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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >The influence of humic acids derived from earthworm-processed organic wastes on plant growth
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The influence of humic acids derived from earthworm-processed organic wastes on plant growth

机译:worm处理有机废物中的腐殖酸对植物生长的影响

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Some effects of humic acids, formed during the breakdown of organic wastes by earthworms (vermicomposting), oil plant growth were evaluated. In the first experiment, humic acids were extracted from pig manure vermicompost using the classic alkali/acid fractionation procedure and mixed with a soilless container medium (Metro-Mix 360), to provide a range of 0, 50, 100, 150, 200, 250, 500, 1000, 2000, and 4000 mg of humate per kg of dry weight of container medium, and tomato seedlings were grown in the Mixtures. In the second experiment, humates extracted from pig manure and food wastes vermicomposts were mixed with vermiculite to provide a range of 0, 50, 125, 250, 500, 1000, and 4000 mg of humate per kg of dry weight of the container medium, and Cucumber seedlings were grown in the mixtures. Both tomato and cucumber seedlings were watered daily with a solution containing all nutrients required to ensure that any differences in growth responses were not nutrient-mediated. The incorporation of both types of vermicompost-derived humic acids, into either type of soilless plant growth media, increased the growth of tomato and cucumber plants significantly, in terms of plant heights, leaf areas, shoot and root dry weights. Plant growth increased with increasing concentrations of humic acids incorporated into the medium up to a certain proportion, but this differed according to the plant species, the source of the vermicompost, and the nature of the container medium. Plant growth tended to be increased by treatments of the plants with 50-500 mg/kg humic acids, but often decreased significantly when the concentrations of humic acids derived in the container medium exceeded 5001000 mg/kg. These growth responses were most probably due to hormone-like activity of humic acids from the vermicomposts or could have been due to plant growth hormones adsorbed onto the humates. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 65]
机译:评估了腐殖酸在earth分解有机废物(ver堆肥)过程中形成的腐殖酸对油料植物生长的某些影响。在第一个实验中,使用经典的碱/酸分级分离程序从猪粪ver杂中提取腐殖酸,并与无土容器培养基(Metro-Mix 360)混合,以提供0、50、100、150、200,每千克干重的容器培养基中有250、500、1000、2000和4000 mg腐殖酸盐,并且在混合物中种植了番茄幼苗。在第二个实验中,将从猪粪和食物残渣ver石中提取的腐殖质与ver石混合,以每千克干重的容器培养基提供0、50、125、250、500、1000和4000 mg腐殖质,在混合物中生长黄瓜幼苗。番茄和黄瓜幼苗每天都用含有所有营养素的溶液浇水,以确保生长反应中的任何差异都不由营养素介导。在两种植物的无土植物生长介质中掺入两种类型的ver茎腐殖酸,从植物高度,叶面积,枝条和根的干重来看,均显着提高了番茄和黄瓜植物的生长。随着腐殖酸在培养基中的浓度增加到一定比例,植物的生长也随之增加,但这随植物种类,the菜来源和容器培养基的性质而异。通过用50-500 mg / kg腐殖酸处理植物,植物的生长趋向于增加,但是当容器培养基中衍生的腐殖酸的浓度超过5001000 mg / kg时,植物的生长通常会明显下降。这些生长反应很可能是由于the虫中腐殖酸的类激素活性引起的,或者可能是由于植物生长激素吸附到腐殖质上所致。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:65]

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