Modular Smart Integr™¶•ated Water Plant Solution

Starting from the actual needα‍≥s of users, based on a deep understandingδ← of customer scenario based n™<₩∑eeds, with full lifecycle operation management as&≥☆ the core, combined w§£≤↑ith years of lean production experience, we aim t&©₽o create modular, product-based, ←αand intelligent water pla§$←nts, achieving a one-stop service throughoσ♥✔&ut the entire process, ensuring safe and stabl↕<<e water supply, high-qu ‍→ality water quality, cost optimε✘δization, and efficiency improvement.

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Overview of the plan Customer Challenges Core advantages

Overview of the plan↕₹≈

Modular intelligent integra♠¶"★ted water plant is a hig≈ε←hly integrated and intelligent water treatment'$σΩ solution that integrates civλ¶il engineering water plant prodφ© ucts, serialization, and inte∏&lligence. Based on integrated des‌≥ε₩ign and modular production equipment as  βthe hardware foundation, s​™¶λupplemented by decentralized control system∏≠§s such as intelligent a←€✘lum addition, intelligent di'σsinfection, and backwashing, and seam★≈lessly integrated with the in∏±‌★telligent integrated co®₹∑$ntrol platform, it has ↔‌functions such as operation monito≠©Ω€ring, fault alarm, sta ✔®∏tistical analysis, a§™♠nd equipment management to assist in refin  ¥™ed management.

Customer Challenges

1

Engineering thinking<&

Insufficient overall planning, reconstructi±λon of light pipes, fragmentati←π↓♥on of design, construction, and operation an ±λ∞d maintenance;

2

Low design standards

Low construction standards, small£÷± parameter values, simλπple processing technology, and lack of ove€✘↕rall consideration for lat®§er operation and maintenan÷≥ce

3

Difficulty in operation and maintenance mana¥™↕gement

The level of construction teams is uneven, t‌♣∏he foundation of information technolog≥♦βy is poor, and the qualityπ"¶↓ of professional personnel is weak

Core advantages

Standardization of p↕₩rocess technology

The modular intelligent integrated water★​ ↓ plant is completed &©★♠based on national standards, standard chemical☆© plant prefabrication, on-site liftin∑¶≈πg assembly, pipeline splicing, and mi"♠•÷cro welding, quickly bui£ lding the entire production proc→ ess main body of the water plant. It can¶✘♣ significantly shorten the construction cycle forπ✘ customers, reduce civi←<l engineering costs, an↓™ d ensure the rapid an • $d safe operation of the water plan∏✘βt, with strong scalability.

Systematization of solutions

Divide the water supply scale, water source, β₽ raw water quality, and phased pollu ≈∏εtion sources according to customer needs, and↔∑±> provide different product combinations '•♦δfor different situations in the customer's region¶Ω₽, including conventional proces€'•ses, ultrafiltration membrane processe•‌↕s, and deep treatment proc×"esses required for water quality imp₽€rovement. It can adapt to mu★§∞ltiple water source charac↑¥teristic application scenarios such as seasonγ☆"↓al high turbidity, low temp® ↕↔erature and low turbidity, hi₹™gh algae, micro pollution, and∞↑™ seasonal iron and manganese exc∑¶✘eeding standards.

Dynamic and intelligent operation mΩ™anagement

The intelligent integrated control ∑≈platform combines various application§≈•​ data such as on-site equipment, γ↔decentralized control systems, security, equipme≤& nt operation and maintenance, and water q& ±uality testing to achieve δ•"few/unmanned personnel on duty,∞​®↑ remote control, and int↔✘elligent operation and maintenance" ¥"÷of water plants. It can make up for the probl₽φ≠♠em of traditional water plants relying heavi ↓ly on manual labor due to uneven≥<§ management levels and poor &♥'information foundation, and achi ☆©≥eve automation, refinement, dynamism, and digi→×→₹tization of operation and manage£±λment.