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首页> 外文期刊>Forest Ecology and Management >Biochar addition to forest plantation soil enhances phosphorus availability and soil bacterial community diversity
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Biochar addition to forest plantation soil enhances phosphorus availability and soil bacterial community diversity

机译:生物炭加入森林种植园土壤增强磷的可用性和土壤细菌群落多样性

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摘要

Depletion of soil nutrients is a major cause of decline in productivity of forest plantations in successive rotations. Biochar amendment in agricultural systems has been shown to yield various beneficial effects, including increasing soil phosphorus (P) availability. However, the direct and indirect effects of biochar addition on forest soil P dynamics have largely been unexplored. The objective of this study was to examine how biochar produced from harvest residue (leaves and woodchips) affect the P dynamics in second rotation Cunninghamia lanceolata (Chinese fir) plantation soil. An incubation experiment which involved mixing of forest soil with 1% or 3% w/w leaf or woodchip biochar, pyrolyzed at 300 degrees C or 600 degrees C, was conducted for 80 days at 20 degrees C. After 7, 40 and 80 days of incubation, soil samples were analyzed for total and available P, inorganic and organic P pools, and soil phosphatase activity. At the end of the incubation period, bacterial community composition and diversity were analyzed by 16S rDNA sequencing. The leaf biochar produced at both pyrolysis temperatures was more alkaline and had significantly higher soluble P, nitrogen and calcium contents than the woodchip biochar. Soil total and available P increased significantly in all leaf biochar treatments after 80 days incubation compared to the untreated control soil, but the woodchip biochar treatments had no significant effects. At the end of the experiment, Al-P content was significantly lower and Cato-P content higher in soil amended with both biochar types compared to the control soil, and Fe-P content was significantly higher in the leaf biochar treatments. Contrary to expectations, acid and alkaline phosphatase enzyme activities were significantly lower in some of the biochar treatments after 80 days incubation compared to the control soil. Nevertheless, the diversity of the bacterial community was higher in leaf biochar-amended forest soil than the woodchip biochar-amended and untreated soil at the end of the experiment. In particular, the abundance increased in the leaf biochar soil treatments of P-solubilizing bacteria, such as Burkholderia-Paraburkholderia, Planctomyces, Sphingomonas and Singulisphaera, which can indirectly improve P availability in soil. Thus, conversion of tree harvest residues, particularly leaves, into biochar and recycling back into the soil could be a viable option to boost P availability and help to conserve nutrients or reduce nutrient losses for the next rotation. Before recommending plantation management with biochar, long-term studies are required assessing the life cycle of biochar under field conditions and its promoting effect on growth of C. lanceolata.
机译:土壤养分的消耗是在连续旋转人工林生产力下降的一个主要原因。在农业系统生物炭修正案已经显示,得到各种有益的效果,包括增加土壤磷(P)的可用性。然而,生物炭除了对森林土壤P的变化的直接和间接影响在很大程度上被探索。这项研究的目的是检查从收获的残余物(叶和木屑)生产的生物炭是如何影响第二旋转杉木(中国FIR)种植磷素的动态。其中涉及森林土壤的用1%或3%w / w的叶或木屑生物炭混合的温育试验中,在300摄氏度或600摄氏度热解,在20℃下80天之后进行图7,40和80天温育,土壤分析样品的总的和可用的P,无机和有机磷库和土壤磷酸酶活性。在培育期结束时,细菌群落组成和多样性是由16S rDNA序列分析。在两个热解温度制得的生物炭叶更碱性,具有比生物炭木屑更高显著可溶性磷,氮和钙含量。 80天后孵化比未经处理的对照土壤全氮和有效磷在所有叶生物炭处理显著上升,但木屑生物炭的治疗没有显著影响。在实验结束时,铝磷含量为显著下,并用这两种类型的生物炭在土壤卡托-P含量较高的修正相比于对照土壤,和Fe-P含量在叶生物炭处理显著更高。 80天后孵化对照相比,土壤与预期相反,酸性和碱性磷酸酶酶活性均在一些生物炭处理显著更低。尽管如此,细菌群落的多样性是生物炭叶,修订林地土壤比在实验结束时,木屑生物碳修正和未经处理的土壤更高。特别地,丰度P-解磷细菌,如洋葱伯克霍尔德-Paraburkholderia,浮霉状菌属,鞘氨醇单和Singulisphaera,这可以间接地在土壤中提高磷的有效性的生物炭叶土壤处理增加。因此,树的采伐剩余物,特别是叶,成生物炭和再循环入土壤中的转换可能是一个可行的选择,以提升磷的有效性,并有助于保护营养素或减少下一个旋转的营养损失。推荐种植管理与生物炭之前,需要长期的研究领域条件和杉木生长的促进作用下,评估生物炭的生命周期。

著录项

  • 来源
    《Forest Ecology and Management 》 |2020年第2020期| 共11页
  • 作者单位

    Fujian Agr &

    Forestry Univ Univ Engn Res Ctr Sustainable Plantat Management Forestry Coll Fuzhou 350002 Fujian Peoples R China;

    Univ Edinburgh Sch GeoSci Crew Bldg Alexander Crum Brown Rd Edinburgh FJI9 3FF Midlothian Scotland;

    Fujian Agr &

    Forestry Univ Univ Engn Res Ctr Sustainable Plantat Management Forestry Coll Fuzhou 350002 Fujian Peoples R China;

    Fujian Agr &

    Forestry Univ Univ Engn Res Ctr Sustainable Plantat Management Forestry Coll Fuzhou 350002 Fujian Peoples R China;

    Fujian Agr &

    Forestry Univ Univ Engn Res Ctr Sustainable Plantat Management Forestry Coll Fuzhou 350002 Fujian Peoples R China;

    Fujian Agr &

    Forestry Univ Univ Engn Res Ctr Sustainable Plantat Management Forestry Coll Fuzhou 350002 Fujian Peoples R China;

    Fujian Agr &

    Forestry Univ Univ Engn Res Ctr Sustainable Plantat Management Forestry Coll Fuzhou 350002 Fujian Peoples R China;

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

    Biochar; Cunninghamia lanceolata; Microbial diversity; Phosphate-solubilizing bacteria; Phosphorus availability;

    机译:生物炭;康宁山脉;微生物多样性;磷酸盐溶解细菌;磷可用性;

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