Showing posts with label Problem. Show all posts
Showing posts with label Problem. Show all posts

Thursday, July 14, 2011

What is the Problem With Northern Virginia and Washington, DC Water?


Northern Virginia and Washington D.C. are growing in population rapidly and as more people move into the area, a question that is asked more and more frequently is - what is the quality of my drinking water?

Individuals and families are naturally concerned with their health and drinking water is an important element of maintaining good health.

Unfortunately, the quality of the water in Northern Virginia and Washington, D.C. is very poor and is getting worse. Contaminants, bacteria, minerals and chemicals in tap water are masked with heavy doses of chlorine and tap water, in addition to being unhealthy, tastes and smells terrible.

Regulation from the Environmental Protection Agency (EPA) does not eliminate contamination but merely sets maximum levels of contaminants that can enter the human body and cause long term damage.

Well water is also contaminated but there is no Federal or state agency that regulates well water.

What is the Story With Tap Water?

Tap water is municipal water that is usually pumped from nearby rivers and then processed to meet EPA guidelines. The processing is usually done through a waste water treatment plant with heavy amounts of chlorine added to kill remaining bacteria that processing does not catch. It is important to note that EPA guidelines are just that - they establish minimum amounts of allowed contamination that may eventually be harmful to both adults and children.

In Northern Virginia and Washington D.C. the drinking water is pumped mainly out of the Potomac River and at least one waste treatment plant.

Contaminants that may be present in this source water include:

Microbial contaminants, such as viruses and bacteria, which may come from sewage treatment plants, septic systems, agricultural livestock operations, and wildlife.

Inorganic contaminants, such as salts and metals, which can be naturally-occurring or result from urban storm water runoff, industrial or domestic waste water discharges, oil and gas production, mining, or farming.

Contaminants also include pesticides and herbicides, which may come from a variety of sources such as agriculture, urban storm water runoff, and residential uses.

In addition contaminants may include organic chemical contaminants, including synthetic and volatile organic chemicals, which are by-products of industrial processes and petroleum production, and can also come from gas stations, urban storm water runoff and septic systems.

Radioactive contaminants, which can be naturally occurring or be the result of oil and gas production and mining activities also affect local tap water.

What is the source of water in Northern Virginia and Washington D.C.?

The water in the Potomac River, Anacostia River, and Rock Creek flows into the District from outside jurisdictions. For example, the Potomac River begins in West Virginia, while the Anacostia River begins in Maryland. The quality of water in Northern Virginia and the District is thus affected by activities throughout the watershed.

Storm water runoff from commercial, industrial, residential and agricultural sites, point source pollutants from wastewater treatment plants and industrial discharges, and combined sewer overflows from as far away as West Virginia and Pennsylvania all contribute to the quality of water in the District and Northern Virginia.

What About Combined Sewer Overflows (CSO's)

CSO's frequently occur when natural events like flooding overcome the capacity

of waste treatment plants and raw sewage is pumped back into the water source like the Potomac River.

During periods of significant rainfall, the capacity of a combined sewer may be exceeded. When this occurs, regulators are designed to let the excess flow, which is a mixture of storm water and sanitary wastes, to be discharged directly to the Anacostia River, Rock Creek, the Potomac River, or tributary waters. This excess flow is called Combined Sewer Overflow (CSO).

Release of this excess flow is necessary to prevent flooding in homes, basements, businesses, and streets but it adds bacteria and contaminants as potential threats to tap water.

Since a portion of the tap water comes from sewerage treatment plants CSO's can adversely affect the quality of our receiving waters in a number of ways:

CSO's contain material which contributes to high bacteria levels in the receiving waters. Organic material in CSO's can contribute to low dissolved oxygen levels, which can contribute to a potential for fish stress or fish kills, especially in summer months; and, debris in CSO's such as plastic bottles, Styrofoam cups (otherwise known as "floatables") contribute to poor aesthetics.

How Safe For Drinking is Well Water?

Well water, a popular alternative to tap water particularly in Northern Virginia is subject to the same ground water contaminants, chemical discharge waste and organic waste as tap water but is not regulated by any Federal or state agency in any way.

