Enerxyl, 16 rue de la gare, 22130 Landébia, France; Cirad, UPR 114 BioWooEB, 73 Avenue J-F Breton, 34398 Montpellier Cedex 5, France; Institut des Sciences Chimiques de Rennes, UMR 6226 CNRS-Université de Rennes 1-Ecole Nationale Supérieure de Chimie de Rennes, 11 allée de Beaulieu, CS 50837, F-35708 Rennes, France.
Cirad, UPR 114 BioWooEB, 73 Avenue J-F Breton, 34398 Montpellier Cedex 5, France.
Waste Manag. 2019 Feb 15;85:106-120. doi: 10.1016/j.wasman.2018.12.023. Epub 2018 Dec 24.
This study aims to qualify air gasification performances of Solid Recovered Fuels (SRF) in a downdraft fixed bed gasifier. Five fuels have been studied: Wood, SRF wood, and three different mixtures of SRF wood and 20 %w of either SRF tire (mix A), SRF plastics (mix B) or SRF sewage sludge (mix C). The tests were carried out in a pilot scale reactor in a batch-fed mode using a fuel mass ranging from 5 to 8 kg, and an air inlet flow of 170-180 L/min, which led to an Equivalence Ratio (ER) ranging between 0.20 and 0.29. Considering Poplar wood as a reference, we observed a similar syngas quality for SRF wood, but SRF mixes led to a slight decrease of H and CO contents along with an increase of CO, CH, CH and CH contents. However syngas Low Heating Value (LHV) remained close and ranged between 4.9 and 5.4 MJ/m which led to a Cold Gas Efficiency (CGE) ranging from 38 to 52%. Wood and SRF wood had a similar condensate content (159-202 g/m), but adding 20 %w of non-woody fuel led to an increased condensate content up to 369 g/m for mix A and 411 g/m for mix C. Tar analyses confirmed the similarity of Wood, SRF wood and mix C in air gasification, but highlighted large increases in aromatics and Polycyclic Aromatic Hydrocarbon (PAH) contents when adding 20 %w of tire. This study confirms the ability of downdraft gasifier to handle non-woody fuels, with an upper limit of 20%w share in a wood-based fuel.
本研究旨在确定固体回收燃料(SRF)在逆流固定床气化器中的空气气化性能。研究了五种燃料:木材、SRF 木材以及 SRF 木材与 20%w 的 SRF 轮胎(混合物 A)、SRF 塑料(混合物 B)或 SRF 污水污泥(混合物 C)的三种不同混合物。测试在批量进料模式下在中试规模反应器中进行,使用 5 至 8kg 的燃料质量和 170-180L/min 的空气入口流量,导致当量比(ER)在 0.20 和 0.29 之间。考虑到杨木作为参考,我们观察到 SRF 木材的类似合成气质量,但 SRF 混合物导致 H 和 CO 含量略有下降,同时 CO、CH、CH 和 CH 含量增加。然而,合成气低热值(LHV)保持接近,范围在 4.9 和 5.4MJ/m 之间,导致冷煤气效率(CGE)在 38%至 52%之间。木材和 SRF 木材的冷凝物含量相似(159-202g/m),但添加 20%w 的非木质燃料会导致冷凝物含量增加,混合物 A 达到 369g/m,混合物 C 达到 411g/m。焦油分析证实了木材、SRF 木材和混合物 C 在空气气化中的相似性,但当添加 20%w 的轮胎时,芳烃和多环芳烃(PAH)含量大幅增加。这项研究证实了逆流气化器处理非木质燃料的能力,在木质燃料中最高可添加 20%w 的份额。