首页> 外文期刊>Agriculture, Ecosystems & Environment: An International Journal for Scientific Research on the Relationship of Agriculture and Food Production to the Biosphere >Crop-season and residual effects of sequentially applied mineral enhanced biochar and N fertiliser on crop yield, soil chemistry and microbial communities
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Crop-season and residual effects of sequentially applied mineral enhanced biochar and N fertiliser on crop yield, soil chemistry and microbial communities

机译:作物产量,土壤化学和微生物社区依次应用矿物增强生物炭和氮肥的作物季节和残留效应

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The use of biochar in agricultural soils has received increasing attention over the last decade and enhancing biochar through chemical modification offers a strategy to reduce the amount of biochar required for improving soil productivity. However there is limited knowledge on how mineral enhanced biochars alone, or in combination with conventional fertilisers impact on microbial processes and edaphic parameters of soil or the root, and how this influences agricultural yield in the long-term. To investigate this we assessed crop yield, edaphic parameters and microbial communities within the bulk soil and on roots at the end of the third crop-cycle from a long-term agricultural trial where pre-existing enhanced biochar applications (from previous crop-cycles) totalled between 0 and 5.5 t ha(-1) and were then supplemented with fresh enhanced biochar (0.1 t ha(-1)) and traditional N fertiliser (50 kg ha(-1)) in a crossed design. We found an array of effects associated with existing and new enhanced biochar applications in conjunction with N fertiliser on plant yield, soil nutrients and microbial communities. Yield decreased up to 27% with any soil amendment and was greatest in the unamended control. Soil nitrate increased from 30.4 to 59.6 mg kg(-1) due to N fertiliser with little effect of the enhanced biochar. Soil pH increased from 4.59 to 4.86 due to previously applied enhanced biochar and was associated with applications of at least 1 t ha(-1). There were differing responses in the microbial communities between bulk soil (294 taxa changes) and roots (383 taxa changes) to the fertilisation regimes, which were unrelated to the nitrate content in the soil and appeared to be driven by pH changes, especially for communities associated with plant roots. This has important implications on which soil compartments should be investigated in future studies of microbial communities. The short- and long-term effects of enhanced biochar observed here question the relevance of studies examining once-off applications of biochar and their extrapolation to real world scenarios i.e. where sequential application of biochar might occur. It is likely that responses of agricultural systems may depend on the historical use of biochar.
机译:在过去十年中,使用生物炭在农业土壤中受到越来越关注,通过化学改造增强生物炭,提供了减少改善土壤生产率所需的生物炭量的策略。然而,关于如何单独的矿物质增强的生物脉,或与常规肥料对微生物过程的影响以及土壤或根的仿生参数的影响有限,以及这种长期影响农业产量的影响。调查此,我们评估了在预先存在增强的生物炭应用的长期农业试验(来自先前的作物周期)总共介于0到5.5 t ha(-1)之间,然后补充有新的增强的生物炭(0.1 t ha(-1))和传统的n次肥料(50kg ha(-1))中的交叉设计。我们发现与现有和新增强的生物炭应用相关的一系列效果,与植物产量,土壤营养素和微生物群落结合N肥。任何土壤修正,产量最高可达27%,并在未来的控制中最大。由于N肥,土壤硝酸盐从30.4〜59.6 mg kg(-1)增加,增强的生物炭效果少。由于预先施加的增强的生物炭,土壤pH从4.59增加到4.86,并且与至少1℃(-1)的应用相关。在散装土壤(294个分类草例)和根部(383个分类群)与施肥制度之间的微生物群落中存在不同的反应,这与土壤中的硝酸盐含量无关,并且似乎是由pH变化的驱动,特别是社区与植物根相关联。这对未来的微生物社区的研究应研究了重要的含义。这里观察到增强生物炭的短期和长期效应问题了研究生物炭的一次性应用及其外推到现实世界场景的相关性的相关性,即可能发生生物炭的顺序应用。农业系统的反应可能取决于生物炭的历史使用。

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