Where is chlorine found in the body




















Zinc deficiency has been known to lead to dwarfism in developing countries. Copper 0. Without enough copper, iron won't work properly in the body. Iodine 0. Iodine deficiency, which can lead to goiter and brain damage, is an important health problem throughout much of the world. Selenium 0. Unlike animals, plants do not appear to require selenium for survival, but they do absorb it, so there are several cases of selenium poisoning from eating plants grown in selenium-rich soils.

Chromium 0. Manganese 0. Molybdenum 0. In humans, it is important for transforming sulfur into a usable form. In nitrogen-fixing bacteria, it is important for transforming nitrogen into a usable form.

Cobalt 0. The cancerous tumor in Marcus Muhich's liver weighed 8 pounds and was nearly a foot across. Doctors at three major academic medical centers in the Midwest told Muhich his high-grade tumor was inoperable. Then he was referred to Dr Although increased use of noninvasive positive-pressure ventilation NIPPV nationwide has helped decrease mortality rates among patients hospitalized with chronic obstructive pulmonary disease COPD , a small group of All rights reserved.

Terms of Service, Privacy Policy and Disclaimer. Because chlorine is a gas at room temperature, exposure occurs via inhalation. People may also be exposed to chlorine through skin or eye contact, or through ingestion of chlorine-contaminated food or water. The health effects of chlorine are primarily due to its corrosive properties.

The strong oxidizing effects of chlorine cause hydrogen to split from water in moist tissue, resulting in the release of nascent oxygen and hydrogen chloride which produce corrosive tissue damage. The oxidation of chlorine may also form hypochlorous acid, which will penetrate cells and react with cytoplasmic proteins to destroy cell structure.

The health effects resulting from most chlorine exposures begin within seconds to minutes. The severity of the signs and symptoms caused by chlorine will vary according to amount, route and duration of exposure. Inhalation: Most chlorine exposures occur via inhalation. Chlorine's odor provides adequate early warning of its presence, but also causes olfactory fatigue or adaptation, reducing awareness of one's prolonged exposure at low concentrations. At higher levels of exposure, signs and symptoms may progress to chest tightness, wheezing, dyspnea, and bronchospasm.

Severe exposures may result in noncardiogenic pulmonary edema, which may be delayed for several hours. Ingestion: Since chlorine is a gas at room temperature, it is unlikely that a severe exposure will result from ingestion. However, ingestion of chlorine dissolved in water e. Higher exposures may result in severe chemical burns or ulcerations. Exposure to compressed liquid chlorine may cause frostbite of the skin and eyes.

Children may receive a larger dose than adults exposed to environments with the same levels of chlorine gas because they have greater lung surface area-to-body weight ratios and increased minute volumes-to-weight ratios.

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