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Thursday, October 21, 2010

Drinking Water Using HR-CS AAS

Due to its high electro negativity the element fluorine is the most reactive non-metal and thus does not occur in elementary, but only in combined form. 

Fluorine is the most widespread halogen. Its share in the earth’s
crust is approx. 0.08%. It occurs in large quantities in apatite Ca5(PO4)3(OH,F) and in fluorite CaF2 as well as in the almost exhausted cryolite Na3AlF6 . It is therefore no surprise that fluoride is also found in almost all water bodies - although the fluoride concentration can differ greatly by water type and the geogenic conditions. Seawater contains more than 1mg/L fluoride, rivers and lakes approx. 0.05 - 0.5mg/L, whereas in ground water values above 0.5mg/L are relatively rare. However, in deepwater, especially in sources from hydrothermal deposits, significantly higher fluoride content can also be found, e.g. in geysers more than 20mg/L. Mainly responsible for the fluoride content are the pH value, temperature, solubility conditions and geological preconditions .

There are two sides to the effects of fluoride on human health. On the one hand it is essential for the human organism, because the fluoride ingested with food is a condition for the mineralisation of the apatite in bones and teeth. In this respect a corresponding fluoride content in the drinking water as the most important food is also of great importance with regard to an adequate caries prophylaxis. On the other hand too high a daily absorption of fluoride in all the ingested food can have fatal consequences. Tooth and bone fluorosis result if the daily total fluorine absorption exceeds approximately 20mg F/day .

The control of the fluoride concentration in our foodstuffs is therefore of major importance. Drinking water is the number 1 food and thus subject to a particularly intensive control. Fluoride has been categorised as a substance causing health disorders after a given concentration. The limit defined for fluoride in the drinking water regulations is 1.5mg/L .

MEASURING METHODS FOR FLUORIDE DETECTION


The detection of fluorine as non-metal has been sufficiently described in the literature. The methods range from classical gravimetry and volumetry to photometry and electrochemical titration. The methods for detecting the  fluoride concentration in water dominating today are the ion chromatography (IC)  and the use of ion-selective electrodes (ISE) . Both detection methods have in common that they only respond to ionic dissolved fluoride. Organic or covalent combined fluorine is not detected, so that these detection methods can only be used for purely water-based matrixes.

Wednesday, September 1, 2010

7TH SPECIALIZED EXPERTS TASK GROUP (SETG) MEETING OF ECO COUNTRIES

Pakistan is hosting the 7th Specialized Experts Task Group (SETG) meeting of ECO Countries at Marriott Hotel, Islamabad on February 6 – 7, 2008. Azerbaijan, Iran, Kyrgyzstan, Tajikistan, Turkey, Afghanistan, Kazakhstan, Turkmenistan, Uzbekistan and ECO Secretariat are participating in the meeting.

    Ministry of Water & Power have finalized the arrangements of the meeting in which feasibility study of Interconnection power system of ECO Member states would be finalized.

Monday, August 16, 2010

Water Is Life,

From cars being swept down the Potomac River - to massive sink holes literally swallowing trucks in Manhattan and Fire Engines in Los Angeles - to flood waters contaminating public buildings with E. coli in New Jersey, we are seeing the results of neglected water infrastructure. In addition to aging infrastructure, climate change adaptation, and enhanced regulation, are compelling communities to invest in water infrastructure and expand green infrastructure.



Water Is Life, and Infrastructure Makes It Happen* is an education program designed to face the challenge. Targeting ratepayers, local leaders and the media, it teaches the value of water infrastructure and the importance of investing in its long-term stability. Water Is Life public information materials are designed to assist utilities and community organizations to build public support for investment in water infrastructure. Request a complimentary CD with outreach materials that are customizable for your community.



Wednesday, August 4, 2010

Recommended Water Intake A Myth

It has become accepted wisdom: "Drink at least eight glasses of water a day!" Not necessarily, says a DMS physician Heinz Valtin, MD. The universal advice that has made guzzling water a national pastime is more urban myth than medical dogma and appears to lack scientific proof, he found. In an invited review published online by the American Journal of Physiology August 8, Valtin, professor emeritus of physiology at Dartmouth Medical School, reports no supporting evidence to back this popular counsel, commonly known as "8 x 8" (for eight, eight-ounce glasses). The review will also appear in a later issue of the journal.



Valtin, a kidney specialist and author of two widely used textbooks on the kidney and water balance, sought to find the origin of this dictum and to examine the scientific evidence, if any, that might support it. He observes that we see the exhortation everywhere: from health writers, nutritionists, even physicians. Valtin doubts its validity. Indeed, he finds it, "difficult to believe that evolution left us with a chronic water deficit that needs to be compensated by forcing a high fluid intake."



