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Updated: Aug 19, 2026

Resource Recycling of Red Soil to Synthesize Fe2O3/FAU-type Zeolite Composite Material for Heavy Metal Removal
Published on: June 2, 2022
Evaluation of heavy metal availability prior to an in situ soil phytoremediation program
Gregorio García1, Andrea L Zanuzzi, Angel Faz
1Area de Edafología y Química Agricola, Dpto. Ciencia y Tecntologîa Agraria. Universidad Politécnica de Cartagena. Paseo de Alfonso XIII, 48. 30203 Cartagena, Spain. gregorio.garcia@upct.es
Abstract:
Metal mobility and the fractionation of elements and thus the biological uptake of Zn, Pb and Cd by plants were investigated using a simplified analytical procedure for soluble and bioavailable metals using a four-step sequential extraction procedure. Results showed that there was a low proportion of immediately soluble metals, as well as a high proportion of metals that could be released and would so be available for plant uptake. In the sequential extraction procedure, considering the total partition, there was a large proportion of Pb, Cd and Zn extracted in a readily mobile form. In acidic soils the content of metals in ready mobile form (exchangeable-bound to carbonates as well as to Fe and Mn oxides) and bound to organic matter constitutes an important source of potentially available elements. The same pattern was observed in alkaline soils, where almost 80% of the metals could be remobilized and be potentially available to plants. Knowing the metal partitioning and mobility of heavy metals it is very important for evaluating the phytoremediation efficiency.
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