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小麦秸秆与褐煤共热解和共水蒸气气化的协同效应。

Synergistic effect of mixing wheat straw and lignite in co-pyrolysis and steam co-gasification.

机构信息

Collaborative Innovation Center of Biomass Energy, Key Laboratory of New Materials and Facilities for Rural Renewable Energy of Agricultural Ministry, Henan International Joint Laboratory of Biomass Energy and Nanomaterials, Henan Agricultural University, Zhengzhou 450002, China.

Collaborative Innovation Center of Biomass Energy, Key Laboratory of New Materials and Facilities for Rural Renewable Energy of Agricultural Ministry, Henan International Joint Laboratory of Biomass Energy and Nanomaterials, Henan Agricultural University, Zhengzhou 450002, China.

出版信息

Bioresour Technol. 2020 Apr;302:122876. doi: 10.1016/j.biortech.2020.122876. Epub 2020 Jan 23.

Abstract

Co-pyrolysis and steam co-gasification of wheat straw (WS) and lignite coal (LC) were studied in a tube furnace between 700 °C and 900 °C. Synergistic effect in co-pyrolysis is not always apparent. However, with the introduction of HO vapor, synergetic effect is more obvious. Gas volume generated by co-gasification was higher than the prediction in all cases. Meanwhile, temperature played an important role and had a linear relationship with the excess gas volume when it exceeded 800 °C. These findings can be explained by that sufficient HO vapor could enhance synergy according raising catalytic effect of alkali and alkaline earth metals (AAEMs), promoting free radical generated and increasing reactivity of half-chars. Moreover, co-gasification of WS and LC with several blending ratios were studied at 850 °C. It found HO vapor could promote free radical formation stronger with higher ratio of WS during co-gasification, thus showing an enhancing effect on the reactivity of WS-derived chars.

摘要

在管式炉中,研究了小麦秸秆(WS)和褐煤(LC)在 700°C 至 900°C 之间的共热解和水蒸气共气化。共热解中的协同效应并不总是明显的。然而,随着 HO 蒸汽的引入,协同效应更加明显。在所有情况下,共气化产生的气体体积都高于预测值。同时,温度在 800°C 以上时起着重要作用,与过量气体体积呈线性关系。这些发现可以通过以下事实来解释:足够的 HO 蒸汽可以通过提高碱金属和碱土金属(AAEMs)的催化作用来增强协同作用,促进自由基的生成,并增加半焦的反应性。此外,在 850°C 下研究了 WS 和 LC 以不同比例混合的共气化。发现共气化过程中,HO 蒸汽在 WS 比例较高时可以更强地促进自由基的形成,从而对 WS 衍生半焦的反应性表现出增强作用。

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