智能一体化污水处理设备是一种集污水收集、处理及排放功能于一体的综合性设施,通常由多个处理单元组合而成,包括格栅、沉砂池、调节池、生化反应池、沉淀池、滤池等,几乎可以完成污水从进水到出水的所有处理过程。这种设备在设计上采用模块化结构,可以根据具体水质和处理量的需求灵活组装,大大提升了其适用性。
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Product Functional Advantages
设备采用接触氧化法,平均停留时间在6小时以上,能够有效应对水质波动和水量骤增,确保处理效果稳
通过调节设备构造和运行参数,能够灵活处理工业废水生活污水等,优化微生物生长环境,实现氨、磷等营养物质的深度去除。
设备集成预处理、生化处理、消毒等流程,占地面积小特别适合土地资源紧张的区域。
采用预制化生产,现场安装工作量小,建设周期短,支持地埋或地上安装,不影响环境绿化。
配备全自动电气控制系统和故障报警系统,支持远程监控和自动化运行,降低人工操作成本。
设备结构清晰,易于日常检查和维护,污泥产量少且易于处理,进一步降低运维成本。
设备运行噪音低于50分贝,处理过程中无异味产生,对周围环境影响小。
部分模式支持污水变肥水,处理后的水富含氨、磷等养分,可直接用于农田灌溉,实现资源闭环。
Product Technical Advantages
设计团队根据需求分析结果,设计出合适的处理工艺流程。
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工程师进行设备的结构设计,包括尺寸、形状和材料选择。
根据设计要求,采购合适的材料,如不锈钢、玻璃钢、塑料等。
对材料进行切割、打磨、抛光等预处理工作,以便于后续加工。
根据设计图纸,制造各个组件,如反应器、沉淀池、过滤器等。
对金属组件进行焊接,对塑料组件进行热熔或机械连接。
对金属组件进行防腐涂层处理,对塑料组件进行表面打磨和清洁。
将制造好的各个组件按照设计要求进行组装。
进行模拟废水处理测试,验证设备的处理效果和性能指标。
对组装好的设备进行功能测试,确保各个部件和系统正常工作。
将机械组件与电气控制系统、自动化系统等进行集成。
进行安全性能测试,确保设备在运行过程中安全可靠。
对测试合格的设备进行包装,以保护设备在运输过程中不受损坏。
安排合适的运输方式,将设备安全送达客户现场。
在客户现场进行设备的安装工作,包括基础施工、设备定位和固定。
进行系统的调试工作,确保设备与现场条件相适应,并达到最佳运行状态。
对客户进行设备操作和维护的培训,确保客户能够正确使用设备。
完成所有工作后,进行设备的最终交付,并提供必要的文档和保修服务。
Product Process Flow
一体化设备在屠宰养殖中的运用主要体现在提高效率、降低成本、提升产品质量和安全性等方面。
在食品加工、电子厂、纺织厂等轻工业领域,智能一体化污水处理设备可以作为预处理或部分处理单元,有效去除废水中的有害物质
在住宅小区和机关事业单位办公楼等场所,智能一体化污水处理设备可以集中处理所有的生活污水,提高污水处理效率,减少对周围环境的影响。
在农村和旅游景区等地方,由于污水排放量相对较小,智能一体化污水处理设备可以很好地适应这些场景。它能够将生活污水处理后直接回用,节约用水,减少对环境的污染。
在灾区、临时工地、大型活动现场等临时性场所,智能一体化污水处理设备可以快速构建污水处理设施。其安装简便、操作简单、移动方便,能够快速投入使用,满足现场污水处理的紧急需求。
在偏远地区或人口不集中的地区,建设大型污水处理厂成本较高,智能一体化污水处理设备是一个经济高效的选择。它能够将污水处理和回用相结合,为当地居民提供方便快捷的生活污水处理服务。
Customer Case
Project Background:As an important part of water conservancy projects, medium and large sluices undertake multiple functions such as water level regulation, water flow control, flood control and drainage, and play a huge role in flood control and disaster reduction, water resources allocation, and ecological environment improvement. However, due to historical reasons, many sluices have problems such as low construction standards, poor quality, and imperfect supporting facilities. In addition, due to the influence of the idea of "rebuilding light pipes", most sluices lack effective management and maintenance after completion, and there are many safety hazards and prominent risks to safe operation. In order to ensure the safe and stable operation of sluices and detect and deal with potential safety hazards in a timely manner, the development and application of sluices safety monitoring systems have emerged. The system realizes real-time collection and transmission of sluice operation data by deploying a series of environmental quantity monitoring sensors in the surrounding areas of the sluice and arranging various safety monitoring sensors inside the sluice body. The data collection content includes key information such as water level, flow rate, and gate opening. These data are collected through sensors and transmitted to the digital twin model through the network, so that staff can understand the operating status of the gate in real time, detect and deal with abnormalities in time. With the advancement of science and technology and the rapid development of technologies such as the Internet of Things, big data, and satellite remote sensing, the functions and performance of the sluice safety monitoring system have been significantly improved. The modern sluice safety monitoring system can not only realize real-time monitoring, data analysis, early warning and other functions, but also realize intuitive display of sluice operating status, water flow conditions, water level changes and other data through three-dimensional visualization technology, providing more scientific and accurate basis for management decisions.