In addition to emitting foul sulphur odors and sediment from the water Northern Virginia well water contains significant amounts of iron in the rock in some areas, particularly the Piedmont and Blue Ridge, resulting in iron "staining." Sulfide in ground water is also found in parts of the Valley and Ridge where coal or natural gas is present produces an obnoxious odor.

Ground water that is a source of well water also can be contaminated by human activities. Bacteria from septic systems, and nitrate from both septic systems and fertilizer applications, are among the most common contaminants. Since well water is not subject to regulation, the potability and suitability for drinking, of a private well is the responsibility of the homeowner and many private wells are contaminated.

Treating Drinking Water From Wells

The Sate of Virginia strongly recommends treatment of well water with chlorine to kill bacteria in well water and, in an effort to overcome the obnoxious smell and taste of chlorine, de chlorination. Again, this process is not controlled by any state or Federal agency.

Two general kinds of water treatment are disinfecting and conditioning. To ensure that the supply is free of harmful bacteria, water is disinfected.

Objectionable tastes, odors, and matter are then removed by conditioning.

Well Water Disinfection Methods

Drinking water is most commonly tested for coliform bacteria, which live in the intestines of warm-blooded animals. Coliform bacteria in a well are usually the result of a faulty septic system or contaminated surface water entering the well or water delivery system.

Materials and tools used in well construction are frequently contaminated with bacteria that live in the soil and these can be introduced into the water system while constructing the well, installing components of the piping system, or servicing any part of the water supply system. The State of Virginia strongly recommends that the water system be disinfected following construction and after all well repairs.

Chlorination is used to disinfect private supplies because it destroys bacteria within a reasonable contact time and provides residual protection. However, ordinary levels of chlorination are not always effective in destroying Giardia cysts, which cause a severe gastrointestinal illness. Super-high levels of chlorination, boiling and filtering are the only effective methods to destroy or remove these cysts.

High chlorine concentrations can have objectionable tastes and odors, and even low chlorine concentrations react with some organic compounds to produce strong, unpleasant tastes and odors.

To eliminate these offensive tastes and to remove excessive amounts of chlorine, the water is then dechlorinated. Activated carbon filters are the most common devices used to dechlorinate water, remove objectionable chlorine tastes, and reduce corrosion of plumbing systems.

How Safe is Tap and Well Water for Drinking?

Municipalities, well owners and even the EPA claim that tap and well water in Northern Virginia and Washington D.C. is perfectly safe for drinking but one must wonder. Consider the source of tap water in light of sewage treatment, heavy chlorine additive and waste discharge in the Potomac River and one starts to wonder. Also consider that well water is subject to most of the contaminants of tap water but is unregulated as well.

Is Drinking Bottled Water an Alternative to Tap or Well?

Yes and no depending on the type and quality of the bottled water. Purified water is considered by many experts to be the best.

The popularity of bottled water has grown tremendously as Americans seek healthy lifestyles and better tasting water. But not all bottled water is healthier than the tap or well alternative.

Up to 25% of all bottled water on the market is merely tap water repacked in plastic bottles and bottled water that is not purified often contains minerals and other contaminants that may be harmful to your health. These contaminants are not only unhealthy and affect the taste of the water but limit storage life for emergency supplies of drinking water.

Purified water however, using a distillation and oxygenation process, provides the water drinker the safest and best tasting alternative to contaminated tap and well water in Northern Virginia and Washington D.C.

Distillation removes the pure water from the contaminants and oxygenation creates a fresh, light water taste.

Pure water is fundamental to creating a healthy lifestyle and good health for you and your family.




Jon M. Stout is Chairman of the Board of Element H2O an Ultra Pure bottled water company located in Chantilly, Virginia. For more information about bottled water, private label bottled water [http://www.elementh2o.com/Store] and bottled water delivery [http://www.elementh2o.com/local] go to the Element H2O website.



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Sunday, July 10, 2011

Well Water - The Hidden Problem


Testing and Contamination in Rural and Suburban America

Background:

Traditionally, the United States has had a significant rural population although the emergence of urban centers has seen significant growth in the last 50 years. Nevertheless, there are many areas in the country that still rely of wells and ground water for their drinking water. Recent EPA estimates are that over 15% of the population still uses well water for drinking, washing, crop support and general purposes. Close to 45 million Americans look to well water for the basic necessities of life.

