loveland’s water wells are located on the East side of Bodly Park at the end of 10692 Bettyray Drive on the bank of the Little Miami River. The source of the underground water is rainfall and other discharges onto the surrounding land and hillsides, and the Little Miami River. There are approximately 900 homeowners outside the Loveland City limits who also drink water from the Loveland wells. A small number of Loveland residents in Warren County receive water from the Western Water Company. There are approximately 13,000 residents of the City.
Some people may be more vulnerable to contaminants in drinking water than the general population. Immunocompromised persons such as persons with cancer undergoing chemo therapy, persons who have undergone organ transplants, people with HIV/AIDS or other immune system disorders, some elderly, and infants can be particularly at risk from infections. These people should seek advice about drinking water from their health care providers. (*3)
In December in response to Loveland Magazine’s story, City Hall released this statement:
Loveland Water PFAS 122123
USEPA said that they are is taking a “signature step” to protect public health by establishing legally enforceable levels for several PFAS known to occur individually and as mixtures in drinking water. This rule sets limits for PFAS: PFOA, PFOS, PFNA, PFHxS, and HFPO-DA (also known as “GenX Chemicals”). The rule also sets a limit for mixtures of any two or more of four PFAS: PFNA, PFHxS, PFBS, and “GenX chemicals.” By reducing exposure to PFAS, this final rule will prevent thousands of premature deaths, tens of thousands of serious illnesses, including certain cancers and liver and heart impacts in adults, and immune and developmental impacts to infants and children.
As of today, Loveland will have three years to complete their initial monitoring for these chemicals and must inform the public of the level of PFAS measured in their drinking water. Where PFAS is found at levels that exceed these new standards, Loveland must implement solutions to reduce PFAS in their drinking water within five years.
“For decades, the American people have been exposed to the family of incredibly toxic ‘forever chemicals’ known as PFAS with no protection from their government. Those chemicals now contaminate virtually all Americans from birth. That’s because for generations, PFAS chemicals slid off of every federal environmental law like a fried egg off a Teflon pan,” said Environmental Working Group President and Co-Founder Ken Cook after the announcement was made.
CBS News said this morning, “The EPA estimates that of the 66,000 public water utility systems impacted by the standard, 6% to 10% may need to act to comply with the regulations.”
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For More information read what the Ohio EPA says about forever chemicals:
What are the health effects of exposure to PFAS?
It is important to keep in mind that exposure to PFAS does not always mean a person will have health effects. Whether or not a person gets sick from exposure to PFAS depends on how long a person was exposed (duration), how often they were exposed (frequency), and how much PFAS they were exposed to (dose). Personal factors like age, lifestyle, and other illnesses may also determine whether or not a person gets sick from exposure to PFAS.
There are many chemicals in the PFAS family, and they may cause different health effects if you are exposed to them. The health effects of PFOS, PFOA, PFHxS, and PFNA have been more widely studied than other chemicals in the PFAS family. Some, but not all, studies in humans with PFAS exposure have shown that certain PFAS may: Affect growth, learning, and behavior of infants and children; Lower a woman’s chance of getting pregnant; Interfere with the body’s natural hormones; Increase cholesterol levels; Affect the immune system; or Increase the risk of certain cancers.
Scientists are still learning about the health effects of exposures to mixtures of PFAS. For the most part, laboratory animals exposed to high doses of one or more PFAS have shown changes in liver, thyroid, and pancreatic function, as well as some changes in hormone levels. Because animals and humans process these chemicals differently, more research will help scientists fully understand how PFAS affect human health.
Pregnant and nursing women
Pregnant and nursing women may be more at risk than the general population to the health effects of PFAS. Pregnant and nursing women may want to consider treating their water source if they know or suspect it is contaminated with PFAS. They may also consider using an alternate source of water for drinking, making ice, preparing food, and brushing teeth.
Women who are planning to become pregnant may wish to take steps to reduce their exposure to PFAS. PFAS take a long time to leave the human body, and chemicals like PFOA, PFOS, and PFHxS can build up in a woman’s body if she is exposed for a long time. When she is pregnant, her fetus is then exposed to the chemicals that have built up inside her body. Research suggests that fetuses and babies are more vulnerable to exposure to PFAS than adults.
