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turbid

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Dictionary: tur·bid   (tûr'bĭd) pronunciation
adj.
  1. Having sediment or foreign particles stirred up or suspended; muddy: turbid water.
  2. Heavy, dark, or dense, as smoke or fog.
  3. In a state of turmoil; muddled: turbid feelings.

[Latin turbidus, disordered, from turba, turmoil, probably from Greek turbē.]

turbidly tur'bid·ly adv.
turbidness tur'bid·ness or tur·bid'i·ty n.

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Thesaurus: turbid
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adjective

  1. Having sediment or foreign particles stirred up or suspended: cloudy, muddy, murky, roiled, roily. See clear/unclear.
  2. Heavy, dark, or dense, especially with impurities: hazy, murky, smoggy. See clear/unclear.
  3. Mentally uncertain: addled, addlepated, confounded, confused, confusional, muddle-headed, perplexed. Informal mixed-up. See clear/unclear.

Antonyms: turbid
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adj

Definition: murky
Antonyms: clear


Veterinary Dictionary: turbidity
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Cloudiness; disturbance of solids (sediment) in a solution, so that it is not clear.

Obscure Words: turbid
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1) thick or opaque with/as if with roiled sediment; heavy with smoke or mist
2) deficient in clarity or purity: foul, muddy
Word Tutor: turbid
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pronunciation

IN BRIEF: Clouded as with sediment.

pronunciation Clear writers, like fountains, do not seem so deep as they are; the turbid look the most profound. — Walter Savage Landor

Wikipedia: Turbidity
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Turbidity standards of 5, 50, and 500 NTU

Turbidity is the cloudiness or haziness of a fluid caused by individual particles (suspended solids) that are generally invisible to the naked eye, similar to smoke in air. The measurement of turbidity is a key test of water quality.

Fluids can contain suspended solid matter consisting of particles of many different sizes. While some suspended material will be large enough and heavy enough to settle rapidly to the bottom of the container if a liquid sample is left to stand (the settable solids), very small particles will settle only very slowly or not at all if the sample is regularly agitated or the particles are colloidal. These small solid particles cause the liquid to appear turbid.

Turbidity (or haze) is also applied to transparent solids such as glass or plastic. In plastic production haze is defined as the percentage of light that is deflected more than 2.5° from the incoming light direction.[1]

Contents

Causes of turbidity

Turbidity in open water may be caused by growth of phytoplankton. Human activities that disturb land, such as construction, can lead to high sediment levels entering water bodies during rain storms, due to storm water runoff, and create turbid conditions. Urbanized areas contribute large amounts of turbidity to nearby waters, through stormwater pollution from paved surfaces such as roads, bridges and parking lots.[2] Certain industries such as quarrying, mining and coal recovery can generate very high levels of turbidity from colloidal rock particles.

In drinking water, the higher the turbidity level, the higher the risk that people may develop gastrointestinal diseases[citation needed]. This is especially problematic for immune-compromised people, because contaminants like viruses or bacteria can become attached to the suspended solid. The suspended solids interfere with water disinfection with chlorine because the particles act as shields for the virus and bacteria. Similarly, suspended solids can protect bacteria from ultraviolet (UV) sterilization of water.

In water bodies such as lakes and reservoirs, high turbidity levels can reduce the amount of light reaching lower depths, which can inhibit growth of submerged aquatic plants and consequently affect species which are dependent on them, such as fish and shellfish. This phenomenon has been regularly observed throughout the Chesapeake Bay in the eastern United States.[3][4]

For many mangrove areas, high turbidity is needed to support certain species, such as to protect juvenile fishes from predators. For most mangroves along the eastern coast of Australia, in particular Moreton Bay, turbidity levels as high as 6 Nephelometric Turbidity Units (NTU) are needed for proper ecosystem functioning.

Measurements of turbidity

Turbid creek water caused by heavy rains.

The most widely used measurement unit for turbidity is the FTU (Formazin Turbidity Unit). ISO refers to its units as FNU (Formazin Nephelometric Units).

There are several practical ways of checking water quality, the most direct being some measure of attenuation (that is, reduction in strength) of light as it passes through a sample column of water. The alternatively used Jackson Candle method (units: Jackson Turbidity Unit or JTU) is essentially the inverse measure of the length of a column of water needed to completely obscure a candle flame viewed through it. The more water needed (the longer the water column), the clearer the water. Of course water alone produces some attenuation, and any substances dissolved in the water that produce color can attenuate some wavelengths. Modern instruments do not use candles, but this approach of attenuation of a light beam through a column of water should be calibrated and reported in JTUs.

A property of the particles — that they will scatter a light beam focused on them — is considered a more meaningful measure of turbidity in water. Turbidity measured this way uses an instrument called a nephelometer with the detector setup to the side of the light beam. More light reaches the detector if there are lots of small particles scattering the source beam than if there are few. The units of turbidity from a calibrated nephelometer are called Nephelometric Turbidity Units (NTU). To some extent, how much light reflects for a given amount of particulates is dependent upon properties of the particles like their shape, color, and reflectivity. For this reason (and the reason that heavier particles settle quickly and do not contribute to a turbidity reading), a correlation between turbidity and total suspended solids (TSS) is somewhat unique for each location or situation.

