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Influence of different moisture regimes and n-fertilization on electrochemical changes and some nutrients in the leachate solution during growing period of rice plants

机译:不同水分和施氮方式对水稻生长期浸出液中电化学变化及某些养分的影响

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A pot experiment was conducted in the greenhouse of NRC, Dokki, Giza, Egypt, using clay loam soil to study the effect of different moisture regimes (M1, M2 and M3) and fertilizer treatment(F0, F1, F2, F3, and F4) on electrochemical change and concentration of some nutrients in the leachate solution during growing period of rice plant (variety Sakha 102). The important results could be summarized in the follows: PH values showed the highest decreases under all the fertilizer treatments when the moisture regime of M1 was used followed by M2 and M3 in descending order. Furthermore, pH values showed higher decreases when the fertilizer treatment of F3 was used followed by F4, F2, F1 and F0 in decreasing order. Under all soil moisture regimes and fertilizer treatment Eh values sharply decreased during the 12 days after starting (DAS), then they decreased to the lowest values at 24 DAS. The soil moisture regimes decreased Eh values in soil solution during the growth period of rice plants. The highest decreases were obtained under soil moisture of M1 followed by M2 and M3 in descending order. The greatest decreases of Eh values were obtained by using the fertilizer treatment of F3 followed by F4, F2, F1 and F0 in descending order. Results showed that , P, K+, Fe++ and Mn++ concentrations in soil solution were higher in the early stages of rice plans and reached a peak at 24 days after staring (DAS), then the concentrations of all the studied nutrients gradually decreased with increasing the growth period. Inorganic N-fertilizer treatments (F1 and F2) gave higher nutrients concentrations under all soil moisture regimes as compared with N-organic fertilizer treatment alone (F4). Combination of organic and inorganic fertilizer (F3) gave the higher nutrients concentration in the leachate solutions followed by fertilizer treatments of F2, F1, F4 and F0 in decreasing order. The highest values of , P, K+, Fe++ and Mn++ concentrations were obtained at 24 days after starting (DAS) by using the fertilizer treatment of F3 under soil moisture regime of M1 (F3 M1?) followed by F3M2 and F3M3 in decreasing order, while the lowest values were obtained at 72DAS under soil moisture regime of M3 and unfertilized treatment F0 (M3F0).
机译:在埃及吉萨吉克自治区Dokki的NRC温室中进行了盆栽试验,使用壤土来研究不同水分状况(M1,M2和M3)和化肥处理(F0,F1,F2,F3和F4)的影响)在水稻生长期间(品种Sakha 102)的渗滤液溶液中某些养分的电化学变化和浓度变化。重要的结果可以总结如下:当使用M1的水分制度,然后依次使用M2和M3的水分制度时,在所有肥料处理下,PH值均显示出最大的下降。此外,当使用F3进行肥料处理时,pH值显示出较高的降低,然后依次使用F4,F2,F1和F0。在所有土壤水分制度和肥料处理下,在开始施用(DAS)后的12天内Eh值均急剧下降,然后在24 DAS时降至最低值。水稻生长期间,土壤水分状况降低了土壤溶液中的Eh值。在M1的土壤水分下,降幅最大,其后依次为M2和M3。通过对F3,F4,F2,F1和F0进行降序施肥处理,可最大程度地降低Eh值。结果表明,在水稻计划的早期,土壤溶液中P,K +,Fe ++和Mn ++的含量较高,在凝视(DAS)后24天达到峰值,然后随着水分含量的增加,所有营养元素的含量逐渐降低。生长期。与仅使用N有机肥(F4)相比,在所有土壤水分状况下,无机N肥处理(F1和F2)的养分含量更高。有机和无机肥料(F3)的结合使渗滤液中的养分浓度更高,然后依次对F2,F1,F4和F0进行肥料处理。在土壤水分状况为M1(F3 M1?)的情况下,先用F3施肥处理F3,然后按降序排列F3M2和F3M3,在开始(DAS)后24天获得最高的P,K +,Fe ++和Mn ++浓度。在土壤水分为M3和未施肥的F0(M3F0)下,72DAS的最低值。

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