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Radionuclides and

On the other hand, there are some ionization techniques that are very useful, particularly at very high mass, but produce ions only in pulses. For these sources, the ion extraction field can be left on continuously. Two prominent examples are Californium radionuclide and laser desorption ionization. In the former, nuclear disintegration occurs within a very short time frame to give a... [Pg.192]

Finally, Sec. 112 of the Clean Air Act required that EPA pronml-gate National Emission Standards for Hazardous Air Pollutants (NESHAPs). Between 1970 and 1989, standards were promulgated for asbestos, beiylhum, mercuiy, vinyl chloride, benzene, arsenic, radionuclides, and coke-oven emissions. [Pg.2155]

In the marine environment, the numerous radionuclides can be classified into three broad categories based on their production or origin (1) those derived from the weathering of continental rocks, the primordial radionuclides, (2) those formed from cosmic radiation, the cosmogenic radionuclides, and (3) those artificially introduced into nature, the anthropogenic or transient radionuclides and tracers. The primordial radionuclides (e.g. Th, and U) were... [Pg.33]

Different samples of aqueous solution containing radionuclides of Co and Eu were prepared at different copper sulphate concentrations and constant polymer concentrations (pAM) of 15 mg/1. The addition of salt to the system was done to reduce both the repulsion forces between the radionuclides and the interaction between the polymeric chains [7]. The polymer efficiency for the prepared samples was determined, results are shown in Fig. 15. It is clear that the polymer efficiency for Eu " is higher than for Co. This can be explained by the difference in the tightly bound structured water associated with different cationic species [14,107]. On this basis, we expect that Co is more hydrated than Eu. This is due to the difference in the ionic size. The hydra-... [Pg.130]

Gases expressed in number of atoms or molecules per cubic centimeter - notably radionuclides and free radicals like OH. [Pg.142]

Meyers-Schone L, Shugart LR, Beauchamp JJ, Walton BT. 1993. Comparison of two freshwater turtle species as monitors of radionuclide and chemical contamination DNA damage and residue analysis. Environ Toxicol Chem 12 1487-1496. [Pg.181]

In a different example, traceability in the amount-of-substance analysis of natural potassium, thorium, and uranium by the method of passive gamma-ray spectrometry was demonstrated by Nir-El (1997). For an absolute quantitative determination, accurate values of two parameters were required (i) the emission probability of a gamma-ray in the decay of the respective indicator radionuclides, and (2) the detection efficiency of that gamma-ray. This work employed a number of CRMs in the critical calibration of the detection efficiency of the gamma-ray spectrometer and the establishment of precise emission probabilities. The latter results compared well with literature values and provided smaller uncertainties for several gamma-rays that were critical for the traceabUity claim. The amount-of-substance analytical results of the long lived naturally occurring radionucHdes K, Th, and... [Pg.251]

Heussner S, Cherry RD, Heyraud M (1990) Po-210 and Pb-210 in sediment trap particles on a Mediterranean continental margin. Cont. Shelf Res 10 989-100 Heyraud M, Cherry RD (1983) Correlation of Po-210 and Pb-210 enrichments in the sea-surface microlayer with neuston biomass. Cont Shelf Res 1 283-293 Honeyman BD, Santschi PH (1989)The role of particles and colloids in the transport of radionuclides and trace metals in the oceans. In Environmental particles. Buffle J, van Leewen HP (eds) Lewis Publishers, Boca Raton, p 379-423... [Pg.490]

Overall, colloids appear to play a fundamental role in the behavior of radionuclides and trace elements, and while ultrafiltration data must be treated with some caution, it provides valuable information. Other methods may soon be developed to directly address some of these difficulties, although for species such as Th, processing sufficient volumes of material for analysis will continue to remain a major challenge. [Pg.583]

Fresquez PR, Kraig DH, Mullen MA, et al. 1999. Radionuclides and trace elements in fish collected upstream and downstream of Los Alamos National Laboratory and the doses to humans from the consumption of muscle and bone. J Environ Sci Health B B34(5) 885-899. [Pg.238]

Hutchins DA, Teyssie J-L, Boisson F, et al. 1996b. Temperature effects on uptake and retention of contaminant radionuclides and trace metals by the brittle star Ophiothrix fragilis. Mar Environ Res 41(4) 363-378. [Pg.242]

In terms of atomic spectrometry, NAA is a method combining excitation by nuclear reaction with delayed de-excitation of the radioactive atoms produced by emission of ionising radiation (fi, y, X-ray). Measurement of delayed particles or radiations from the decay of a radioactive product of a neutron-induced nuclear reaction is known as simple or delayed-gamma NAA, and may be purely instrumental (INAA). The y-ray energies are characteristic of specific indicator radionuclides, and their intensities are proportional to the amounts of the various target nuclides in the sample. NAA can thus... [Pg.663]

The Use of U-Th Series Radionuclides and Transient Tracers in Oceanography an Overview... [Pg.42]


See other pages where Radionuclides and is mentioned: [Pg.33]    [Pg.35]    [Pg.35]    [Pg.37]    [Pg.38]    [Pg.41]    [Pg.42]    [Pg.43]    [Pg.45]    [Pg.47]    [Pg.49]    [Pg.51]    [Pg.53]    [Pg.82]    [Pg.103]    [Pg.470]    [Pg.159]    [Pg.325]    [Pg.326]    [Pg.331]    [Pg.350]    [Pg.355]    [Pg.523]    [Pg.577]    [Pg.578]    [Pg.20]    [Pg.76]    [Pg.172]    [Pg.189]    [Pg.197]    [Pg.301]    [Pg.7]    [Pg.42]    [Pg.42]    [Pg.44]    [Pg.44]   


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Approaches to Estimating Dose-Response Relationships for Radionuclides and Hazardous Chemicals

Approaches to Risk Management for Radionuclides and Hazardous Chemicals That Cause Stochastic Effects

Chemical and physical forms of the released radionuclides

Comparison of Dose-Response Assessments for Radionuclides and Chemicals

Cosmogenic Radionuclides and Age Dating

Input flows of radionuclides, heavy metals, and oil hydrocarbons

Measuring Radioactivity and the Mass of Radionuclides

Production of Radionuclides and Labelled Compounds

Radiochemical (and Radionuclidic) Purity

Radioelements, Isotopes and Radionuclides

Radionuclides and Radiopharmaceuticals for Organ Imaging

Radionuclides and radiopharmaceuticals

Radionuclides diagnostic and therapeutic applications

Radionuclides for PET and SPECT Molecular Imaging Probes

Radionuclides from core components and structural materials

Radionuclides in Geo- and Cosmochemistry

Radionuclides in reactor core components and structural materials

Releasable Activity of a Radionuclide Under Normal and Accidental Conditions During Transport for the C-30 Container

Short-lived Radionuclides and the Role of Carriers

The Use of U-Th Series Radionuclides and Transient Tracers in Oceanography an Overview

Trace element and radionuclide cycling

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