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首页> 外文期刊>Research on Crops >Physico-chemical properties and phyto-toxicity assessment of composted winery solid wastes with and without effectivemicroorganism inoculation
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Physico-chemical properties and phyto-toxicity assessment of composted winery solid wastes with and without effectivemicroorganism inoculation

机译:堆肥酿酒厂固体废物的物理化学性质和植物毒性评估,无需有效杂志接种

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摘要

This study assessed both the physico-chemical properties of winery solid waste (WSW) composts with or without microbial inoculation and the phyto-toxicity of their extract. Four different composts with initial pile height of 1 or 1.5 m were prepared through aerobic thermophilic process by mixing the filter materials (FM) and waste plant materials at 40 : 60 ratio on dry volume basis. Cured composts were evaluated for selected physico-chemical properties and germination attributes at varied extract concentrations (0, 10, 25, 50 and 100%) using cowpea, maize and tomato seeds. Microbial inoculation exerted significant effects on compost Bray-P2 content, while interaction between inoculation and compost pile size similarly had significant effect on ammonium-N content. The contents of bulk density, volatile solids, water holding capacity, pH, electrical conductivity, nitrate-N and exchangeable K among the various composts did not differ significantly. The composts possessed high electrical conductivity (range : 9.03-10.23 dS/m) suggesting high soluble salts concentrations. Compost type and extract concentration interaction exerted significant effect on the germination index (GI) of all three crops; with phyto-toxic effects on maize and tomato at 50% extract concentration and beyond. The compost extracts showed varying degree of phyto-toxicities to maize and tomato, while cowpea experienced no phyto-toxicity effect. Besides, the composts also showed phyto-nutrient and phyto-stimulant capabilities with greater than 100% root length and GI values. Nonetheless, the phyto-toxicity recorded in maize and tomato can be eliminated using lower application rates.
机译:本研究评估了酿酒厂堆积(WSW)堆肥的物理化学性质,或没有微生物接种和提取物的植物毒性。通过在干燥体积为40:60比率为40:60比率,通过有氧嗜热过程通过有氧嗜热嗜热嗜热嗜热嗜热性制备四种不同的堆肥1或1.5米。评估使用豇豆,玉米和番茄种子的不同提取物浓度(0,10,25,50%和100%)的所选物理化学性质和发芽素的治愈堆肥。微生物接种对堆肥Bray-P2含量产生显着影响,而接种和堆肥桩之间的相互作用类似地对铵-N含量具有显着影响。堆积密度,挥发性固体,水持续容量,pH,导电性,硝酸盐-N和可更换k的含量没有显着差异。堆肥具有高导电性(范围:9.03-10.23ds / m),表明高可溶性盐浓度。堆肥类型和提取物浓度相互作用对所有三种作物的发芽指数(GI)产生了显着影响;在50%提取物浓度和超过50%的玉米和番茄对肥小毒性作用。堆肥提取物向玉米和番茄表示不同程度的植物毒性,而豇豆没有植物毒性作用。此外,堆肥还显示出植物营养素和植物兴奋剂能力,具有大于100%的根长和GI值。尽管如此,可以使用较低的施用率来消除记录在玉米和番茄中的植物毒性。

著录项

  • 来源
    《Research on Crops》 |2018年第3期|共11页
  • 作者单位

    Food Security and Safety Niche Area Research Group Faculty of Natural and Agricultural Sciences North West University P/Bag X2046 Mmabatho 2735 South Africa;

    Food Security and Safety Niche Area Research Group Faculty of Natural and Agricultural Sciences North West University P/Bag X2046 Mmabatho 2735 South Africa;

    Food Security and Safety Niche Area Research Group Faculty of Natural and Agricultural Sciences North West University P/Bag X2046 Mmabatho 2735 South Africa;

    Food Security and Safety Niche Area Research Group Faculty of Natural and Agricultural Sciences North West University P/Bag X2046 Mmabatho 2735 South Africa;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农学(农艺学);
  • 关键词

    Germination index; microbial inoculation; phyto-toxicity; winery solid waste;

    机译:萌发指数;微生物接种;植物毒性;酿酒厂固体废物;

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