Kocaturk Irem, Erguder Tuba Hande
a Environmental Engineering Department , Middle East Technical University , Dumlupinar Bulvari, 06800 Ankara , Turkey.
Environ Technol. 2015;36(20):2577-87. doi: 10.1080/09593330.2015.1039070. Epub 2015 May 5.
The treatment of sugar beet processing wastewater in aerobic granular sequencing batch reactor (SBR) was examined in terms of chemical oxygen demand (COD) and nitrogen removal efficiency. The effect of sugar beet processing wastewater of high solid content, namely 2255 ± 250 mg/L total suspended solids (TSS), on granular sludge was also investigated. Aerobic granular SBR initially operated with the effluent of anaerobic digester treating sugar beet processing wastewater (Part I) achieved average removal efficiencies of 71 ± 30% total COD (tCOD), 90 ± 3% total ammonifiable nitrogen (TAN), 76 ± 24% soluble COD (sCOD) and 29 ± 4% of TSS. SBR was further operated with sugar beet processing wastewater (Part II), where the tCOD, TAN, sCOD and TSS removal efficiencies were 65 ± 5%, 61 ± 4%, 87 ± 1% and 58 ± 10%, respectively. This study indicated the applicability of aerobic granular SBRs for the treatment of both sugar beet processing wastewater and anaerobically digested processing wastewater. For higher solids removal, further treatment such as a sedimentation tank is required following the aerobic granular systems treating solid-rich wastewaters such as sugar beet processing wastewater. It was also revealed that the application of raw sugar beet processing wastewater slightly changed the aerobic granular sludge properties such as size, structure, colour, settleability and extracellular polymeric substance content, without any drastic and negative effect on treatment performance.
在好氧颗粒序批式反应器(SBR)中对甜菜加工废水进行处理,并考察了其化学需氧量(COD)和脱氮效率。同时还研究了高固体含量(即总悬浮固体(TSS)为2255±250mg/L)的甜菜加工废水对颗粒污泥的影响。好氧颗粒SBR最初采用厌氧消化器处理甜菜加工废水的出水运行(第一部分),总COD(tCOD)平均去除效率为71±30%,总氨化氮(TAN)为90±3%,可溶性COD(sCOD)为76±24%,TSS为29±4%。SBR进一步采用甜菜加工废水运行(第二部分),此时tCOD、TAN、sCOD和TSS的去除效率分别为65±5%、61±4%、87±1%和58±10%。本研究表明好氧颗粒SBR适用于处理甜菜加工废水和厌氧消化后的加工废水。为了实现更高的固体去除率,在处理像甜菜加工废水这样富含固体的废水的好氧颗粒系统之后,需要进一步处理,如设置沉淀池。研究还表明,直接应用甜菜加工原废水会略微改变好氧颗粒污泥的性质,如尺寸、结构、颜色、沉降性能和胞外聚合物含量,但对处理性能没有任何剧烈的负面影响。