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Biochar as a replacement for perlite in greenhouse soilless substrates.

机译:生物炭可替代温室无土基质中的珍珠岩。

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摘要

Biochar is a solid, carbonaceous coproduct of the pyrolysis process used for biofuel production. Many field studies have shown improved chemical and physical properties of soil after amendment with biochar. The benefits of biochar may extend to soilless substrates used in the greenhouse industry, and the porous nature of biochar may make it a suitable replacement for perlite in greenhouse substrates. The objectives of this research were to determine the most suitable biochar particle size and percentage for use in a greenhouse substrate, to determine if biochar can eliminate the need for amendment with limestone, and to demonstrate plant growth in substrates with biochar as a component.;We obtained four sizes of prescreened hardwood biochar and blended each with sphagnum peat to create 40 substrates for experimental trials. The pH of leachate from each substrate was recorded over a 16-week period. Substrate pH increased as the percentage of biochar increased. At the same percentage of biochar in the substrate, decreasing the particle size of biochar increased substrate pH. Several biochar-sphagnum peat mixtures, without limestone amendment, led to a substrate pH appropriate for container-grown plants. Eight of the nine substrates selected for evaluation met recommended physical parameters for use in containers for greenhouse crop production. One substrate, 30% BC10 blended with 70% sphagnum peat, was similar to the control, Sunshine LC1 (Sun Gro Horticulture, Agawam, MA) in all measures except bulk density. Plants grown in biochar-containing substrates were compared to plants grown in a commercial substrate that contained sphagnum peat, perlite, and limestone (Sunshine LC1). Plants grew in each substrate for 27 or 35 days. Electrical conductivity and pH were measured 14 days after transplanting and at the end of each trial. Results varied among trials and crops grown. Many biochar-based substrates produced plants with shoot dry mass greater than or equal to the control. These results demonstrate the potential for biochar to replace perlite and eliminate the limestone amendment needed for commercial greenhouse soilless substrates based on sphagnum peat. Soilless substrates containing biochar as a replacement for perlite and limestone can successfully be used for greenhouse plant production.
机译:生物炭是用于生物燃料生产的热解过程的固体碳质副产物。许多野外研究表明,用生物炭改良后,土壤的化学和物理性质有所改善。生物炭的好处可能会扩展到温室工业中使用的无土基质,而生物炭的多孔性质可能使其适合替代温室基质中的珍珠岩。这项研究的目的是确定最适合用于温室基质的生物炭颗粒大小和百分比,确定生物炭是否可以消除石灰石改良的需要,并证明以生物炭为成分的基质中植物的生长。我们获得了四种尺寸的预先筛选的硬木生物炭,并将其与泥炭泥炭混合在一起,以创建40种用于实验试验的基材。在16周的时间内记录每个底物渗滤液的pH值。底物pH随着生物炭百分比的增加而增加。在基质中生物炭百分比相同的情况下,减小生物炭的粒径可增加基质pH值。几种未经石灰石改性的生物炭-泥炭泥炭混合物导致适合容器生长植物的底物pH值。选择进行评估的9种基质中有8种符合推荐的物理参数,可用于温室作物生产的容器。除体积密度外,所有方面均与对照阳光Sun LC1(Sun Gro Horticulture,Agawam,MA)相似,一种底物30%BC10与70%泥炭泥炭混合。将含有生物炭的基质中生长的植物与含有泥炭泥炭,珍珠岩和石灰石(Sunshine LC1)的商业基质中生长的植物进行了比较。植物在每种底物中生长27或35天。在移植后14天和每次试验结束时测量电导率和pH。结果因试验和农作物而异。许多基于生物炭的底物产生的植物的茎干质量大于或等于对照。这些结果表明生物炭有可能取代珍珠岩并消除基于泥炭泥炭的商用温室无土基质所需的石灰石改良剂。含有生物炭替代珍珠岩和石灰石的无土基质可以成功地用于温室植物的生产。

著录项

  • 作者

    Northup, Jake I.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Agriculture Horticulture.
  • 学位 M.S.
  • 年度 2013
  • 页码 64 p.
  • 总页数 64
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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