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Impact of agricultural farms on the environment of the Puck Commune: Integrated agriculture calculator—CalcGosPuck

机译:农业农场对冰球公报环境的影响:综合农业计算器 - Calcgospuck

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摘要

Background Leaching of nutrients from agricultural areas is the main cause of water pollution and eutrophication of the Baltic Sea. A variety of remedial actions to reduce nitrogen and phosphorus losses from agricultural holdings and cultivated fields have been taken in the past. However, knowledge about the risk of nutrient leaching has not yet reached many farmers operating in the water catchment area of the Baltic Sea. Methods The nutrient balance method known as “At the farm gate” involves calculating separate balances for nitrogen (N), phosphorus (P) and potassium (K). After estimating all the components of the nutrient balance, the total balance for NPK is calculated and the data obtained is expressed as the ratio of total change (surplus) to the area of arable land on a farm. In addition, the nutrient usage efficiency on a farm is also calculated. An opinion poll was conducted in 2017 on 3.6% (n = 31) of the farms located in commune of Puck. The total area of the farms including arable and grass land ranged from 5 to 130 ha with an average of 45.82 ha. The arable land was on average 30.79 ha ranging from 4.45 to 130 ha while the grassland averaged 12.77 ha and ranged from 0 to 53 ha. Results The average consumption of mineral fertilizer in the sample population of farms was 114.9 kg N, 9.3 kg P, and 22.9 kg K·ha−1of agricultural land (AL), respectively. N balance in the sample farms being ranged from −23.3 to 254.5 kg N·ha−1AL while nutrient use efficiency ranged from 0.40% to 231.3%. In comparison, P surplus in the sample farms was 5.0 kg P·ha−1AL with the P use efficiency of 0.4–266.5%. Discussion Mean N fertilizer consumption in the tested farms was higher than the average usage across Poland and in the Pomeranian Voivodeship. However, mean consumption of potassium fertilizers was lower than mentioned averages. Mean P fertilizer consumption was higher than in the Pomeranian Voivodeship, but lower compared to the entire country. Generally, on the basis of designated research indicators of farm pressures on water quality, concentrations of total nitrogen and total phosphorus were obtained. CalcGosPuck (an integrated agriculture calculator) will help to raise farmers’ awareness about NPK flow on farm scale and to improve nutrient management.
机译:从农业领域的营养素的背景浸出是波罗的海水污染和富营养化的主要原因。过去已经采取了各种补救措施,以减少农业控股和耕地缺失的氮和磷损失。然而,关于营养浸出风险的知识尚未达到许多在波罗的海的水集水区的农民。方法方法称为“在农场门”的营养平衡方法涉及计算氮气(N),磷(P)和钾(K)的单独余额。在估计营养平衡的所有组分后,计算NPK的总余额,所获得的数据表示为农场耕地面积的总变化(盈)的比率。此外,还计算了农场的营养使用效率。舆论民意调查是在2017年在冰球公社的3.6%(N = 31)的3.6%(N = 31)。包括耕地和草地在内的农场的总面积范围为5至130公顷,平均为45.82公顷。耕地平均为30.79公顷,从4.45到130公顷,而草地平均为12.77公顷,范围为0至53公顷。结果农场样本群中矿物肥料的平均消耗分别为114.9千克,9.3千克,分别为22.9公斤k·HA-1,农业用地(AL)。 n在样品农场中的平衡范围从-23.3至254.5千克N·HA-1,而营养利用效率范围为0.40%至231.3%。相比之下,样品农场的P剩余5.0千克P·HA-1,P使用效率为0.4-266.5%。讨论意味着测试农场的肥化肥料均高于波兰和波美族的平均使用量。然而,钾肥的平均消耗低于提到的平均值。平均P肥料消费高于Pomeranian voivodehip,但与整个国家相比降低。一般来说,在水质上的农业压力指定的研究指标的基础上,获得了总氮的浓度和总磷。 Calcgospuck(综合农业计算器)将有助于提高农民对农业规模的NPK流程的认识,并提高营养管理。

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