顺序萃取法测定沸石成分在农业中的安全应用

G. Petrovic, V. Mitić, J. Nikolić, M. Mitić, M. Dimitrijević, A. Đorđević, V. S. Stankov Jovanović
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摘要

沸石是铝硅酸盐矿物,常用于工业、医药和农业。它们在农业上的应用是基于它们能提高作物产量和促进养分利用效率。为了确定沸石(斜沸石)在农业上的安全使用,对其元素分析进行了顺序提取和电感耦合等离子体-光学发射光谱分析。通过不同的萃取相——可交换的、碳酸盐结合的、与Fe和Mn氧化物结合的金属、与有机物结合的金属和残余相——顺序萃取可以深入了解斜发沸石的元素组成。第一相中含量最多的元素是Ca、K、Mg和Na(浓度大于100ppm)。在第二阶段的顺序萃取中也有类似的观察,但在这一阶段中Mn的含量也很高(232.6±0.7 ppm)。在这两个阶段中,没有任何有毒元素超过塞尔维亚法律规定的容许值。然而,第三相样品中Be的含量(1.822±0.002 ppm)超过塞尔维亚法律规定的浓度限值,可能存在潜在危险,因为Be可以被植物吸收,并通过食物链转移给人类。残留相中有毒镉的浓度比法定限值高两倍。考虑到所获得的结果,本研究分析的斜发沸石可以用于农业,但需要连续监测土壤性质,因为有毒元素在各种还原性和pH条件下可以移动。
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APPLICATION OF SEQUENTIAL EXTRACTION TO DETERMINE THE COMPOSITION OF ZEOLITE FOR ITS SAFE USE IN AGRICULTURE
Zeolites are alumo-silicate minerals, commonly used industry, medicine and agriculture. Their application in agriculture is based on the fact that they can increase crop yield and promote nutrient use efficiency. In order to determine is zeolite (clinoptilolite) safe for use in agriculture, regarding its elemental analysis, sequential extraction followed by Inductively coupled plasma - optical emission spectrometry analysis is performed. Sequential extraction perrmited insight into elemental composition of clinoptilolite, through various extraction phases – exchagable, carbonate bounded, metals bound to Fe and Mn oxides, metals bound to organic matter and residual phase. The most abundant elements in first phase are Ca, K, Mg and Na (with a concentration greater than 100 ppm). Similar observation wa made for second phase of sequential extraction, but in this phase high content of Mn (232.6±0.7 ppm) was also noticed. In those two phases, that represents cations available to plants, no toxic elements exceeded permissible values prescribed by Serbian law. However, he content of Be (1.822±0.002 ppm) in sample obtained from third phase exceeds the concentration limit prescribed by Serbian law, which might be potentially dangerous, since Be could be adopted by plant and transferred to human through food chain. Concentration of toxic Cd was twice as higher compared to law limitations in residual phase. Bearing in mind obtained results, clinoptilolite analyzed in this study could be used in agriculture, but with continuous soil properties monitoring, since toxic elements could be mobile under various reducing and pH conditions.
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