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Calcite Precipitate in Biosolids Handling Processes: A Case Study

机译:生物溶解过程中的方解石沉淀物处理过程:一个案例研究

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The Region of Waterloo's (The Region) Waterloo Wastewater Treatment Plant (WWTP) located in Waterloo, Ontario, Canada has historically experienced nuisance chemical precipitate throughout the biosolids handling system. Work in 2012 identified vivianite as one of the minerals precipitating in the primary anaerobic digester; however, the identity of the precipitate found in the centrifuge equipment remained unknown. The deposits have caused equipment operational issues and have raised concern over long-term operation of the system. The scaling requires periodic maintenance to maintain the equipment's level of service, which is time and operator intensive. Plant staff currently utilize a descaling agent to remove precipitate, which requires equipment downtime. This project was performed to: 1 Identify the major constituents of the chemical deposit/precipitate; 2 Quantify the amount of the deposit/precipitate; 3 Determine the location and cause of deposit/precipitate; and 4 Develop conceptual solutions for mitigation. Work completed included a review of historical water quality, special water quality sampling performed at key locations, and X-Ray Diffraction (XRD) analysis of precipitate collected from within the centrifuge equipment. The historical and special water quality sampling results were utilized to perform mass balances around biosolids processing equipment to quantify the type and amount of precipitate, which is necessary in order to identify potential mitigation strategies. The XRD analysis was conducted in July 2017 and special sampling was conducted in August 2017. Results from the analyses indicated that both vivianite and calcite (CaCO_3) are present in the primary digester. Calcite was the primary precipitate found in the dewatering lines/equipment. Calcite is not typically documented as a primary nuisance precipitate for municipal WWTP and presents a unique challenge that must be navigated. Eight potential mitigation strategies for vivianite and calcite were identified. This work and manuscript describes the various elements of the analysis conducted to identify the precipitate and potential solutions.
机译:Waterloo(该地区)Waterloo废水处理厂(WWTP)位于安大略省滑铁卢,在加拿大历史上,在整个生物溶胶处理系统中经历了滋扰化学沉淀物。 2012年工作鉴定为矿物质中的矿物质,矿物质中的矿物质中的一种矿物质;然而,离心设备中发现的沉淀物的身份仍然未知。存款导致设备运营问题,并提出了对系统的长期运作的关注。缩放需要定期维护以维持设备的服务水平,这是时间和操作员密集的。植物人员目前利用除垢剂去除沉淀物,这需要设备停机。该项目进行了:1确定化学沉积/沉淀物的主要成分; 2量化沉积物/沉淀物的量; 3确定沉积/沉淀物的位置和原因; 4制定缓解的概念解决方案。工作完成包括历史水质的审查,在关键位置进行的特殊水质采样,以及从离心设备内收集的沉淀物的X射线衍射(XRD)分析。利用历史和特殊的水质采样结果来进行生物溶解设备周围的质量平衡,以量化沉淀的类型和量,这是必要的,以确定潜在的缓解策略。 XRD分析于2017年7月进行,2017年8月进行了特殊的采样。分析结果表明,剧中蒸煮器中存在育种和方解石(CACO_3)。方解石是在脱水线/设备中发现的初级沉淀物。方解石通常不记录为市政WWTP的主要滋扰沉淀,并呈现必须导航的独特挑战。鉴定了八种潜在的缓解策略和方解石的潜在缓解策略。这项工作和稿件描述了进行的分析的各种元素,以识别沉淀物和潜在的解决方案。

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