生物炭对黑土区土壤水分及其入渗性能的影响
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国家自然科学基金项目(51479033)、黑龙江省博士后面上资助经费项目(LBH-Z17017)和东北农业大学农业农村部农业水资源高效利用重点实验室开放项目(2017009)


Effect of Biochar on Soil Moisture and Its Infiltration Performance in Black Soil Area
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    摘要:

    为探究黑土区施用生物炭对土壤水分及其入渗性能影响的持续性,2016—2018年连续3年在东北黑土区进行了单次施加生物炭(75t/hm2,BC处理)和不施加生物炭(CK处理)的室内外对比试验,分析各土层土壤含水率及土壤水分入渗过程。结果表明:施加生物炭可增加各土层土壤含水率,使其极值比Ka和变异系数Cv减小,且土壤含水率、Ka、Cv的变化幅度均随生物炭施用年限增加而减弱,2016—2018年苗期耕层土壤含水率增加最多,分别增加了14.54%、11.48%和708%;施加生物炭明显增大了土壤累积入渗量、土壤入渗速率,增强了土壤入渗能力,促进了湿润锋的运移,各年份BC处理土壤累积入渗量由大到小依次为2016年、2017年、2018年,初始入渗速率f1分别增加了70.48%、58.98%和48.41%,土壤稳定入渗速率fc由大到小依次为2016年BC处理(1.65mm/min)、2017年BC处理(1.22mm/min)、2018年BC处理(1.17mm/min)、2016年CK处理(0.46mm/min)、2017年CK处理(0.43mm/min)和2018年CK处理(0.38mm/min);2016—2018年中,2016年BC处理湿润锋运移距离最深(32.24mm),各表征土壤入渗性能的指标均于生物炭施用当年效果最优,而后逐年减弱;土壤累积入渗量与时间具有幂函数关系,湿润锋运移距离与时间具有三次函数关系,R2均在0963~0998之间;Philip、Kostiakov、Horton 3个入渗模型拟合对比结果表明,Kostiakov模型R2最高(0.946~0.991)、RMSE最小(0.516~1.941mm/min),拟合参数与实际情况相符,故本研究中Kostiakov模型拟合的土壤水分入渗过程最优。本研究可为东北黑土区施加生物炭后改良土壤水分入渗过程提供理论依据。

    Abstract:

    In order to explore the persistence of the effects of biochar application on soil moisture and infiltration performance in black soil areas, biochar applied with 75t/hm2 (BC) and without biochar (CK) were carried out for three consecutive years from 2016 to 2018. The indoor and outdoor comparative tests of biochar treatment were carried out to analyze the soil moisture content of various soil layers and the process of soil water infiltration. The results showed that biochar application could make the soil moisture content of each soil layers increase and the extreme value ratio Ka and variation coefficient Cv decrease. And the variation of soil moisture content, Ka and Cv was getting decreased with the increase of biochar application period. From 2016 to 2018, the soil moisture content of the cultivated layer was increased the most, which was increased by 14.54%, 11.48% and 7.08%, respectively. The biochar significantly increased the soil infiltration and soil infiltration rate, enhanced the soil infiltration capacity and promoted the migration of the wet peaks. The order of soil infiltration in the BC group from 2016 to 2018 was 2016, 2017 and 2018, and the initial infiltration rate f1 was increased by 70.48%, 58.98% and 48.41%. The stable infiltration rate fc was 2016 BC treatment (1.65mm/min), 2017 BC treatment (1.22mm/min), 2018 BC treatment (1.17mm/min), 2016 CK treatment (0.46mm/min),2017 CK treatment (0.43mm/min) and 2018 CK treatment (0.38mm/min). And the 2016 BC treatment humid peak was the deepest in 2016 to 2018 at 32.24mm. The indexes indicating that soil infiltration performance was the best in the year of biochar application and then weakened year by year. The soil infiltration amount had a good power function relationship with time. The wet peak migration distance and time had a good cubic function relationship, R2 was between 0963 and 0998. Comparing the fitting results of three infiltration models of Philip, Kostiakov and Horton models, Kostiakov model had the highest R2 value (0.946~0.991) and the smallest RMSE (0.516~1.941mm/min). There was no phenomenon that the fitting parameters were inconsistent with the actual situation, also. In the case of this study, the soil water infiltration process was optimal by Kostiakov model. The results provided a theoretical basis for improving the soil water infiltration process after applying biochar in the black soil region of Northeast China.

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魏永霞,王鹤,刘慧,吴昱.生物炭对黑土区土壤水分及其入渗性能的影响[J].农业机械学报,2019,50(9):290-299.

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  • 收稿日期:2019-01-02
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  • 在线发布日期: 2019-09-10
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