Breastfeeding provides many health benefits for mother and baby. Research has shown that babies who are breastfed are at less risk of ear and respiratory infections, asthma, obesity, and sudden infant death syndrome (SIDS). Mothers who breastfeed are at less risk of high blood pressure, type 2 diabetes, and ovarian and breast cancer. Although PFAS can be passed from a mother to her child through breastmilk, the benefits of breastfeeding are far greater than any risks. ODH recommends that women currently breastfeeding continue to do so even if they have been exposed to PFAS. For information about breastfeeding, see the Ohio Department of Health Breastfeeding webpage or the Agency for Toxic Substances and Disease Registry (ATSDR) PFAS and Breastfeeding webpage.
Babies who are bottle-fed may also be at greater risk from drinking PFAS than adults because they drink more in proportion to their body weight. If your baby is bottle fed using a powdered or liquid formula, be sure the water mixed with the formula comes from a safe alternate source, such as a public or private water supply that has been tested for PFAS chemicals. This will reduce your baby’s exposure to PFAS. If your usual drinking water source is contaminated with PFAS, treat the water or use a safe alternate source for mixing formula or preparing food. Information about treating water for PFAS can be found by going to the main Ohio PFAS in Drinking Water page, clicking the “Private Drinking Water” tab, and expanding the “Home Treatment Options” menu.
Please consult with your healthcare provider or your child’s pediatrician with any PFAS exposure concerns.
Children
Children have different exposure circumstances that make them especially sensitive to environmental contaminants, like PFAS. Understanding these differences is key for evaluating potential for environmental hazards from pollutants.
Children consume more of certain foods and water relative to body weight than adults. That means the same glass of water with the same PFAS concentration level results in greater exposure to a child versus an adult, even though they are drinking the same amount. Children also do not excrete chemicals as easily as adults, because the enzymes in their bodies that break down contaminants are still developing. That increases the chances for contaminants such as PFAS to interfere with a child’s growth and development.
In addition, young children tend to play close to the ground and come into contact with contaminated soil outdoors. To ensure the protection of children and other sensitive populations, the Ohio PFAS Action Levels are set to protect the most sensitive populations, thereby protecting the health of all populations in Ohio.
Household Pets
Since many household pets are smaller than people, they also consume more of certain foods and water relative to their body weight than people. That means that the same bowl of water with the same PFAS concentration results in greater exposure to household pets, even though they may be drinking the same amount. As a precaution, if you have elevated levels of PFAS in your water, you should consider using alternative water for your household pets.[/learn_more]
Home Treatment Options
Water treatment in a home to reduce levels of PFAS can be:
At the point of entry (POE) where treatment all of the water entering the household plumbing system occurs, or;
At the point of use (POU) which is often at the kitchen sink or primary source of water for drinking or cooking (potentially also including a water line to the refrigerator if it has a plumbed in water line).
Either type of water treatment has pros and cons that should be considered before selecting the best treatment option for a home. The type of treatment system chosen should consider the volume of water that will be used in the home, the number and location of sites where water is consumed in the home, and the type of PFAS chemical identified in the laboratory result.
If water for drinking, cooking and making ice is primarily obtained from the kitchen sink, then the installation of a treatment unit below the sink or on the sink faucet is an option. If drinking water and ice are obtained from the refrigerator, then it is important to consider treating the water line to the refrigerator also.
If drinking water is obtained from multiple locations in a home, then a point of entry, or whole house treatment system may be preferred.
If possible, it is important to choose a treatment system that has been tested and certified to remove the PFAS present in the water based on data provided from the public water system provider or from a laboratory analysis.
Certified Water Treatment Products to Remove PFOA and PFOS
Currently, certified products are only for point of use (POU) treatment, which means they are products designed to treat the water at only one or two locations, usually at the kitchen sink and possibly the refrigerator if it has water connected. Certified products are either granular activated carbon (GAC) filtration or reverse osmosis (RO) treatment systems. It should be noted that some of the products certified to treat water at the point of use are counter-top products or pour through (like a pitcher filter that you fill from the tap yourself as needed).
NSF International and the Water Quality Association are independent third-party testing agencies that currently test and certify products to remove the specific PFAS PFOA and PFOS.
Look for products identified as certified to NSF International’s Standard P473. The NSF International consumer information team can also be contacted at [email protected] or 1-800-673-8010 for assistance in finding a certified product.