The 8 x 8 rule is slavishly followed. Everywhere, people carry bottles of water, constantly sipping from them; it is acceptable to drink water anywhere, anytime. A pamphlet distributed at one southern California university even counsels its students to "carry a water bottle with you. Drink often while sitting in class..."



How did the obsession start? Is there any scientific evidence that supports the recommendation? Does the habit promote good health? Might it be harmful?



Valtin thinks the notion may have started when the Food and Nutrition Board of the National Research Council recommended approximately "1 milliliter of water for each calorie of food," which would amount to roughly two to two-and-a-half quarts per day (64 to 80 ounces). Although in its next sentence, the Board stated "most of this quantity is contained in prepared foods," that last sentence may have been missed, so that the recommendation was erroneously interpreted as how much water one should drink each day.



He found no scientific studies in support of 8 x 8. Rather, surveys of fluid intake on healthy adults of both genders, published as peer-reviewed documents, strongly suggest that such large amounts are not needed. His conclusion is supported by published studies showing that caffeinated drinks, such as most coffee, tea and soft drinks, may indeed be counted toward the daily total. He also points to the quantity of published experiments that attest to the capability of the human body for maintaining proper water balance.



Valtin emphasizes that his conclusion is limited to healthy adults in a temperate climate leading a largely sedentary existence -- precisely, he points out, the population and conditions that the "at least" in 8 x 8 refers to. At the same time, he stresses that large intakes of fluid, equal to and greater than 8 x 8, are advisable for the treatment or prevention of some diseases, such as kidney stones, as well as under special circumstances, such as strenuous physical activity, long airplane flights or hot weather. But barring those exceptions, he concludes that we are currently drinking enough and possibly even more than enough.



Despite the dearth of compelling evidence, then, What's the harm? "The fact is that, potentially, there is harm even in water," explains Valtin. Even modest increases in fluid intake can result in "water intoxication" if one's kidneys are unable to excrete enough water (urine). Such instances are not unheard of, and they have led to mental confusion and even death in athletes, in teenagers after ingesting the recreational drug Ecstasy, and in ordinary patients.



And he lists other disadvantages of a high water intake: (a) possible exposure to pollutants, especially if sustained over many years; (b) frequent urination, which can be both inconvenient and embarrassing; (c) expense, for those who satisfy the 8 x 8 requirements with bottled water; and (d) feelings of guilt for not achieving 8 x 8.



Other claims discredited by scientific evidence that Valtin discusses include:





Thirst Is Too Late. It is often stated that by the time people are thirsty, they are already dehydrated. On the contrary, thirst begins when the concentration of blood (an accurate indicator of our state of hydration) has risen by less than two percent, whereas most experts would define dehydration as beginning when that concentration has risen by at least five percent.



Dark Urine Means Dehydration. At normal urinary volume and color, the concentration of the blood is within the normal range and nowhere near the values that are seen in meaningful dehydration. Therefore, the warning that dark urine reflects dehydration is alarmist and false in most instances.

Is there scientific documentation that we do not need to drink "8 x 8"? There is highly suggestive evidence, says Valtin. First is the voluminous scientific literature on the efficacy of the osmoregulatory system that maintains water balance through the antidiuretic hormone and thirst. Second, published surveys document that the mean daily fluid intake of thousands of presumably healthy humans is less than the roughly two quarts prescribed by 8 x 8. Valtin argues that, in view of this evidence, the burden of proof that everyone needs 8 x 8 should fall on those who persist in advocating the high fluid intake without, apparently, citing any scientific support.



Finally, strong evidence now indicates that not all of the prescribed fluid need be in the form of water. Careful peer-reviewed experiments have shown that caffeinated drinks should indeed count toward the daily fluid intake in the vast majority of persons. To a lesser extent, the same probably can be said for dilute alcoholic beverages, such as beer, if taken in moderation.



"Thus, I have found no scientific proof that absolutely every person must 'drink at least eight glasses of water a day'," says Valtin. While there is some evidence that the risk of certain diseases can be lowered by high water intake, the quantities needed for this beneficial effect may be less than 8 x 8, and the recommendation can be limited to those particularly susceptible to the diseases in question

Friday, July 30, 2010

Water for Injection Description

Sterile Water for Injection, USP, is sterile, nonpyrogenic, distilled water in a single dose container for intravenous administration after addition of a suitable solute. It may also be used as a dispensing container for diluent use. No antimicrobial or other substance has been added. The pH is 5.5 (5.0 to 7.0). The osmolarity is 0.



