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Deficit irrigation and organic amendments can reduce dietary arsenic risk from rice: Introducing machine learning-based prediction models from field data

2021-10-01

Abstract excerpt

Dietary rice consumption can assume a significant pathway of the carcinogenic arsenic (As) in the human system. In search of a viable mitigation strategy, a field experiment was conducted with rice (cv. IET-4786) at geogenically arsenic-contaminated areas (West Bengal, India) for two consecutive years. The research aimed to explore irrigation management (saturation and alternate wetting and drying), and organic am...

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Literature Corpus work
9e1b40c1-2d4a-5828-9c6e-37041865777f
DOI
10.1016/j.agee.2021.107516
Open publication

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Deficit irrigation and organic amendments can reduce dietary arsenic risk from rice: Introducing machine learning-based prediction models from field dataDOI 10.1016/j.agee.2021.107516
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