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Multi-element analysis of food by microwave digestion and inductively coupled plasma-atomic emission spectrometry

机译:微波消解-电感耦合等离子体原子发射光谱法对食品进行多元素分析

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A microwave digestion procedure for multi-elemental analysis of food was developed using one program to digest a variety of food matrices at the same time. A single program was enabled by an analytical portion mass based on the food's energy contentcalculated from macronutrient data (fat, protein and carbohydrate). The procedure allows a maximum mass to be analyzed for each food matrix without adjustment of the microwave digestion program to compensate for the variable reactivity of food matrices.Inductively coupled plasma-atomic emission spectrometry with ultrasonic nebulization was used to determine aluminum, arsenic, boron, barium, calcium, cadmium, cobalt, chromium, copper, iron, potassium, magnesium, manganese, molybdenum, sodium, nickel, phosphorus, lead, selenium, strontium, thallium, vanadium, and zinc. Method validation was performed on seven certified reference materials and 20 foods. Element fortification recovery of foods was acceptable (88-113 percent) and a majority of available comparisons to reference materials indicated agreement except for aluminum, chromium, and selenium.
机译:开发了一种微波消解程序,用于对食物进行多元素分析,使用一个程序可以同时消解各种食物基质。通过基于大量营养素数据(脂肪,蛋白质和碳水化合物)计算出的食物的能量含量,通过分析份量实现单一程序。该程序无需分析微波消解程序即可补偿每种食品基质的最大质量,从而补偿了食品基质的可变反应性。采用电感耦合等离子体原子发射光谱法和超声雾化法测定铝,砷,硼,钡,钙,镉,钴,铬,铜,铁,钾,镁,锰,钼,钠,镍,磷,铅,硒,锶,th,钒和锌。方法验证是对7种经过认证的参考材料和20种食品进行的。食品中元素强化的回收率是可以接受的(88-113%),与铝,铬和硒相比,与参考材料的大多数现有比较表明一致。

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