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首页> 外文期刊>The Science of the Total Environment >Long-term effects of grain husk and paper fibre sludge biochar on acidic and calcareous sandy soils - A scale-up field experiment applying a complex monitoring toolkit
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Long-term effects of grain husk and paper fibre sludge biochar on acidic and calcareous sandy soils - A scale-up field experiment applying a complex monitoring toolkit

机译:谷物壳和纸纤维污泥BioChar对酸性和钙质砂土的长期影响 - 一种应用复杂监控工具包的大规模场实验

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摘要

Biochar is produced from a wide range of organic materials by pyrolysis, specifically for improvement of poor quality soils. One of the main issues nowadays in studying biochar as soil amendment is to upscale experiments and move from short-term, laboratory conditions to long-term field trials. This paper presents a long-term field study, being the final step of a scale-up technology development, on grain husk and paper fibre sludge biochar application for soil improvement with focus on two degraded soil types of a temperate region. The effects of biochar on an acidic and a calcareous sandy agricultural soil were studied applying a complex approach including physico-chemical, biological and ecotoxicological methods. Our study demonstrated that the applied biochar had positive direct and indirect influences on the acidic sandy soil, but these effects were different in terms of extent and time. 30 t/ha biochar addition improved the pH of the acidic sandy soil by 24% and also increased significantly the nutrient concentrations (P_2O_5 by 68%, K_2O by 11% and organic matter by 33%), and the water-holding capacity after 30 months. Furthermore, biochar addition improved also the microbiological activity and diversity in the acidic sandy soil. Biochar application did not induce any negative effects. Biochar had no toxic effect on the plants and the biochar-treated soil provided a more liveable habitat for soil living animals than the untreated acidic sandy soil. The favourable biochar-mediated influences on soil properties were manifested mainly in the acidic sandy soil, proving that the biochar-related advantages have to be verified for different soil types. The benefits of grain husk and paper fibre sludge biochar application in an acidic sandy soil were confirmed on the long term by the applied tiered approach.
机译:Biochar通过热解,特别是用于改善质量差的土壤的各种有机材料生产。现在研究生物炭作为土壤修正案的主要问题之一是高档实验,并从短期,实验室条件转向长期现场试验。本文提出了一个长期的现场研究,是大规模技术开发的最后一步,谷物壳和纸纤维污泥BioChar应用于土壤改善,重点在于温带区域的两种降解。研究了生物炭对酸性和钙质含有岩土农业土壤的影响,应用了一种复杂的方法,包括物理化学,生物和生态毒理学方法。我们的研究表明,应用的生物炭对酸性砂土的直接和间接影响,但在宽度和时间方面存在这些效果。 30 T / HA Biochar添加改善了酸性含沙土的pH值24%,也显着提高了营养浓度(P_2O_5×68%,K_2O×11%,有机物质33%),30后水持量几个月。此外,Biochar添加还改善了酸性砂土中的微生物活性和多样性。生物炭应用没有诱导任何负面影响。生物炭对植物没有毒性影响,生物炭处理的土壤为土壤生物动物提供比未处理的酸性砂土更为居住的栖息地。有利的生物炭介导对土壤性质的影响主要是在酸性砂土中表现出来,证明了与不同土壤类型的生物炭相关的优点。通过施加的方法,长期确认了谷物壳和纸纤维污泥Biochar应用在酸性砂土中的益处。

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  • 来源
    《The Science of the Total Environment》 |2020年第20期|138988.1-138988.17|共17页
  • 作者单位

    Budapest University of Technology and Economics Department of Applied Biotechnology and Food Science Faculty of Chemical Technology and Biotechnology 1111 Budapest Mueegyetem rkp. 3 Hungary;

    Budapest University of Technology and Economics Department of Applied Biotechnology and Food Science Faculty of Chemical Technology and Biotechnology 1111 Budapest Mueegyetem rkp. 3 Hungary;

    Budapest University of Technology and Economics Department of Applied Biotechnology and Food Science Faculty of Chemical Technology and Biotechnology 1111 Budapest Mueegyetem rkp. 3 Hungary;

    Budapest University of Technology and Economics Department of Applied Biotechnology and Food Science Faculty of Chemical Technology and Biotechnology 1111 Budapest Mueegyetem rkp. 3 Hungary;

    Budapest University of Technology and Economics Department of Applied Biotechnology and Food Science Faculty of Chemical Technology and Biotechnology 1111 Budapest Mueegyetem rkp. 3 Hungary;

    Budapest University of Technology and Economics Department of Applied Biotechnology and Food Science Faculty of Chemical Technology and Biotechnology 1111 Budapest Mueegyetem rkp. 3 Hungary;

    Budapest University of Technology and Economics Department of Applied Biotechnology and Food Science Faculty of Chemical Technology and Biotechnology 1111 Budapest Mueegyetem rkp. 3 Hungary;

    Budapest University of Technology and Economics Department of Chemical and Environmental Process Engineering Faculty of Chemical Technology and Biotechnology 1111 Budapest Mueegyetem rkp. 3 Hungary;

    Eoetvoes Lorand University Department of Microbiology 1117 Budapest Pazmany P. setany 1/C Hungary;

    Institute for Soil Sciences and Agricultural Chemistry Centre for Agricultural Research Hungarian Academy of Sciences Budapest Herman Otto street 15 Hungary;

    Institute for Soil Sciences and Agricultural Chemistry Centre for Agricultural Research Hungarian Academy of Sciences Budapest Herman Otto street 15 Hungary;

    Eoetvoes Lorand University Department of Analytical Chemistry 1117 Budapest Pazmany P. setany 1/A Hungary;

    Budapest University of Technology and Economics Department of Applied Biotechnology and Food Science Faculty of Chemical Technology and Biotechnology 1111 Budapest Mueegyetem rkp. 3 Hungary;

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

    Acidic sandy soil; Calcareous sandy soil; Biochar; Long-term field experiment; Multiparameter approach; Soil improvement;

    机译:酸性砂土;钙质沙质土壤;生物炭;长期田间实验;多道马特方法;土壤改良;

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