首页> 外文期刊>Science of the total environment >Morphological and chemical properties of fibrous antigorite from lateritic deposit of New Caledonia in view of hazard assessment
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Morphological and chemical properties of fibrous antigorite from lateritic deposit of New Caledonia in view of hazard assessment

机译:危害评估危害评估中新喀里多尼亚岩石床纤维抗纤维形态和化学性质

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摘要

Exposure to natural occurrences of asbestos (NOA) and other potentially hazardous elongated mineral particles (EMPs) may pose a risk to human health and the environment. Weathering forces and anthropic activities may alter the cohesion of NOA-bearing outcrops and disperse EMPs in air, water, and soil. The current paradigm for fibre toxicity indicates that morphology and crystal chemistry are key parameters in determining the toxicolog-ical properties of a mineral. This work aims to assess and discuss the impact of sub-tropical supergene alteration and weathering on the morphology and the chemical composition of antigorite, a non-regulated serpentine that shares chemical composition with asbestos chrysotile. Antigorite naturally occurring in lateritic Ni ores of New Caledonia exhibits a unique asbestos-like habit at the microscopic scale. Standardized mechanical stress was performed on antigorites, selected to represent different cohesion states. The specimens produced a relevant amount of respirable fibres, between 32 and 42% (WHO counting criteria). PCA on chemical data and ternary diagrams show that all antigorites exhibit a similar Si content (from 2.05 to 2.09 a.f.u.) but were mainly differentiated by Mg and Ni content, ranging from 2.66 to 2.80 and 0.00 to 0.09 a.f.u., respectively. Si content in Caledonian antigorite is higher than Si in non-lateritic samples. This suggests that a main alteration process occurred after the obduction of the ultramafic protolith. The supergene alteration determined the Ni enrichment of lateritic deposits and is likely the main cause of the mineral alteration of antigorite under sub-tropical environments. Further, weathering processes prompt the disaggregation of altered antigorite causing the generation and dispersion of respirable, potentially hazardous, antigorite fibres in the environment.
机译:暴露于石棉(NOA)和其他潜在危险的细长矿物颗粒(釉基质蛋白)的自然现象可能对人体健康和环境的风险。风化力量和人类活动可能改变NOA轴承露头和在空气,水和土壤环境管理计划分散的凝聚力。对于纤维毒性的当前范例表明,形态和晶体化学是在确定矿物的toxicolog-iCal属性的关键参数。这项工作的目的是评估并讨论亚热带次生蚀变和风化的形态和叶蛇纹石的化学成分,一个非管制蜿蜒的影响,这股温石棉的化学成分。叶蛇纹石在新喀里多尼亚的镍红土矿自然发生表现出微观尺度独特的石棉状习惯。物上进行叶蛇纹石标准化的机械应力,选择表示不同的粘结状态。试样产生的32和42%(WHO计数条件)之间可吸入纤维的相关量。 PCA上化学数据和三元图显示所有叶蛇纹石表现出类似的Si含量(从2.05到2.09 a.f.u.),但主要由Mg和Ni的含量差异,范围从2.66到2.80,并且分别0.00〜0.09 a.f.u.。在喀里多尼亚叶蛇纹石Si含量为非红土样品中除Si更高。这表明,一个主要改变过程中的超镁铁原岩的仰冲后发生。表生改造确定的红土矿床的镍富集,并有可能叶蛇纹石下亚热带环境的矿物蚀变的主要原因。此外,风化过程提示改变的叶蛇纹石的造成环境吸入,潜在危险,叶蛇纹石纤维的产生和分散体中的解聚。

著录项

  • 来源
    《Science of the total environment》 |2021年第10期|146185.1-146185.13|共13页
  • 作者单位

    'G. Scansetti' Interdepartmental Centre for Studies on Asbestos and Other Toxic Particulates University of Torino Via Pietro Giuria 7 1-10125 Torino Italy Department of Chemistry University of Torino Via Pietro Giuria 7 1-10125 Torino Italy;

    Institute of Exact and Applied Sciences Universite de la Nouvelle Caledonie Campus de Nouville BP R4-98851 Noumea Cedex New Caledonia France;

    Department of Chemistry Life Sciences and Environmental Sustainability University of Parma Parco Area delle Scienze J57/A I-43124 Parma Italy;

    'G. Scansetti' Interdepartmental Centre for Studies on Asbestos and Other Toxic Particulates University of Torino Via Pietro Giuria 7 1-10125 Torino Italy Department of Earth Sciences University of Torino Via Valperga Caluso 35 I-10125 Torino Italy;

    'G. Scansetti' Interdepartmental Centre for Studies on Asbestos and Other Toxic Particulates University of Torino Via Pietro Giuria 7 1-10125 Torino Italy Department of Chemistry University of Torino Via Pietro Giuria 7 1-10125 Torino Italy;

    'G. Scansetti' Interdepartmental Centre for Studies on Asbestos and Other Toxic Particulates University of Torino Via Pietro Giuria 7 1-10125 Torino Italy Department of Chemistry University of Torino Via Pietro Giuria 7 1-10125 Torino Italy;

    'G. Scansetti' Interdepartmental Centre for Studies on Asbestos and Other Toxic Particulates University of Torino Via Pietro Giuria 7 1-10125 Torino Italy Department of Chemistry University of Torino Via Pietro Giuria 7 1-10125 Torino Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Fibrous antigorite; NOA; EMP; Supergene alteration; Weathering; Asbestos;

    机译:纤维抗纤维;noa;EMP;超级改变;风化;石棉;

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