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- W4289730987 abstract "The application of synthetic Fe-chelates stands for the most established agronomical practice to alleviate lime-induced chlorosis, which still constitutes a major agronomic problem. However, the percolation through the soil profile due to the negative charge of the most deployed molecules results in agronomical and environmental problems. H 2 bpcd/Fe 3+ complex features distinctive chemical characteristics, including moderate stability of the Fe(bpcd) + species (log β ML = 20.86) and a total positive charge, and we studied its behavior in soil and regreening effects on cucumber plants. Soil column experiments have underlined that H 2 bpcd/Fe 3+ is retained in more amounts than EDDHA/Fe 3+ . The new ligand was not proven to be toxic for the cucumber and maize seedlings. A concentration of 20 μM H 2 bpcd/Fe 3+ attained regreening of Fe-deficient cucumber plants grown in the hydroponic solution supplied with CaCO 3, similar to that shown by EDDHA/Fe 3+ . Experiments with a 2 μM concentration of 57 Fe showed that cucumber roots absorbed H 2 bpcd/ 57 Fe 3+ at a slower rate than EDTA/ 57 Fe 3+ . The high kinetic inertness of H 2 bpcd/Fe 3+ may explain such behavior." @default.
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- W4289730987 date "2022-08-04" @default.
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- W4289730987 title "Regreening properties of the soil slow-mobile H2bpcd/Fe3+ complex: Steps forward to the development of a new environmentally friendly Fe fertilizer" @default.
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- W4289730987 doi "https://doi.org/10.3389/fpls.2022.964088" @default.
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