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一种从含植硅体较少的沉积物和土壤中提取生物源二氧化硅(BSi)的快速简便方法。

A rapid and simple method for the extraction of biogenic silica (BSi) in phytolith-poor sediments and soils.

作者信息

Mazuy Arnaud, Ferrara Vincenza, Ekblom Anneli, Delhon Claire

机构信息

Université Côte d'Azur, CNRS, CEPAM, France.

Department of Archaeology and Ancient History, Uppsala University - Engelska Parken, Thunbergsvägen 3H, Uppsala 751 26, Sweden.

出版信息

MethodsX. 2024 Feb 24;12:102634. doi: 10.1016/j.mex.2024.102634. eCollection 2024 Jun.

Abstract

Phytoliths can be used to reconstruct human-nature dynamics over the long term (from decennial to centennial and millennial time scales) and may capture activities that cannot be reconstructed through other proxies. Phytoliths consist of fossil biogenic silica (BSi), formed in plant organs and then released into the soil with plant decay. When working in environmental contexts where the phytolith signal is highly diluted, as is the case in environments with a long history of land use, animal-plant interactions and open woody environments, the extraction of phytoliths remains a challenge. To address this issue, we developed an efficient method for the extraction of biogenic silica (BSi) from sediments and soils of contexts characterised by the long-term human and animal presence and disturbance, such as remnants of old agroforestry systems. The method we developed has a number of advantages, including: •An easy and time-efficient methodology to perform (with an overall processing time of 1.5/2 days for a batch of 16 samples)•An extraction method free from dangerous chemicals•A method amenable to non-experts without a prior background in lab extraction procedures.

摘要

植物硅酸体可用于长期(从十年到百年和千年时间尺度)重建人与自然的动态关系,并且可能捕捉到通过其他代理指标无法重建的活动。植物硅酸体由化石生物源二氧化硅(BSi)组成,形成于植物器官中,然后随着植物腐烂释放到土壤中。在植物硅酸体信号高度稀释的环境中开展工作时,例如在具有悠久土地利用历史、动植物相互作用以及开阔木本环境的地区,植物硅酸体的提取仍然是一项挑战。为解决这一问题,我们开发了一种从沉积物和土壤中提取生物源二氧化硅(BSi)的有效方法,这些沉积物和土壤的特点是长期存在人类和动物并受到干扰,例如古老农林复合系统的遗迹。我们开发的方法具有许多优点,包括:•一种易于操作且省时的方法(一批16个样品的总处理时间为1.5/2天)•一种不使用危险化学品的提取方法•一种适合没有实验室提取程序背景的非专业人员的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c8df/10907204/ea1d22144c2f/ga1.jpg

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