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一种用于动力学和同位素研究的改进型黄铁矿预处理方案。

An improved pyrite pretreatment protocol for kinetic and isotopic studies.

作者信息

Mirzoyan Natella, Kamyshny Alexey, Halevy Itay

机构信息

Earth and Planetary Sciences, Weizmann Institute of Science, Rehovot, 76100 Israel.

Dept. of Geological and Environmental Sciences, Faculty of Natural Sciences, Ben-Gurion University of the Negev, Beer Sheva, 84105 Israel.

出版信息

Geochem Trans. 2014 Aug 12;15(1):10. doi: 10.1186/s12932-014-0010-0. eCollection 2014 Dec.

Abstract

BACKGROUND

Pyrite is one of the most abundant and widespread of the sulfide minerals with a central role in biogeochemical cycles of iron and sulfur. Due to its diverse roles in the natural and anthropogenic sulfur cycle, pyrite has been extensively studied in various experimental investigations of the kinetics of its dissolution and oxidation, the isotopic fractionations associated with these reactions, the microbiological processes involved, and the effects of pyrite on human health. Elemental sulfur (S) is a common product of incomplete pyrite oxidation. Preexisting S impurities as unaccounted reaction products are a source of experimental uncertainty, as are adhered fine grains of pyrite and its oxidation products. Removal of these impurities is, therefore, desirable. A robust standardized pretreatment protocol for removal of fine particles and oxidation impurities from pyrite is lacking. Here we describe a protocol for S and fine particle removal from the surface of pyrite by rinsing in acid followed by repeated ultrasonication with warm acetone.

RESULTS

Our data demonstrate the presence of large fractions of S on untreated pyrite particle surfaces, of which only up to 60% was removed by a commonly used pretreatment method described by Moses . (GCA 51:1561-1571, 1987). In comparison, after pretreatment by the protocol proposed here, approximately 98% S removal efficiency was achieved. Additionally, the new procedure was more efficient at removal of fine particles of adhered pyrite and its oxidation products and did not appear to affect the particle size distribution, the specific surface area, or the properties of grain surfaces.

CONCLUSIONS

The suggested pyrite pretreatment protocol is more efficient in removal of impurities from pyrite grains, and provides multiple advantages for both kinetic and isotopic investigations of pyrite transformations under various environmental conditions.

摘要

背景

黄铁矿是最丰富且分布最广泛的硫化物矿物之一,在铁和硫的生物地球化学循环中起着核心作用。由于其在自然和人为硫循环中的多种作用,黄铁矿在其溶解和氧化动力学、与这些反应相关的同位素分馏、涉及的微生物过程以及黄铁矿对人类健康的影响等各种实验研究中得到了广泛研究。元素硫(S)是黄铁矿不完全氧化的常见产物。作为未计入反应产物的预先存在的硫杂质是实验不确定性的一个来源,附着的黄铁矿细颗粒及其氧化产物也是如此。因此,去除这些杂质是可取的。目前缺乏一种用于从黄铁矿中去除细颗粒和氧化杂质的可靠标准化预处理方案。在此,我们描述了一种通过在酸中冲洗,然后用温热丙酮反复超声处理来从黄铁矿表面去除硫和细颗粒的方案。

结果

我们的数据表明,未经处理的黄铁矿颗粒表面存在大量的硫,其中通过摩西描述的常用预处理方法(《地球化学与宇宙化学学报》51:1561 - 1571,1987)仅能去除高达60%的硫。相比之下,采用本文提出的方案进行预处理后,硫的去除效率达到了约98%。此外,新方法在去除附着的黄铁矿细颗粒及其氧化产物方面更有效,并且似乎不会影响颗粒尺寸分布、比表面积或颗粒表面性质。

结论

所建议的黄铁矿预处理方案在从黄铁矿颗粒中去除杂质方面更有效,并且为在各种环境条件下对黄铁矿转化进行动力学和同位素研究提供了多个优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a889/6110249/a8ea456d0433/12932_2014_Article_10_Fig1_HTML.jpg

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