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SUPERCRITICAL WATER TREATMENT OF BIOMASS FOR ENERGY AND MATERIAL RECOVERY

机译:能源和材料回收的生物质超临界水处理

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Supercritical water liquefaction and gasification is reviewed with the introduction of some recent findings by the authors. Supercritical water gasification is suitable for recovery of energy from wet biomass while supercritical water liquefaction opens the door to effective treatment of biomass species in terms of material recovery. Cellulose, one of the main components of biomass, is completely dissolved in supercritical water. Once dissolved, reaction of cellulose can take place swiftly by hydrolysis and pyrolysis. The hydrolysis reaction, otherwise slower than pyrolysis due to the mass transfer limitation, is faster than decomposition in supercritical water, and a possibility of efficient glucose recovery has been shown. Once dissolved, super saturation is kept when the solution is cooled down, and swift hydrolysis by enzyme is also possible. Lignin can be also converted into specialty chemicals by using supercritical cresol/ water mixture as a solvent. Dissolution of cellulose also enables efficient gasification of biomass. Complete gasification of biomass has been realized with production of combustible gas including hydrogen, carbon monoxide, and methane.
机译:作者介绍了一些最近的发现,对超临界水液化和气化进行了综述。超临界水气化适合从湿生物质中回收能量,而超临界水液化为材料回收方面的有效处理生物质种类打开了大门。纤维素是生物质的主要成分之一,完全溶解在超临界水中。一旦溶解,纤维素的反应可以通过水解和热解迅速发生。水解反应,否则由于传质限制而比热解慢,它比在超临界水中分解要快,并且已经显示出有效回收葡萄糖的可能性。溶解后,当溶液冷却时会保持超饱和状态,并且也可以通过酶快速水解。通过使用超临界甲酚/水混合物作为溶剂,木质素也可以转化为特种化学品。纤维素的溶解还能够使生物质有效气化。通过产生包括氢气,一氧化碳和甲烷在内的可燃气体,已经实现了生物质的完全气化。

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