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Development of a Biochar-Plant-Extract-Based Nitrification Inhibitor and Its Application in Field Conditions

机译:基于生物炭-植物提取物的硝化抑制剂的开发及其在田间条件下的应用

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The global use of nitrogen (N) fertilizer has increased 10-fold in the last fifty years, resulting in increased N losses via nitrate leaching to groundwater bodies or from gaseous emissions to the atmosphere. One of the biggest problems farmers face in agricultural production systems is the loss of N. In this context, novel biological nitrification inhibitors (BNI) using biochar (BC) as a renewable matrix to increase N use efficiency, by reducing nitrification rates, have been evaluated. The chemical and morphological characteristics of BC were analyzed and BC-BNI complexes were formulated using plant extracts from pine (Pinus radiata), eucalyptus (Eucalyptus globulus) and peumo (Cryptocarya alba). In field experiments, fertilizer and treatments, based on crude plant extracts and BC-BNI complexes, were applied and the effect on nitrification was periodically monitored, and at the laboratory level, a phytotoxicity assay was performed. The biochar-peumo (BCPe) complex showed the highest nitrification inhibition (66%) on day 60 after application compared with the crude plant extract, suggesting that BCPe complex protects the BNI against biotic or abiotic factors, and therefore BC-BNI complexes could increase the persistence of biological nitrification inhibitors. None of the biochar complexes had toxic effect on radish plants.
机译:在过去的五十年中,全球氮肥的使用量增加了10倍,导致硝酸盐向地下水体的淋溶或向大气的气体排放导致的氮损失增加。农民在农业生产系统中面临的最大问题之一是氮的流失。在这种情况下,利用生物炭(BC)作为可再生基质通过降低硝化率来提高氮利用效率的新型生物硝化抑制剂(BNI)已经问世。评估。分析了BC的化学和形态特征,并使用松树(Pinus radiata),桉树(Eucalyptus globulus)和peumo(Cryptocarya alba)的植物提取物配制了BC-BNI复合物。在田间试验中,基于植物粗提物和BC-BNI复合物施肥和处理,并定期监测其对硝化作用的影响,并在实验室水平上进行了植物毒性试验。与原始植物提取物相比,生物炭-生物(BCPe)复合物在施用后第60天显示出最高的硝化抑制(66%),这表明BCPe复合物可保护BNI免受生物或非生物因素的侵害,因此BC-BNI复合物可以增加生物硝化抑制剂的持久性。没有一种生物炭复合物对萝卜植物具有毒性作用。

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