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A Study on the Improvement of Soil Heavy Metal Analysis Methods Interference Correction in Soil Cd Analysis by ICP-AES Method
Miae Park, Jageun Gu, Hyoungsub Choi
J Environ Anal Health Toxicol. 2019;22(4):291-302.   Published online December 31, 2019

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A Study on the Improvement of Soil Heavy Metal Analysis Methods Interference Correction in Soil Cd Analysis by ICP-AES Method
Journal of Environmental Analysis, Health and Toxicology. 2019;22(4):291-302   Crossref logo
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Combination of ICP-AES and Instrumental Neutron Activation Analysis as Effective Methods for Studying Distribution of Elements in Soil and Plants
Geostandards and Geoanalytical Research. 2001;25(2-3):299-306   Crossref logo

Application of AHP – Entropy–TOPSIS methodology for  soil heavy metal classification: Analysis of soil environment status in Jingshan as a case study
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DTPA soil extractable and plant heavy metal concentrations with soil-added Cd treatments
Plant and Soil. 1979;51(1):59-68   Crossref logo
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Cost-Effectiveness Analysis for Soil Heavy Metal Contamination Treatments
Water, Air, & Soil Pollution. 2018;229(4):   Crossref logo
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Differences in available phosphorus evaluated by soil tests in relation to detection by colorimetric and ICP-AES techniques
Plant, Soil and Environment. 2010;56(6):297-304   Crossref logo

Application of Statistical Inference for Analysis of Heavy Metal Variability in Roadside Soil
Water, Air, & Soil Pollution. 2018;229(1):   Crossref logo
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Cd-tolerant arbuscular mycorrhizal (AM) fungi from heavy-metal polluted soils
Plant and Soil. 1993;157(2):247-256   Crossref logo
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Determination of wholesome elements and heavy metals in safflower ( Carthamus tinctorius L. ) from Xinjiang and Henan by ICP-MS/ICP-AES
Journal of Pharmaceutical Analysis. 2011;1(2):100-103   Crossref logo
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Prediction of heavy-metal concentrations in mature plants by chemical analysis of seedlings
Plant and Soil. 1987;101(1):9-14   Crossref logo
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