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生物炭添加与氮肥对小麦产量及土壤剖面养分状况的交互作用

Interaction of Biochar Addition and Nitrogen Fertilizers on Wheat Production and Nutrient Status in Soil Profiles.

作者信息

Liu Jiale, Chen Zirui, Wu Si, Sun Haijun, Xing Jincheng, Zhang Zhenhua

机构信息

Co-Innovation Center for Sustainable Forestry in Southern China, College of Soil and Water Conservation, Nanjing Forestry University, Nanjing 210037, China.

Institute of Jiangsu Coastal Agricultural Sciences, Yancheng 224002, China.

出版信息

Plants (Basel). 2024 Feb 23;13(5):614. doi: 10.3390/plants13050614.

Abstract

To investigate the responses of crop production and soil profile nutrient status to biochar (BC) application, we conducted a soil column experiment considering two BC addition rates (0.5 and 1.5 wt% of the weight of 0-20 cm topsoil) combined with two nitrogen (N) input levels (low N: 144 kg ha, LN; high N: 240 kg ha, HN). The results showed that BC application increased the soil pH. The soil pH of the 0-10 cm profile under LN and the 20-40 cm profile under HN were both significantly increased by 0.1-0.2 units after BC addition. Under LN, BC addition significantly increased NH-N (17.8-46.9%), total N (15.4-38.4%), and soil organic carbon (19.9-24.0%) in the 0-10 cm profile, but decreased NH-N in the 20-30 cm soil profile and NO-N in the 10-30 cm profile by 13.8-28.5% and 13.0-34.9%, respectively. BC had an increasing effect on the available phosphorus, the contents of which in the 10-20 and 30-40 cm soil profiles under LN and 20-30 cm profile under HN were significantly elevated by 14.1%, 24.0%, and 23.27%, respectively. However, BC exerted no effect on the available potassium in the soil profile. BC had a strong improving effect (15.3%) on the wheat yield, especially the N144 + BC0.5% treatment, which could be compared to the HN treatment, but there was no yield-increasing effect when high N fertilizer was supplied. In summary, BC improved the fertility of agriculture soil (0-20 cm) with wheat. In particular, low N inputs together with an appropriate rate of BC (0.5 wt%) could not only achieve the low inputs but also the high outputs in wheat production. In future study, we will compare the effects of multiple doses of N and BC on soil fertility and crop production.

摘要

为了研究作物产量和土壤剖面养分状况对生物炭(BC)施用的响应,我们进行了一项土柱实验,考虑了两种生物炭添加率(分别为0-20厘米表土重量的0.5%和1.5%),并结合了两个氮(N)输入水平(低氮:144千克/公顷,LN;高氮:240千克/公顷,HN)。结果表明,施用生物炭提高了土壤pH值。添加生物炭后,LN处理下0-10厘米土层和HN处理下20-40厘米土层的土壤pH值均显著提高了0.1-0.2个单位。在LN处理下,添加生物炭显著提高了0-10厘米土层中的铵态氮(17.8%-46.9%)、全氮(15.4%-38.4%)和土壤有机碳(19.9%-24.0%),但20-30厘米土层中的铵态氮和10-30厘米土层中的硝态氮分别降低了13.8%-28.5%和13.0%-34.9%。生物炭对有效磷有增加作用,LN处理下10-20厘米和30-40厘米土层以及HN处理下20-30厘米土层中有效磷的含量分别显著提高了14.1%、24.0%和23.27%。然而,生物炭对土壤剖面中的速效钾没有影响。生物炭对小麦产量有显著的增产作用(15.3%),尤其是N144 + BC0.5%处理,其产量可与HN处理相媲美,但在供应高氮肥时没有增产效果。总之,生物炭提高了种植小麦的农业土壤(0-20厘米)的肥力。特别是,低氮投入与适当比例的生物炭(0.5%重量比)不仅可以实现小麦生产的低投入,还能实现高产出。在未来的研究中,我们将比较多剂量氮和生物炭对土壤肥力和作物产量的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c6e/10934882/b35c5612adc2/plants-13-00614-g001.jpg

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