Department of Wood Science, Nanjing Forestry University, Nanjing, Jiangsu, China.
School of Forest Sciences, University of Eastern Finland, Joensuu, North Karelia, Finland.
PLoS One. 2020 Mar 17;15(3):e0229907. doi: 10.1371/journal.pone.0229907. eCollection 2020.
To investigate the effects of urea-formaldehyde (UF) resin impregnation combined heat treatment (IMPG-HT) on the pyrolysis behavior of poplar wood, the chemical composition, pyrolysis characteristics, pyrolysis kinetics, and gaseous products released during pyrolysis of untreated (control), IMPG-HT, IMPG and HT woods were analyzed. The results demonstrate that IMPG-HT changes pyrolysis behavior of poplar wood significantly. Unlike the control and HT samples, the thermogravimetric / derivative thermogravimetric (TG/DTG) curves of IMPG wood shift toward lower temperature, and the shoulder on DTG curves weaken or even disappear. The maximum mass loss rate of IMPG-HT samples decreases, and carbon residual yield increases to 23% or more and activation energy (E) increases sharply after conversion rate (α) reaching 0.80. HT improves the thermal stability of IMPG wood, which is represented by the increase of decomposition temperature (Td) and DTG peak temperature (Tpeak) and the higher E value of IMPG-HT wood. For the pyrolysis gaseous products, IMPG-HT wood produces nitrogen-containing gases (HNCO and NH3) due to the presence of UF resin, but the amounts of these gases are less than that produced by IMPG wood because the heat treatment had removed part of N elements.
为了研究脲醛(UF)树脂浸渍联合热处理(IMPG-HT)对杨木热解行为的影响,分析了未处理(对照)、IMPG-HT、IMPG 和 HT 木材的化学成分、热解特性、热解动力学以及热解过程中释放的气态产物。结果表明,IMPG-HT 显著改变了杨木的热解行为。与对照和 HT 样品不同,IMPG 木材的热重/导数热重(TG/DTG)曲线向低温移动,DTG 曲线上的肩峰减弱甚至消失。IMPG-HT 样品的最大失重速率降低,碳残余产率增加到 23%或更高,转化率(α)达到 0.80 后,活化能(E)急剧增加。HT 通过提高热解温度(Td)和 DTG 峰温(Tpeak)以及提高 IMPG-HT 木材的 E 值来提高 IMPG 木材的热稳定性。对于热解气态产物,由于 UF 树脂的存在,IMPG-HT 木材会产生含氮气体(HNCO 和 NH3),但由于热处理去除了部分 N 元素,这些气体的量比 IMPG 木材产生的要少。