Department of Environment Engineering, Faculty of Geoengineering, University of Warmia and Mazury in Olsztyn, 10-720, Olsztyn, Poland.
Department of Water Protection Engineering and Environmental Microbiology, Faculty of Geoengineering, University of Warmia and Mazury in Olsztyn, 10-720, Olsztyn, Poland.
Environ Sci Pollut Res Int. 2021 Sep;28(35):49314-49323. doi: 10.1007/s11356-021-14095-y. Epub 2021 May 2.
Sweet whey is a waste product from the dairy industry that is difficult to manage. High hopes are fostered regarding its neutralization in the methane fermentation. An economically viable alternative to a typical mesophilic fermentation seems to be the process involving psychrophilic bacteria isolated from the natural environment. This study aimed to determine the feasibility of exploiting psychrophilic microorganisms in methane fermentation of sweet whey. The experiments were carried out under dynamic conditions using Bio Flo 310 type flow-through anaerobic bioreactors. The temperature inside the reactors was 10 ± 1 °C. The HRT was 20 days and the OLR was 0.2 g COD/dm/day. The study yielded 132.7 ± 13.8 mL biogas/g. The CH concentration in the biogas was 32.7 ± 1.6%, that of H was 8.7 ± 4.7%, whereas that of CO reached 58.42 ± 2.47%. Other gases were also determined, though in lower concentrations. The COD and BOD removal efficiency reached 21.4 ± 0.6% and 17.6 ± 1.0%, respectively.
甜乳清是乳制品工业的一种难以处理的废物。人们对其在甲烷发酵中的中和作用寄予厚望。从自然环境中分离出的嗜冷细菌参与的过程似乎是一种比典型的中温发酵更具经济可行性的替代方法。本研究旨在确定利用嗜冷微生物进行甜乳清甲烷发酵的可行性。实验在使用 BioFlo310 型流动厌氧生物反应器的动态条件下进行。反应器内的温度为 10±1°C。HRT 为 20 天,OLR 为 0.2gCOD/dm/day。研究得到 132.7±13.8mL 沼气/g。沼气中 CH4 的浓度为 32.7±1.6%,H2 的浓度为 8.7±4.7%,而 CO 的浓度达到 58.42±2.47%。还确定了其他气体,但浓度较低。COD 和 BOD 的去除效率分别达到 21.4±0.6%和 17.6±1.0%。