Chemical Engineering and Environmental Technology Department, University Technology Institute of Asturias (IUTA), University of Oviedo, Campus of Gijón, 33203 Gijón, Spain.
Bioresour Technol. 2011 Sep;102(17):7845-9. doi: 10.1016/j.biortech.2011.05.047. Epub 2011 May 27.
Biogas production by co-digestion of cattle manure with crude glycerin obtained from biodiesel production was studied after pre-treatment of the cattle manure or mixtures of cattle manure with different amounts of added glycerin with ultrasound. Batch experiments with 1,750 mL of medium containing 1,760 g of screened cattle manure or mixtures of cattle manure (screened or ground) and 70-140 mL or crude glycerin were incubated under mesophilic and thermophilic condition in stirred tank reactors. Under mesophilic conditions, the addition of 4% glycerin to screened manure increased biogas production by up to 400%. Application of sonication (20 kHz, 0.1 kW, and 4 min) to a mixture of manure+4% glycerin increased production of biogas by up to 800% compared to untreated manure. The best results were obtained under thermophilic conditions using sonicated mixtures of ground cattle manure with 6% added glycerin (348 L methane/kg COD removed were obtained).
研究了在预处理牛粪或牛粪与不同量添加甘油的混合物后,通过共消化牛粪和生物柴油生产中获得的粗甘油来生产沼气。在搅拌罐反应器中,进行了含有 1750 毫升介质的批量实验,其中含有 1760 克筛选后的牛粪或牛粪(筛选或粉碎)与 70-140 毫升或粗甘油的混合物。在中温条件下,向筛选后的粪便中添加 4%的甘油可使沼气产量增加高达 400%。与未处理的粪便相比,将 20 kHz、0.1 kW 和 4 分钟的超声波应用于粪便+4%甘油的混合物可使沼气产量增加高达 800%。在使用添加了 6%甘油的粉碎的牛粪的超声混合物在高温条件下获得了最佳结果(获得了 348 L 甲烷/去除的 COD)。