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Clayey minerals and clayey soils as possible microorganism repositories

机译:Clayey矿物质和粘土土壤作为可能的微生物存储库

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摘要

Clay minerals are one of the most abundant and crucial structural materials of the Earth's crust, playing a significant role in many aspects of life. The present study aims to critically investigate the presence of microorganisms within different clayey soil samples. Microorganisms are ubiquitous by nature due to their natural ability to adapt to different habitats. Bacteria and Archea are the most abundant microorganisms in the soil and serve many important roles like nitrogen fixation. Fungi are also an integral part of the soil micro flora as they serve as food sources to other organisms as well as facilitate as layer organisms with beneficial relationships to plants. The continued evolution of man and subsequent use of clayey soils in areas such as pottery, cosmetics, engineering and geophagia brings into question whether microorganisms are harmful. Soil samples with high amounts of fine particles and colloidal substances were studied while taking into account the identified hydrated aluminosilicates and their roles in bioavailability. The study also investigated the possible types of microbial flora associated with each type of clayey soil as well as their functions within the human body. Considering the diverse origin of these microorganisms, we discuss their modes of attachment to clayey soils with the aim of minimising their transmission to humans.
机译:粘土矿物是地壳最丰富,最重要的结构材料之一,在生活的许多方面发挥着重要作用。本研究旨在重视不同粘土土壤样品内微生物的存在。由于它们的天然能力适应不同栖息地,微生物是无处不在的。细菌和Archea是土壤中最丰富的微生物,并提供许多重要作用,如氮固定。真菌也是土壤微菌群的一个组成部分,因为它们用作其他生物的食物来源,并促进与植物有益关系的层生物。男人的持续演变和随后在陶器,化妆品,工程和地球菌等地区使用粘土土壤的用途,使微生物是有害的。研究了具有大量细颗粒和胶体物质的土壤样品,同时考虑了所鉴定的水合铝酸盐及其在生物利用度中的作用。该研究还研究了与每种类型的粘土土壤相关的微生物菌群以及它们在人体内的功能。考虑到这些微生物的不同起源,我们讨论了他们对粘土土壤的依恋模式,目的是最大限度地减少对人类的传播。

著录项

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  • 作者单位

    University of Johannesburg Mineral Processing and Technology Research Centre Department of Metallurgy School of Mining Metallurgy and Chemical Engineering Faculty of Engineering and the Built Environment;

    University of Johannesburg Mineral Processing and Technology Research Centre Department of Metallurgy School of Mining Metallurgy and Chemical Engineering Faculty of Engineering and the Built Environment;

    University of Johannesburg Mineral Processing and Technology Research Centre Department of Metallurgy School of Mining Metallurgy and Chemical Engineering Faculty of Engineering and the Built Environment;

    University of Johannesburg Department of Biotechnology and Food Technology Faculty of Science;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自然科学总论;
  • 关键词

    Clay soil; Clay minerals; Microorganisms; Geophagia;

    机译:粘土土壤;粘土矿物质;微生物;凝血性;
  • 入库时间 2022-08-20 07:37:34

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