Well water is under threat of contamination from a number of sources however, and the burden of testing of ground water is put on individual landowners rather than government agencies. As a result, pure drinking water is becoming a problem in rural and suburban America and, because testing by the individual homeowner is not required, becomes a hidden problem of potentially large magnitude.

The Problem:

Unlike municipal and bottled water source, drinking water from wells is not regulated by any government body including the Environmental Protection Agency. This is true because each well is its own source of water and effective regulation of millions of wells is beyond the scope and power of government regulatory authorities.

In addition well water is subject to contamination from a number of sources and the risk of significant health problems depends on a number of factors including:

o How the well was built

o Where the well is located on the property

o Local environment factors

o The condition of the aquifer that supplies the well

o Human, animal and industrial activities in proximity to the well

Clean drinking water is necessary for a healthy life and contamination of ground water is a threat to health in rural and suburban America. The actual well drillers and installers are subject to state regulation but the quality of the water output is not regulated in any way and remains the responsibility of the well owner.

Well water varies in quality significantly from place to place throughout the country. Depth of the water table and the quality and quantity of replenishment sources are also considerations.

Well water is ground water that results from rain and snow seeping into the ground and fills the space between rocks and soil in what is known as an "aquifer". The bulk of the nation's drinking water comes from ground water aquifers although the portion that ends up in municipal water supplies as tap water is subject to quality standards.

The burden of maintaining safe drinking water from wells is put squarely on the homeowner and well water testing is at best a cumbersome process. Simple tests are not adequate to identify all contamination sources and expensive laboratory testing is often required. Repeated testing is also required to ensure that changing conditions do not introduce new contaminants.

Rural and Suburban:

Well water contamination is not limited to rural farms however. As greater population pressure is put on urban area suburbs, housing developments are increasingly required to use well water to meet their water needs. This is because individual homes are being built faster than municipal water utilities can expand and homeowners are forced to use existing wells. The percentage of the population relying on ground water thru wells can be expected to increase.

Sources of Well Water Contaminants:

Well water contamination generally comes from three sources:

o Natural impurities or contaminants:

As water moves through the ground it picks up elements that occur naturally like magnesium calcium, chlorides and often more dangerous dissolved elements like arsenic, boron, selenium and radon. This is a particular problem in flooding situations.

o Pollution from human activities:

o Improper use of fertilizers, animal manure, pesticides and herbicides

o Landfills and waste dumps

o Heavy metals from mining and construction activities

o Concentrated Animal Feeding Operations (CAFO's)

o Faulty septic systems located near the well head

o Underground storage tanks

o Improper discharge from storm drains

o Chemical spills and improper waste disposal

o Pressure from suburban growth that exceeds municipal water capacity and reliance on well water without safety standards.

The list of possible contaminants and sources is large and growing and well water is increasingly at risk. EPA sources estimate that contamination can be found in all 50 states and the incidences of contamination are increasing as the suburbs grow and overpopulation encroaches on rural wells.

Types of Human Contaminants:

Natural impurities and contaminants are generally widely known and, while still a dangerous hazard to drinking water, are not as critical as contamination from human activity.

There is pressure on the nation's water supply as more people move to urban areas and industry and business continue to contaminate ground water. The sources of pollutants are understood, but not regulated by local, state and federal government agencies:

o Bacteria and nitrates- These contaminants are often found in human wastes that contaminate due to poor location of septic tanks, local landfills and garbage dumps near wells that produce drinking water. Children, adults with damaged autoimmune systems, cancer patients and the elderly are at risk.

o Animal waste and manure - Pathogens from animal wastes in feeding operations and large farms have a particularly negative affect on ground water.

o Chemicals used to promote growth of crops and control insect damage- Fertilizers and pesticides used on farms, golf courses and suburban lawns and gardens have a long lasting negative impact on ground water.

o Industrial products and wastes - Chemicals used in industrial and business processes are increasingly becoming major pollutants for nearby wells. This problem extends to old and leaking storage tanks on farmland converted to suburban housing development still using wells for drinking water.

o Household wastes - In addition to faulty septic tanks, household wastes from detergents, cleaning solvents, motor oil, paints and thinners all take their toll on the ground water supply of drinking water.

