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首页> 外文期刊>Indian journal of agricultural research >Critical absorption limit of nitrate and optimizing estimation methodology for soil solutions and extracts using UV-VIS spectroscopy.
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Critical absorption limit of nitrate and optimizing estimation methodology for soil solutions and extracts using UV-VIS spectroscopy.

机译:硝酸盐的临界吸收极限以及使用UV-VIS光谱法优化土壤溶液和提取物的估算方法。

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摘要

Absorption behavior of nitrate and estimation methodology has been studied using different types of samples and UV wavelengths in order to optimize the use of samples and wavelengths to ensure better results. Absorption was highest in 190-310 nm range scanning compared to the single wavelength (210) or combination wavelengths (210+301 nm). Linearity in absorption was up to 40 micro g/ml nitrate nitrogen in case of 190-310 nm scan. The wavelengths identified for nitrate in soil leachate samples for maximum absorption was combination of 210+301 nm wavelengths, whereas, wavelength scan from 190 to 310 nm was found better for soil extracts and nutrient solutions. Molar absorption coefficient was highest in case of 190-310 nm wavelength scan region for aqueous solutions. The critical absorption value of nitrate was found as 3.35 at different treatment wavelengths. Using these combination of treatment wavelengths to suitable sample types could yield better absorption results and with a little cost under laboratory conditions.
机译:为了优化样品和波长的使用以确保获得更好的结果,已对硝酸盐的吸收行为和估算方法进行了研究,使用了不同类型的样品和紫外波长。与单波长(210)或组合波长(210 + 301 nm)相比,在190-310 nm范围扫描中吸收最高。在190-310 nm扫描的情况下,吸收线性最高为40 micro g / ml硝态氮。在土壤渗滤液样品中确定最大吸收率的硝酸盐的波长是210 + 301 nm波长的组合,而对于土壤提取物和营养液,发现从190到310 nm的波长扫描更好。在水溶液的190-310nm波长扫描区域的情况下,摩尔吸收系数最高。发现在不同处理波长下硝酸盐的临界吸收值为3.35。将处理波长的这些组合用于合适的样品类型可以产生更好的吸收结果,并且在实验室条件下花费很少。

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