出口俄罗斯一体化污水处理设备
编辑:出口污水处理设备 来自:https://www.zqwscl.com /日期:2025-03-04 14:58 / 人气:
出口俄罗斯一体化污水处理设备
先进的处理工艺
中侨启迪出口俄罗斯的一体化污水处理设备采用了先进且高效的 IBR(Intermission Biological Reactor)自响应生物反应器工艺。这一工艺是一种集厌氧、兼氧、好氧反应及沉淀于一体的周期循环活性污泥法,是对常规 SRB(Sequencing Batch Reactor)工艺的改良。

出口俄罗斯的一体化污水处理设备
设备利用下部的三相分离装置实现单池连续进、出水以及间歇曝气。通过灵活调节曝气停比,能够营造出反应池多级 A/A/O 状态,从而有效去除污水中的氮和磷。在实际运行过程中,曝停比可依据进水水质、水量、温度以及季节等不同情况进行精准调节,真正实现了按需曝气,达到系统节能的目的。其反应器大致可划分为反应区、三相分离区和沉淀区,整体呈连续流一体化构型。工艺核心设备及装置包括激波传质器,兼具曝气与搅拌功能;三相分离器,则承担沉淀与排水功能。IBR 反应池主要依托时间序列来实现对污水的高效脱氮除磷,通过巧妙设计不同时序阶段的运行工况,确保污水处理效果达到最佳。
卓越的设备优势
工艺独特高效
IBR 工艺属于间歇式活性污泥法的一种,在反应池流态上虽呈现混合状态,但在有机物降解方面却是时间上的推流,它将可变容积活性污泥法过程和生物选择器原理有机结合。相较于传统工艺,该设备构筑物少,用地节省。对于规模较小的生活污水处理项目,IBR 反应器可便捷地与平流沉砂池及后续的消毒渠合建,整个工艺流程布置顺畅、平面简洁,大大节省了宝贵的土地资源。同时,机电设备少,能量消耗低,运行费用也随之降低。系统内只需配备激波传质器等少量设备,动力设备仅有潜污泵与搅拌设备,能耗极低。并且由于连续进出水的特性,IBR 池进出水水头相差小,提升水头较其他时间系列的污水处理工艺减小 1m 以上,进一步降低了运行成本。其控制也极为简单,激波传质器及潜水搅拌器设备只需按照时间控制开停,没有复杂的反馈及执行元件,提升系统仅需按照液位调整水泵的运行状态,采用简单的时间控制及液位控制装置即可实现自控目的,操作管理简便。
出口俄罗斯的一体化污水处理设备
耐用且安全可靠
以 QDPP 系列一体化生活污水处理设备为例,该设备采用聚丙烯原材料三次缠绕生产。罐体运用螺旋挤出缠绕一次成型技术制作,由颗粒母料经模具直接成型,实现罐体整体成型无焊缝,极大地保障了设备运行的安全稳定,有效避免了因焊缝问题可能导致的泄漏等风险。在耐用性上,原料中添加抗 UV、抗老化助剂,有效改善塑料设备室外使用寿命短的问题,大幅提升使用年限,即便在俄罗斯复杂多变的气候条件下也能稳定运行。良好的抗腐蚀性能
设备对各类酸、碱具有良好的抗腐蚀性能,能储存绝大多数的有机、无机酸、碱、盐类溶剂和部分有机溶剂。这使得设备在处理不同类型污水时都能游刃有余,无论是工业生产中产生的含酸、碱废水,还是生活污水中可能含有的各种化学物质,都不会对设备造成严重腐蚀,延长了设备的整体使用寿命,减少了后期维护成本。
出口俄罗斯的一体化污水处理设备
Advanced processing technologyThe integrated sewage treatment equipment exported by Zhongqiao Qidi to Russia adopts advanced and efficient IBR (Interaction Biological Reactor) self responsive bioreactor technology. This process is a cyclic activated sludge process that integrates anaerobic, facultative, aerobic reactions and sedimentation, and is an improvement of the conventional SRB (Sequestration Batch Reactor) process.
The equipment utilizes a three-phase separation device at the bottom to achieve continuous inlet and outlet of a single tank, as well as intermittent aeration. By flexibly adjusting the aeration stop ratio, a multi-stage A/A/O state can be created in the reaction tank, effectively removing nitrogen and phosphorus from wastewater. In actual operation, the aeration stop ratio can be accurately adjusted according to different conditions such as inlet water quality, water quantity, temperature, and season, truly achieving on-demand aeration and achieving the goal of system energy conservation. The reactor can be roughly divided into a reaction zone, a three-phase separation zone, and a precipitation zone, with an overall continuous flow integrated configuration. The core equipment and devices of the process include shock wave mass transfer devices, which have both aeration and stirring functions; The three-phase separator is responsible for sedimentation and drainage functions. The IBR reaction tank mainly relies on time series to achieve efficient nitrogen and phosphorus removal of sewage. By cleverly designing the operating conditions of different time series stages, the optimal sewage treatment effect is ensured.
Excellent equipment advantages

Unique and efficient craftsmanship
The IBR process belongs to a type of intermittent activated sludge process. Although it presents a mixed state in the flow state of the reaction tank, it is a time push flow in the degradation of organic matter. It combines the variable volume activated sludge process with the principle of biological selector. Compared to traditional craftsmanship, this equipment has fewer structures and saves land. For small-scale domestic sewage treatment projects, IBR reactors can be conveniently combined with horizontal sedimentation tanks and subsequent disinfection channels. The entire process flow is arranged smoothly and the layout is simple, greatly saving valuable land resources. At the same time, there are fewer mechanical and electrical equipment, lower energy consumption, and lower operating costs. Only a small number of equipment such as shock wave mass transfer devices are required in the system, and the power equipment only includes submersible sewage pumps and stirring devices, resulting in extremely low energy consumption. And due to the continuous inflow and outflow characteristics, the difference in water head between IBR pool inflow and outflow is small, and the increase in water head is reduced by more than 1 meter compared to other time series sewage treatment processes, further reducing operating costs. Its control is also extremely simple. The shock wave mass transfer device and submersible agitator equipment only need to be controlled on and off according to time, without complex feedback and execution components. The lifting system only needs to adjust the operating status of the water pump according to the liquid level. Simple time control and liquid level control devices can achieve self-control, and the operation and management are simple.

Taking the QDPP series integrated domestic sewage treatment equipment as an example, this equipment uses polypropylene raw material for triple winding production. The tank body is made using spiral extrusion winding one-time molding technology, which is directly molded from particle masterbatch through a mold, achieving seamless overall molding of the tank body, greatly ensuring the safety and stability of equipment operation, and effectively avoiding risks such as leakage caused by welding seam problems. In terms of durability, anti UV and anti-aging additives are added to the raw materials to effectively improve the short outdoor service life of plastic equipment, greatly increase the service life, and ensure stable operation even under the complex and changeable climatic conditions in Russia.
Good corrosion resistance performance
The equipment has good corrosion resistance to various acids and alkalis, and can store the vast majority of organic, inorganic acids, alkalis, salt solvents, and some organic solvents. This enables the equipment to handle different types of wastewater with ease. Whether it is acidic or alkaline wastewater generated in industrial production, or various chemical substances that may be contained in domestic wastewater, they will not cause serious corrosion to the equipment, extending the overall service life of the equipment and reducing maintenance costs in the later stage.
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