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Substitution of peat moss with softwood biochar for soil-free marigold growth

机译:泥炭苔与软木BioChar取代无土壤万寿菊的生长

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摘要

Peat moss has historically been a key component of soil-free substrates in the greenhouse and nursery industries. However, the increasing expense of peat, negative impacts of peat mining on wetland ecosystems, and growing perception of peat as unsustainable have led to investigation for alternatives. Biochar (BC) is a promising substitute for peat, yet the majority of studies examine additions of BC to peat-based substrates rather than replacing the peat component or employ relatively low substitution rates. Furthermore, at high substitution rates the alkalinity common to many BCs may increase substrate pH and adversely impact plant production. We evaluated BC substitution for peat and pH adjustment of resulting substrates on marigold (Tagetes erecta L.) performance under standard greenhouse conditions. A high pH (10.9) softwood BC (800 degrees C) was substituted for peat in a standard 70:30 (v/v) peat:perlite mixture at 10% total volume increments. Substrate pH was either not adjusted or adjusted to pH 5.8 using a BC by-product, pyroligneous acid (PLA). Germination was inhibited in pH adjusted substrates with high BC substitution (50-70% total substrate volume) likely due to higher dosages of PLA needed to neutralize pH. At harvest (flowering stage, 9 weeks) the initial pH gradient (4.4-10.4) in substrates that were not pH adjusted had converged to pH 5.6-7.5, and BC substitution for peat did not negatively impact marigold biomass or flowering. At low substitution rates (10-30% total substrate volume), marigold biomass and leaf SPAR values were greater than the control peat-perlite mixture (0% BC). This study demonstrates that softwood BC can be considered as a full replacement for peat in soil-free substrates, and even at high rates (70% total substrate volume) does not require pH adjustment for marigold production. Crop- and BC-specific considerations and economic potential should be investigated for wider application.
机译:泥炭苔在历史上一直是温室和苗圃行业的无土基材的关键组成部分。然而,泥炭泥炭越来越大,泥炭挖掘对湿地生态系统的负面影响,以及随着不可持续的不断增长的泥炭的感知导致了替代品的调查。 Biochar(BC)是泥炭替代品的有希望的替代品,但大多数研究审查了BC基底的添加,而不是更换泥炭成分或采用相对较低的替代速率。此外,在高替代速率下,许多BCs的碱度可能会增加底物pH并对植物产生产生不利影响。我们评估了在标准温室条件下对MARIGOLD(Tagetes2RETA L.)性能的泥炭和pH调节的BC替代品。高pH(10.9)软木BC(800℃)在标准70:30(v / v)泥炭中取代泥炭:珍珠岩混合物以10%的总体积增量。使用BC副产物,酸(PLA)未将底物pH调节或调节至pH5.8。在pH调节后的底物中抑制萌发,其具有高BC取代(总基质体积)可能由于较高的PLA所需的PHA。在收获(开花阶段,9周)的初始pH梯度(4.4-10.4)在不调整的底物中融合至pH 5.6-7.5,并且BE替代的泥炭替代不会产生负面影响万寿菊生物质或开花。在低取代速率(10-30%的总基质体积),万寿菊生物质和叶子静脉值大于对照泥炭珍珠岩混合物(0%BC)。本研究表明,软木BC可以被认为是在无土基质中的泥煤的完全替代品,甚至在高速率下(70%总基质体积)不需要对万寿菊生产的pH调节。应调查作物和非农特有的考虑因素和经济潜力以更广泛地应用。

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