Anna Szafrańska, G. Podolska, Edyta Aleksandrowicz, A. Sułek
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引用次数: 1
摘要
. 本研究的目的是确定降低氮肥对冬小麦品种烘烤值的影响,同时也作为对硝酸盐指令实施的回应。对9个小麦品种进行了测试,它们代表了波兰国家农业植物品种清单中的四个技术组。采用随机区组法,采用双因素田间试验方法,分4个重复进行2个季节的小麦栽培。试验采用120和200 kg ha -1 n两种不同的施氮量,测定小麦的泽莱尼指数、蛋白质和面筋含量以及肺泡特征,以评价小麦的烘烤价值。当施氮量降至120 kg / h -1 N时,小麦品质受到负面影响,Zeleny指数、蛋白质和面筋含量均下降。小麦品种对肺泡参数有影响,施氮量和作物年份对肺泡参数无影响。为符合硝酸盐指令的实施而降低小麦作物的氮肥施用程度,可能导致小麦产量的蛋白质含量降低,而蛋白质含量是粮食贸易的关键参数。然而,氮肥的减少只会导致小麦粉面团的肺泡特征有轻微的、统计上不显著的降低
Implementation of the Nitrates Directive and its influence on the baking value of winter wheat
. The purpose of this work was to determine the effects of lowering nitrogen fertilization on the baking value of winter wheat cultivars and it also serves as a response to the implementation of the Nitrates Directive. Nine wheat cultivars were tested, which represented four technological groups that are included in the Polish National List of Agricultural Plant Varieties. The wheat was cultivated over a period of two seasons as a two-factor field experiment designed to utilize the method of randomized blocks, in four replicates. Two distinct applications of nitrogen fertilizer were adopted in the experiment: 120 and 200 kg ha -1 N. The Zeleny index, the quantity of protein and gluten, and the alveograph characteristics were determined in order to assess the baking value of t he wheat. Lowering the level of nitrogen fertilization to 120 kg ha -1 N caused a negative effect on the quality of the wheat, with regard to a lower Zeleny index, protein and gluten quantity. The alveograph parameters were affected by wheat cultivars while the nitrogen dose applied and the crop year had no effect. Lowering the degree of nitrogen fertilization of wheat crops to comply with the Nitrates Directive implementation may cause the production of wheat with a lower protein quantity which is a crucial parameter in grain trading. However, the reduction in nitrogen fertilization causes only a slight, statistical non-significant reduction in the alveograph characteristics of wheat flour dough
期刊介绍:
The journal is focused on the soil-plant-atmosphere system. The journal publishes original research and review papers on any subject regarding soil, plant and atmosphere and the interface in between. Manuscripts on postharvest processing and quality of crops are also welcomed.
Particularly the journal is focused on the following areas:
implications of agricultural land use, soil management and climate change on production of biomass and renewable energy, soil structure, cycling of carbon, water, heat and nutrients, biota, greenhouse gases and environment,
soil-plant-atmosphere continuum and ways of its regulation to increase efficiency of water, energy and chemicals in agriculture,
postharvest management and processing of agricultural and horticultural products in relation to food quality and safety,
mathematical modeling of physical processes affecting environment quality, plant production and postharvest processing,
advances in sensors and communication devices to measure and collect information about physical conditions in agricultural and natural environments.
Papers accepted in the International Agrophysics should reveal substantial novelty and include thoughtful physical, biological and chemical interpretation and accurate description of the methods used.
All manuscripts are initially checked on topic suitability and linguistic quality.