一种用于污水处理的平-并联式光生物反应器设计

Lesia Pavliukh, S. Shamanskyi, O. Zaiats
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引用次数: 0

摘要

由于家庭、农业和工业用水活动而释放到环境中的有机和无机物质导致有机和无机污染。污水中含有无机氮和磷,导致富营养化。微藻培养为废水处理提供了一个有趣的步骤,因为它们提供三级生物处理,同时生产潜在有价值的生物质,可用于多种目的。问题陈述。本文的目的是开发一种用于废水处理的光生物反应器设计,其中新元素和连接的应用减少了制造透明柔性槽的材料消耗,减少了安装和拆卸槽的人工成本,并防止了固定化藻类的混合及其从光生物反应器工作区域移除。研究方法。方法是在系统分析各种光生物反应器的理论研究、合成、模拟和比较的基础上进行的。结果和讨论。光生物反应器被制成一个透明流动的矩形开顶罐体,这一事实解决了这个问题。流动的扁平透明容器,由柔性材料制成,垂直地,彼此平行地附着在水箱底部,内部有快速释放紧固件。被二氧化碳废水和微藻饱和的供水管道通过止回阀连接。微藻与残余废水混合物的排水管道通过止回阀连接。上部密封部分连接处理废水的排水管道和释放积聚气体的阀门。所述用于处理废水的管道连接到位于流动的矩形开顶罐中间的用于供应处理废水的导向盘。二氧化碳供应管道连接到污水供应管道的入口部分。微藻与残留废水混合去除管道的出口处是微藻分离器,用于分离从微藻废水中分离出来的剩余生物质,并在流动的矩形槽中供应。结论。所提出的光生物反应器的建设在公共服务中利用生物源元素净化污水具有良好的前景。改进后的光生物反应器设计也可用于不同工业部门企业的污水系统,当需要净化污水时。提出的用于污水处理的平平行型光生物反应器设计的不同之处是改变了水箱的几何形状,它为水和微藻提供混合物,从而降低了制造水箱的材料成本和维护水箱的人工成本
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A FLAT-PARALLEL TYPE PHOTOBIOREACTOR DESIGN FOR SEWAGE WATER TREATMENT
Organic and inorganic substances which were released into the environment as a result of domestic, agricultural and industrial water activities lead to organic and inorganic pollution. Effluent is loaded with inorganic nitrogen and phosphorus and causes eutrophication. Microalgae culture offers an interesting step for wastewater treatments, because they provide a tertiary biotreatment coupled with the production of potentially valuable biomass, which can be used for several purposes. Problem statement. The purpose of this article is to develop a photobioreactor design for wastewater treatment in which the application of new elements and connections reduces material consumption for the manufacture of transparent flexible tanks, reducing labor costs for installation and dismantling of tanks, and preventing the mixing of immobilized algae and their removal from the working area of the photobioreactor. Research methodology. Methods were based on a systematic analysis of theoretical research, synthesis, anology and comparison of various photobioreactor designs. Results and discussion. The problem is solved by the fact that the photobioreactor is made in the form of a transparent flowing rectangular open-topped tank. The flowing flat transparent containers, made with flexible material, are vertically, parallel to each other attached to the bottom of the tank with quick-release fasteners inside. Pipelines for supply saturated by carbon dioxide wastewater and microalgae are connected through non-return valves. Pipelines for drainage of a mixture of microalgae with residual wastewater are connected through non-return valves. Pipelines for drainage of treated wastewater and valves for release of accumulated gases are connected in the upper airtight part. The pipeline for the treatment of treated wastewater is connected to the guide tray for supplying treated wastewater in the middle of a flowing rectangular open-topped tank. A carbon dioxide supply pipeline is connected to the inlet part of the wastewater supply pipeline. At the outlet of the pipeline for the removal of a mixture of microalgae with residual wastewater is a separator of microalgae to separate the return and excess biomass to supply separated from microalgae wastewater in a flowing rectangular tank. Conclusions. The proposed construction of photobioreactor can have good perspectives to be use in communal services for sewage water purification from biogenic elements. Improved photobioreactor design also can be used in sewage systems of enterprises of different branches of industry, when it is necessary to purify sewage water. The proposed flat-parallel type photobioreactor design for sewage water treatment differs by changing the geometric shape of the tanks, which serves a mixture of water and microalgae, resulting in a reduction in material costs for the manufacture of tanks and labor costs for their maintenance
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