2019
DOI: 10.1007/s10653-019-00286-7
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Accumulation of uranium and heavy metals in the soil–plant system in Xiazhuang uranium ore field, Guangdong Province, China

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Cited by 29 publications
(4 citation statements)
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“…Other sources of Uranium includes mining, extracting and purifying ore, coal ash generation, phosphate fertilizer production, and waste from nuclear power plants 24 . Wang et al, 2019 concluded that mining is the primary anthropogenic source of U contamination in soil and water 25 . With ever exploding global population increase, this anthropogenic content of U will increase in the future due to higher demand for minerals, electricity, and food 8,[26][27][28] .…”
Section: Sources Of Uraniummentioning
confidence: 99%
“…Other sources of Uranium includes mining, extracting and purifying ore, coal ash generation, phosphate fertilizer production, and waste from nuclear power plants 24 . Wang et al, 2019 concluded that mining is the primary anthropogenic source of U contamination in soil and water 25 . With ever exploding global population increase, this anthropogenic content of U will increase in the future due to higher demand for minerals, electricity, and food 8,[26][27][28] .…”
Section: Sources Of Uraniummentioning
confidence: 99%
“…After digestion removed the digestion tank and cool to below 100°C, put into 200 ℃ electrothermal digestion apparatus to drive acid (Jinxu 2019), add 0.8 mL hydro uoric acid when the liquid is nearly dry, add 1 mL perchloric acid when it is nearly dry again, add 0.8 mL nitric acid (Kermani et al 2018) when the white smoke is exhausted, take it out again and place it in a ventilation cupboard to cool to room temperature. Fixed volume, wash the solution in the digestion tank with warm deionized water for three times and transfer it to a 25 mL capacity bottle for xed volume, shake well and preserve (Wang et al 2019).…”
Section: Sample Treatment and Analysismentioning
confidence: 99%
“…Due to industrial emissions, leaching of minerals, soils, and industrial wastes (e.g., coal ash, red mud, cement, and metal wastes, e-waste, used catalysts, etc. ), the natural concentrations of these elements are increasing in various environmental compartments (e.g., Neves et al, 2009;Erickson, 2018;Arome et al, 2019;Wang et al, 2019b;Li Z et al, 2019;Piarulli et al, 2021;Pereirada et al, 2022). This increase highlights the need to understand not only their sources, but also their fate, mobility, and toxicity in the environment, especially in contaminated areas.…”
Section: Introductionmentioning
confidence: 99%