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Research on heavy metal ions detection in soil with terahertz time-domain spectroscopy

机译:太赫兹时域光谱法检测土壤中重金属离子的研究

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Nowadays, heavy metals pollution is becoming a serious problem in agriculture. This paper reports a preliminary work on a feasibility study of applying terahertz (THz) technology for heavy metal ions detection in soil. This study was first conducted at Oklahoma State University, and then carried out at China Agricultural University and Capital Normal University. Pure soil was collected in an experimental field, which contains nearly no heavy metal ions from standard detection; in the experiment, heavy metal ions were mainly Pb~(2+), Cr~(3+), Zn~(2+) and Cu~(2+) from chemical compounds. Based on the National Standard for Heavy Metals Pollution, a set of soil samples with different polluted levels were prepared in the lab. The metal ions concentration levels were selected as 50ppm, 300ppm and 700ppm. Each soil sample was pre-processed by collecting, weighing, mixing, drying, grinding and labeling before measurements. The thickness of soil samples was selected as 1.5mm and 3mm. The absorption spectra for the soil samples with different heavy metal ions were collected using THz time-domain spectroscopy (THz-TDS) equipments separately at Oklahoma State University and Capital Normal University. The test results showed that soil samples with Pb~(2+), Cr~(3+), Zn~(2+) and Cu~(2+) had different absorption characteristics within the bandwidth of 0.1-1.1 THz. A narrow bandwidth only up to 1.1 THz was got because the soil particles showed much absorption and scattering properties to the THz spectroscopy. Different soil samples with different concentration of heavy metal ions also showed much difference and it could be used to predict the heavy metal concentration in the future. The results from the preliminary study show a potential of THz technology applied for heavy metal ions detection in agricultural fields environment. However, since the high scattering features of samples and high cost of equipments, the measurement methods and practical issues needs to be further investigated and improved to make the THz technology a feasible tool for soil heavy metal ions detection.
机译:如今,重金属污染已成为农业中的严重问题。本文报告了将太赫兹(THz)技术用于土壤中重金属离子检测的可行性研究的初步工作。该研究首先在俄克拉荷马州立大学进行,然后在中国农业大学和首都师范大学进行。在一个实验田中收集了纯净的土壤,该土壤几乎不含标准检测中的重金属离子。在实验中,重金属离子主要来自化合物中的Pb〜(2 +),Cr〜(3 +),Zn〜(2+)和Cu〜(2+)。根据国家重金属污染标准,在实验室中准备了一组不同污染水平的土壤样品。金属离子浓度水平选择为50ppm,300ppm和700ppm。在测量之前,通过收集,称重,混合,干燥,研磨和贴标签对每种土壤样品进行预处理。土壤样品的厚度选择为1.5mm和3mm。分别使用俄克拉荷马州立大学和首都师范大学的THz时域光谱仪(THz-TDS)设备收集了不同重金属离子的土壤样品的吸收光谱。测试结果表明,Pb〜(2 +),Cr〜(3 +),Zn〜(2+)和Cu〜(2+)的土壤样品在0.1-1.1 THz的带宽内具有不同的吸收特性。由于土壤颗粒对太赫兹光谱表现出很大的吸收和散射特性,因此只能获得高达1.1 THz的窄带宽。不同重金属离子浓度的土壤样品也表现出很大的差异,可用于将来预测重金属的浓度。初步研究的结果表明,太赫兹技术在农田环境中用于重金属离子检测的潜力。然而,由于样品的高散射特性和高昂的设备成本,测量方法和实际问题有待进一步研究和改进,以使太赫兹技术成为土壤重金属离子检测的可行工具。

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