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Toxicant elimination

Accumulation of 2,3,7,8-TCDD is reported in the liver of rats during lifetime exposure to diets containing 0.022 pg 2,3,7,8-TCDD/kg (Newton and Snyder 1978), or when administered orally at 0.01 pg/kg body weight once a week for 45 weeks (Cantoni et al. 1981). Liver residues of rats fed 2,3,7,8-TCDD were 0.54 pg/kg, or about 25 times dietary levels livers of rats dosed orally contained 1.05 pg/kg, or about 2.3 times the total dose received on a unit weight basis. Unlike toxicity, elimination rates of accumulated 2,3,7,8-TCDD were within a relatively narrow range. The estimated retention times of 2,3,7,8-TCDD in small laboratory mammals (rats, mice, guinea pigs, and... [Pg.1053]

BLEOMYCIN ANTICANCER AND IMMUNOMODULATING DRUGS-CISPLATIN t bleomycin levels, with risk of pulmonary toxicity Elimination of bleomycin is delayed by cisplatin due to 1 glomerular filtration. This is most likely with accumulated doses of cisplatin in excess of 300 mg/m2 Monitor renal function and adjust dose of bleomycin as per creatinine clearance. Monitor clinically, radiologically and with lung function tests for pulmonaiy toxicity... [Pg.291]

As previously discussed, the major battery manufacturers in Europe, Japan and the United States had all successfully eliminated mercury from primary batteries by 1993. Consequently the mercury burden on the environment from waste primary batteries has been significantly reduced and continues to reduce year on year. The question remained, at what point in the future would all batteries which were sold before 1993 have been disposed of by the consumer If this date can be ascertained, then all primary recycling operations after that date need only concentrate on resource conservation and not toxic elimination. [Pg.195]

For the treatment of 1.5 m h in the microreactor with a space time of 0.052 s we need a reactor volume of = 2.17-10 m. Therefore, we need 471 parallel channels. An MSR consisting of 20 plates and 25 channels per plate results in 500 channels sufficient for the task of toxic elimination as described at the beginning. [Pg.253]

The protection of the environment implies the elimination of lead compounds, first of all because of their individual toxicities and second because these derivatives or their products of decomposition poison catalytic converter catalysts. [Pg.352]

Improved sensitivities can be attained by the use of longer collection times, more efficient mass transport or pulsed wavefomis to eliminate charging currents from the small faradic currents. Major problems with these methods are the toxicity of mercury, which makes the analysis less attractive from an eiivironmental point of view, and surface fouling, which coimnonly occurs during the analysis of a complex solution matrix. Several methods have been reported for the improvement of the pre-concentration step [17,18]. The latter is, in fact. [Pg.1932]

Castor oil may be obtained by cold expression of the decorticated seed. The oil is steamed under vacuum to eliminate odors and coagulate the toxic albumin. Fuller s earth or activated charcoal may be used for further purification. [Pg.201]

Ammonia—water systems operate under moderate pressures and care must be taken to avoid leaks of the irritating and toxic ammonia (qv). Sometimes a third material with a widely different density, eg, hydrogen, is added to the cycle in order to eliminate the need for mechanical pumping. [Pg.508]

Hydrogen-storage alloys (18,19) are commercially available from several companies in the United States, Japan, and Europe. A commercial use has been developed in rechargeable nickel—metal hydride batteries which are superior to nickel—cadmium batteries by virtue of improved capacity and elimination of the toxic metal cadmium (see BATTERIES, SECONDARYCELLS-ALKALINe). Other uses are expected to develop in nonpolluting internal combustion engines and fuel cells (qv), heat pumps and refrigerators, and electric utility peak-load shaving. [Pg.300]

Waste Treatment. Environmental concerns have increased the need to treat Hquid discharges from all types of industrial processes, as well as mnoffs where toxic substances appear as a result of leaks or following solubilization (see Wastes, industrial). One method of treatment consists of an ion-exchange system to remove the objectionable components only. Another involves complete or partial elimination of Hquid discharges by recycling streams within the plant. This method is unacceptable unless a cycHc increase in the impurities is eliminated by removing all constituents prior to recycling. [Pg.388]

Safety. The principal concerns regarding nuclear medical imaging are those associated with the radiopharmaceuticals. Much research has gone into the selection of radiopharmaceuticals exhibiting minimal toxicities, rapid elimination from the body, and short half-life. The radioisotope must be... [Pg.57]

Production and use of mercury is expected to continue to decrease, owing to mercury toxicity. Many of the traditional uses have either declined or have been eliminated (14). [Pg.107]

Other regulations apply in different offshore drilling areas in the United States and around the world. AH have had a profound effect on drilling fluid technology (169,170). Very few instances of water-base muds failing the mysid bioassay test exist in the 1990s. Operators and service companies have eliminated use of the mote toxic additives, reformulated old mud systems, and developed new ones to ensure acceptable environmental performance based on pertinent regulations. [Pg.184]


See other pages where Toxicant elimination is mentioned: [Pg.313]    [Pg.336]    [Pg.203]    [Pg.406]    [Pg.1486]    [Pg.255]    [Pg.107]    [Pg.199]    [Pg.273]    [Pg.105]    [Pg.313]    [Pg.336]    [Pg.203]    [Pg.406]    [Pg.1486]    [Pg.255]    [Pg.107]    [Pg.199]    [Pg.273]    [Pg.105]    [Pg.204]    [Pg.29]    [Pg.363]    [Pg.385]    [Pg.7]    [Pg.10]    [Pg.39]    [Pg.54]    [Pg.545]    [Pg.549]    [Pg.388]    [Pg.251]    [Pg.256]    [Pg.484]    [Pg.528]    [Pg.134]    [Pg.139]    [Pg.139]    [Pg.227]    [Pg.66]   
See also in sourсe #XX -- [ Pg.203 , Pg.204 , Pg.205 , Pg.206 , Pg.207 , Pg.208 , Pg.209 , Pg.210 ]




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Absorption, distribution, metabolism elimination/excretion, and toxicity

Accelerated Reduction and Elimination of Toxics

BIOTRANSFORMATION, BIOACCUMULATION, AND ELIMINATION OF TOXICANTS

Elimination of toxic

Elimination of toxic materials

Elimination toxicity

Elimination, of toxicants

Heavy metal ions, toxic elimination

Toxic materials elimination

Toxicants elimination, from biological systems

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