Abteilung Technik im Pflanzenbau, Leibniz-Institut für Agrartechnik und Bioökonomie (ATB), Max-Eyth-Allee 100, D-14469 Potsdam, Germany.
Fachbereich 1.4, Bundesanstalt für Materialforschung (BAM), Zweiggelände Adlershof, Richard-Willstätter-Straße 11, D-12489 Berlin, Germany.
Sensors (Basel). 2021 Jun 4;21(11):3892. doi: 10.3390/s21113892.
Knowing the exact nutrient composition of organic fertilizers is a prerequisite for their appropriate application to improve yield and to avoid environmental pollution by over-fertilization. Traditional standard chemical analysis is cost and time-consuming and thus it is unsuitable for a rapid analysis before manure application. As a possible alternative, a handheld X-ray fluorescence (XRF) spectrometer was tested to enable a fast, simultaneous, and on-site analysis of several elements. A set of 62 liquid pig and cattle manures as well as biogas digestates were collected, intensively homogenized and analysed for the macro plant nutrients phosphorus, potassium, magnesium, calcium, and sulphur as well as the micro nutrients manganese, iron, copper, and zinc using the standard lab procedure. The effect of four different sample preparation steps (original, dried, filtered, and dried filter residues) on XRF measurement accuracy was examined. Therefore, XRF results were correlated with values of the reference analysis. The best Rs for each element ranged from 0.64 to 0.92. Comparing the four preparation steps, XRF results for dried samples showed good correlations (0.64 and 0.86) for all elements. XRF measurements using dried filter residues showed also good correlations with Rs between 0.65 and 0.91 except for P, Mg, and Ca. In contrast, correlation analysis for liquid samples (original and filtered) resulted in lower Rs from 0.02 to 0.68, except for K (0.83 and 0.87, respectively). Based on these results, it can be concluded that handheld XRF is a promising measuring system for element analysis in manures and digestates.
了解有机肥的确切养分组成是合理应用有机肥以提高产量和避免过度施肥造成环境污染的前提条件。传统的标准化学分析既费时又费钱,因此不适合在施肥前进行快速分析。作为一种可能的替代方法,我们测试了一种手持式 X 射线荧光(XRF)光谱仪,以实现对几种元素的快速、同时和现场分析。我们收集了 62 种液体猪粪和牛粪以及沼气消化物,对其进行了充分混合,并使用标准实验室程序对宏观植物养分磷、钾、镁、钙和硫以及微量元素锰、铁、铜和锌进行了分析。我们还研究了四种不同的样品制备步骤(原始、干燥、过滤和干燥滤渣)对 XRF 测量精度的影响。因此,我们将 XRF 结果与参考分析值进行了相关分析。每个元素的最佳 Rs 值范围为 0.64 至 0.92。比较这四种制备步骤,干燥样品的 XRF 结果对于所有元素都显示出很好的相关性(0.64 和 0.86)。使用干燥滤渣进行的 XRF 测量也显示出很好的相关性,除 P、Mg 和 Ca 外,Rs 值在 0.65 至 0.91 之间。相比之下,液体样品(原始和过滤)的相关分析得到的 Rs 值较低,范围从 0.02 到 0.68,除 K(分别为 0.83 和 0.87)外。基于这些结果,可以得出结论,手持式 XRF 是一种很有前途的测量系统,可用于分析有机肥和消化物中的元素。