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EVALUATION OF NITRATE AND POTASSIUM ION-SELECTIVE MEMBRANES FOR SOIL MACRONUTRIENT SENSING

机译:硝酸盐和钾离子选择性膜在土壤微量营养传感中的评价

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On-the-go, real-time soil nutrient analysis would be useful in site-specific management of soil fertility. The rapid response and low sample volume associated with ion-selective field-effect transistors (ISFETs) make them good soil fertility sensor candidates. Ion-selective microelectrode technology requires an ion-selective membrane that responds selectively to one analyte in the presence of other ions in a solution. This article describes: (1) the evaluation of nitrate and potassium ion-selective membranes, and (2) the investigation of the interaction between the ion-selective membranes and soil extractants to identify membranes and extracting solutions that are compatible for use with a real-time ISFET sensor to measure nitrate and potassium ions in soil. The responses of the nitrate membranes with tetradodecylammonium nitrate (TDDA) or methlytridodecylammonium chloride (MTDA) and potassium membranes with valinomycin were affected by both membrane type and soil extractant. A TDDA-based nitrate membrane would be capable of detecting low concentrations in soils to about 10{sup}(-5) mole/L (NO{sub}3){sup}-. The valinomycin-based potassium membranes showed satisfactory selectivity performance in measuring potassium in the presence of interfering cations such as Na{sup}+, Mg{sup}(2+), Ca{sup}(2+), Al{sup}(3+), and Li{sup}+ as well as provided a consistent sensitivity when DI water, Kelowna, or Bray P{sub}1 solutions were used as base solutions. The TDDA-based nitrate membrane and the valinomycin-based potassium membrane, used in conjunction with Kelowna extractant, would allow determination of nitrate and potassium levels, respectively, for site-specific control of fertilizer application.
机译:进行中的实时土壤养分分析将对特定地点的土壤肥力管理有用。与离子选择场效应晶体管(ISFET)相关的快速响应和低样本量使它们成为土壤肥力传感器的理想选择。离子选择微电极技术需要一种离子选择膜,该膜在溶液中存在其他离子时会选择性地对一种分析物作出反应。本文介绍:(1)硝酸盐和钾离子选择性膜的评估,以及(2)离子选择性膜与土壤萃取剂之间的相互作用的研究,以鉴定与实际使用兼容的膜和萃取液时ISFET传感器可测量土壤中的硝酸盐和钾离子。硝酸盐膜对硝酸四十二烷基铵(TDDA)或甲基三十二烷基氯化铵(MTDA)的响应以及钾膜对缬氨霉素的响应均受膜类型和土壤萃取剂的影响。基于TDDA的硝酸盐膜将能够检测土壤中低浓度至约10 {sup}(-5)摩尔/ L(NO {sub} 3){sup}-。基于缬氨霉素的钾膜在存在干扰阳离子(例如Na {sup} +,Mg {sup}(2 +),Ca {sup}(2 +),Al {sup}( 3+)和Li {sup} +,并在使用去离子水,基洛纳或布雷P {sub} 1溶液作为基本溶液时提供了一致的灵敏度。与基洛纳(Kelowna)萃取剂一起使用的基于TDDA的硝酸盐膜和基于缬氨霉素的钾膜,可以分别测定硝酸盐和钾的水平,以进行肥料的现场特定控制。

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