Turbidity in lakes, reservoirs, channels, and the ocean can be measured using a Secchi disk. This black and white disk is lowered into the water until it can no longer be seen; the depth (Secchi depth) is then recorded as a measure of the transparency of the water (inversely related to turbidity). The Secchi disk has the advantages of integrating turbidity over depth (where variable turbidity layers are present), being quick and easy to use, and inexpensive. It can provide a rough indication of the depth of the euphotic zone with a 3-fold division of the Secchi depth, however this cannot be used in shallow waters where the disk can still be seen on the bottom.

Turbidity in air, which causes solar attenuation, is used as a measure of pollution. To model the attenuation of beam irradiance, several turbidity parameters have been introduced, including the Linke turbidity factor (TL).[5]

Standards and test methods

Drinking water standards

Governments have set standards on the allowable turbidity in drinking water. In the United States, the allowable standard is 0.3 NTU, with many drinking water utilities striving to achieve levels as low as 0.1 NTU. These ratings are updated quarterly, and maintain an accurate reference of utility counterpart quality. NTU measurements can be accessed by the general public without any investigative properties.[6]

Ambient water standards

The U.S. Environmental Protection Agency (EPA) has published water quality criteria for turbidity.[7] These criteria are scientific assessments of the effects of turbidity, which are used by states to develop water quality standards for water bodies. (States may also publish their own criteria.) Some states have promulgated water quality standards for turbidity, including:

  • Louisiana. 25, 50 or 150 NTU, or background plus 10 percent, depending on the water body.[8]
  • Vermont. 10 NTU or 25 NTU, depending on water body classification.[9]
  • Washington. 5 NTU over background (when background is 50 NTU or less), or 10 percent increase when background is over 50 NTU.[10]

Analytical methods

Published analytical test methods for turbidity include:

  • ISO 7027 "Water Quality: Determination of Turbidity" [11]
  • US EPA Method No. 180.1, "Turbidity"[12]
  • "Standard Methods," No. 2130B.[13]

See also

References

  1. ^ Haze technical definition
  2. ^ U.S. Environmental Protection Agency. Washington, D.C. "National Management Measures to Control Nonpoint Source Pollution from Urban Areas." Chapters 7 and 8. Document No. EPA 841-B-05-004. November 2005.
  3. ^ U.S. Fish and Wildlife Service. Annapolis, MD. "Decline of Submerged Plants in Chesapeake Bay."
  4. ^ U.S. EPA. Chesapeake Bay Program. Annapolis, MD. "Sediments."
  5. ^ HelioClim (Center for Energy and Processes). Paris, France. "Linke Turbidity Factor."
  6. ^ U.S. EPA. Washington, DC. "Drinking Water Contaminants."
  7. ^ U.S. EPA. Washington, DC. "Quality Criteria for Water." (Commonly known as the "Gold Book.") 1986. Document No. EPA-440/5-86-001.
  8. ^ Louisiana Department of Environmental Quality. Baton Rouge, LA."Surface Water Quality Standards." Louisiana Administrative Code (LAC). Title 33, Part IX, Chapter 11. August 6, 2007.
  9. ^ Vermont Water Resources Board. Montpelier, VT. "Vermont Water Quality Standards." January 25, 2006.
  10. ^ Washington Department of Ecology. Olympia, WA."Water Quality Standards for Surface Waters of the State of Washington." Washington Administrative Code (WAC). Chapter 173-201A. November 18, 1997.
  11. ^ International Organization for Standardization. Geneva, Switzerland. "ISO 7027: Water quality -- Determination of turbidity." 1999.
  12. ^ U.S. EPA. Environmental Monitoring Systems Laboratory. Cincinnati, Ohio. "Method 180.1: Determination of Turbidity by Nephelometry; Revision 2.0." August 1993.
  13. ^ Clescerl, Leonore S.(Editor), Greenberg, Arnold E.(Editor), Eaton, Andrew D. (Editor). Standard Methods for the Examination of Water and Wastewater (20th ed.) American Public Health Association, Washington, DC. ISBN 0-87553-235-7. This is also available on CD-ROM and online by subscription.

External links


Translations: Turbid
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Dansk (Danish)
adj. - grumset, uklar, forvirret

Nederlands (Dutch)
drabbig, troebel

Français (French)
adj. - trouble, turbide (littér)

Deutsch (German)
adj. - schlammig, trübe, wirr

Ελληνική (Greek)
adj. - θολός, θολωμένος, (για ύφος κ.λπ.) συγκεχυμένος

Italiano (Italian)
torbido

Português (Portuguese)
adj. - túrbido (m), turbo (m), ludoso (m), confuso (m)

Русский (Russian)
мутный, плотный, туманный

Español (Spanish)
adj. - turbio, denso, espeso, confuso

Svenska (Swedish)
adj. - grumlig, oklar, tjock, tät, förvirrad, virrig

中文(简体)(Chinese (Simplified))
混浊的, 混乱的, 泥水的

中文(繁體)(Chinese (Traditional))
adj. - 混濁的, 混亂的, 泥水的

한국어 (Korean)
adj. - 터번을 쓴

日本語 (Japanese)
adj. - 濁った, もうもうとした, 濃い, 乱れた

العربيه (Arabic)
‏(صفه) كثيف, كدر, عكير‏

עברית (Hebrew)
adj. - ‮בוצי, עכור, לא-צלול, מבולבל, מופרע, סמיך, כבד (עשן)‬


 
 
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