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Biogas Production from Physicochemically Pretreated Grass Lawn Waste: Comparison of Different Process Schemes

机译:物理化学预处理草皮废弃物生产沼气:不同工艺方案的比较

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摘要

Various pretreatment methods, such as thermal, alkaline and acid, were applied on grass lawn (GL) waste and the effect of each pretreatment method on the Biochemical Methane Potential was evaluated for two options, namely using the whole slurry resulting from pretreatment or the separate solid and liquid fractions obtained. In addition, the effect of each pretreatment on carbohydrate solubilization and lignocellulossic content fractionation (to cellulose, hemicellulose, lignin) was also evaluated. The experimental results showed that the methane yield was enhanced with alkaline pretreatment and, the higher the NaOH concentration (20 g/100 gTotal Solids (TS)), the higher was the methane yield observed (427.07 L CH /kg Volatile Solids (VS), which was almost 25.7% higher than the BMP of the untreated GL). Comparing the BMP obtained under the two options, i.e., that of the whole pretreatment slurry with the sum of the BMPs of both fractions, it was found that direct anaerobic digestion without separation of the pretreated biomass was favored, in almost all cases. A preliminary energy balance and economic assessment indicated that the process could be sustainable, leading to a positive net heat energy only when using a more concentrated pretreated slurry (i.e., 20% organic loading), or when applying NaOH pretreatment at a lower chemical loading.
机译:在草皮(GL)废料上使用了各种预处理方法,例如热,碱和酸,并评估了两种预处理方法对生化甲烷潜力的影响,有两种选择,即使用预处理产生的全部浆料或单独使用获得固体和液体部分。此外,还评估了每种预处理对碳水化合物溶解和木质纤维素含量分级(纤维素,半纤维素,木质素)的影响。实验结果表明,碱预处理可提高甲烷产率,NaOH浓度越高(20 g / 100 g总固体(TS)),观察到的甲烷产率就越高(427.07 L CH / kg挥发性固体(VS)) ,比未处理的GL的BMP高出近25.7%)。将两种方法得到的BMP,即整个预处理浆液中的BMP与两种馏分的BMP的总和进行比较,发现几乎在所有情况下都有利于直接厌氧消化而不分离预处理的生物质。初步的能量平衡和经济评估表明,该过程可能是可持续的,仅当使用浓度更高的预处理浆料(即20%的有机物负载)或以较低的化学负载进行NaOH预处理时,才能产生正的净热能。

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