Institute of Environmental Engineering, Czestochowa University of Technology, Brzeznicka St. 60 A, 42-200 Czestochowa, Poland.
Institute of Environmental Engineering, Czestochowa University of Technology, Brzeznicka St. 60 A, 42-200 Czestochowa, Poland.
Environ Res. 2017 May;155:249-260. doi: 10.1016/j.envres.2017.02.007. Epub 2017 Mar 10.
The feasibility of simultaneous treatment of multiple wastes via co-digestion was studied in semi-continuous mode at mesophilic conditions. The obtained results indicated that sewage sludge, organic fraction of municipal waste (OFMSW) and grease trap sludge (GTS) possess complementary properties that can be combined for successful anaerobic digestion. During the co-digestion period, methane yield and VS removal were significantly higher in comparison to digestion of sewage sludge alone. Addition of GTS to digesters treating sewage sludge resulted in increased VS removal and methane yield up to 13% (from 50 to 56.4) and 52% (from 300 to 456,547m/Mg VS), respectively. While the use of OFMSW as the next co-substrate in the feedstock, can boost methane yield and VS removal up to 82% (300-547m/Mg VS) and approximately 29% (from 50% to 64.7%), respectively. Moreover, the results of the present laboratory study revealed that the addition of co-substrates to the feedstock had a significant influence on biogas composition. During the experiment methane content in biogas ranged from 67% to 69%. While, the concentration of LCFAs was increasing with the gradual increase in the share of co-substrates in the mixtures, wherein only the oleic acid was higher than some inhibition concentrations which have been reported in the literature. However, it did not significantly affect the efficiency of the co-digestion process.
在中温条件下,采用半连续模式研究了通过共消化同时处理多种废物的可行性。研究结果表明,污水污泥、城市废物的有机部分(OFMSW)和油脂阱污泥(GTS)具有互补特性,可以成功地进行厌氧消化。在共消化期间,与单独消化污水污泥相比,甲烷产量和 VS 去除率显著更高。将 GTS 添加到处理污水污泥的消化器中,可将 VS 去除率和甲烷产量分别提高 13%(从 50 提高到 56.4)和 52%(从 300 提高到 456.547m/Mg VS)。而将 OFMSW 用作进料中的下一个共底物,可以将甲烷产量和 VS 去除率分别提高 82%(300-547m/Mg VS)和大约 29%(从 50%提高到 64.7%)。此外,本实验室研究的结果表明,共底物的添加对沼气成分有显著影响。在实验过程中,沼气中的甲烷含量在 67%至 69%之间。而随着共底物在混合物中份额的逐渐增加,LCFAs 的浓度也在增加,其中只有油酸的浓度高于文献中报道的一些抑制浓度。但是,它并没有显著影响共消化过程的效率。