Direct drinking water solution

Starting from the custo↓Ωmer's demand for high-quality drinking w★≥ater quality, we adopt advanced multi-lev↑₩  el filtration processes, ♠§∏±filtration materials, and disinfection technol™♠∑ogy, combined with real-time water qualitδ¥★✘y monitoring, intelligent automati$₽φc operation, and regular automatic λ<sterilization and di ​sinfection technology, to ensure that there are ♦≥δ∞no secondary disinfection residueλλs, and to provide us©β‌♠ers with safe and high-quality drinki πng water.

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Overview of the plan Customer Challenges Core advantages

Overview of the plan

Starting from the customer's£∞₩π demand for high-quality&δγ¶ drinking water qual÷∑βεity, we adopt advanced multi-δπγφlevel filtration processes, filtr✘±×πation materials, and disinfection technology, comδ₩bined with real-time water ♣ ₩quality monitoring, intell α≥igent automatic operation,¶₩€ and regular automatic ster"↑©ilization and disinfection technology ≤©, to ensure that there are no secondγ₽ λary disinfection residues, and to provid←≥♣e users with safe and high-quality dr₹©§inking water.

Customer Challenges

1

Unstable water quality and high microbiα≈ological risk of direct₹★ drinking water in pipelines

Direct drinking water in pipelines is afε€±§fected by water sources and transmission pipeσπlines, and the water quality is pro≈&∑Ωne to fluctuations. Bacteria ca♠↕∞n easily grow in the pipelines, posing water qua₩♦lity and biological risks

2

High maintenance costs and difficult operatio↑ σn and management

The pipeline direct drinkingλδ→¶ water system is complex and dλ€βifficult to operate and maintain, req§<™uiring more professional personnel to m≥± ✔aintain, and the quality of operation and₹€∑© maintenance directl ∏↕✘y affects water quality saλ©fety

3

Poor standardization, automation, andδ→ visualization of design

The standardization of product design is incγ<αonsistent, the level of intelligent operat↔₹↑₽ion is low, the level of informatization and digi£‌tization is low, and users have insuf≈✘ficient confidence in wa✘∞ter quality.

Core advantages

Process technology evolved fir♥>φst

Designed as a system fo₩∏r water production, transportation, and dis'€§‌tribution, it adopts thirteen fold filtration,  σadsorption, and softening, cβ÷★¥ombined with high-quality reverse osmosi≠ ☆&s membrane filtration, to produce high-qualit£ y direct drinking water. At the same time, it i≥∑‌s supplemented with regular return water circuλ≤εlation and ozone disinfecγφtion. Regular sterilizatio‌©±n is carried out for the transmission≤§≈₩ pipeline to ensure stable •↓δwater quality and eliminate secondary biological ♥♣₹‍risks in the transmission pipeline, providi≤±§♠ng users with safe and high-quality drinking wat¶≈er.

Intelligent control, intelligent opera€βtion

The pipeline direct drinking water system ado£₽≠>pts advanced control tech ±nology and algorithms, aλ₹ εnd achieves automatic operation anπ→∑&d maintenance through intelligent∑<¥★ sensors, without the n•$eed for manual attend♣ ance and maintenance. It not only simπγ≈÷plifies operation and maiπ €εntenance, but also saves ope¶'≥ration and maintenanceσ€ costs.

System standardized design, intelligent monit↕​♠oring, and water quality vσβisualization

The pipeline direct drinking wate•≈r system adopts standar®©dized and modular design for water productio®₹α∑n, transmission and distribution. SystΩ©λ♣ematic design, easy t✔™o assemble, disassemble> ≥, and replace; Key water quality monitoring throu♦÷εghout the system, remote trans•↓mission, and accessible APP data enable users to♥'& drink safely and with peace of mind.÷δ™