College of Agronomy, Northwest A&F University, Yangling, 712100, Shaanxi, China; Key Laboratory of Crop Physi-Ecology and Tillage Science in Northwestern Loess Plateau, Ministry of Agriculture, Northwest A&F University, Yangling, 712100, Shaanxi, China.
College of Agronomy, Northwest A&F University, Yangling, 712100, Shaanxi, China; Key Laboratory of Crop Physi-Ecology and Tillage Science in Northwestern Loess Plateau, Ministry of Agriculture, Northwest A&F University, Yangling, 712100, Shaanxi, China.
J Environ Manage. 2023 Jul 15;338:117711. doi: 10.1016/j.jenvman.2023.117711. Epub 2023 Mar 28.
Plastic film mulching is used widely to increase crop yields in semiarid areas, but improving the soil fertility in film mulched fields is also important for achieving sustainable high yields in northwest of China. In this study, a completely randomized two-factor field design experiment was conducted in Pengyang, Ningxia, China during 2017-2021. In order to investigate the effects of plastic film mulching with straw/biochar addition on the soil aggregate characteristics, organic carbon content, and maize yield. Six treatments were established as follows: control (C), straw (S), biochar (B), plastic film mulching (F), plastic film mulching with added straw (FS) or biochar (FB). After 5 years of continuous production, each straw and biochar addition treatments significantly improved the soil aggregate distribution and stability, and the average aggregate content >0.25 mm increased significantly by 47.32%. Compared with the treatments without plastic film mulching, the mean weight diameter and geometric mean diameter of the soil particles increased by 9.19% and 4.15%, respectively, under the plastic film mulching treatments. The organic carbon content of the 0-60 cm soil layer increased significantly under each straw and biochar addition treatment compared with the without straw. The aggregate organic carbon contents under each treatment increased as the aggregate particle size increased, where the straw and biochar addition treatments significantly increased the organic carbon content of the aggregates, whereas the contents decreased under the plastic film mulching treatments. The contributions of the soil aggregates >0.25 mm to the organic carbon contents of the 0-60 cm soil layer were significantly higher under FS (37.63%) and FB (56.45%) than F. Structural equation modeling showed that straw/biochar added, plastic film mulching, and a greater soil organic carbon content could significantly promote yield increases, where the straw and biochar addition treatments significantly increased the average maize by 14.6% on average. In conclusion, carbon input as straw, especially biochar, had a positive effect on improving the soil organic carbon content and maize yield under plastic film mulching farmland in a semiarid region.
在中国宁夏彭阳,自 2017 年至 2021 年进行了一项完全随机的两因素田间设计试验,以研究塑料薄膜覆盖并添加秸秆/生物炭对土壤团聚体特征、有机碳含量和玉米产量的影响。共设立 6 种处理,分别为:对照(C)、秸秆(S)、生物炭(B)、塑料薄膜覆盖(F)、塑料薄膜覆盖并添加秸秆(FS)或生物炭(FB)。经过 5 年的连续生产,秸秆和生物炭的添加处理均显著提高了土壤团聚体的分布和稳定性,平均>0.25mm 团聚体含量增加了 47.32%。与未进行塑料薄膜覆盖的处理相比,在塑料薄膜覆盖处理下,土壤颗粒的平均重量直径和几何平均直径分别增加了 9.19%和 4.15%。与未添加秸秆相比,每个秸秆和生物炭添加处理均显著增加了 0-60cm 土层的土壤有机碳含量。在每个处理下,土壤团聚体的有机碳含量均随着团聚体粒径的增大而增加,其中秸秆和生物炭添加处理显著增加了团聚体的有机碳含量,而塑料薄膜覆盖处理则降低了有机碳含量。FS(37.63%)和 FB(56.45%)处理下>0.25mm 土壤团聚体对 0-60cm 土层有机碳含量的贡献明显高于 F 处理。结构方程模型表明,秸秆/生物炭添加、塑料薄膜覆盖以及更高的土壤有机碳含量均可显著促进产量增加,其中秸秆和生物炭添加处理可使玉米平均增产 14.6%。总之,在半干旱地区的塑料薄膜覆盖农田中,添加秸秆特别是生物炭作为碳源,对提高土壤有机碳含量和玉米产量具有积极作用。