Department of Civil, Construction, and Environmental Engineering, North Carolina State University, Raleigh, NC 27695-7908, USA.
Water Res. 2013 Jul 1;47(11):3835-44. doi: 10.1016/j.watres.2013.04.003. Epub 2013 Apr 18.
Anaerobic co-digestion of thickened waste activated sludge (TWAS) with grease interceptor waste (GIW) from a food service establishment was conducted in lab scale semi-continuous digesters. GIW included the entire contents of the grease interceptor (GI) including fat, oil, and grease (FOG), food residuals, and associated wastewater. GIW was added in step increases to identify the maximum methane production and the corresponding threshold input of GIW that led to inhibition of methanogenesis. The experiment was performed at mesophilic conditions (37 °C) with a solids retention time (SRT) of 20 days. The highest GIW addition rate achieved without digester failure was 20% (v/v), or 65.5% (w/w) of volatile solids (VS) added, enhancing the methane yield from 0.180 to 0.752 m3(CH4)/kg(VS added), biogas production from 2.2 × 10(-3) to 1.4 × 10(-2) m(3)/d, and methane content from 60.2% to 70.1%. The methane yield of 0.752 m3(CH4)/kg(VS added) is the highest value reported to date for co-digestion of GIW. Stepwise increases in co-substrate addition led to better microbial acclimation and reduced the GIW inhibitory effect. The limit for GIW addition leading to an inhibited digestion process was identified to be between 20 and 40% (v/v) or 65.5 and 83.5% (w/w) of VS added. The results show the significant benefits of anaerobic co-digestion of GIW and the positive impacts of gradual addition of GIW.
采用实验室规模半连续消化器对来自餐饮场所的增稠剩余活性污泥(TWAS)与油脂截留废物(GIW)进行了厌氧共消化。GIW 包含油脂截留器(GI)中的所有内容,包括脂肪、油和油脂(FOG)、食物残渣和相关废水。逐步增加 GIW 的添加量,以确定最大甲烷产量和导致甲烷生成抑制的相应 GIW 输入阈值。实验在中温条件(37°C)下进行,固体停留时间(SRT)为 20 天。在不使消化器失效的情况下,GIW 的最大添加率达到 20%(v/v),或挥发性固体(VS)添加量的 65.5%,将甲烷产率从 0.180 提高到 0.752 m3(CH4)/kg(VS 添加),沼气产量从 2.2×10(-3)提高到 1.4×10(-2) m3/d,甲烷含量从 60.2%提高到 70.1%。0.752 m3(CH4)/kg(VS 添加)的甲烷产率是迄今为止报道的 GIW 共消化的最高值。共底物添加的逐步增加导致更好的微生物驯化,并降低了 GIW 的抑制作用。确定导致抑制消化过程的 GIW 添加极限为 20-40%(v/v)或 65.5-83.5%(w/w)VS 添加量。结果表明,GIW 的厌氧共消化具有显著的益处,并且逐步添加 GIW 具有积极的影响。