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首页> 外文期刊>HortTechnology >Substitution of a Soilless Medium with Yard Waste Compost for Basil Transplant Production
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Substitution of a Soilless Medium with Yard Waste Compost for Basil Transplant Production

机译:用堆肥堆肥代替无土培养基用于罗勒移栽生产

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摘要

Four experiments were conducted under greenhouse conditions in Oklahoma. Pelleted 'Genovese' basil (Ocimum basilicum) seeds were sown in polystyrene flats with six different blends of a peat-lite mix (PLO) and yard waste compost [YWC (this batch designated CO)] in 2012 for the first two experiments. The proportions by volume of PLO:CO included 100%:0%, 80%:20%, 60%:40%, 40%:60%, 20%:80%, and 0%:100%. Seedling establishment was unaffected consistently, but there was a distinct decline in seedling height and dry weight between 100% PLO and 80% PLO:20% CO, followed by smaller decreases as the percentage of compost increased in the blends. A third experiment was conducted in 2013 with a different batch of peat-lite (PL1) after the compost had aged 17 months (now designated Cl). Treatments were 100% PL1, 80% PL1:20% Cl, and 80% PL1:20% Cl mixed with sulfur (S) at 1, 2, or 3 lb/yard(3) of blend to acidify the media. The 100% PL1 treatment delayed seedling emergence and suppressed height and dry weight relative to seedlings grown in 80% PL1:20% Cl blends. The PL1 subsequently was found to have been produced in 2010, and the wetting agent had apparently degraded. The aged 2012 compost (Cl) was not inhibitory to basil seedling growth when blended at 20% with the PL1, and in fact restored utility to the PL1. The carbon:nitrogen ratio of the original 2012 compost (CO) was 10.8:1, suggesting stability. It appeared that the main reason the CO compost was inhibitory was that mineralization was slow or immobilization occurred, causing a lack of plant-available nitrogen, especially nitrate. Treatments with S lowered pH of the media, but there were no differences in basil seedling growth between the unamended 80% PL1:20% Cl blend and blends with added S. A fourth experiment compared three peat-lite media: PL1; a batch of the same medium as PL1 that was produced in 2013 (PL2); and a different medium also produced in 2013 (PL3). Peat-lite media were either used unblended, or blended with 20% Cl or 20% C2 (a fresh batch of YWC obtained from the same facility that had produced the original CO). The unamended PL1 was again inhibitory to basil seedling establishment and development. The two "fresh" peat-lite media (PL2 and PL3) were not inhibitory and were similar to each other in performance. A blend of 80% PL2 or 80% PL3 with 20% compost produced similar (C2) or somewhat better (Cl) results than were obtained with the unarnended peat. We conclude that a blend of 80% peat-lite medium and 20% YWC can be used to produce basil transplants. However, producers must consider the quality of the peat-lite medium and the compost based on the age and composition of the components.
机译:在俄克拉荷马州的温室条件下进行了四个实验。在前两个实验中,2012年将粒状'Genovese'罗勒(Ocimum basilicum)种子播种在聚苯乙烯平板中,其中混合了六种不同的泥炭-轻质混合物(PLO)和院子废料堆肥[YWC(此批次指定为CO)]。 PLO:CO的体积比例包括100%:0%,80%:20%,60%:40%,40%:60%,20%:80%和0%:100%。幼苗的形成并没有受到一致的影响,但是在100%PLO和80%PLO:20%CO之间,幼苗的高度和干重都有明显的下降,随后随着混合物中堆肥百分比的增加而下降幅度较小。在堆肥老化17个月(现称为Cl)后,于2013年用另一批泥炭(PL1)进行了第三次试验。处理方法是将100%PL1、80%PL1:20%Cl和80%PL1:20%Cl与硫(S)以1、2或3 lb / yard(3)的混合物混合以酸化培养基。相对于在80%PL1:20%Cl混合物中生长的幼苗,100%PL1处理可延迟幼苗出苗并抑制高度和干重。随后发现PL1已于2010年生产,并且润湿剂明显降解。当与PL1混合20%时,老化的堆肥(Cl)不会抑制罗勒幼苗的生长,实际上恢复了PL1的效用。 2012年原始堆肥(CO)的碳:氮比为10.8:1,表明稳定性。似乎CO堆肥被抑制的主要原因是矿化缓慢或发生固定化,导致缺乏植物可用的氮,尤其是硝酸盐。用S处理降低了培养基的pH,但是未经修饰的80%PL1:20%Cl混合物和添加S的混合物在罗勒幼苗生长方面没有差异。与2013年生产的PL1相同的批次培养基(PL2);在2013年也生产了另一种媒体(PL3)。泥炭轻质介质可以不混合使用,也可以与20%Cl或20%C2(从产生原始CO的同一工厂获得的一批新鲜的YWC)混合使用。未经修饰的PL1再次抑制罗勒幼苗的建立和发育。两种“新鲜的”泥炭轻质培养基(PL2和PL3)没有抑制作用,并且在性能上彼此相似。 80%PL2或80%PL3与20%堆肥的混合物所产生的结果(C2)相近或好于(Cl),其结果与未经加工的泥炭相比。我们得出的结论是,可以使用80%的泥炭-轻质培养基和20%的YWC的混合物生产罗勒移植。但是,生产者必须根据组分的年龄和组成来考虑泥炭轻质培养基和堆肥的质量。

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