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The enzyme activities estimated in the muscles of Rhodeus amarus (Bloch) may vary according to the kind of muscle, age and sex of the test individuals, as well as with the time of day, and the season. Oxygen consumption of individuals acclimated to different temperatures was tested at 22°C. At low adaptation temperatures no adaptation was found; at high adaptation temperatures, however, compensation could be ascertained. In view of the considerable fluctuation of the enzyme activities, estimated from individuals adapted to different temperatures, a relation to certain adaptation types, established by Precht (1961b, 1968), is hardly possible. During the first days following sudden or slow changes of adaptation temperature (increase or decrease) more or less marked fluctuations of enzyme activities were obtained. Later, however, in accordance with the proceeding adaptation, a new, labile balance was established. Temperature changes represent a physiological stress even within normal temperature ranges. This fact requires general attention in studies on biological processes. Disturbance of a newly established balance of enzyme activities can be obtained, when test fishes are exposed to high temperatures. This finding may be of importance in regard to the heat resistance of the animals. 相似文献
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Bridget N. Bero Margrit C. Von Braun Charles R. Knowles John E. Hammel 《Environmental monitoring and assessment》1993,27(1):17-33
The recognition of the hazards to young children of low-level lead intoxication and the widespread distribution of lead in
the urban environment have resulted in massive federal, state, and local lead awareness and abatement programs. Two of the
most significant exposure routes of lead to young children are the soils and dusts found within the child's home. Most state
and federal lead abatement programs deal with lead-based paint contamination but often do not address the issue of soft-surface
contamination, such as that of carpets, furniture, and draperies. Carpets can be a reservoir of contaminated soils and dusts;
currently, there exists no standard method to test carpeted surfaces for lead contamination.
This paper describes a study that uses X-ray fluorescence (XRF) to test carpeted surfaces for lead contamination. XRF technology
is the standard technology used in lead-based paint testing and is known to be an accurate technique to test for lead in soils.
This study uses a controlled laboratory atmosphere to evaluate this technology; the objectives are to determine: (1) a lower
limit of detection for the instrument; and (2) whether soil loading levels can be differentiated by XRF using trace elements
also present in the soil. Results indicate that XRF can easily differentiate soil loading levels (g soil/m2 carpet). The lower limit of detection of soil lead concentration on the carpet is a function of both soil lead concentration
and soil loading; therefore, lead loading (mg Pb/m2) is a better indicator of detection limit than soil lead concentration. Lead loading detection levels from 108–258 mg Pb/m2 were obtained, as compared to a level of 10 000 mg/m2 (1 mg/cm2) for lead on painted surfaces as required by theLead-Based Paint Poisoning Prevention Act.
XRF technology has the potential to be a fast, inexpensive screening technique for the evaluation of lead contamination on
carpeted surfaces. 相似文献
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