首页> 外文会议>Annual Water Environment Federation technical exhibition and conference >Upgrading an Existing Beverage Wastewater Treatment Plant Utilizing Membrane Bioreactor Technology for Water Reuse Applications.
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Upgrading an Existing Beverage Wastewater Treatment Plant Utilizing Membrane Bioreactor Technology for Water Reuse Applications.

机译:利用膜生物反应器技术升级现有饮料废水处理厂进行水再利用应用。

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Water scarcity is a global concern entering the twenty-first century and a global water crisis threatens the security, stability and environmental sustainability of all nations. Water is the main ingredient in every product of The Coca-Cola Company (Company), and this natural resource is facing unprecedented pressures. For this reason, the Company is committed to water resource sustainability and supply reliability through a variety of approaches. One such approach includes reductions in the overall water use ratios (WUR) at an individual plant level. WUR is a measure of the amount of mcoming water required to produce an equivalent volume of product (i.e. 2 gallons of water per 1 gallon of product). The Coca-Cola North America (CCNA) American Canyon Production Facility, located in American Canyon, California, produces a range of fruit-juice based products. The facility's city water intake for overall production and utility purposes is limited to 455,000 gallons per day (gpd) and the publicly owned treatment works (POTW) limits the amount of wastewater the facility can discharge to 125,000 gpd. Excess wastewater must be hauled offsite or reused within the facility. Every gallon of city water used for utilities is potentially lost product water given the water intake limits. The existing Wastewater Treatment Plant (WWTP) at the American Canyon facility treats approximately 150,000 gpd of mcoming wastewater with primary treatment including pH adjustment followed by two 150,000 gallons equalization tanks. Secondary treatment includes an Upflow Anaerobic Sludge Blanket (UASB) Reactor followed by Aerobic Trickling Filters and solids separation using Dissolved Air Flotation (DAF). Tertiary treatment includes an Ultra-Filtration (UF) and Reverse Osmosis (RO) membrane system with the permeate (filtrate) collected for beneficial reuse within the facility and concentrate (retentate) discharged to the publicly owned treatment works. In addition to meeting overall discharge Permit contaminant limits, the goal of the overall WWTP operation is to maximize the effectiveness of the tertiary UF/RO system in terms of water that can be returned to production operations for utility purposes. In addition to ensuring that the 125,000 gpd discharge volume limitation is met, the more water that can be reused allows more of the maximum raw water intake volume of 455,000 gpd to be used for finished juice products (revenue producing).
机译:水资源稀缺是进入二十一世纪的全球担忧,全球水资源危机威胁着所有国家的安全,稳定和环境可持续性。水是可口可乐公司(公司)的每个产品的主要成分,这种自然资源面临前所未有的压力。因此,本公司通过各种方法致力于水资源可持续性和供应可靠性。一种这样的方法包括在个体植物水平下减少整个水使用比率(WUR)。 WUR是生产等同物量的产品所需的含量的量度(即每1加仑产品2加仑水)。可口可乐北美(CCNA)美国大峡谷的生产设备,位于美国大峡谷,加州,生产一系列的基于果汁产品。该设施的整体生产和公用事业目的的城市水摄入量仅限于每天455,000加仑(GPD)和公有化的治疗工程(Potw)限制设施可以放电到125,000 GPD的废水量。多余的废水必须拖运或在设施内重复使用。鉴于水进气限制,每加仑用于公用事业的城市用水都可能丢失了产品水。美国峡谷设施的现有废水处理厂(WWTP)将大约150,000 GPD的MCOMCOMENY废水含有初级治疗,包括pH调节,然后进行两个150,000加仑均衡罐。二次处理包括上流厌氧污泥毯(UASB)反应器,然后使用溶解的空气浮选(DAF)进行有氧滴流过滤器和固体分离。叔处理包括超过滤(UF)和反渗透(RO)膜体系,其具有渗透物(滤液),用于在设施内有益再利用,并浓缩(渗碳物)排放到公有制的治疗工程。除了满足整体排放允许污染物限制之外,总体WWTP运作的目标是最大限度地提高大学UF / RO系统在可以返回到实用程序的生产操作的水方面的有效性。除了确保满足125,000个GPD放电体积限制之外,可以重复使用的水越多,还允许更多的最大原水进口体积为455,000 GPD,用于成品果汁产品(收入生产)。

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