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HYDROGEN PRODUCTION FROM SEWAGE SLUDGE BY STEAM GASIFICATION

机译:蒸汽气化从污水污泥中制氢

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Hydrogen from biomass steam gasification (SG) is a net zero green house gas emission fuel. Sewage sludge (SS) has a potential to produce hydrogen-rich gaseous fuel. Therefore, hydrogen production from sewage sludge may be a solution for cleaner fuel and the sewage sludge disposal problem. This paper aims to develop a computer model for SSSG by using Gibbs free energy minimization (GFEM) method. The computer model developed was used to determine the hydrogen production limits for various steam to biomass ratios (S/Bs). Results from the model showed that for equivalent ratios (Ers) 0 to 0.5 hydrogen yield ranges from 135 to 70 g/kg of dry ash free (daf) SS. It was found that the higher the S/B, the higher the hydrogen yield is, however, heat energy requirement increases with S/B. Results from the simulations showed that above ER 0.48, the SSSG can operate without external heat input and the hydrogen production is about 75 g/kg of daf SS. It should be noted that this optimum ER would change depending on the amount of heat loss and other operating parameters.
机译:生物质蒸汽气化(SG)产生的氢气是净零温室气体排放燃料。污水污泥(SS)具有生产富氢气态燃料的潜力。因此,从污水污泥中制氢可能是清洁燃料和污水污泥处置问题的解决方案。本文旨在使用吉布斯自由能最小化(GFEM)方法开发SSSG的计算机模型。使用开发的计算机模型来确定各种蒸汽与生物质之比(S / Bs)的制氢极限。该模型的结果表明,当量比(Ers)为0到0.5时,氢气产量为135到70 g / kg干无灰(daf)SS。发现S / B越高,氢产率越高,但是,随着S / B热能需求增加。模拟结果表明,在ER 0.48以上,SSSG可以在没有外部热量输入的情况下运行,并且氢气产量约为75 g / kg的daf SS。应当注意的是,该最佳ER将根据热损失量和其他操作参数而改变。

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