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首页> 外文期刊>The Science of the Total Environment >Benefits of biochar, compost and biochar-compost for soil quality, maize yield and greenhouse gas emissions in a tropical agricultural soil
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Benefits of biochar, compost and biochar-compost for soil quality, maize yield and greenhouse gas emissions in a tropical agricultural soil

机译:生物炭,堆肥和生物炭堆肥对热带农业土壤中土壤质量,玉米产量和温室气体排放的益处

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摘要

Soil quality decline represents a significant constraint on the productivity and sustainability of agriculture in the tropics. In this study, the influence of biochar, compost and mixtures of the two on soil fertility, maize yield and greenhouse gas (GHG) emissions was investigated in a tropical Ferralsol. The treatments were: 1) control with business as usual fertilizer (F); 2) 10 t ha~(-1) biochar (B) + F; 3) 25 t ha~(-1) compost (Com) + F; 4) 2.5 t ha~(-1) B + 25 t ha~(-1) Com mixed on site + F; and 5) 25 t ha~(-1) co-composted biochar-compost (COMBI) + F. Total aboveground biomass and maize yield were significantly improved relative to the control for all organic amendments, with increases in grain yield between 10 and 29%. Some plant parameters such as leaf chlorophyll were significantly increased by the organic treatments. Significant differences were observed among treatments for the δ~(15)N and δ~(13)C contents of kernels. Soil physicochemical properties including soil water content (SWC), total soil organic carbon (SOC), total nitrogen (N), available phosphorus (P), nitrate-nitrogen (NO_3~-N), ammonium-nitrogen (NH_$~+-N). exchangeable cations and cation exchange capacity (CEC) were significantly increased by the organic amendments. Maize grain yield was correlated positively with total biomass, leaf chlorophyll, foliar N and P content SOC and SWC. Emissions of CO_2 and N_2O were higher from the organic-amended soils than from the fertilizer-only control. However, N_2O emissions generally decreased over time for all treatments and emission from the biochar was lower compared to other treatments. Our study concludes that the biochar and biochar-compost-based soil management approaches can improve SOC, soil nutrient status and SWC, and maize yield and may help mitigate greenhouse gas emissions in certain systems.
机译:土壤质量下降对热带地区的农业生产力和可持续性构成了重大制约。在这项研究中,在热带的Ferralsol中研究了生物炭,堆肥和两者的混合物对土壤肥力,玉米产量和温室气体(GHG)排放的影响。处理方法为:1)照常施肥(F)防治; 2)10 t ha〜(-1)生物炭(B)+ F; 3)25 t ha〜(-1)堆肥(Com)+ F; 4)2.5 t ha〜(-1)B + 25 t ha〜(-1)Com混合+ F;和5)25 t ha〜(-1)堆肥生物炭堆肥(COMBI)+F。相对于所有有机改良剂的对照,地上总生物量和玉米产量均显着提高,谷物产量在10到29之间增加%。有机处理显着提高了某些植物参数,例如叶绿素。籽粒中δ〜(15)N和δ〜(13)C含量之间存在显着差异。土壤理化特性包括土壤水分(SWC),土壤总有机碳(SOC),总氮(N),有效磷(P),硝态氮(NO_3〜-N),铵态氮(NH_ $〜+- N)。通过有机修饰,可交换阳离子和阳离子交换容量(CEC)显着增加。玉米籽粒产量与总生物量,叶片叶绿素,叶面氮,磷含量SOC和SWC呈正相关。有机改良土壤的CO_2和N_2O排放量高于单纯肥料的排放量。但是,对于所有处理,N_2O排放通常会随着时间的推移而减少,并且与其他处理相比,生物炭的排放更低。我们的研究得出的结论是,基于生物炭和生物炭堆肥的土壤管理方法可以改善SOC,土壤养分状况和SWC以及玉米产量,并可能有助于减轻某些系统中的温室气体排放。

著录项

  • 来源
    《The Science of the Total Environment》 |2016年第1期|295-306|共12页
  • 作者单位

    College of Science, Technology and Engineering, Centre for Tropical Environmental and Sustainability Science, James Cook University, PO Box 6811, Cairns, Queensland 4870, Australia;

    Hawkesbury Institute for the Environment, University of Western Sydney, Science Road, Richmond, New South Wales 2753, Australia;

    College of Science, Technology and Engineering, Centre for Tropical Environmental and Sustainability Science, James Cook University, PO Box 6811, Cairns, Queensland 4870, Australia;

    College of Science, Technology and Engineering, Centre for Tropical Environmental and Sustainability Science, James Cook University, PO Box 6811, Cairns, Queensland 4870, Australia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biochar; Co-composted biochar-compost; Compost; Ferralsol; Greenhouse gas fluxes; Soil quality;

    机译:生物炭共同堆肥生物炭堆肥;堆肥;Ferralsol;温室气体通量;土壤质量;

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