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Previous work suggests that the properties of these Andisols have been altered as a result of the establishment of. FalenĪndisols support ≈ 200 000 ha of mid-elevation grand fir (Abies grandis Lindl.) forests in the Pacific Northwest region that are characterized by little or no natural conifer regeneration following removal of the forest canopy.
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gemmifera may be a viable option for the remediation of Cd-contaminated Andisols.Ĭhemical and mineralogical conversion of Andisols following invasion by bracken fern Therefore, phytoextraction with Arabidopsis halleri ssp. (3) Calculations suggest that the applicability of phytoextraction with this plant is high for slightly contaminated Andisols. However, the plants absorbed the same amount of soil Cd extracted by 0.01 M HCl with or without ALC.
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(2) Cd absorption of the plant for Andisols with ALC (Autoclaved Lightweight aerated Concrete) was less than for Andisols without ALC. The results were as follows: (1) Cd concentrations in the plant shoots ranged from 170-750 mgṡkg-1. Sequentially, phytoextraction durations for remediation of Cd-contaminated Andisols were calculated from the experimental data. Cd absorption potentials of this plant for Andisols were examined in pot experiments. gemmifera) to remediate Cd-contaminated Andisols. The objective of this study was to investigate the applicability of phytoextraction with a Cd-hyperaccumulator plant (Arabidopsis halleri ssp. Kameyama, Koji Tani, Shigeru Sugawara, Reiko Ishikawa, Yuichi gemmifera to Remediate Cd-contaminated Andisols Applicability of Phytoextraction with Arabidopsis halleri ssp.
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