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Functional Groups Determine Biochar Properties (pH and EC) as Studied by Two-Dimensional 13C NMR Correlation Spectroscopy

机译:二维13C NMR关联光谱法研究官能团确定生物炭特性(pH和EC)

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摘要

While the properties of biochar are closely related to its functional groups, it is unclear under what conditions biochar develops its properties. In this study, two-dimensional (2D) 13C nuclear magnetic resonance (NMR) correlation spectroscopy was for the first time applied to investigate the development of functional groups and establish their relationship with biochar properties. The results showed that the agricultural biomass carbonized to biochars was a dehydroxylation/dehydrogenation and aromatization process, mainly involving the cleavage of O-alkylated carbons and anomeric O-C-O carbons in addition to the production of fused-ring aromatic structures and aromatic C-O groups. With increasing charring temperature, the mass cleavage of O-alkylated groups and anomeric O-C-O carbons occurred prior to the production of fused-ring aromatic structures. The regression analysis between functional groups and biochar properties (pH and electrical conductivity) further demonstrated that the pH and electrical conductivity of rice straw derived biochars were mainly determined by fused-ring aromatic structures and anomeric O-C-O carbons, but the pH of rice bran derived biochars was determined by both fused-ring aromatic structures and aliphatic O-alkylated (HCOH) carbons. In summary, this work suggests a novel tool for characterising the development of functional groups in biochars.
机译:尽管生物炭的性质与其功能基团密切相关,但尚不清楚在什么条件下生物炭会发展其性质。在这项研究中,二维(sup> 13 C核磁共振(NMR)相关光谱是第一次用于研究官能团的发展,并建立它们与生物炭特性的关系。结果表明,碳化为生物炭的农业生物质是一个脱羟基/脱氢和芳构化过程,除产生稠环芳族结构和芳族C-O基团外,还主要涉及O-烷基化碳和异头O-C-O碳的裂解。随着炭化温度的升高,O-烷基化基团和端基O-C-O碳的质量裂解在产生稠环芳族结构之前发生。官能团与生物炭特性(pH和电导率)之间的回归分析进一步表明,稻草衍生生物炭的pH和电导率主要由稠环芳族结构和异头OCO碳确定,而稻糠衍生生物炭的pH由稠环芳族结构和脂族O-烷基化(HCOH)碳确定。总之,这项工作提出了一种新颖的工具,用于表征生物炭中官能团的发展。

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