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Implementing an Odor Control Program for a Centralized Sludge Processing and Loading Facility

机译:为集中式污泥处理和装载设施实施气味控制程序

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The City of Garland, Texas needed to upgrade the solids processing facilities at their Rowlett Creek Wastewater Treatment Plant. The upgrades included replacing belt filter presses (BFPs) with centrifuges; replacing gravity belt thickeners with rotary drum thickeners (RDTs); converting anaerobic digesters to mixed sludge holding tanks; and other improvements. By upgrading the sludge processing equipment, the City was able to minimize the cost of odor control for these facilities. The equipment upgrades and process modifications required varying methods of odor control, including biotrickling filters, carbon adsorbers, and organic media biofilters. With the change in processes, determining the appropriate design odorant concentrations required innovative field testing. Dispersion modeling was used to determine the effectiveness of carbon adsorbers and stack discharge prior to bidding so that the City could make an informed decision on certain additive alternate bid items. The design process included prequalifying odor control manufacturers and interviews to select vendors for the systems. This paper discusses the interaction with the biosolids process design; minimization of odor control costs; determining appropriate odorant concentrations and design airflows; technology selection and design; construction and performance testing.
机译:德克萨斯州的加兰市需要升级其Rowlett Creek废水处理厂的固体处理设施。升级包括用离心机替换带式压滤机(BFP)。用转鼓式浓缩机(RDT)代替重力带式浓缩机;将厌氧消化池改造成混合污泥储存罐;和其他改进。通过升级污泥处理设备,纽约市能够将这些设施的气味控制成本降至最低。设备升级和工艺修改需要多种气味控制方法,包括生物滴漏过滤器,碳吸附器和有机介质生物过滤器。随着工艺的变化,确定合适的设计气味剂浓度需要创新的现场测试。分散模型用于确定招标前碳吸附剂和烟囱排放的有效性,以便纽约市可以就某些添加剂替代投标项目做出明智的决定。设计过程包括对气味控制制造商进行资格预审以及对系统的精选供应商进行采访。本文讨论了与生物固体工艺设计的相互作用。最小化气味控制成本;确定适当的气味浓度和设计气流;技术选择和设计;施工和性能测试。

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