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VERTAD? – AUTO-THERMOPHILIC AEROBIC DIGESTION: DEMONSTRATION-SCALE TEST RESULTS

机译:vertad? - 自动嗜热需氧消化:演示规模测试结果

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VERTAD? is an auto-thermophilic aerobic digestion process, employing a subsurface vertical reactor to aerobically digest mixed primary and secondary wastewater treatment solids. High metabolic activity results in heat generation, which enables the production of Class A Biosolids at short solids retention times (SRT). Currently the Technology Assessment Program of the King County Wastewater Treatment Division, Seattle, WA, is evaluating the VERTAD? process. A demonstration facility was constructed in 1998 and operated through 1999 at the County’s South Treatment Plant in Renton, WA. The process consists of a deep vertical reactor (107 m deep, 50 cm diameter) with a capacity of 225 to 900 dry kg solids per day (5000 population equivalent). Successful results in demonstration-scale tests have prompted the County to consider VERTAD? as a retrofit for existing facilities, and for future projects. The process was tested at detentions times from 2 to 6 days and temperatures of 56 to 67°C. The requirements for Class A Biosolids (40 CFR 503.32 Alternative 1) were met at an average detention time of 4 days and 60°C. With a 4 day solids detention time, the VERTAD? reactor achieved greater than 40% volatile solids destruction; 45-50% organic nitrogen destruction; and fats, oil and grease (FOG) destruction greater than 80%. Pathogen destruction was excellent, with fecal coliform and salmonella generally below detection limits. An oxygen transfer efficiency (OTE) of 50% was attained easily in the system. In addition, the VERTAD? product was simply float thickened with dissolved CO2 to 8-12% solids. The thickened product dewatered to over 30% solids with a relatively low polymer demand. Bench-scale anaerobic digestion of the VERTAD? product resulted in 67% total volatile destruction with a 4 day SRT in VERTAD? and an 11 day mesophilic anaerobic SRT. The results of this demonstration project provided the basis for development of full-scale design parameters and cost estimates. The present worth of capital and operating costs for a system using VERTAD? as a pretreatment to anaerobic digestion was similar to that of traditional mesophilic digestion, primarily due to the significant operating cost savings with low energy and polymer requirements. Improved dewaterability lowered the associated haul and disposal costs of
机译:vertad?是一种自热嗜热的有氧消化方法,采用地下垂直反应器以有氧化的混合初级和二次废水处理固体。高代谢活性导致发热,这使得能够在短固体保留时间(SRT)中的生物溶胶的生产。目前国王县污水处理部门的技术评估计划,西雅图,WA,正在评估vertad吗?过程。示范工厂于1998年建于1998年,并于1999年由1999年在伦顿,WA的南部治疗厂运营。该过程由深垂直反应器(107米深,直径50厘米)组成,容量为每天225至900个干燥的KG固体(5000名当量)。演示规模测试的成功结果促使县审议vertad?作为现有设施的改造,以及未来的项目。该方法以2至6天的延迟测试,温度为56至67℃。在平均滞留时间为4天和60℃的平均滞留时间满足对类生物溶解剂(40 cFR 503.32替代方案1)的要求。通过4天固体拘留时间,vertad?反应器实现大于40%的挥发性固体破坏; 45-50%的有机氮杀伤;和脂肪,油脂(雾)破坏大于80%。病原体破坏是优异的,粪便大肠杆菌和沙门氏菌通常低于检测限。在系统中容易获得50%的氧传输效率(葡素)。另外,vertad?用溶解的CO2至8-12%固体加厚,产品简单地漂浮。加厚产物脱水至超过30%的固体,具有相对较低的聚合物需求。斜面的长凳厌氧消化vertad?产品导致67%的挥发性破坏,vert中的4天SRT?和一个11天的嗜培素厌氧srt。该示范项目的结果为开发全规模设计参数和成本估算提供了基础。使用Vertad系统的资本和运营成本的价值?由于对厌氧消化的预处理类似于传统的嗜苯基消化,主要是由于具有低能量和聚合物要求的显着运营成本。改善的脱水性降低了相关的运输和处置成本

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