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Two-way Valorization of Blast Furnace Slag: Synthesis of Precipitated Calcium Carbonate and Zeolitic Heavy Metal Adsorbent
Published on: February 21, 2017
Evaluating heavy metal accumulation and potential risks in soil-plant systems applied with magnesium slag-based
Yuan Fan1, Yongling Li1, Hua Li1
1Institute of Resources and Environment Engineering, Shanxi University, No.92 Wucheng Road, Taiyuan, Shanxi Province, PR China; State Environmental Protection Key Laboratory of Efficient Utilization Technology of Coal Waste Resources, No.92 Wucheng Road, 030006, Taiyuan, Shanxi Province, China; Shanxi Collaborative Innovation Center of High Value-added Utilization of Coal-related Wastes, No.92 Wucheng Road, Taiyuan, Shanxi Province, PR China.
Abstract:
Two typical Chinese soils including southern paddy soil and northern calcareous soils were used in a pot experiment to evaluate the effect of magnesium slag-based fertilizer on heavy metal accumulation and health risk in soil-plant system. The results indicated that magnesium slag-based fertilizer promoted the growth of maize plants. The concentrations of Cr, Cu, Pb and Zn in both soils amended with magnesium slag-based fertilizer were qualified for the second level criterion of Standard of Soil Environment (GB 15618-2009). Accumulation of HMs exhibited partitioning characteristics in maize plants, i.e. Cr and Cu were accumulated mainly in root and leaf parts while Pb was concentrated in roots. The order of transfer factors (TF) of HMs in different plant organs was ordered as follows: root > stem > leaf > grain. It indicated that less HMs were accumulated in the grain compared with that in other organs. The estimate daily intakes and total target hazard quotient of HMs including Cr, Cu, Pb, and Zn were less than 1, indicating that consumption of maize grain was at low risk and would not cause non-carcinogenic risks. From the above results, application of magnesium slag-based fertilizer at present level would not cause pollution risk for maize plants cultivated in two Chinese soils.
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