Liu Tengpeng, Liu Jixin, Mao Xuefei, Jiang Xiaoming, Zhao Yabo, Qian Yongzhong
Institute of Quality Standard and Testing Technology for Agro-Products, Chinese Academy of Agricultural Sciences, and Key Laboratory of Agro-Food Safety and Quality, Ministry of Agriculture and Rural Affairs, Beijing 100081, China.
Beijing Ability Technology Co., Ltd., Beijing 100081, China.
Foods. 2023 Apr 25;12(9):1778. doi: 10.3390/foods12091778.
As toxic metals, Hg and Cd are a concern for food safety and human health; their rapid and portable analysis is still a challenge. A portable and rapid Hg-Cd analyzer constructed from a metal-ceramic heater (MCH)-based electrothermal vaporizer (ETV), an on-line catalytic pyrolysis furnace (CPF), a composite trap, and a homemade miniature atomic absorption spectrometer (AAS) was proposed for grain analysis in this work. To enhance sensitivity, a new folded light path was designed for simultaneous Hg and Cd analysis using charge coupled device (CCD) in AAS. To eliminate the grain matrix interference, a catalytic pyrolysis furnace with aluminum oxide fillers was utilized to couple with a composite trap. The method limits of detection (LODs) were 1.1 μg/kg and 0.3 μg/kg for Hg and Cd using a 20 mg grain sample, fulfilling the real sample analysis to monitor the grain contamination quickly; linearity > 0.995 was reached only using standard solution calibration, indicating the sample was free of grain matrix interference. The favorable analytical accuracy and precision were validated by analyzing real and certified reference material (CRM) grains with recoveries of 97-103% and 96-111% for Hg and Cd, respectively. The total analysis time was less than 5 min without sample digestion or use of any chemicals, and the instrumental size and power consumption were <14 kg and 270 W, respectively. Compared with other rapid methods, this newly designed Hg-Cd analyzer is proven to be simple, portable, and robust and is, thus, suitable to quickly monitor Hg and Cd contamination in the field to protect grain and food safety.
作为有毒金属,汞和镉关乎食品安全和人类健康;对它们进行快速且便携的分析仍是一项挑战。本文提出了一种基于金属陶瓷加热器(MCH)的电热蒸发器(ETV)、在线催化热解炉(CPF)、复合阱以及自制微型原子吸收光谱仪(AAS)构建的便携式快速汞镉分析仪,用于谷物分析。为提高灵敏度,设计了一种新的折叠光路,以便在原子吸收光谱仪中使用电荷耦合器件(CCD)同时分析汞和镉。为消除谷物基质干扰,采用装有氧化铝填料的催化热解炉与复合阱联用。使用20mg谷物样品时,汞和镉的方法检出限分别为1.1μg/kg和0.3μg/kg,能够满足快速监测谷物污染的实际样品分析;仅使用标准溶液校准即可达到线性度>0.995,表明样品不受谷物基质干扰。通过分析实际谷物和有证标准物质(CRM),汞和镉的回收率分别为97 - 103%和96 - 111%,验证了良好的分析准确度和精密度。无需样品消解或使用任何化学试剂,总分析时间少于5分钟,仪器尺寸和功耗分别<14kg和270W。与其他快速方法相比,这种新设计的汞镉分析仪被证明简单、便携且耐用,因此适合在现场快速监测汞和镉污染,以保护谷物和食品安全。