Energy Research Laboratory of Mechanical Engineering (ERLoME), Faculty of Engineering KPS, Kasetsart University, Khamphengsaen, Nakornpathom, Thailand.
Bioresour Technol. 2011 Apr;102(7):4834-40. doi: 10.1016/j.biortech.2010.12.024. Epub 2010 Dec 13.
This study conducted experiments on three different downdraft gasification approaches: single stage, conventional two-stage, and an innovative two-stage air and premixed air/gas supply approach. The innovative two-stage approach has two nozzle locations, one for air supply at combustion zone and the other located at the pyrolysis zone for supplying the premixed gas (air and producer gas). The producer gas is partially bypassed to mix with air and supplied to burn at the pyrolysis zone. The result shows that producer gas quality generated by the innovative two-stage approach improved as compared to conventional two-stage. The higher heating value (HHV) increased from 5.4 to 6.5 MJ/Nm(3). Tar content in producer gas reduced to less than 45 mg/Nm(3). With this approach, gas can be fed directly to an internal combustion engine. Furthermore, the gasification thermal efficiency also improved by approximately 14%. The approach gave double benefits on gas qualities and energy savings.
单级、传统两级和创新的两级空气和预混空气/气体供应方法。创新的两级方法有两个喷嘴位置,一个用于燃烧区的空气供应,另一个位于热解区,用于供应预混气(空气和煤气)。部分煤气被旁路以与空气混合,并供应到热解区燃烧。结果表明,与传统两级相比,创新的两级方法产生的煤气质量得到了改善。高热值(HHV)从 5.4 增加到 6.5MJ/Nm(3)。煤气中的焦油含量降低到 45mg/Nm(3)以下。采用这种方法,可以将气体直接供给内燃机。此外,气化热效率也提高了约 14%。这种方法在气体质量和节能方面都带来了双重效益。