Engineering Laboratory for AgroBiomass Recycling & Valorizing, College of Engineering, China Agricultural University, Beijing 100083, China.
Int J Environ Res Public Health. 2022 Aug 23;19(17):10475. doi: 10.3390/ijerph191710475.
Torrefaction/carbonization integrated with steam gasification of agricultural biomass for gas production and tar reduction was not investigated. The aim of this study was to evaluate the influence of the torrefaction/carbonization severity on H-enriched syngas production and tar reduction during steam gasification of wheat straw (WS). The torrefaction/carbonization experiments were initially performed at 220-500 °C to examine the effect of pretreated temperature on the fuel properties of torrefied/carbonized WS. Then, the gasification temperature (700-900 °C) was optimized at 900 °C in terms of gas formation behaviors. Afterward, steam gasification of raw and torrefied/carbonized WS feedstocks was conducted. WS carbonized at 500 °C (WS-500) possessed the highest H concentration (54.21 vol%) and syngas purity (85.59%), while the maximum H/CO molar ratio (1.83), high carbon conversion efficiency (90.33 C%) and cold gas efficiency (109.24%) were observed for WS torrefied at 280 °C. Notably, the cumulative gas yield, H yield, and syngas yield respectively reached 102.68 mmol/g, 55.66 mmol/g, and 87.89 mmol/g from steam gasification of WS-500. In addition, the carbonized WS feedstocks, especially WS-500, revealed a lower tar content. Simply put, integrating torrefaction/carbonization with steam gasification provided a novel and effective route to manufacture H-enriched syngas with extremely low tar content from agricultural biomass.
尚未研究农业生物质的热解/碳化与蒸汽气化集成用于气体生产和降低焦油。本研究的目的是评估热解/碳化剧烈程度对小麦秸秆(WS)蒸汽气化过程中富 H 合成气生产和焦油降低的影响。首先在 220-500°C 下进行热解/碳化实验,以考察预处理温度对热解/碳化 WS 燃料特性的影响。然后在 900°C 下优化气化温度(700-900°C)以研究气体生成行为。之后,对原料和热解/碳化 WS 进行蒸汽气化。在 500°C 碳化的 WS(WS-500)具有最高的 H 浓度(54.21 体积%)和合成气纯度(85.59%),而在 280°C 热解的 WS 中观察到最大的 H/CO 摩尔比(1.83)、高碳转化率(90.33 C%)和冷煤气效率(109.24%)。值得注意的是,WS-500 的蒸汽气化分别产生了 102.68 mmol/g、55.66 mmol/g 和 87.89 mmol/g 的累积气体产率、H 产率和合成气产率。此外,碳化 WS 原料,特别是 WS-500,显示出较低的焦油含量。简而言之,将热解/碳化与蒸汽气化集成提供了一种从农业生物质制造富 H 合成气且焦油含量极低的新型有效途径。