Geophysical Methods for Assessing Microbial Processes in Soil: A Critical Review

Pandurang Balwanta, Paras R. Pujaria, Shalini Dhyania, Kavita Bramhanwadea, Veligeti Jyothia
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引用次数: 1

Abstract

Geophysical techniques have witnessed significant changes over the years and the applications are gradually shifting from its application in characterization of structure to characterization of processes. A comprehensive bibliometric analysis of the Geophysical tools in studying the microbial processes at subsurface level is presented here. Late 90s witnessed potential use of geophysical tools in characterization of contaminated lands for monitoring the changes taking place therein. Geophysical tools have achieved success in sensing the microbial processes that has stimulated the researchers’ interest to study its possible application in monitoring bioremediation processes. Geophysical tools offer distinct advantages over the invasive point based methods deployed in monitoring the efficacy of remediation in view of their low cost, higher spatiotemporal resolution. A proper understanding of geophysical signatures vis-à-vis different controlling parameters is imperative to realize full potential of geophysical tool. Bibliometric analysis suggests different tools viz. DC resistivity, Self-Potential, Spectral Induced Polarization, Electro Magnetic, Ground Penetrating Radar have the potential to identify the changes in contaminated zones impacted by microbial processes. It is necessary that geophysical measurements should involve with the geochemical and microbiological measurements to avoid ambiguous results.
评估土壤微生物过程的地球物理方法:综述
近年来,地球物理技术发生了重大变化,其应用逐渐从结构表征转向过程表征。本文介绍了研究地下微生物过程的地球物理工具的综合文献计量分析。90年代末,地球物理工具可能被用于描述受污染土地的特征,以监测其中发生的变化。地球物理工具在感知微生物过程方面取得了成功,这激发了研究人员研究其在监测生物修复过程中的可能应用的兴趣。由于成本低、时空分辨率高,地球物理工具在监测修复效果方面比基于侵入点的方法具有明显优势。正确认识-à-vis不同控制参数下的地球物理特征是充分发挥地球物理工具潜力的必要条件。文献计量学分析表明,不同的工具,即直流电阻率、自电位、谱感应极化、电磁、探地雷达等,都有可能识别受微生物过程影响的污染区域的变化。地球物理测量必须与地球化学和微生物测量相结合,以避免结果不明确。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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