在乌克兰森林草原湿度不足的地区,甜高粱(sorghum saccharatum L.)的生产力取决于生物燃料植物培育技术的要素

O. Hanzhenko
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引用次数: 0

摘要

目的。揭示乌克兰东部森林草原水分不足地区甜高粱不同品种和杂交种生物量收获时间对其生产力和生物燃料产量的影响。方法。生物学(2017-2020年进行实地研究)和统计学(描述性统计、方差分析、相关分析和回归分析)。结果。甜高粱绿色生物量产量最低的季节是8月初的收获期。‘Sylosne 42’和‘Favoryt’的产量分别为52.6和61.1吨/公顷,‘medoyi F1’和‘Dovista’的产量分别为76.3和77.7吨/公顷。将收获推迟到9月中旬,新品种“Favoryt”和“Sylosne 42”的产量分别提高到97.1吨/公顷和103.5吨/公顷,杂交品种“Dovista”和“medoyi F1”的产量分别提高到146.6吨/公顷和132.9吨/公顷。即使采收期较晚,绿色生物量的产量也只有在“Dovista”中观察到增加(高达152.5吨/公顷)。在完全成熟期(BBCH 92-98),糖高粱植株在汁液中积累的糖量最多,‘梅多伊F1’杂交植株的帽糖含量最高,为17.5%,其他品种的帽糖含量在14.8% ~ 15.5%之间。“Dovista”(高达815.8吉焦/公顷)和“medoyi F1”(高达792.0吉焦/公顷)杂交品种的生物燃料和单位面积能源产量最高。尽管可塑性很强,但“Favoryt”品种的总能量产量较低(高达547.2 GJ/ha)。Sylosne 42可塑性指数最低(b = 0.79);然而,它是最稳定的品种,可以获得稳定的能量产量,虽然不高(高达559.6 GJ/ha)。结论。在乌克兰东部森林草原水分不足的地区,甜高粱' Dovista '和' medoyi F1 '杂交品种在不早于完全成熟阶段的收获可以提供最高的生产力指标和最大的能源潜力
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Productivity of sweet sorghum (Sorghum saccharatum L.) depending on the elements of plant сultivation technology for biofuel in the zone of insufficient moisture in the Forest-Steppe of Ukraine
Purpose. To reveal the influence of harvest timing of biomass of sweet sorghum various varieties and hybrids on their productivity and biofuel yield in the zone of insufficient moisture in the Eastern Forest-Steppe of Ukraine. Methods. Biological (conducting field research during 2017–2020) and statistical (descriptive statistics, analysis of variance, correlation and regression analyzes). Results. The lowest yield of sweet sorghum green biomass was during harvesting in early August. In ‘Sylosne 42’ and ‘Favoryt’ varie­ties it was 52.6 and 61.1 t/ha, in ‘Medovyi F1’ and ‘Dovista’ hybrids – 76.3 and 77.7 t/ha, respectively. The postponement of harvesting to mid-September allows increasing the yield of varieties ‘Favoryt’ and ‘Sylosne 42’ to 97.1 and 103.5 t/ha, ‘Dovista’ and ‘Medovyi F1’ hybrids up to 146.6 and 132.9 t/ha, respectively. With even later harvesting periods, an increase in the yield of green biomass was observed only in ‘Dovista’ (up to 152.5 t/ha). In the full ripening phase (BBCH 92–98), sugar sorghum plants accumulate the maximum amount of sugars in the sap. The highest cap sugar content was in plants of ‘Medovyi F1’ hybrid – 17.5%, in the other studied cultivars it varied from 14.8 to 15.5%. The hi­g­hest yield of biofuel and energy per unit area was achieved with gro­wing ‘Dovista’ (up to 815.8 GJ/ha) and ‘Medovyi F1’ (up to 792.0 GJ/ha) hybrids. Despite the high level of plasti­city, ‘Favoryt’ variety is inferior in total energy yield (up to 547.2 GJ/ha). ‘Sylosne 42’ has the lowest plasticity index (b = 0.79); however, it is the most stable variety, which allows to obtain a stable, though not high, energy yield (up to 559.6 GJ/ha). Conclusions. In the zone of insufficient moisture in the Eastern Forest-Steppe of Ukraine, the hi­ghest productivity indicators and the maximum energy potential can be provided by the hybrids of sweet sorghum ‘Dovista’ and ‘Medovyi F1’ for their harvesting not earlier than the phase of full maturity
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