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Biochar As Plant Growth Promoter: Better Off Alone or Mixed with Organic Amendments?

机译:作为植物生长促进剂的生物炭:是单独食用还是与有机改良剂混合使用会更好?

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摘要

Biochar is nowadays largely used as a soil amendment and is commercialized worldwide. However, in temperate agro-ecosystems the beneficial effect of biochar on crop productivity is limited, with several studies reporting negative crop responses. In this work, we studied the effect of 10 biochar and 9 not pyrogenic organic amendments (NPOA), using pure and in all possible combinations on lettuce growth (Lactuca sativa). Organic materials were characterized by 13C-CPMAS NMR spectroscopy and elemental analysis (pH, EC, C, N, C/N and H/C ratios). Pure biochars and NPOAs have variable effects, ranging from inhibition to strong stimulation on lettuce growth. For NPOAs, major inhibitory effects were found with N poor materials characterized by high C/N and H/C ratio. Among pure biochars, instead, those having a low H/C ratio seem to be the best for promoting plant growth. When biochars and organic amendments were mixed, non-additive interactions, either synergistic or antagonistic, were prevalent. However, the mixture effect on plant growth was mainly dependent on the chemical quality of NPOAs, while biochar chemistry played a secondary role. Synergisms were prevalent when N rich and lignin poor materials were mixed with biochar. On the contrary, antagonistic interactions occurred when leaf litter or woody materials were mixed with biochar. Further research is needed to identify the mechanisms behind the observed non-additive effects and to develop biochar-organic amendment combinations that maximize plant productivity in different agricultural systems.
机译:如今,生物炭已广泛用作土壤改良剂,并已在全球范围内商业化。但是,在温带农业生态系统中,生物炭对作物生产力的有益作用是有限的,有几项研究报告了对作物的负面反应。在这项工作中,我们研究了10种生物炭和9种非热解有机改良剂(NPOA)的作用,使用纯净的和所有可能的组合对莴苣的生长(Lactuca sativa)。通过 13 C-CPMAS NMR光谱和元素分析(pH,EC,C,N,C / N和H / C比)对有机材料进行表征。纯生物炭和NPOA具有可变的影响,范围从抑制到对生菜生长的强烈刺激。对于NPOA,发现了以高C / N和H / C比为特征的N种不良材料的主要抑制作用。相反,在纯生物炭中,具有低H / C比的生物炭似乎是促进植物生长的最佳生物炭。当混合生物炭和有机修饰剂时,非加性相互作用(协同或拮抗)普遍存在。然而,混合物对植物生长的影响主要取决于NPOA的化学质量,而生物炭化学起次要作用。当富氮和贫木质素材料与生物炭混合时,协同作用普遍存在。相反,当将枯枝落叶或木质材料与生物炭混合时会发生拮抗作用。需要进一步的研究来确定所观察到的非累加效应背后的机理,并开发生物炭-有机修正组合,以最大程度地提高不同农业系统中的植物生产力。

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