Productivity Models of Herbal Bioenergy Cultures Depending on Biometric Indicators of Overhead Mass

Q4 Environmental Science
V. Lopushniak, Оxana Тоnkha, H. Hrytsuliak, H. Lopushniak, M. Polutrenko, Lyuba Poberezhna, V. Gamayunova, Оlena Pikovska, T. Jakubowski, Yulia Kotsyubynska
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引用次数: 2

Abstract

The research was carried out on the territory of c. Tsenzhiv of Yamnytsya territorial community of Ivano-Frankivsk region on sod-podzolic degraded soils according to the generally accepted research methods. The productivity of miscanthus and switchgrass depends on the biometric indicators of plants, namely the height of plants and the number of stems. Correct models of miscanthus and switchgrass productivity are calculated depending on the dose of sewage sludge. For miscanthus, the correlation coefficient r = 0.952 and for switchgrass r = 0.951, which indicates a high linear relationship between plant height, number of stems and productivity. The dry matter yield in grass energy crops varies according to fertilizer application. The productivity of the agrophytocenosis of miscanthus is much higher than that of switchgrass. With the addition of sewage sludge at a dose of 40 t/ha, the dry matter yield under the same growing conditions in the agrophytocenosis of miscanthus is 12.2 t/ha, or 3.3 t/ha higher than the productivity of agrophytocenosis switchgrass. The use of composts based on SS + straw (3: 1)) – 30 t/ha + N30K55, has a significant impact on yield, providing the highest productivity of miscanthus – 13.0 t/ha, and switchgrass – 9.6 t/ha. In order to obtain stable biomass productivity of grass energy crops (miscanthus and switchgrass), it is advisable to use compost of sewage sludge and straw in a ratio of 3: 1 at a dose of 30 t/ha. Thus, two important problems are partially solved, namely increasing the productivity of energy crops and utilizing municipal waste (sewage sludge).
基于头顶质量生物计量指标的草药生物能源培养的生产力模型
根据公认的研究方法,在伊万诺-弗兰基夫斯克地区Yamnytsya地区社区的c.Tsenzhiv的领地上进行了sod-灰化作用退化土壤的研究。芒属和柳枝稷的生产力取决于植物的生物特征指标,即植物的高度和茎数。根据污水污泥的剂量计算了芒草和柳枝稷生产力的正确模型。对于芒属植物,相关系数r=0.952,对于柳枝稷,相关系数r=0.951,这表明株高、茎数和生产力之间存在高度线性关系。草能源作物的干物质产量因施肥而异。芒属植物群落的生产力远高于柳枝稷。在相同生长条件下,添加40t/ha的污泥,芒草在相同的生长条件下的干物质产量为12.2t/ha,比柳枝稷高出3.3t/ha。基于SS+秸秆(3:1)的堆肥的使用对产量有显著影响,提供了最高的芒草生产力13.0 t/ha和柳枝稷生产力9.6 t/ha。为了获得稳定的草能源作物(芒草和柳枝稷)的生物量生产力,建议使用污泥和秸秆的堆肥,比例为3:1,剂量为30t/ha。因此,两个重要问题得到了部分解决,即提高能源作物的生产力和利用城市垃圾(污水污泥)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Ecological Engineering  Environmental Technology
Ecological Engineering Environmental Technology Environmental Science-Environmental Science (miscellaneous)
CiteScore
1.30
自引率
0.00%
发文量
159
审稿时长
8 weeks
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