Variations in Cadmium Concentrations in Rice and Oxidation-Reduction Potential at the Soil Surface with Supplementation of Fermented Botanical Waste-based Amendment in Large-scale Farmland

We monitored the relationship between the cadmium (Cd) concentration uptake of rice and the oxidation-reduction potential (ORP) at the soil surface with the supplementation of fermented botanical waste-based amendment (FBWA), an organic fertilizer prepared from woody and food wastes. This study was...

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Veröffentlicht in:Analytical Sciences 2020/05/10, Vol.36(5), pp.531-538
Hauptverfasser: WADA, Nobuhiko, DI, Gao, ITABASHI, Hideyuki, MORI, Masanobu, LIN, Yusuo, DENG, Shaopo, XU, Weiwei, GUO, Weiwei, LUO, Yuanheng, ZHU, Dianyu
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Sprache:eng
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Zusammenfassung:We monitored the relationship between the cadmium (Cd) concentration uptake of rice and the oxidation-reduction potential (ORP) at the soil surface with the supplementation of fermented botanical waste-based amendment (FBWA), an organic fertilizer prepared from woody and food wastes. This study was carried out for 3 years in the western part of Jiangsu Province, China. It was found that the Cd concentration taken up by rice was correlated to a decreased the ORP of the cultivated soil. The yield of rice was ∼1.20 times higher than that of the control plot. The effects of reducing the Cd content in rice and increasing the rice yield remained for 2 years after FBWA application. Finally, Cd was immobilized in the soil with adsorption to FBWA or the decomposed products. The ORP measurement during rice cultivation might be a key index to predict the suppression effect of Cd uptake into the rice or limitation of the sustainable effect by the FBWA.
ISSN:0910-6340
1348-2246
DOI:10.2116/analsci.19SBP01