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Evaluation of alternate lines of Fe for sequential multi-element determination of Cu, Fe, Mn and Zn in soil extracts by high-resolution continuum source flame atomic absorption spectrometry

机译:高分辨率连续谱源火焰原子吸收光谱法评估交替选择的铁元素对土壤提取物中铜,铁,锰和锌的连续多元素测定

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摘要

The usefulness of the secondary line at 252.744 nm and the approach of side pixel registration were evaluated for the development of a method for sequential multi-element determination of Cu, Fe, Mn and Zn in soil extracts by high-resolution continuum source flame atomic absorption spectrometry (HR-CS FAAS). The influence of side pixel registration on the sensitivity and linearity was investigated by measuring at wings (248.325, 248.323, 248.321, 248.329, and 248.332 nm) of the main line for Fe at 248.327 nm. For the secondary line at 252.744 nm or side pixel registration at 248.325 nm, main lines for Cu (324.754 nm), Mn (279.482 nm) and Zn (213.875 nm), sample flow-rate of 5.0mLmin~(-1) and calibration by matrix matching, analytical curves in the 0.2-1.0 mgL~(-1) Cu, 1.0-20.0 mgL~(-1) Fe, 0.2-2.0 mgL~(-1) Mn, 0.1-1.0mgL~(-1) Zn ranges were obtained with linear correlations better than 0.998. The proposed method was applied to seven soil samples and two soil reference materials (IAC 277; IAC 280). Results were in agreement at a 95% confidence level (paired t-test) with reference values. Recoveries of analytes added to soil extracts containing 0.15 and 0.30 mgL~(-1) Cu, 7.0 and 14mgL~(-1) Fe, 0.60 and 1.20 mgL~(-1) Mn, 0.07 and 0.15 mgL~(-1) Zn, varied within the-94-99, 92-98, 93-101, and 93-103% intervals, respectively. The relative standard deviations (n = 12) were 2.7% (Cu), 1.4% (Fe - 252.744nm), 5.7% (Fe - 248.325 nm), 3.2% (Mn) and 2.8% (Zn) for an extract containing 0.35mgL~(-1) Cu, 14mgL~(-1) Fe, 1.1mgL~(-1) Mn and 0.12mgL~(-1) Zn. Detection limits were 5.4 μgL~(-1) Cu, 55 μgL~(-1) Fe (252.744 nm), 147 μgL~(-1) Fe (248.325 nm), 3.0 μgL~(-1) Mn and 4.2 μgL~(-1) Zn.
机译:评价了二次线在252.744 nm处的有用性以及侧面像素配准的方法,以开发一种通过高分辨率连续谱源火焰原子吸收法依次测定土壤提取物中的Cu,Fe,Mn和Zn的方法光谱仪(HR-CS FAAS)。通过在248.327 nm处对Fe的主线侧翼(248.325、248.323、248.321、248.329和248.332 nm)进行测量,研究了侧面像素配准对灵敏度和线性的影响。对于252.744 nm的辅助线或248.325 nm的侧面像素配准,Cu(324.754 nm),Mn(279.482 nm)和Zn(213.875 nm)的主线,样品流速为5.0mLmin〜(-1)和校准通过基质匹配,得到0.2-1.0 mgL〜(-1)Cu,1.0-20.0 mgL〜(-1)Fe,0.2-2.0 mgL〜(-1)Mn,0.1-1.0mgL〜(-1)的分析曲线Zn范围的线性相关性优于0.998。拟议的方法应用于七个土壤样品和两个土壤参考材料(IAC 277; IAC 280)。结果在参考值的95%置信水平(配对t检验)下一致。添加到含有0.15和0.30 mgL〜(-1)Cu,7.0和14mgL〜(-1)Fe,0.60和1.20 mgL〜(-1)Mn,0.07和0.15 mgL〜(-1)Zn的土壤提取物中的分析物的回收率分别在-94-99、92-98、93-101和93-103%的区间内变化。含有0.35的提取物的相对标准偏差(n = 12)为2.7%(Cu),1.4%(Fe-252.744nm),5.7%(Fe-248.325 nm),3.2%(Mn)和2.8%(Zn) mgL〜(-1)铜,14mgL〜(-1)铁,1.1mgL〜(-1)Mn和0.12mgL〜(-1)Zn。检测限为5.4μgL〜(-1)Cu,55μgL〜(-1)Fe(252.744 nm),147μgL〜(-1)Fe(248.325 nm),3.0μgL〜(-1)Mn和4.2μgL〜 (-1)锌

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