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生物炭碱度的特性描述与定量分析。

Characterization and quantification of biochar alkalinity.

机构信息

Department of Agronomy, Iowa State University, Ames, IA 50011, United States.

Department of Agronomy, Iowa State University, Ames, IA 50011, United States.

出版信息

Chemosphere. 2017 Jan;167:367-373. doi: 10.1016/j.chemosphere.2016.09.151. Epub 2016 Oct 12.

Abstract

Lack of knowledge regarding the nature of biochar alkalis has hindered understanding of pH-sensitive biochar-soil interactions. Here we investigate the nature of biochar alkalinity and present a cohesive suite of methods for its quantification. Biochars produced from cellulose, corn stover and wood feedstocks had significant low-pK organic structural (0.03-0.34 meq g), other organic (0-0.92 meq g), carbonate (0.02-1.5 meq g), and other inorganic (0-0.26 meq g) alkalinities. All four categories of biochar alkalinity contributed to total biochar alkalinity and are therefore relevant to pH-sensitive soil processes. Total biochar alkalinity was strongly correlated with base cation concentration, but biochar alkalinity was not a simple function of elemental composition, soluble ash, fixed carbon, or volatile matter content. More research is needed to characterize soluble biochar alkalis other than carbonates and to establish predictive relationships among biochar production parameters and the composition of biochar alkalis.

摘要

由于缺乏对生物炭堿性本质的认识,阻碍了对 pH 敏感的生物炭-土壤相互作用的理解。在这里,我们研究了生物炭堿性的本质,并提出了一套连贯的定量方法。由纤维素、玉米秸秆和木材原料制成的生物炭具有显著的低 pK 有机结构(0.03-0.34 meq g)、其他有机(0-0.92 meq g)、碳酸盐(0.02-1.5 meq g)和其他无机(0-0.26 meq g)堿度。生物炭堿度的这四个类别都有助于总生物炭堿度,因此与 pH 敏感的土壤过程相关。总生物炭堿度与堿性阳离子浓度密切相关,但生物炭堿度不是元素组成、可溶灰分、固定碳或挥发分含量的简单函数。需要进一步研究除碳酸盐以外的可溶性生物炭堿,以及在生物炭生产参数和生物炭堿组成之间建立预测关系。

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