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Titlebook: Impact of Cesium on Plants and the Environment; Dharmendra K. Gupta,Clemens Walther Book 2017 Springer International Publishing Switzerlan

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Influence of Biologically Active Preparations on Caesium-137 Transition to Plants from Soil on the n of the content of forms accessible and inaccessible to plants .Cs in average samples of soil of the skilled site, selected before the processing by biological products was spent, the quantity of accessible forms varied from 1.66 to 4.31 %. The greatest influence on transition minimization radionuc
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Cesium Uptake in Plants: Mechanism, Regulation and Application for Phytoremediation,plied to radiocesium phytoremediation. In parallel, efforts to improve phytoremediation efficiency have sought the aid of biotic and abiotic factors such as microorganisms and chemicals. In this chapter, findings on the molecular mechanisms and regulation of cesium uptake in plants, what is known an
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Accumulation of Cesium by Aquatic Plants and Algae,bsorbed by plants and algal cells via potassium transport systems as an analogue of potassium. On the basis of such knowledge, this study for screening was performed to find organisms possessing very high ability to accumulate radioactive cesium specifically and also radioactive strontium and iodine
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Sorbents for Radiocaesium Removal from Natural Water and Soil,0 mg g. respectively. The possibility of granulated and modified aluminosilicates use for radiocaesium removal from natural waters and soils is shown. Decontamination of the natural water from .Cs by the granulated glauconite under dynamic conditions has shown that the column resource was ≈7000 bed
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