Infuences of Rice Husk Biochar (RHB) on Rice Growth Performance and Fertilizer Nitrogen Recovery up to Maximum Tillering Stage

Deniel Sang, R. A. Bakar, S. H. Ahmad, K. A. Rahim
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引用次数: 7

Abstract

A pot study was carried out to investigate the effects of rice husk biochar addition on rice growth performance and fertilizer nitrogen recovery. The biochar effect was studied by using 15N labelled fertilizer urea (10 atom% 15N), as isotopic tracer, until maximum tillering stage (75 days after sowing). Rice husk biochar (RHB) was applied at rates of 0, 5, 10 and 20 Mg ha-1 and laid in randomized complete block design with four replications. The result showed that biochar application significantly improved soil chemical properties (pH, total C, total N, and available P) compared to control treatment. Biochar addition increased number of tiller and root dry matter weight up to 4% and 35%, respectively, compared to un-amended pot. Likewise, application of biochar significantly increased N, P and K uptake by 3%, 19% and 33%, respectively, as compared to the nutrient uptake from the control treatment. Biochar treatment had no significant impact on fertilizer nitrogen recovery in aboveground biomass, in the range of 41% and 42%, in comparison to the control. However, nitrogen fertilizer recovery in soil significantly increased by 47% over the control at application rate of 20 Mg ha-1 RHB.  Increased fertilizer N recovery in soil possibly reduced N losses to the environment from volatilization and denitrification processes. Total 15N fertilizer recovery also found increase at highest application of RHB biochar with an increment of 16%. In general, addition of biochar appeared to enhance crop growth performance but its effect on fertilizer N recovery in plant requires further study up to maturity of rice plant.
稻壳生物炭(RHB)对水稻分蘖期前生长性能和氮肥恢复的影响
通过盆栽试验研究了稻壳生物炭添加对水稻生长性能和氮肥回收的影响。采用15N标记肥料尿素(10原子% 15N)作为同位素示踪剂,研究生物炭效应,直至分蘖最大期(播种后75 d)。稻壳生物炭(RHB)按0、5、10和20 Mg ha-1的剂量施用,采用随机完全区组设计,设4个重复。结果表明,与对照处理相比,施用生物炭显著改善了土壤化学性质(pH、全碳、全氮和速效磷)。与未处理相比,添加生物炭使分蘖数和根系干物质质量分别提高了4%和35%。同样,与对照处理相比,施用生物炭显著提高了氮、磷和钾的吸收量,分别提高了3%、19%和33%。与对照相比,生物炭处理对地上生物量肥料氮的回收影响不显著,在41%和42%之间。施用20 Mg ha-1 RHB后,土壤氮肥回收率较对照显著提高47%。土壤中氮肥恢复的增加可能减少氮素挥发和反硝化过程对环境的损失。施用最多的RHB生物炭可提高15N肥料的总回收率,增幅达16%。总体而言,添加生物炭能提高作物的生长性能,但其对水稻植株氮肥恢复的影响有待进一步研究,直至水稻植株成熟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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