伏伊伏丁那省(塞尔维亚)境内灌溉水质评价

S. Milić, D. Banjac, J. Vasin, Jordana Ninkov, B. Pejić, I. Bajić, B. Mijic
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引用次数: 0

摘要

集约化作物栽培系统需要持续监测灌溉水质以及控制土壤的物理和化学性质。鉴于持续的气候变化和土壤有机质含量的急剧下降,使用劣质灌溉水及其对土壤、栽培植物和灌溉设备的不利影响不容忽视。本文的目的是评价伏伊伏丁那省不同取水水源的灌溉水的总体质量。本文介绍了2018年和2019年收集的灌溉水质结果。这项研究包括从三个不同的取水结构中获取的140个灌溉用水样本,这些取水结构从水井、运河或水库中收集水。采用pH值、电导率(EC)、总溶解固形物(TDS)、离子平衡、钠吸附比(SAR)和残余碳酸钠(RSC)值对水质进行评价。使用了美国盐度实验室(USSL)提供的水质图和粮农组织解释灌溉水质的准则。此外,专门为伏伊伏丁那地区开发的灌溉用水Nejgebauer分类被用作第三种分类。根据灌溉水的矿化结果,确定了观测参数的值:分析水样的平均pH值为7.89,范围为7.14 ~ 9.01;电导率值为0.10 ~ 3.50 dS/m,平均值为0.85 dS/m。TDS分析的结果范围很广,从112 mg/l到2,384 mg/l,平均为529,22 mg/l。SAR值在0.04 ~ 16.52之间变化,平均值为1.97。USSL的水分类结果与FAO的分类和RSC指数<0相似,表明57%的调查样本对灌溉利用没有担忧,而nejgebauer的分类和RSC指数0-1.25表明超过75%的分析样本适合和安全用于灌溉和土壤性质。灌溉水的质量对植物的生产力有显著影响,决定着农田的化学和物理性质,因此对灌溉水质量进行监测具有重要意义。
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Assessment of irrigation water quality at the territory of Vojvodina Province (Serbia)
Intensive crop cultivation systems require continuous monitoring of irrigation water quality as well as the control of physical and chemical soil properties. In view of the ongoing climate change and a dramatic decrease in soil organic matter content, the use of low quality irrigation water and its adverse effects on soil, cultivated plants and irrigation equipment must not be overlooked. The aim of this paper was to evaluate general quality of irrigation water from the different water intake sources in the Vojvodina Province. The paper presents the results of irrigation water quality, collected during 2018 and 2019. The research included 140 irrigation water samples obtained from three different intake structures which collect water from wells, canals or reservoirs. Water quality was assessed using the following parameters: pH value, electrical conductivity (EC), total dissolved solids (TDS), ionic balance, sodium adsorption ratio (SAR) and residual sodium carbonate (RSC) value. Water quality diagram given by the US Salinity Laboratory (USSL) and FAO guidelines for interpretation water quality for irrigation was used. Additionally, the Nejgebauer classification for irrigation water, developed specifically for the area of Vojvodina, was used as a third classification. Based on the results of mineralization of the irrigation water, the following values of the observed parameters were determined: average pH of the analyzed water samples were 7.89, ranged from 7.14 to 9.01, while electrical conductivity values ranged from 0.10 to 3.50 dS/m, with an average of 0.85 dS/m. TDS analysis resulted in a wide range of values, from 112 mg/l to 2,384 mg/l, with an average of 529,22 mg/l. SAR values varied between 0.04-16.52 with a satisfactory average of 1.97. The USSL water classification produced similar results as FAO classification and RSC index <0, indicating that 57% of investigating samples are without concerns for irrigation use, whereas Nejgebauers classification and RSC index 0-1.25 show that over 75% of analyzed samples are suitable and safe for irrigation and soil properties. Since the quality of irrigation water significantly affects plant productivity, as it determines the chemical and physical properties of agricultural land, monitoring of water quality for irrigation is of high importance.
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