冬季小黑麦在种子生产力形成期间的耗水量取决于乌克兰南部草原灌溉地施用的肥料类型和用量

K. Fundirat
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In this regard, studying the water consumption of triticale when cultivated on seeds, as well as the influence of different rates and types of fertilizers on water consumption, is an important task under climate change on irrigated lands of the Southern Steppe of Ukraine, which in future may serve as a starting point for improving the adaptability of the crops in this region. \nThe purpose of the research was to establish the water consumption features of winter triticale crop, depending on the type and rates of fertilizers on irrigated lands in the Southern Steppe of Ukraine. \nMethods. The research was conducted in 2013-2016 at the Institute of Irrigation Agriculture of the NAAS in the Ingulets Irrigation System. The soil of the experimental field is dark chestnut medium loam, slightly saline with a humus content of 2.3 %, density - 1.3 g/cm3, withering point - 9.8 %, minimum moisture-holding capacity - 22.4 %. Soil moisture at the experimental sites was determined to a depth of 1.0 m by the thermostat-weighted method in two non-adjoining repetitions. Total water consumption for separate periods of vegetation was determined by the method of water balance, taking into account the initial and final moisture reserve and the amount of precipitation during the period of vegetation. \nThe coefficient of water consumption was established by the ratio of total water consumption for the period of vegetation to the seed yield of winter triticale. Irrigation was performed using a sprinkler unit Dual Console Sprinkler, taking into account a meteorological index and maintaining the soil moisture in the layer of 0-50 cm at 70% of the minimum moisture-holding capacity. \nResults. Based on the study results the total water consumption, depending on the rates and types of fertilizers, ranged from 3121 to 3258 m3/ha. 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引用次数: 0

摘要

乌克兰南部草原的灌溉区决定了总耗水量的水平,即耗水量系数,这取决于冬季小黑麦种子生产力形成期间施用肥料的种类和比率。现状。冬季小黑麦作为一种作物被认为在灌溉条件下的研究不够充分,而Bogadarske种子品种以前也没有被种植过。因此,研究乌克兰南部草原灌溉地在气候变化条件下小黑麦种子种植时的耗水量,以及不同施肥量和施肥类型对耗水量的影响,是一项重要的任务,未来可以作为提高该地区作物适应性的起点。这项研究的目的是确定冬季小黑麦作物的耗水特征,这取决于乌克兰南部草原灌溉地的肥料类型和用量。方法。该研究于2013年至2016年在美国国家农业科学院灌溉农业研究所进行。试验田土壤为深栗色中壤土,微咸,腐殖质含量2.3%,密度1.3 g/cm3,枯点9.8%,最小持湿量22.4%。采用恒温加权法,分两次不相邻重复测定试验点1.0 m深度的土壤湿度。利用水分平衡法,综合考虑植被期的初、终水分储备和降水量,确定各植被期的总耗水量。耗水系数由植被期总耗水量与冬季小黑麦种子产量之比确定。采用双控制台洒水装置进行灌溉,考虑气象指标,将0-50 cm土层的土壤水分保持在最小持水量的70%。结果。根据研究结果,根据肥料用量和种类的不同,总用水量为每公顷3121至3258立方米。尽管由于施用化肥,耗水量增加,但由于产量增加,1吨种子形成的耗水量较少。因此,对照(参考场地)的耗水量系数为867 m3/t。在早春施氮量为N30 - 696-699 m3/t和N60 - 686-689 m3/t的变异品种上,施用硝酸铵或CAMs的冬小黑麦植株水分消耗效率更高。2013 - 2016年,在冬季小黑麦种植过程中,在施用N60P60和其他不同类型、不同用量氮肥的背景下,平均接收种料约为3.86-5.24 t/ha。结论。结果表明,总耗水量与施肥量有关,在3121 ~ 3258 m3/ha之间。在施用N60P60的背景下,在早春用硝酸铵或尿素铵混合物(UAM)饲喂N60剂量的情况下,水分利用最有效(686-689 m3/t)。同时,种子产量最高,分别为5.19 t/ha和5.24 t/ha。
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WATER CONSUMPTION OF WINTER TRITICALE DURING SEED PRODUCTIVITY FORMATION DEPENDING ON THE APPLIED FERTILIZER TYPES AND RATES ON THE IRRIGATED LANDS OF THE SOUTHERN STEPPE OF UKRAINE
 The irrigated lands of the Southern Steppe of Ukraine determine the level of total water consumption, the coefficient of water consumption, depending on the types and rates of applied fertilizers during the seed productivity formation of winter triticale. Actuality. Winter triticale as a crop is considered to be insufficiently studied under irrigation, and the Bogadarske variety for seed has not been cultivated before. In this regard, studying the water consumption of triticale when cultivated on seeds, as well as the influence of different rates and types of fertilizers on water consumption, is an important task under climate change on irrigated lands of the Southern Steppe of Ukraine, which in future may serve as a starting point for improving the adaptability of the crops in this region. The purpose of the research was to establish the water consumption features of winter triticale crop, depending on the type and rates of fertilizers on irrigated lands in the Southern Steppe of Ukraine. Methods. The research was conducted in 2013-2016 at the Institute of Irrigation Agriculture of the NAAS in the Ingulets Irrigation System. The soil of the experimental field is dark chestnut medium loam, slightly saline with a humus content of 2.3 %, density - 1.3 g/cm3, withering point - 9.8 %, minimum moisture-holding capacity - 22.4 %. Soil moisture at the experimental sites was determined to a depth of 1.0 m by the thermostat-weighted method in two non-adjoining repetitions. Total water consumption for separate periods of vegetation was determined by the method of water balance, taking into account the initial and final moisture reserve and the amount of precipitation during the period of vegetation. The coefficient of water consumption was established by the ratio of total water consumption for the period of vegetation to the seed yield of winter triticale. Irrigation was performed using a sprinkler unit Dual Console Sprinkler, taking into account a meteorological index and maintaining the soil moisture in the layer of 0-50 cm at 70% of the minimum moisture-holding capacity. Results. Based on the study results the total water consumption, depending on the rates and types of fertilizers, ranged from 3121 to 3258 m3/ha. Despite the fact that water consumption increased as a result of applying fertilizers, but due to higher yields, water consumption for the formation of 1 t of seeds was smaller. Thus, the coefficient of water consumption on the control (reference site) was 867 m3/t. On the variants where nitrogen fertilizers were applied in the rates of N30 – 696-699 m3/t and N60– 686-689 m3/t in an early spring period the plants of winter triticale fed with ammonium nitrate or CAMs consumed moisture more efficiently. On average, from 2013 to 2016, at the background of applying N60P60 and other nitrogen fertilizers of various types and in different rates during the cultivation of winter triticale, about 3.86-5.24 t/ha of seed material were received. Conclusions. It was established that the total water consumption depended on fertilizer application rates and ranged from 3121 to 3258 m3/ha. The moisture was used the most effectively (686-689 m3/t) on the variants where against the  background of applying N60P60 an early spring feeding with ammonium nitrate or a carbamide-ammonium mixture (UAM) in a dose of N60 was performed. At the same time, the highest yield of seeds was obtained - 5,19 and 5,24 t/ha, respectively.
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