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Experimental study of domestic waste material using magnetic resonance measurements

机译:磁共振测量生活垃圾的实验研究

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In this paper, we present results of a laboratory and in situ study of a domestic waste landfill using magnetic resonance measurements. For our study, we used a laboratory Earth's field nuclear magnetic resonance (NMR) instrument developed at LTHE and a large-scale commercial magnetic resonance sounding (MRS) system NUMISLITE from IRIS Instruments. We show that NMR could be a tool for investigating different processes in water-saturated waste samples. Our results show that domestic waste material contains ferromagnetic or paramagnetic particles that perturb the homogeneity of the geomagnetic field at a microscopic scale and render an NMR signal short. Consequently, only the spin echo technique can be applied for measuring. At a macroscopic scale, waste and different buried objects may also perturb the natural geomagnetic field. While investigating the landfill, we observed that magnetic anomalies (±2500 nT) are localized around some cells. This is probably linked to the presence of a higher percentage of metallic objects within the waste disposal. Our first appraisal of the possibility of investigating water-saturated waste in a laboratory using an Earth's field NMR instrument shows that, with existing instruments, waste samples can be studied when the dry density of waste is less than approximately 450 kg/m3. Because the relaxation times of magnetic resonance signals in landfill may be short (T2 < 100 ms and 72*<10 ms), existing large-scale MRS instrumentation is not adapted to the investigation of domestic waste landfills.
机译:在本文中,我们介绍了使用磁共振测量技术对生活垃圾填埋场进行实验室和原位研究的结果。在我们的研究中,我们使用了由LTHE开发的实验室地球场核磁共振(NMR)仪器和IRIS Instruments的大型商用磁共振测深(MRS)系统NUMISLITE。我们表明,NMR可能是研究水饱和废物样品中不同过程的工具。我们的结果表明,生活垃圾中包含铁磁性或顺磁性颗粒,这些颗粒会在微观尺度上干扰地磁场的均匀性,并导致NMR信号变短。因此,仅自旋回波技术可用于测量。在宏观上,废物和不同的掩埋物体也可能干扰自然地磁场。在调查垃圾填埋场时,我们发现磁异常(±2500 nT)位于一些单元周围。这可能与废物处理中存在较高百分比的金属物体有关。我们对使用地球场NMR仪器在实验室中研究含水饱和废物的可能性的首次评估表明,当废物的干密度小于约450 kg / m3时,可以使用现有仪器研究废物样品。由于垃圾填埋场中磁共振信号的弛豫时间可能较短(T2 <100 ms和72 * <10 ms),因此现有的大型MRS仪器不适用于生活垃圾填埋场的研究。

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