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    PAM和尿素混施对土壤蒸发特性的影响

    Effects of PAM mixed with urea on soil evaporation

    • 摘要: 为深入了解(PAM)与肥料混施的作用和效果,确定农业应用技术参数,通过室内土柱模拟试验,分析PAM与尿素混施对土壤蒸发特性的影响。结果表明:1) 0~10cm浅层混施,在PAM用量0、0.05%和0.1%水平下,12d内尿素4个处理水平(尿素中纯氮占干土的质量比0、0.1%、0.2%、0.4%)对蒸发的影响无差异,12d后,差异开始逐渐凸显,总体呈现随着尿素施用量的增加蒸发量减小的规律;在同一尿素水平下,累积蒸发量随着PAM用量的增加而减小;2)10~20cm深层混施,在同一PAM水平下,尿素4个处理中,不施尿素对照处理累积蒸发量最大,在同一尿素水平下,累积蒸发量总体呈现随着PAM用量的增加而减小的趋势;3)深施各处理土壤总蒸发量普遍高于浅施各处理,0~10cm浅层混施,前5d日蒸发量迅速下降,5~25d日蒸发量波动性缓慢下降,25d后日蒸发量趋于稳定;10~20cm深层混施,前10d日蒸发量波动性保持近似水平,12d以后开始逐渐下降,25d以后又趋于稳定;4)PAM和尿素处理,都抑制了土壤的蒸发,相对于尿素,PAM对蒸发的抑制作用更强。

       

      Abstract: With the purpose of understanding the effect of PAM mixed with urea, and determining the technical parameters of field application, this study investigated the effect of PAM mixed with urea on soil evaporation through soil column experiment. The results showed that:1) when PAM and urea mixture were applied within the depth of 10cm(shallow application) in the soil column, under the amount of PAM of 0%, 0.05% and 0.1%, the effect of urea on evaporation was not significant in the first 12 days, then the evaporation decreased with the increase of urea amount (0,0.1%,0.2%,0.4%), besides, at the same level of urea, the evaporation decreased with the increase of PAM amount(0%,0.05%,0.1%,0.2%). 2)When PAM and urea mixture were applied from 10cm to 20cm(deep application) in the soil column, at the same level of PAM, the evaporation at urea amount of 0% was the biggest in the four levels of urea, and at the same level of urea, the evaporation decreased with the increase of PAM amount. 3)The total soil evaporation of deep application was bigger than shallow application. Under the condition of shallow application, the daily evaporation decreased rapidly in the first 5 days, then a slow decline in volatility from 5 to 25 days, and then tended to be stable. Under the condition of deep application, the daily evaporation kept consistent grossly in the first 10 days, and then declined gradually; after 25 days, it tended to be stable. 4) In a word, both PAM and urea inhibited the soil evaporation. The inhibition effect of PAM on soil evaporation was greater than that of urea.

       

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