Products tested and certified by the Water Quality Association can be found here: https://www.wqa.org/find-products#/.
NSF Standard P473 was retired in March of 2019 when the testing protocol was incorporated into existing water treatment standards, so new products certifications are tested to meet either NSF/ANSI Standard 53: Drinking Water Treatment Units – Health Effects for the reduction of PFOA and PFOS with granular activated carbon filtration systems or to NSF/ANSI Standard 58 Reverse Osmosis Drinking Water Treatment Systems for the reduction of PFOA and PFOS with reverse osmosis systems. There is currently not a standard for certification of other types of treatment systems.
Treatment System Products to Remove other PFAS
There are currently no certified standards for removing PFAS other than PFOA and PFOS, however, consideration of the type of PFAS chemical can inform the selection of the best water treatment system. PFOA and PFOS are longer chain PFAS than other chemicals in the PFAS family. Longer chain chemicals are larger which makes it easier for a filter or membrane to trap them. Shorter chain PFAS are harder to remove with granular activated carbon treatment alone. Though there is no product certification standard at this time, research has shown that reverse osmosis treatment systems can effectively remove a wide range of PFAS, including the shorter chain chemicals in the PFAS family.
Considerations for point of use (POU) granular activated carbon (GAC) treatment:
• Physical filter cartridge traps contaminant(s) which is then removed and disposed of at the end of its rated lifecycle.
• Filter must be replaced on a regular schedule (identified by the manufacturer).
• Generally, granular activated carbon filters provide more water flow than a reverse osmosis system.
• May not effectively treat shorter chain PFAS if present in addition to the longer chain PFOA and/or PFOS.
Considerations for point of use (POU) reverse osmosis (RO) treatment:
Typically requires pre-filtration to be installed to remove any sediment and small particles as well to maximize the life and effectiveness of the membrane.
Large volumes of water are wasted in the treatment process. Typically, for every 10 gallons sent into the treatment unit, 7-8 gallons are sent down the drain as waste, and 2-3 gallons of treated water are produced.
Membranes must be replaced on a regular schedule (identified by the manufacturer) in addition to any pre-filtration cartridges.
Research has shown it to effectively reduce shorter chain PFAS in addition to the longer chain PFOA and/or PFOS.
Point of Entry Water Treatment
Point of entry water treatment is where all the water entering the home is treated for the removal of PFAS. Though there are not currently any products certified to treat all water that enters a home (also called point of entry or POE treatment) for removing any of the PFAS family of chemicals, research has shown that a point of entry granular activated carbon treatment can be effective if properly designed.
These systems are commonly referred to as a lead-lag granular activated carbon system. This system consists of two flow through vessels filled with granular activated carbon with a water sample faucet installed between the two vessels (after the lead vessel, before the lag vessel). Water samples are collected periodically and analyzed for PFAS to monitor the lifespan of the first carbon vessel. When the first vessel starts to lose its ability to remove PFAS, it is removed, the second carbon vessel which was in the lag position is moved to the lead carbon vessel position and new granular activated carbon media is placed into the other vessel, and it is moved to the lag position. This design relies on the lag vessel to provide protection for the water consumer in case the lead vessel is no longer able to trap the PFAS before periodic sample collection identifies that the lead carbon vessel is no longer able to perform effective PFAS removal.
The installation of a point of entry water treatment system to treat water received from a public water system may require a local plumbing permit. Please check with the local building or health department to determine if a plumbing permit is needed.
The installation of a point of entry water treatment system to treat water received from a private water system (water well, spring, pond, rainwater cistern or hauled water storage tank) will require an installation permit form the local health district. These treatment systems may only be installed by a private water systems contractor registered by the Ohio Department of Health. These contractors are bonded and the list of registered contractors may be found at: https://odh.ohio.gov/wps/portal/gov/odh/know-our-programs/private-water-systems-program/info-for-homeowners/.
Please be an informed consumer and request complete information on the components that will be installed, product certification as applicable, the maintenance requirements and cost, and appropriate disposal of the treatment media.
An Ohio resident can find which local health jurisdiction they live in using the directory of local health districts: https://odh.ohio.gov/wps/portal/gov/odh/find-local-health-districts.
