Determination of essential elements and trace heavy metals in agricrops by photoneutron activation analysis and X-ray fluorescence methods

IF 0.1 Q4 SOCIAL SCIENCES, INTERDISCIPLINARY
C. Oprea, M. Gustova, O. D. Maslov, A. G. Belov, I. Oprea, P. J. Szalansky, R. Ciofu
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引用次数: 0

Abstract

Applicative researches in the field of environmental protection like X-ray fluorescence analysis, neutron activation analysis, and other methods, present real increasing importance related to the climate changes that can be observed nowadays. Scientific methods will enter step by step in our life, first of all, due to the accelerated technological development and due to the objective motivations of environmental monitoring necessary to take correct measures for the preservation and protection of nature on the Earth. Determination of some inorganic components, mainly heavy metals, in agricultural crops, is frequently required in health-related environmental studies, due to the high toxicity of trace amounts of such elements for the human organism. The main sources of trace elements to agricrops are their growing media, as soil-water-air ecosystem from which those nutrients are taken up by the root to the foliage. The goal of the present research was to determine the extent to which industrial inorganic pollutants are transferred to the crops. It was achieved by using multielement techniques as photon neutron activation method and X-ray fluorescence methods and statistical modeling in order to determine levels, pathways, and fate of toxic and non-toxic bioactive elements in selected agricrops along with the root soil. Some of the experimental trace metal values exceeded the threshold established by Romanian and EU regulations to protect vegetation and explain the estimated significant crop losses. Multivariate modeling by factor analysis and neural network simulation of the elemental concentration data showed always the component loaded with specific elements coming from industrial emissions. These kinds of studies are very requested regarding the vegetable meant for the human diet.
光子中子活化分析和x射线荧光法测定农业中必需元素和微量重金属
在环境保护领域的应用研究,如x射线荧光分析、中子活化分析等方法,与当今可观测到的气候变化有关,显得越来越重要。科学方法将逐步进入我们的生活,首先,由于技术的加速发展,由于采取正确措施保护地球上的自然所必需的环境监测的客观动机。在与健康有关的环境研究中,经常需要测定农作物中的一些无机成分,主要是重金属,因为微量的这类元素对人体有机体具有很高的毒性。微量元素对农业的主要来源是它们的生长介质,如土壤-水-空气生态系统,这些营养物质被根部吸收到叶子中。本研究的目的是确定工业无机污染物转移到作物的程度。它是通过使用多元素技术,如光子中子激活法和x射线荧光法和统计建模来实现的,以确定选定的农业和根土中有毒和无毒生物活性元素的水平、途径和命运。一些试验性微量金属值超过了罗马尼亚和欧盟为保护植被和解释估计的重大作物损失而规定的阈值。通过因子分析和神经网络模拟对元素浓度数据进行多元建模,结果表明工业排放中总含有特定元素。这类研究对于人类饮食中的蔬菜是非常必要的。
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来源期刊
Dialogo
Dialogo SOCIAL SCIENCES, INTERDISCIPLINARY-
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26 weeks
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