The Repercussions of the Combined Use of Potassium Iodate and Chitosan Iodate on the Controlled Fractionation of Iodine

V.R. Mageshen, P. Santhy, M.R. Latha, S. Meena, V.S. Reddy Kiran Kalyan, K. Aswitha, G. Maimaran
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Abstract

Background: Iodine is found in soils in both inorganic and organic forms [Iodate-(IO3-) and Iodide-(I-)]. Iodine is highly prone to leaching and volatilization which results in iodine depletion in soils. Crops cultivated in these soils will be lacking in iodine and humans and animals eating food grown in these soils will be deficient in iodine. Numerous studies have focused on the process by which iodine is absorbed from the soil, but there is still paucity of knowledge on different fractions of iodine in soils. Methods: In our work, we assessed different fractions of iodine (Water Extractable, Exchangeable, Organic bound, Oxide bound and Residual iodine) in soil from different sources of chitosan and potassium iodate alone and combinations. The incubation experiment was carried out in the department of soil science and agricultural chemistry, Tamil Nadu Agricultural University, Coimbatore in 2022. Potassium iodate and chitosan were applied in the form of soil alone, soil drenching and chitosan iodate complex at different stages of incubation. Result: The results suggested that combination and potassium iodate and chitosan complex has increased the iodine stability throughout the incubation experiment. As electrostatic interaction between chitosan and iodate prevents volatilization and gradually stabilizes the availability of iodine. Our findings offer more details on iodine mobility and behaviour in soil when it is used alone and combination with chitosan at different rates.
碘酸钾与壳聚糖复合使用对碘控制分馏的影响
背景:碘以无机和有机形式存在于土壤中[碘酸盐-(IO3-)和碘化物-(I-)]。碘极易浸出和挥发,导致土壤中碘的耗竭。在这些土壤中种植的作物将缺乏碘,而食用这些土壤中生长的食物的人类和动物将缺乏碘。许多研究都集中在碘从土壤中吸收的过程上,但对土壤中碘的不同成分的了解仍然缺乏。方法:对不同来源的壳聚糖和碘酸钾单独及组合处理土壤中碘的不同组分(水提碘、交换碘、有机结合碘、氧化结合碘和残留碘)进行了测定。该孵化实验于2022年在哥印拜陀泰米尔纳德邦农业大学土壤科学与农业化学系进行。碘酸钾和壳聚糖在不同培养阶段分别以土壤单独施用、土壤淋施和壳聚糖配合物施用。结果:碘酸钾与壳聚糖配合物在整个培养过程中均提高了碘的稳定性。由于壳聚糖和碘酸盐之间的静电相互作用阻止了碘的挥发,并逐渐稳定了碘的可用性。我们的发现提供了更多关于碘在土壤中的流动性和行为的细节,当它单独使用和以不同的速率与壳聚糖结合使用时。
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