Flooding and Well Water:

While not pervasive in all parts of the country, flooding occurs regularly and affects large areas and parts of the population. The impact of flooding from rivers and hurricanes can cause extensive and long term negative effects on the drinking water from wells.

Because of the extensive flood areas and the speed and direction of ground water flow, water wells are often adversely affected for many months after the flood. Wells can become contaminated with bacteria or other contaminants. In addition, waste water from malfunctioning septic tanks or chemicals seeping into the ground can contaminate the ground water even after the water was tested and found to be safe. Long range precautions are necessary, including repeated testing, to protect the safety of drinking well water after floods.

Well Water and MTBE:

MTBE (methyl tertiary-butyl ether) is an additive to gasoline and fuel oil that replaces lead for better performance. It is easily absorbed in ground spills and enters ground water through leaks is faulty underground storage tanks. MTBE moves quickly through the soil and dissolves easily in water. MTBE is not a localized phenomenon. Ground water in 24 states has been found to contain high concentrations of MBTE.

MTBE contamination is serious and dangerous. Even a minor spill of gasoline containing small amounts of MTBE can contaminate significant ground water and drinking water wells.

A number of states have banned the use of MTBE and other states are reviewing the problem, Significant contamination has occurred however to the point that, even if MTBE was completely banned, it would take many years to free the ground water environment from the effects of the chemical.

Conditions and Tests:

The list of contaminants that require testing is extensive and burdensome. Any one of a number of conditions can negatively affect the purity of the drinking water from wells. Furthermore testing does not stop with the initial test and periodic tests must be performed.

Conditions or Nearby Activities:

Recurring gastro-intestinal illness

Household plumbing contains lead

Radon in indoor air or region is radon rich

Corrosion of pipes, plumbing

Nearby areas of intensive agriculture

Coal or other mining operations nearby

Gas drilling operations nearby

Dump, junkyard, landfill, factory, gas station, or dry-cleaning nearby

Odor of gasoline or fuel oil, and near gas station or buried fuel tanks

Objectionable taste or smell

Stained plumbing fixtures, laundry

Salty taste and seawater, or a heavily salted roadway nearby

Scaly residues, soaps don't lather

Rapid wear of water treatment equipment

Water softener needed to treat hardness

Water appears cloudy, frothy, or colored

Test For:

Coliform bacteria

pH, lead, copper

Radon

Corrosion, pH, lead

Nitrate, pesticides, coliform bacteria

Metals, pH, corrosion

Chloride, sodium, barium, strontium

Volatile organic compounds, total dissolved solids, pH, sulfate, chloride, metals

Volatile organic compounds

Hydrogen sulfide, corrosion, metals

Iron, copper, manganese

Chloride, total dissolved solids, sodium

Hardness

pH, corrosion

Manganese, iron

Color, detergents

Source: Environmental Protection Agency

The Bottled Water Alternative:

Where the purity of drinking well water is in question, bottled water is the best alternative to ensure good health. But not all bottled waters are the same quality. There are many types of bottled water on the market.

Spring water is subject to the same ground water contamination as well water and contains inorganic compounds that may be harmful to health. Filtered water does not remove heavy metals, nitrates or bacteria unless combined with other processes. Purified water using either Ion exchange or reverse osmosis procedures is unable to effectively remove inorganic compounds and bacteria.

By far the most effective process for producing ultra pure bottled water combines distillation and carbon filtration processes that purifies the water and removes over 99% of inorganic compounds. The distillation and carbon filtration combination produces a high quality, ultra pure water. For more information on purified water visit http://www.ElementH2O.com

Bottled water is also subject to Food and Drug Administration quality standards that are administered through individual state inspection agencies.

The Future of Well Water:

Contamination of well water will increase as development pressure on rural and suburban land continues. This is particularly true on the East Coast of the United States as rural areas, already under pressure, are consumed by increased concentration of more individuals entering the urban environment.

Testing of well water is complex and expensive and generally beyond the scope and awareness of those relying on well water for their drinking water and personal use. Contamination and health problems can be expected to increase.




Jon M. Stout is Chairman of the Board of Element H2O an Ultra Pure bottled water company located in Chantilly, Virginia. For more information about bottled water, private label bottled water [http://www.elementh2o.com/Store] and bottled water delivery [http://www.elementh2o.com/local] go to the Element H2O website.



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