{"id":1010,"date":"2008-12-12T08:17:08","date_gmt":"2008-12-12T12:17:08","guid":{"rendered":"https:\/\/www.beyondpesticides.org\/dailynewsblog\/?p=1010"},"modified":"2008-12-12T08:17:08","modified_gmt":"2008-12-12T12:17:08","slug":"usgs-survey-finds-low-level-pesticides-in-drinking-water","status":"publish","type":"post","link":"https:\/\/beyondpesticides.org\/dailynewsblog\/2008\/12\/usgs-survey-finds-low-level-pesticides-in-drinking-water\/","title":{"rendered":"USGS Survey Finds Low-Level Pesticides in Drinking Water"},"content":{"rendered":"<p><font size=\"2\">(<em>Beyond Pesticides<\/em>, December 12, 2008) <a href=\"http:\/\/pubs.usgs.gov\/sir\/2008\/5208\/\">A new study<\/a> has found pesticides in surface waters around the United States. The U.S. Geological Survey (USGS) analyzed water from nine selected rivers, which are used as a source for public water systems and found that low levels of certain xynthetic chemicals remain in public water supplies after being treated in selected community water facilities.<\/p>\n<p>&#8220;Most of the man-made chemicals assessed in the USGS study are unregulated in drinking water and not required to be monitored or removed,&#8221; says Tom Jacobus, General Manager of the Washington Aqueduct. &#8220;These findings are not surprising and they will be important in helping regulators and assisting water utility managers arrive at decisions about future water treatment processes.&#8221;<\/p>\n<p>Scientists tested water samples for about 260 commonly used chemicals, including pesticides, solvents, gasoline hydrocarbons, personal care and household-use products, disinfection by-products, and manufacturing additives. This study did not look at pharmaceuticals or hormones.<\/p>\n<p>Low levels of about 130 of the synthetic chemicals are detected in streams and rivers before treatment at the public water facilities (source water). Nearly two-thirds of these chemicals are also detected after treatment. Most of the chemicals found are at levels equivalent to one thimble of water in an Olympic-sized pool.<\/p>\n<p>&#8220;Low level detection does not necessarily indicate a concern to human health, but rather indicates what types of chemicals we can expect to find in different areas of the country,&#8221; said USGS lead scientist, Gregory Delzer. &#8220;Recent scientific advances have given USGS scientists the analytical tools to detect a variety of contaminants in the environment at low concentrations; often 100 to 1,000 times lower than drinking-water standards and other human-health benchmarks.&#8221; Pesticides, however, have been found to cause long-term health effects from even very low doses and in combination. For more, see &#8220;<a href=\"https:\/\/www.beyondpesticides.org\/infoservices\/pesticidesandyou\/Winter%2007-08\/dose-poison-debunk.pdf\">Facing Scientific Realities: Debunking the &#8216;Dose Makes the Poison&#8217; Myth<\/a>.&#8221;<\/p>\n<p>Testing sites include the White River in Indiana; Elm Fork Trinity River in Texas; Potomac River in Maryland; Neuse River in North Carolina; Chattahoochee River in Georgia; Running Gutter Brook in Massachusetts; Clackamas River in Oregon; Truckee River in Nevada; and Cache La Poudre in Colorado. The populations in communities served by these water treatment plants vary from 3,000 to over a million.<\/p>\n<p>This study is among the first by the USGS to report on a wide range of chemicals found before and after treatment. The full source-water quality assessment and <a href=\"http:\/\/pubs.usgs.gov\/ds\/2007\/268\/downloads\/ds268webV1-3.pdf\">listing of chemicals<\/a> are available online, as well as Mr. Delzer&#8217;s <a href=\"http:\/\/water.usgs.gov\/nawqa\/swqa\/GuidanceDocuments\/BriefingPresentation_with_notes.ppt\">presentation<\/a> from a December 5 <a href=\"http:\/\/www.eesi.org\/120508_water\">press conference<\/a>.<\/p>\n<p>Chemicals included in this study serve as indicators of the possible presence of a larger number of commonly used chemicals in rivers, streams, and drinking water. The most commonly detected chemicals in the source water are herbicides, disinfection by-products, and fragrances. Herbicides include <a href=\"https:\/\/www.beyondpesticides.org\/pesticides\/factsheets\/Atrazine.pdf\">atrazine<\/a>, metalachlor, and <a href=\"https:\/\/www.beyondpesticides.org\/gateway\/pesticide\/simazine.htm\">simizine<\/a>. Many of these chemicals are among those often found in ambient waters of 186 rivers and streams sampled by USGS since the early 1990s, and are highly correlated with the presence of upstream wastewater sources or upstream agricultural and urban land use.<\/p>\n<p>Measured concentrations of chemicals detected in both source and treated water were generally less than 0.1 part per billion. Although potential human-health effects and risk are not assessed in this study, USGS takes the position that adverse effects to human health is negligible based on comparisons of measured concentrations and available human-health benchmarks. Other scientists point to health effects associated low level exposures well below regulatory standards set by government and acknowledge serious and troubling uncertainties or unanswered questions associated with human health and environmental impact.<\/p>\n<p>More than 75 percent of source- and treated-water samples in this study contained 5 or more chemicals. The common occurrence of chemical mixtures means that the total combined toxicity may be greater than that of any single contaminant present. The USGS report identifies the need for continued research because the additive or synergistic effects on human health of mixtures of synthetic chemicals at low levels are not well understood or regulated. The study also did not look at implications to ecosystems or aquatic health.<\/p>\n<p>USGS findings are used by the U.S. Environmental Protection Agency, the States, utilities and many nongovernmental agencies to help protect streams and watersheds that serve as water supplies and to guide those involved in decisions on treatment processes in the future.