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Characterization Quantification and Compound-specific Isotopic Analysis of Pyrogenic Carbon Using Benzene Polycarboxylic Acids (BPCA)

机译:使用苯多元羧酸(BPCA)进行热解碳的表征定量和化合物特异性同位素分析

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摘要

Fire-derived, pyrogenic carbon (PyC), sometimes called black carbon (BC), is the carbonaceous solid residue of biomass and fossil fuel combustion, such as char and soot. PyC is ubiquitous in the environment due to its long persistence, and its abundance might even increase with the projected increase in global wildfire activity and the continued burning of fossil fuel. PyC is also increasingly produced from the industrial pyrolysis of organic wastes, which yields charred soil amendments (biochar). Moreover, the emergence of nanotechnology may also result in the release of PyC-like compounds to the environment. It is thus a high priority to reliably detect, characterize and quantify these charred materials in order to investigate their environmental properties and to understand their role in the carbon cycle.Here, we present the benzene polycarboxylic acid (BPCA) method, which allows the simultaneous assessment of PyC's characteristics, quantity and isotopic composition (13C and 14C) on a molecular level. The method is applicable to a very wide range of environmental sample materials and detects PyC over a broad range of the combustion continuum, i.e., it is sensitive to slightly charred biomass as well as high temperature chars and soot. The BPCA protocol presented here is simple to employ, highly reproducible, as well as easily extendable and modifiable to specific requirements. It thus provides a versatile tool for the investigation of PyC in various disciplines, ranging from archeology and environmental forensics to biochar and carbon cycling research.
机译:源自火的热解碳(PyC),有时也称为黑碳(BC),是生物质和化石燃料燃烧(如炭和烟灰)中的碳质固体残留物。由于PyC的持久性,它在环境中无处不在,随着全球野火活动的预计增加以及化石燃料的持续燃烧,PyC的丰度甚至可能增加。有机废物的工业热解也越来越多地产生PyC,从而产生烧焦的土壤改良剂(生物炭)。此外,纳米技术的出现还可能导致类似PyC的化合物释放到环境中。因此,可靠地检测,表征和量化这些烧焦的材料,以调查其环境特性并了解其在碳循环中的作用是当务之急。在这里,我们介绍了苯多羧酸(BPCA)方法,该方法可以同时进行在分子水平上评估PyC的特征,数量和同位素组成( 13 C和 14 C)。该方法适用于非常广泛的环境样品材料,并且可以在很宽的燃烧连续性范围内检测PyC,即它对微焦的生物质以及高温的焦炭和烟灰敏感。此处介绍的BPCA协议易于使用,可高度复制,并且易于扩展和修改为特定要求。因此,它为从考古学和环境取证学到生物炭和碳循环研究等各个领域的PyC研究提供了一种多功能的工具。

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