Takemura Kenshin, Iwasaki Wataru, Morita Nobutomo, Ohmagari Shinya, Takaki Yasunori, Fukaura Hitomi, Kikunaga Kazuya
Sensing System Research Center, National Institute of Advanced Industrial Science and Technology (AIST), 807-1 Shuku-Machi, Tosu 841-0052, Saga, Japan.
Sakamoto Lime Industry Co., Ltd., 273-1 Simo, Tamana 865-0013, Kumamoto, Japan.
Nanomaterials (Basel). 2024 Jun 5;14(11):981. doi: 10.3390/nano14110981.
Soil plays a crucial role in human health through its impact on food and habitation. However, it often contains toxic heavy metals, with mercury being particularly hazardous when methylated. Currently, high-sensitivity, rapid detection of mercury is achievable only through electrochemical measurements. These measurements require pretreatment of the soil sample and the preparation of a calibration curve tailored to the sample's condition. In this study, we developed a method to determine the environmental standard value of mercury content in soil by significantly reducing the pretreatment process. Our approach involves analyzing current peaks from electrodeposition times using specific electrodes and solvent settings. This method demonstrates low error rates under low concentration conditions and can detect mercury levels as low as 0.5 ppb in soil leachate and reagent dilution series. This research facilitates the determination of low mercury concentrations in solutions containing various soil micro-compounds without the need for calibration curves.
土壤通过对食物和居住环境的影响,在人类健康中起着至关重要的作用。然而,土壤中常常含有有毒重金属,甲基化的汞尤其危险。目前,只有通过电化学测量才能实现对汞的高灵敏度、快速检测。这些测量需要对土壤样品进行预处理,并根据样品的条件制备校准曲线。在本研究中,我们开发了一种方法,通过大幅减少预处理过程来确定土壤中汞含量的环境标准值。我们的方法包括使用特定电极和溶剂设置,分析电沉积时间产生的电流峰。该方法在低浓度条件下显示出低误差率,并且能够检测土壤渗滤液和试剂稀释系列中低至0.5 ppb的汞含量。这项研究有助于在无需校准曲线的情况下,测定含有各种土壤微化合物的溶液中的低汞浓度。