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Evaluation of Biochar Effects on Nitrogen Retention and Leaching in Multi-Layered Soil Columns

机译:生物炭对多层土壤柱中氮素保持与淋失的影响

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摘要

Biochar can play a key role in nutrient cycling, potentially affecting nitrogen retention when applied to soils. In this project, laboratory experiments were conducted to investigate the adsorption properties of bamboo charcoal (BC) and the influence of BC on nitrogen retention at different soil depths using multi-layered soil columns. Results showed that BC could adsorb ammonium ion predominantly by cation exchange. Ammonium nitrogen (NH4 +-N) concentrations in the leachate of the soil columns showed significant differences at different depths after ammonium chloride application to the columns depending on whether BC had been added. Addition of 0.5% BC to the surface soil layer retarded the downward transport of NH4 +-N in the 70-day experiment, as indicated by measurements made during the first 7 days at 10 cm, and later, in the experimental period at 20 cm. In addition, application of BC reduced overall cumulative losses of NH4 +-N via leaching at 20 cm by 15.2%. Data appeared to suggest that BC could be used as a potential nutrient-retaining additive in order to increase the utilization efficiency of chemical fertilizers. Nonetheless, the effect of BC addition on controlling soil nitrogen losses through leaching needs to be further assessed before large-scale applications to agricultural fields are implemented.
机译:生物炭可以在养分循环中发挥关键作用,当应用于土壤时,可能会影响氮的保留。在该项目中,通过多层土柱进行了室内实验研究,研究了竹炭(BC)的吸附特性以及BC对不同土壤深度下氮素保留的影响。结果表明,BC主要通过阳离子交换吸附铵离子。施用氯化铵后,土壤柱渗滤液中的铵态氮(NH 4 + -N)浓度在不同深度显示出显着差异,具体取决于BC是否添加。在前70天的实验中,在表层土壤层中添加0.5%BC抑制了NH 4 + -N的向下迁移。在10厘米处放置几天,然后在实验期间以20厘米放置。此外,BC的施用通过在20 cm处浸出将NH 4 + -N的总体累积损失降低了15.2%。数据似乎表明,BC可以用作潜在的养分添加剂,以提高化学肥料的利用效率。尽管如此,在大规模应用于农业领域之前,还需要进一步评估BC添加对通过淋洗控制土壤氮素流失的影响。

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