The VIAFLEX plastic container is fabricated from a specially formulated polyvinyl chloride (PL 146 Plastic). The amount of water that can permeate from inside the container into the overwrap is insufficient to affect the solution significantly. Solutions in contact with the plastic container may leach out certain chemical components from the plastic in very small amounts; however, biological testing was supportive of the safety of the plastic container materials.



 
Water for Injection - Clinical Pharmacology


Sterile Water for Injection, USP is used for fluid replacement only after suitable additives are introduced to approximate isotonicity and to serve as a vehicle for suitable medications.










Read more: http://www.drugs.com/pro/water-for-injection.html#ixzz0vBs1Tvnu








Sunday, July 25, 2010

Drinking Water Crisis in Pakistan


In 1998 Nestlé choose Pakistan as country to roadmap its global water strategy in the bottled water market. It produced and introduced "Pure Life" as "a source of clean water. Bottled water is often the consumers' choice for a healthy beverage that gives them a source of minerals, helps to prevent obesity, and in so doing, reduces the risk of associated healthcare problems."

Nestlé' bottled water is not affordable for the people in need of safe and clean drinking water, nor is it only sold in Pakistan. Nestlé contributes to the decrease of the ground water level, that dries local water provisions for the sake of profit. Finally, Nestlé's use of groundwater obviously exceeding the renewable volume.

Nestlé's engagement in Pakistan and business policies are in contradiction to its own self commitments with regard to human rights and the principle of sustainable use of resources as well as to its membership in the United Nations Global Compact.

The global water shortage of affordable and safe drinking water is manifested in Pakistan with an estimated 44 percent of the population without access to safe drinking water. In rural areas, up to 90 percent of the population may lack such access. As one indication of the magnitude of the problem, it is estimated that 200,000 children in Pakistan die every year due to diarrhoeal diseases alone. Groundwater extraction is one of the few possibilities to satisfy peoples need for drinking water. But groundwater extraction in Pakistan is unregulated and different users, such as public water providers, agriculture and industrial exploitation compete about the use of this scare source.

Tuesday, July 20, 2010

DRINKING WATER FOR INFANTS & BABIES



Newborn babies do just fine with formula or breast milk; drinking water is not recommended until about six-12 months (too much water can cause jaundice or intoxication). However, when making bottles it is imperative to use pure water.
While most of the medical world pushes breast feeding, many moms opt for formula. Or in fact, must use the substitute for health reasons. Whatever the reason behind not using breast milk, attention must be focused on one crucial ingredient to formula: water. The World Health Organization states, "...concentrations of nutrient minerals in drinking water may contribute significantly to the total trace element and mineral intake of infants and young children...especially applicable to formula-fed infants during the first months of life, who may be the most vulnerable group affected by excessive concentrations of nutrients or contaminants in drinking water."

Formula can come ready to drink which parents can be assured is safe. Formula also comes in powder mixture, which water is mixed with. Because the latter infants will be in taking so much water through formula, safety of that water should be the parents' focus. In an astonishing statistic, infants receive 40-60% of the lead they are exposed to through drinking water- which can cause damages including mental retardation. Nitrate, chlorine, aluminum and fluoride are other worries for babies drinking formula. For this reason, most formula companies recommend bottled water or boiled tap water. Also, homes with water purification systems will be on the safe side. Contamination of water needs to limited.


Pure drinking water can also aid in healthy teeth and gums. Many toddlers need a bottle to go to sleep with or they get antsy. But, giving a bottle of juice or ice tea can cause decay. A bottle of water is suggested instead.

According to TodaysParent.com, until babies begin to eat food, they will get all of the nutrition they need from breast milk and formula. But, the site also says once a baby is older and drinking from a cup, water is preferred over juice as it satisfies thirst. (Plus, it will start a healthy water habit early!)

According to recent news and reports, most tap and well water in the U.S. are not safe for drinking due to heavy industrial and environmental pollution. Toxic bacteria, chemicals and heavy metals routinely penetrate and pollute our natural water sources making people sick while exposing them to long term health consequences such as liver damage, cancer and other serious conditions. We have reached the point where all sources of our drinking water, including municipal water systems, wells, lakes, rivers, and even glaciers, contain some level of contamination. Even some brands of bottled water have been found to contain high levels of contaminants in addition to plastics chemical leaching from the bottle.
A good water filtration system installed in your home is the only way to proactively monitor and ensure the quality and safety of your drinking water. Reverse osmosis water purification systems can remove 90-99% of all contaminants from city and well water to deliver healthy drinking water for you and your family.



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