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热解预处理对生物质基燃料结构特征和燃烧特性的影响。

Effects of Torrefaction Pretreatment on the Structural Features and Combustion Characteristics of Biomass-Based Fuel.

机构信息

School of Chemical Engineering and Technology, Hebei University of Technology, Tianjin 300401, China.

School of Energy and Power Engineering, Northeast Electric Power University, Jilin 132012, China.

出版信息

Molecules. 2023 Jun 13;28(12):4732. doi: 10.3390/molecules28124732.

Abstract

Wheat straw, a typical agricultural solid waste, was employed to clarify the effects of torrefaction on the structural features and combustion reactivity of biomass. Two typical torrefaction temperatures (543 K and 573 K), four atmospheres (argon, 6 vol.% O, dry flue gas and raw flue gas) were selected. The elemental distribution, compositional variation, surface physicochemical structure and combustion reactivity of each sample were identified using elemental analysis, XPS, N adsorption, TGA and FOW methods. Oxidative torrefaction tended to optimize the fuel quality of biomass effectively, and the enhancement of torrefaction severity improved the fuel quality of wheat straw. The O, CO and HO in flue gas could synergistically enhance the desorption of hydrophilic structures during oxidative torrefaction process, especially at high temperatures. Meanwhile, the variations in microstructure of wheat straw promoted the conversion of N-A into edge nitrogen structures (N-5 and N-6), especially N-5, which is a precursor of HCN. Additionally, mild surface oxidation tended to promote the generation of some new oxygen-containing functionalities with high reactivity on the surface of wheat straw particles after undergoing oxidative torrefaction pretreatment. Due to the removal of hemicellulose and cellulose from wheat straw particles and the generation of new functional groups on the particle surfaces, the ignition temperature of each torrefied sample expressed an increasing tendency, while the Ea clearly decreased. According to the results obtained from this research, it could be concluded that torrefaction conducted in a raw flue gas atmosphere at 573 K would improve the fuel quality and reactivity of wheat straw most significantly.

摘要

麦秆是一种典型的农业固体废物,本研究利用其阐明了热解处理对生物质结构特征和燃烧反应性的影响。选择了两种典型的热解温度(543 K 和 573 K)和四种气氛(氩气、6 vol.% O、干烟气和原烟气)。采用元素分析、XPS、N 吸附、TGA 和 FOW 等方法对各样品的元素分布、组成变化、表面物理化学结构和燃烧反应性进行了研究。氧化热解可有效优化生物质的燃料品质,且随着热解程度的增加,小麦秸秆的燃料品质得到改善。烟气中的 O、CO 和 HO 可以协同促进氧化热解过程中亲水性结构的解吸,尤其是在高温下。同时,小麦秸秆的微观结构变化促进了 N-A 向边缘氮结构(N-5 和 N-6)的转化,特别是 N-5,它是 HCN 的前体。此外,温和的表面氧化有利于在经过氧化热解预处理后,在小麦秸秆颗粒表面生成一些具有高反应性的新含氧官能团。由于麦秆颗粒中半纤维素和纤维素的去除以及颗粒表面新官能团的生成,每个热解样品的着火温度呈现出升高的趋势,而 Ea 则明显降低。根据本研究的结果可以得出结论,在 573 K 的原烟气气氛中进行热解处理,可以显著提高小麦秸秆的燃料品质和反应性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/624c/10305532/ec88c1e90d81/molecules-28-04732-g001a.jpg

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