Hawkins Brian T, Rogers Tate W, Davey Christopher J, Stoner Mikayla H, McAdam Ewan J, Stoner Brian R
Center for WaSH-AID, Duke University, Durham, NC, 27701, USA.
Department of Electrical and Computer Engineering, Duke University, Durham, NC, 27701, USA.
Gates Open Res. 2019 Jan 23;2:50. doi: 10.12688/gatesopenres.12873.2. eCollection 2018.
Onsite reuse of blackwater requires removal of considerable amounts of suspended solids and organic material in addition to inactivation of pathogens. Previously, we showed that electrochemical treatment could be used for effective pathogen inactivation in blackwater, but was inadequate to remove solids and organics to emerging industry standards. Further, we found that as solids and organics accumulate with repeated recycling, electrochemical treatment becomes less energetically sustainable. Here, we describe a pilot study in which concentrated blackwater is pretreated with ultrafiltration and granular activated carbon prior to electrochemical disinfection, and show that this combination of treatments removes 75-99% of chemical oxygen demand, 92-100% of total suspended solids, and improves the energy efficiency of electrochemical blackwater treatment by an order of magnitude.
黑水的现场回用除了要使病原体失活外,还需要去除大量的悬浮固体和有机物质。此前,我们表明电化学处理可用于有效使黑水中的病原体失活,但按照新兴行业标准,在去除固体和有机物方面还不够。此外,我们发现随着固体和有机物在反复循环中积累,电化学处理在能源方面的可持续性会降低。在此,我们描述了一项试点研究,其中浓缩黑水在进行电化学消毒之前先用超滤和颗粒活性炭进行预处理,并表明这种处理组合可去除75%至99%的化学需氧量、92%至100%的总悬浮固体,并将电化学黑水的处理能效提高一个数量级。