Polytechnic Department of Engineering and Architecture, University of Udine, Via Del Cotonificio 108, 33100, Udine, Italy; CAFC S.P.A., Viale Palmanova 192, 33100, Udine, Italy.
Polytechnic Department of Engineering and Architecture, University of Udine, Via Del Cotonificio 108, 33100, Udine, Italy.
J Environ Manage. 2019 Sep 15;246:557-563. doi: 10.1016/j.jenvman.2019.06.014. Epub 2019 Jun 12.
In Friuli-Venezia Giulia plain (North-East of Italy), a significant number of small diaries is present; this study was aimed at evaluating technical and economic feasibility of diffused anaerobic digestion implementation at dairy level. Different kinds of cheese whey were characterized, and biochemical methane potential tests were executed. Good methane yields (up to 437.3 NmL CH/g VS) were obtained, applying an inoculum-to-substrate ratio of 6. Ultrasound pre-treatment was investigated to evaluate an eventual increase in methane production and kinetics, varying applied ultrasonic energy: significant increases in methane yield (maximum +16.0%) and CH production kinetics (up to +46% increase after 3 days) were obtained at low ultrasonic energy of 251.4-693.7 Wh/kg VS, while at higher ultrasonic energy of 502.8-1387.5 Wh/kg VS no significant effect was visible. Energy consumption in selected dairies was analysed, to underline the impact of anaerobic digestion implementation on electric and thermal energy need, and it was concluded that through cheese whey anaerobic digestion it is possible to cover most of the dairies energy demand. Specific electric and thermal energy consumption were evaluated to be respectively in the range of 0.009-0.133 kWh/kg milk and 0.247-0.557 MJ/kg milk, while specific energy costs were calculated as 0.0079-0.0308 €/kg milk. For each analysed plant, digester volume to install and organic loading rate were hypothesized.
在意大利东北部的弗留利-威尼斯朱利亚平原,存在大量小型乳品厂。本研究旨在评估在乳品厂层面实施分散式厌氧消化的技术和经济可行性。对不同种类的奶酪乳清进行了特性分析,并进行了生物甲烷潜力测试。采用 6 的接种物与底物比,获得了良好的甲烷产率(高达 437.3 NmL CH/g VS)。研究了超声预处理,以评估其对甲烷产量和动力学的潜在影响,改变施加的超声能:在低超声能 251.4-693.7 Wh/kg VS 下,甲烷产率(最大增加 16.0%)和 CH 生成动力学(3 天后增加高达 46%)显著增加,而在较高的超声能 502.8-1387.5 Wh/kg VS 下,未见明显效果。分析了选定乳品厂的能源消耗情况,以强调实施厌氧消化对电能和热能需求的影响,并得出结论,通过奶酪乳清的厌氧消化,可以满足大多数乳品厂的能源需求。评估了特定的电能和热能消耗,分别在 0.009-0.133 kWh/kg 牛奶和 0.247-0.557 MJ/kg 牛奶的范围内,而特定的能源成本计算为 0.0079-0.0308 €/kg 牛奶。对于每个分析的工厂,假设了要安装的消化器体积和有机负荷率。