<\/p>\n<p>The USGS is a non-regulatory agency which often monitors the quality of available, untreated water resources. These studies begin to relate the quality of these resources to drinking water. USGS studies are intended to complement drinking-water monitoring required by Federal, State, and local programs, which focus primarily on post-treatment compliance monitoring.<\/p>\n<p>The USGS <a href=\"http:\/\/pubs.usgs.gov\/fs\/2007\/3069\/\">National Water-Quality Assessment Program<\/a> is planning to complete as many as 21 additional surface-water assessments through 2013. A companion study is scheduled for release in 2009 that summarizes the occurrence of the same chemicals in high-production wells and the associated treated water in 13 states.<\/font><\/p>\n","protected":false},"excerpt":{"rendered":"<p>(Beyond Pesticides, December 12, 2008) A new study has found pesticides in surface waters around the United States. The U.S. Geological Survey (USGS) analyzed water from nine selected rivers, which are used as a source for public water systems and found that low levels of certain xynthetic chemicals remain in public water supplies after being treated in selected community water facilities. &#8220;Most of the man-made chemicals assessed in the USGS study are unregulated in drinking water and not required to be monitored or removed,&#8221; says Tom Jacobus, General Manager of the Washington Aqueduct. &#8220;These findings are not surprising and they will be important in helping regulators and assisting water utility managers arrive at decisions about future water treatment processes.&#8221; Scientists tested water samples for about 260 commonly used chemicals, including pesticides, solvents, gasoline hydrocarbons, personal care and household-use products, disinfection by-products, and manufacturing additives. This study did not look at pharmaceuticals or hormones. Low levels of about 130 of the synthetic chemicals are detected in streams and rivers before treatment at the public water facilities (source water). Nearly two-thirds of these chemicals are also detected after treatment. Most of the chemicals found are at levels equivalent to one thimble of [&hellip;]<\/p>\n","protected":false},"author":2,"featured_media":0,"comment_status":"open","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[72,12],"tags":[],"class_list":["post-1010","post","type-post","status-publish","format-standard","hentry","category-atrazine","category-water"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v26.3 - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>USGS Survey Finds Low-Level Pesticides in Drinking Water - Beyond Pesticides Daily News Blog<\/title>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/beyondpesticides.org\/dailynewsblog\/2008\/12\/usgs-survey-finds-low-level-pesticides-in-drinking-water\/\" \/>\n<meta property=\"og:locale\" content=\"en_US\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"USGS Survey Finds Low-Level Pesticides in Drinking Water - Beyond Pesticides Daily News Blog\" \/>\n<meta property=\"og:description\" content=\"(Beyond Pesticides, December 12, 2008) A new study has found pesticides in surface waters around the United States. The U.S. Geological Survey (USGS) analyzed water from nine selected rivers, which are used as a source for public water systems and found that low levels of certain xynthetic chemicals remain in public water supplies after being treated in selected community water facilities. &#8220;Most of the man-made chemicals assessed in the USGS study are unregulated in drinking water and not required to be monitored or removed,&#8221; says Tom Jacobus, General Manager of the Washington Aqueduct. &#8220;These findings are not surprising and they will be important in helping regulators and assisting water utility managers arrive at decisions about future water treatment processes.&#8221; Scientists tested water samples for about 260 commonly used chemicals, including pesticides, solvents, gasoline hydrocarbons, personal care and household-use products, disinfection by-products, and manufacturing additives. This study did not look at pharmaceuticals or hormones. Low levels of about 130 of the synthetic chemicals are detected in streams and rivers before treatment at the public water facilities (source water). Nearly two-thirds of these chemicals are also detected after treatment. 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The founders, who established Beyond Pesticides (originally as National Coalition Against the Misuse of Pesticides) as a nonprofit membership organization in 1981, felt that without the existence of such an organized, national network, local, state and national pesticide policy would become, under chemical industry pressure, increasingly unresponsive to public health and environmental concerns. Beyond Pesticides believes that people must have a voice in decisions that affect them directly. We believe decisions should not be made for us by chemical companies or by decision-makers who either do not have all of the facts or refuse to consider them. Learn more about our work, read A Year in Review\u20142021, our accomplishments are your victories! Beyond Pesticides seeks to protect healthy air, water, land, and food for ourselves and future generations. By forging ties with governments, nonprofits, and people who rely on these natural resources, we reduce the need for unnecessary pesticide use and protect public health and the environment. Beyond Pesticides provides hands-on services to the public and supports local action by: identifying and interpreting hazards; and, designing safe pest management programs. With the information provided by Beyond Pesticides, people may not only be able to make informed choices and adopt practices that protect themselves and their families from unnecessary exposure to pesticides, but they will be able to effect changes on community-wide pest management decisions and policies that govern pesticide use, such as pesticide uses in parks, schools, for community insect control and along roadsides. 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