巨蟹的生产力与施肥的土壤肥力状况

Agrology Pub Date : 2021-01-01 DOI:10.32819/021016
V. Ivanina, M. Humentyk, V. Katelevsky
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In the first year of the growing season, giant miscanthus produces more organic matter in the root system than in its terrestrial biomass ‒ 2.5 and 1.6 tons of dry matter/ha, respectively. It was found that foliar fertilization with microfertilizers significantly increased the yield of terrestrial biomass of giant miscanthus in the background of mineral fertilizers. The highest biological yield of ground mass of giant miscanthus was achieved with the introduction of N60P60K60 and two foliar fertilization with microfertilizer Vympel-K, 0.5 l/ha: yield of terrestrial biomass ‒ 3.1 tons of dry matter/ha with the advantage of control without fertilizers ‒ 1.5 tons/ha. In the first year of cultivation miscanthus giant uses a small amount of nutrients from the soil: nitrogen ‒ 20.4‒33.8 kg/ha, phosphorus ‒ 3‒5.3 kg/ha, potassium ‒ 6.1‒12.4 kg/ha . The application of N30P30K30 ferti-lizers was sufficient to form a balanced and expanded balance of nutrients in the soil. 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引用次数: 1

摘要

芒草是一种高大的多年生草本植物,根系发育良好,可用于生物燃料生产。本研究的目的是确定生长季第一年巨型芒草对土壤有机质状况、养分的去除和平衡以及作物施肥生物生产力的影响。2016-2019年,在乌克兰森林草原地区的Veselo Podilska研究和育种站对芒草人工林进行了为期四年的调查。介绍了巨型芒草的生物量生产力指标和乌克兰森林草原左岸地区用于生产固体生物燃料的化肥赠款的肥力状况。在生长季节的第一年,巨型芒草在根系中产生的有机物比其陆地生物量多,分别为2.5吨和1.6吨干物质/公顷。结果表明,在矿质肥背景下,叶面施用微量肥显著提高了巨型芒草陆生生物量的产量。施用N60P60K60和叶面两次施用Vympel-K微肥的大芒草地面质量生物产量最高,为0.5 l/ha;陆生生物量产量为3.1 t /ha,无肥控制优势为1.5 t /ha。在种植的第一年,巨型芒草从土壤中使用少量的养分:氮- 20.4-33.8公斤/公顷,磷- 3-5.3公斤/公顷,钾- 6.1-12.4公斤/公顷。施用N30P30K30肥足以形成土壤养分平衡和扩展平衡。施用矿质肥料对典型黑钙土有机质动态无影响。生长季第一年种植巨型芒草,土壤有机质含量稳定在4.04-4.11%水平。同时,生长季末土壤流动磷含量下降17 ~ 18 mg/kg,钾含量下降13 ~ 43 mg/kg。在芒草生殖过程中,降低土壤中流动形态磷和钾的含量,使植物养分得到有效利用,磷被化学转化为不溶性化合物,钾离子被土壤复合体非交换吸附。
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Productivity of giant micancantus and soil fertility status for fertilizer application
Miscanthus giant is a tall perennial herbaceous plant with a well-developed root system, which is used for biofuel production. The aim of the study was to establish the effect of gi-ant miscanthus in the first year of growing season on the state of soil organic matter, removal and balance of nutrients and biological productivity of crops for fertilization. A four-year survey of the condition of miscanthus plantations was conducted at ‘Veselo Podilska’ research and breeding station during 2016‒2019 in the forest-steppe zone of Ukraine. Indicators of biomass productivity of giant miscanthus and the state of fertility of the grant for fertilizer application in the area of the left-bank of the Forest-Steppe of Ukraine for the production of solid biofuels are characterized. In the first year of the growing season, giant miscanthus produces more organic matter in the root system than in its terrestrial biomass ‒ 2.5 and 1.6 tons of dry matter/ha, respectively. It was found that foliar fertilization with microfertilizers significantly increased the yield of terrestrial biomass of giant miscanthus in the background of mineral fertilizers. The highest biological yield of ground mass of giant miscanthus was achieved with the introduction of N60P60K60 and two foliar fertilization with microfertilizer Vympel-K, 0.5 l/ha: yield of terrestrial biomass ‒ 3.1 tons of dry matter/ha with the advantage of control without fertilizers ‒ 1.5 tons/ha. In the first year of cultivation miscanthus giant uses a small amount of nutrients from the soil: nitrogen ‒ 20.4‒33.8 kg/ha, phosphorus ‒ 3‒5.3 kg/ha, potassium ‒ 6.1‒12.4 kg/ha . The application of N30P30K30 ferti-lizers was sufficient to form a balanced and expanded balance of nutrients in the soil. The appli-cation of mineral fertilizers did not affect the dynamics of organic matter in typical chernozem. Growing giant miscanthus in the first year of the growing season ensured the stability of the or-ganic matter content in the soil at the level of 4.04‒4.11%. At the same time, the content of mobile phosphorus at the end of the growing season decreased by 17‒18 mg/kg, potassium ‒ by 13‒43 mg/kg of soil. Reducing the content of mobile forms of phosphorus and potassium in the soil at the end of the growing season leads to efficient use of plant nutrients, chemical transformation of phosphorus into insoluble compounds and non-exchange adsorption of potassium ions by the soil complex in the biocenosis of miscanthus.
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