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Persistence in soil of Miscanthus biochar in laboratory and field conditions

机译:实验室和野外条件下芒草生物炭在土壤中的持久性

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摘要

Evaluating biochars for their persistence in soil under field conditions is an important step towards their implementation for carbon sequestration. Current evaluations might be biased because the vast majority of studies are short-term laboratory incubations of biochars produced in laboratory-scale pyrolyzers. Here our objective was to investigate the stability of a biochar produced with a medium-scale pyrolyzer, first through laboratory characterization and stability tests and then through field experiment. We also aimed at relating properties of this medium-scale biochar to that of a laboratory-made biochar with the same feedstock. Biochars were made of Miscanthus biomass for isotopic C-tracing purposes and produced at temperatures between 600 and 700°C. The aromaticity and degree of condensation of aromatic rings of the medium-scale biochar was high, as was its resistance to chemical oxidation. In a 90-day laboratory incubation, cumulative mineralization was 0.1% for the medium-scale biochar vs. 45% for the Miscanthus feedstock, pointing to the absence of labile C pool in the biochar. These stability results were very close to those obtained for biochar produced at laboratory-scale, suggesting that upscaling from laboratory to medium-scale pyrolyzers had little effect on biochar stability. In the field, the medium-scale biochar applied at up to 25 t C ha-1 decomposed at an estimated 0.8% per year. In conclusion, our biochar scored high on stability indices in the laboratory and displayed a mean residence time > 100 years in the field, which is the threshold for permanent removal in C sequestration projects.
机译:在田间条件下评估生物炭在土壤中的持久性是实现其碳固存的重要一步。当前的评估可能会有偏差,因为绝大多数研究是在实验室规模的热解炉中生产的生物炭的短期实验室培养。在这里,我们的目的是首先通过实验室表征和稳定性测试,然后通过现场实验研究用中型热解炉生产的生物炭的稳定性。我们还旨在使这种中等规模生物炭的性质与具有相同原料的实验室制造生物炭的性质相关。生物炭由芒草生物质制成,用于同位素C追踪,在600至700°C的温度下生产。中型生物炭的芳香性和芳香环的缩合度很高,并且具有耐化学氧化性。在90天的实验室孵化中,中等规模生物炭的累积矿化度为0.1%,而芒草原料的累积矿化度为45%,这表明生物炭中不存在不稳定的C池。这些稳定性结果非常接近于实验室规模生产的生物炭所获得的结果,这表明从实验室规模扩大到中型热解炉对生物炭稳定性的影响很小。在田间,施用高达25 t C ha -1 的中等规模生物炭,估计每年分解0.8%。总之,我们的生物炭在实验室的稳定性指标上得分很高,并且在田间的平均停留时间> 100年,这是在固碳项目中永久去除的阈值。

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