Water Treatment System Costs
Please note that testing a water sample for PFAS at a lab certified to perform analysis of drinking water by U.S. EPA Standard Method 537.1 varies by private lab but is estimated to cost approximately $400 per sample. Water samples should be collected and analyzed prior to the selection of an installed treatment unit to help size and select the appropriate treatment device. After the treatment device is installed, water samples should be periodically analyzed to ensure the treatment unit is working properly. Initial and on-going sampling will add to the cost of the installation of treatment systems. Countertop or pitcher type devices will not require routine sampling but media should be replaced in accordance with the manufacturer’s recommendations. U.S. EPA cost estimates for different types of treatment types are below:
Treatment Type |
Approximate Initial Cost of Equipment |
Approximate Media Replacement Cost |
NSF P473 certified Point of Use Granular Activated Carbon (GAC) |
$100 -$1200 |
$200 – $300 each year |
NSF P473 certified Point of Use Reverse Osmosis (RO) |
$400 – $700 |
$200 each year |
Non-certified Lead-Lag Point of Entry Granular Activated Carbon (GAC) |
$1,200 |
$2000 each 3-5 years (depending on periodic testing results*) |
Testing your blood for PFAS
While a PFAS blood test measures how much of specific PFAS are in a person’s body at the time of the test, there are limitations.
A PFAS blood test cannot:
• Tell you where or how you were exposed to PFAS found in your body;
• Tell you what, if any, health problems might occur or have occurred because of PFAS in your body; or
• Be used by your doctor to guide treatment decisions.
Measuring a person’s exposure to PFAS and monitoring potential impacts on human health is best addressed through consultation with a physician. ODH has and will continue to provide information and recommendations to healthcare providers to help providers and patients make informed decisions about what PFAS exposure might mean for an individual’s health. There is no recommendation from ODH or the Centers for Disease Control and Prevention (CDC) that clinicians should test patients for PFAS. Please consult your healthcare provider if you have concerns regarding PFAS exposure.
PFAS Testing for Individuals
ODH does not generally recommend testing your blood for PFAS. Physicians will not be able to treat a specific health issue using the result from this test. Please consult your healthcare provider if you have concerns regarding PFAS exposure.
A blood test for PFAS can tell you what your levels are at the time the blood was drawn, but not whether levels in your body are safe or unsafe.
Most people in the U.S. have measurable amounts of PFAS in their body because PFAS are commonly used in commercial and industrial products.
The PFAS blood test is not a clinical test and cannot tell you whether your health has been or will be affected.
Many health issues associated with PFAS, such as increased cholesterol and decreased thyroid hormone levels, commonly occur in the population as a whole – even when not associated with high levels of PFAS in the blood.
These health issues can be caused by many factors, and there is no way to know or predict if PFAS exposure has or will cause your health problem.
If you have specific health concerns, please consult your doctor for the best treatment choices for you.
It is complicated to get a PFAS blood test.
It is not a routine clinical test, so you would need to contact a private lab directly to arrange the test and it is unlikely that insurance would cover the cost.
There are hundreds of PFAS around us. Labs can only test for a small number of PFAS in blood.
Laboratories that Offer PFAS Testing
ODH is aware of three private laboratories that offer PFAS testing in blood. ODH does not recommend specific labs and does not know specifics regarding the different tests they offer. The cost for PFAS blood testing is in the $500-800 range, not including fees that a clinic might charge for drawing and shipping the blood.
• Vista Analytical Laboratory; 916-673-1520, vista-analytical.com
• Quest Diagnostics; 1-866-697-8378; www.questdiagnostics.com
• SGS AXYS; 1-888-373-0881; www.sgsaxys.com
What you can do with your test results
You can compare your levels to those in groups of people nationwide. The National Biomonitoring Program by the U.S. Centers for Disease Control and Prevention (CDC) tests a very large group of people for PFAS and other chemicals and tells us about average exposures in the U.S. population. These studies can be used to compare your blood test result to what is known about levels in people throughout the country.
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Certified Water Treatment Products to Remove PFOA and PFOS
(*1) The Devil they Knew: Chemical Documents Analysis of Industry Influence on PFAS Science by The Annuals of GlobbalHealth
(*2) PFAS in Drinking Water (OEPA)
(*3) Do I need to take special precautions? Western Water