有机溶剂
石油化工
生命周期评估
环境友好型
胶粘剂
制浆造纸工业
丹宁
环境科学
木质素
化石燃料
可再生能源
可再生资源
生产(经济)
生化工程
废物管理
工程类
材料科学
化学
环境工程
纳米技术
有机化学
食品科学
电气工程
经济
生物
图层(电子)
宏观经济学
生态学
作者
Ana Arias,Sara González‐García,Sandra González-Rodríguez,Gumersindo Feijóo,Marı́a Teresa Moreira
标识
DOI:10.1016/j.scitotenv.2020.140357
摘要
The wood panel industry requires the introduction of more environmental-friendly adhesives due to the strict current regulations on formaldehyde-based emissions. The purpose of this study was to environmentally analyse the production of four different bio-adhesives as alternatives to the most conventional fossil resins used in the production of wood panels. The bio-adhesives proposed for analysis derived from different available renewable biopolymers such as protein (soy) and lignin (Kraft and Organosolv), as well as tannin. The production systems were evaluated from a cradle-to-gate perspective using the Life Cycle Assessment methodology, with the aim of identifying critical parameters and comparing them with fossil substitutes. Inventory data of bio-adhesives were modelled at large scale from lab scale experiments and completed with literature reports. Our results showed that the soy-based and tannin based bio-adhesive had an overall better profile than fossil resins, identifying the production of polyacrylamide for the former, and the production of condensed tannin and glyoxal for the latter, as the main environmental hotspots. In contrast, further research is required on the use of lignins, specifically because of the electricity requirements in the lignin glyoxalation stage (a process required for the functionalization of lignin). Sensitivity analyses were conduced on these key parameters suggesting that there is room for improvement.This study provides useful information for researchers and policy-makers on where to focus their activities with the aim of making the future of bio-adhesives more technically and environmentally favourable.
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