Xu Manlin, Sun Qiqi, Liu Qiangbo, He Guo, Wang Congpeng, He Kang
Shandong Peanut Research Institute, Qingdao 266100, China.
National Key Laboratory of Wheat Improvement, College of Life Sciences, Shandong Agricultural University, Tai'an 271018, China.
Plants (Basel). 2023 Oct 23;12(20):3649. doi: 10.3390/plants12203649.
Biochar has been widely reported to improve soil conditions and affect plant growth. However, its effectiveness is limited by soil type and production technology. Considering the application effect of biochar in saline alkali soil, there is currently a lack of in-depth mechanism explanations in the research. Therefore, we designed an experiment to explore the effect of biochar on plant growth in saline alkali soil and conducted soil column experiments in a greenhouse environment using composite inorganic fertilizer (NPK). The results showed that biochar significantly affected the distribution of soil nutrient content at different depths, with a significant increase in fertility levels in the surface and middle layers and a decrease in fertility levels in deep soils. Compared to using fertilizers alone, the combined use of biochar and fertilizers further expands the enrichment effect and significantly reduces the leaching of fertilizers into deeper layers. At the same time, the application of biochar also improved soil properties, including an increase in electrical conductivity and organic matter content, as well as an increase in soil enzyme activity. On the other hand, the application of biochar also increases the activity of antioxidant enzymes and the content of osmoregulation substances in plants, reducing the environmental stress that plants are subjected to. Therefore, our results indicate that biochar can reduce the leaching of fertilizers into deep soil layers, improve soil properties, and promotes the growth of Miscanthus in saline alkali soils.
生物炭已被广泛报道可改善土壤条件并影响植物生长。然而,其有效性受到土壤类型和生产技术的限制。考虑到生物炭在盐碱土中的应用效果,目前研究中缺乏深入的机理解释。因此,我们设计了一项实验来探究生物炭对盐碱土中植物生长的影响,并在温室环境中使用复合无机肥料(NPK)进行了土柱实验。结果表明,生物炭显著影响了不同深度土壤养分含量的分布,表层和中层的肥力水平显著增加,深层土壤的肥力水平降低。与单独使用肥料相比,生物炭与肥料的联合使用进一步扩大了富集效果,并显著减少了肥料向深层的淋溶。同时,生物炭的施用还改善了土壤性质,包括电导率和有机质含量的增加以及土壤酶活性的提高。另一方面,生物炭的施用还增加了植物中抗氧化酶的活性和渗透调节物质的含量,减轻了植物所遭受的环境胁迫。因此,我们的结果表明,生物炭可以减少肥料向深层土壤层的淋溶,改善土壤性质,并促进盐碱土中芒草的生长。