Project Value:The significance of medium and large sluice safety monitoring systems is to ensure the safe operation of sluices, optimize water resource allocation, improve flood control and disaster reduction capabilities, and promote the modernization of water conservancy project management. The application of this system is of great significance for improving the safety and efficiency of water conservancy projects. By monitoring the structural status, hydrological data and environmental changes of the sluice in real time, potential risks and problems can be discovered in a timely manner, and corresponding preventive measures can be taken to ensure the stability and durability of the sluice. In addition, through data analysis and model prediction, water resources can be dispatched more scientifically, water resources can be rationally allocated, waste can be reduced, and water resource utilization efficiency can be improved. In terms of flood control, the monitoring system can provide accurate information such as water level and flow, provide scientific basis for flood control decisions and effectively reduce losses caused by flood disasters. In the end, this system will promote the development of water conservancy project management in an intelligent and information-based direction, and improve the management level of the entire water conservancy industry and its ability to respond to emergencies.
Project Background: With the rapid development of my country's economy and the acceleration of urbanization, the development and utilization of groundwater resources are increasing day by day. However, groundwater pollution has become increasingly prominent, seriously threatening human health and the ecological environment. The quality of groundwater in some areas has deteriorated, and pollution sources are complex and diverse, including industrial wastewater, agricultural non-point source pollution, domestic sewage, etc. Traditional groundwater monitoring methods mainly rely on manual sampling and laboratory analysis, which have problems such as long monitoring cycles, untimely data acquisition, and limited monitoring scope. Our government attaches great importance to the prevention and control of groundwater pollution and has issued a series of policies and regulations, such as the "Groundwater Pollution Prevention Law","Groundwater Quality Standards", etc., provide policy guarantees for online groundwater monitoring. In order to effectively prevent groundwater pollution and ensure groundwater safety, online groundwater monitoring technology emerged. Online groundwater monitoring refers to the real-time and continuous monitoring of groundwater quality, water volume, water temperature and other parameters through monitoring equipment placed in groundwater, providing a scientific basis for groundwater pollution prevention and control. The demand for groundwater quality safety is growing, and groundwater online monitoring technology plays an important role in ensuring groundwater safety and improving the ecological environment.
Project Value:Online monitoring of groundwater plays a vital role in many fields such as water resources management, environmental protection, and disaster warning. By monitoring groundwater level and water quality changes in real time, it can provide scientific decision-making basis for relevant departments to better manage and protect this valuable natural resource. Promote the rational development and utilization of water resources and improve the utilization efficiency of water resources. Online monitoring of groundwater can help us better understand the distribution and reserves of groundwater resources, so as to formulate more scientific and reasonable development plans to avoid over-exploitation and resource waste. Groundwater is closely related to surface water, soil and ecosystems. By monitoring changes in groundwater, environmental conditions can be better assessed and scientific basis for ecological restoration and environmental protection can be provided, thereby achieving harmonious coexistence between man and nature.
Project Background:During the peak precipitation season, water conservancy facilities such as rivers and reservoirs are facing huge challenges. It is necessary to improve the monitoring of river hydrological information and improve the automation and intelligence of water management. Real-time monitoring and evaluation of river water quality conditions can help promote water environment management and sustainable development.
Project Value:It plays a key role in water resources protection. Changes in water quality can be tracked and abnormalities, such as water pollution and water quality deterioration, can be discovered in a timely manner. Accurate data and real-time alerts help regulators take timely measures to reduce the risk of water pollution. In addition, it helps assess pollution sources and monitor the effects of treatment, and provides a basis for water environment management. The role of the river water quality online monitoring system is to monitor water quality, assist in water quality improvement, locate pollution sources, and improve water quality control efficiency. Real-time monitoring ensures water source safety, promotes scientific management and governance of water quality, and creates a clean and healthy water environment.
Project Background:Since my country's water source-related facilities were built in the last century, judging from the current application technology, there are serious flaws and deficiencies, low utilization rate, and low management efficiency. Based on this, it is imperative to build a water source monitoring system and realize digitalization of water management. Using FyhoneOS-Smart Water Source Management System, we can automatically monitor water quality conditions of water sources, remotely control gates/pumping stations, and collect energy consumption details of pumping stations online to effectively control the operation of various equipment in the water source area and improve the management efficiency of the water source area.
Project Value:Monitor water quality, assist in water quality improvement, locate pollution sources, improve water quality control efficiency, etc. Real-time monitoring ensures water source safety and promotes scientific management and governance of water quality. Real-time data from monitoring systems helps assess ecosystem health and biodiversity. Based on the monitoring results, decision makers can take corresponding measures to protect and restore affected ecosystems and create a clean and healthy water environment.
Project Background:In modern environmental monitoring, real-time and accurate monitoring of water environment quality is of great significance to environmental protection, water resources management, public health, etc. In recent years, with the development of science and technology, real-time monitoring of water environment quality has become an increasingly important research topic.
Project Value:The water quality online monitoring system consists of data collection, communication network, management cloud platform, etc. It uses a series of sensors and monitoring devices to convert the values of various indicators into electrical signals, which are then collected and transmitted by a data collector, and processed and analyzed through a management cloud platform to achieve real-time monitoring of physical, chemical, biological and other indicators in water. and form a water quality monitoring report. It can continuously monitor the pollution status of wastewater and other places 24 hours a day, laying a solid foundation for the next step of prevention and control work, thereby achieving the goal of ensuring water resources security.