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Effects of Leucaena biochar addition on crop productivity in degraded tropical soils

机译:Leucaena Biochar的作用对劣化热带土壤作物生产率的影响

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摘要

Biochar has the potential to increase crop yields on degraded, tropical soils. It can be readily produced in rural community settings using low-cost technology and is most economically feasible if produced from local biomass or waste residues. Biochar was produced from Leucaena biomass using low-cost pyrolysis and sequential pot experiments were then conducted in Malaysia on three degraded soils. We first evaluated the effect of Leucaena biochar on yields of Amaranthus, a leafy vegetable crop and measured changes to soil pH and nutrient availability over two growth cycles. We then tested whether any yield response to biochar was dependent upon the rate of biochar or fertilizer application. We found that biochar application at 30 t ha~(-1) with maximal fertilizer increased yields between 17 and 53% on very strongly acidic soil. Biochar added at 15 t ha~(-1) with maximal fertilizer increased yield by 54% on strongly acidic soil whilst there was no significant yield response on fertilized, slightly acidic soil. Unfertilized biochar treatments showed small yield responses across all soils over 2 growth cycles (9-11%), but yields were much lower than in fertilized treatments. Biochar also decreased short-term N availability when applied with fertilizers, which may improve nitrogen retention and substantially increased soil pH. This may reduce mobility of Fe, Mn and Al ions, which were negatively associated with yield. Our results suggest that Leucaena biochar can elicit a positive crop yield response but only when combined with fertilizer additions on very strongly to strongly acidic tropical soils.
机译:生物炭有可能增加作物产量的降解,热带土壤。可以使用低成本技术在农村社区环境中容易地生产,并且如果由当地生物量或废物残留生产,则是最经济上可行的。使用低成本的热解和序列罐实验,在马来西亚进行三种降解的土壤中进行生物炭。我们首先评估了Leucaena BioChar对苋菜的产量,植物蔬菜作物的产量,并在两种生长周期上测量土壤pH和养分可用性的变化。然后,我们测试了对生物炭的任何产量反应是否依赖于生物炭或肥料应用的速率。我们发现BioChar在30吨HA〜(-1)下施用最大肥料在非常强烈酸性的土壤上增加了17%至53%的产率。 Biochar在15吨HA〜(-1)时,最大肥料增加了54%的强酸性土壤,同时没有显着的受精,微酸性土壤的产量反应。未受精的生物炭治疗在2个生长循环(9-11%)的所有土壤上显示出小的产量响应,但产量远低于受精处理。在用肥料施用时,Biochar还减少了短期N可用性,这可能改善氮素潴留,并且基本上增加土壤pH值。这可以减少与产率负相关的Fe,Mn和Al离子的迁移率。我们的研究结果表明,Leucaena Biochar可以引发积极的作物产量反应,但只有在与肥料中相结合时非常强烈地向强酸性热带土壤。

著录项

  • 来源
    《Biomass & bioenergy》 |2020年第11期|105710.1-105710.10|共10页
  • 作者单位

    UK Centre for Ecology & Hydrology Lancaster Environment Centre Library Avenue Lancaster Bailrigg LA1 4AP United Kingdom;

    Crops for the Future Jalan Broga 43500 Semenyih Selangor Darul Ehsan Malaysia;

    Crops for the Future Jalan Broga 43500 Semenyih Selangor Darul Ehsan Malaysia;

    Lancaster Environment Centre Library Avenue Lancaster University Lancaster LA1 4YQ United Kingdom;

    UK Centre for Ecology & Hydrology Lancaster Environment Centre Library Avenue Lancaster Bailrigg LA1 4AP United Kingdom;

    UK Centre for Ecology & Hydrology Lancaster Environment Centre Library Avenue Lancaster Bailrigg LA1 4AP United Kingdom;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biochar; Malaysia; Yield; Degraded tropical soils; Soil pH; Food security;

    机译:生物炭;马来西亚;屈服;降解热带土壤;土壤pH;食品安全;

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