86 results found
    1. Predictive Maintenance as a service

      Predictive Maintenance as a service

      Every unplanned downtime costs time and money. Inspections only show what is visible at that moment and depend on when they are performed. If they are planned too early or too late, the problem remains undetected and leads to unplanned downtime. No more surprises with predictive maintenance: Continuous monitoring and analysis identify deviations before they cause disruptions. Immediately after installing the measuring equipment and associated sensors, the condition of the machine is visible on a scale of 0 to 100%. Whether you have ten or a thousand machines, our AI-driven data analysis continuously monitors the condition of your installations. The system functions locally, at the edge, or in the cloud, and integrates seamlessly with existing business applications such as ERP and maintenance systems. This gives you control over your assets – not reactively, but completely predictive.

    2. Prefabricated Pump Stations – The Sustainable Standard for Pressure Boosting and Water Distribution

      Prefabricated Pump Stations – The Sustainable Standard for Pressure Boosting and Water Distribution

      The drinking water sector faces significant challenges in ensuring the availability and reliability of water for the future. To meet these demands, Rodelta has developed an efficient, sustainable, and future-proof solution. The newly designed prefabricated concrete pump stations offer an innovative approach that combines standardization, quality, planning efficiency, and environmental benefits in a single, robust design. In this concept, the pump unit is fully integrated into a prefabricated concrete underground structure. The result is a compact, reliable, and low-maintenance system that is easily reproducible and can be quickly deployed across different locations. The prefabricated structure serves as a waterproof, durable, and robust housing, safely and efficiently accommodating all pumping equipment. Production under controlled factory conditions ensures consistent, high-quality construction, independent of weather conditions or local site challenges. This leads to shorter project timelines, reduced risk of errors, and increased operational reliability. Key Benefits: Rapid installation – from production to operational system in just a few days; Fully waterproof and durable design, ideal for groundwater-sensitive sites; Standardized design, easily scalable and suitable for stock production; Flexible configurations for different pump capacities, pipe entries, and access solutions; Use of geopolymer concrete – with up to 80% lower CO₂ emissions compared to traditional concrete; Faster permitting processes due to uniform design and predictable quality; Reduced workload for engineering teams thanks to modular standardization. This innovation brings together technical reliability, construction efficiency, and sustainability in a single integrated solution. Rodelta’s prefabricated pump stations thus set a future-proof standard for pressure boosting and water transport, designed for a circular and environmentally friendly water sector.

    3. Realtime biosensor for water quality

      Realtime biosensor for water quality

      The NODE realtime biosensor continuously monitors water quality by directly measuring microbial activity in the water. Changes in organic load or toxic influences are detected immediately and translated into clear, realtime measurement data. This enables rapid intervention and supports better protection of processes, installations, and the environment. The autonomous and robust system can be deployed in applications such as sewer networks, wastewater treatment plants, and surface water, and aligns with modern, data-driven water monitoring. Want to discover how this biosensor can strengthen your application? Visit us at the trade fair and get expert advice.

    4. RO/NF Membranes

      RO/NF Membranes

      NanoH2O™ RO and NF membranes are built on breakthrough Thin-Film Nanocomposite (TFN) technology, delivering industry-leading performance for advanced water treatment applications. By embedding benign nanomaterials on the membrane surface, TFN technology enhances membrane flux by up to 20% while maintaining exceptional salt rejection, enabling higher productivity and improved water quality. NanoH2O RO membranes deliver industry-leading salt rejection, with SWRO G2 models achieving stabilized rejection up to 99.89%. By increasing permeate flow and lowering energy consumption, they help reduce desalination costs and are ideal for large-scale seawater and high-demand industrial applications. For brackish water treatment, NanoH2O BWRO membranes combine TFN technology, intrinsic anti-fouling properties, and low differential pressure spacer designs to ensure reliable performance, less downtime, and lower total cost of ownership. Premium lines such as MaxRO and MOST further enhance energy efficiency, flow performance, and durability in demanding conditions. NanoH2O NF membranes provide highly selective filtration, removing heavy metals, organic pollutants, PFAS, and other emerging contaminants while retaining essential minerals. Their low-pressure operation reduces energy use and operating costs, offering a sustainable solution for municipal and industrial water treatment. Together, NanoH2O RO and NF technologies deliver a comprehensive portfolio engineered for efficiency, durability, and sustainability — turning water into new possibilities across desalination, industrial reuse, and advanced municipal treatment.

    5. Rotating Machinery Manager

      Rotating Machinery Manager

      The advanced multi-sensor probe detects anomalies at an early stage by measuring temperature, ultrasound and vibration. Thanks to easy installation, which does not require sensor wiring, and the use of LoRaWAN® and battery operation, remote access to machine parameters is possible, increasing transparency and availability. In addition, a machine learning algorithm relieves the maintenance team. Advantages: - Plant monitoring - Wireless networking - Predictive maintenance - Process optimization

    6. SolarBee SB10000 Standard Lake Mixer

      SolarBee SB10000 Standard Lake Mixer

      SolarBee® SB10000 – Solar-Powered Floating Mixer for Lakes & Reservoirs The SB10000 is a powerful, solar-driven floating mixer engineered for lakes, reservoirs, and ponds—ideal for utilities and water managers looking to improve circulation without grid power. Designed for versatile environments (including raw water reservoirs and stormwater basins), the SB10000 helps combat thermal stratification, supports biological health, and enhances overall treatment efficiency. Its floating design enables rapid deployment without draining or structural modifications, and its rugged construction is built for long-term reliability in demanding outdoor conditions. With zero grid dependency and minimal maintenance requirements, the SB10000 delivers a sustainable, cost-effective way to keep large water bodies healthier and more resilient.

    7. TDSC-regeling

      TDSC-regeling

      TDSC: Time Divided Spread Control Rioolpompstations starten traditioneel zodra het water een bepaald niveau bereikt. Wanneer meerdere stations op dezelfde persleiding zijn aangesloten, leidt dit na regenval tot gelijktijdig pompen: piekbelasting op het elektriciteitsnet en overbelasting van de leiding. TDSC lost dit op met een verrassend eenvoudig principe: elke pomp krijgt een eigen tijdslot waarbinnen deze mag starten. Bij een interval van 5 minuten en 5 pompstations krijgt elk station een slot van 1 minuut. De spreiding ontstaat automatisch, zonder dat stations onderling communiceren. Alleen een dagelijkse kloksynchronisatie is nodig. De voordelen zijn direct meetbaar: - Piekvermogen daalt met 60-80%, wat lagere capaciteitstarieven betekent - Gelijkmatige belasting van persleidingen verlengt de levensduur - Geen afhankelijkheid van communicatienetwerken of centrale systemen - Robuust: uitval van één station beïnvloedt de rest niet TDSC is ontwikkeld in samenwerking met de gemeente Krimpenerwaard, waar de polderstructuur met verspreide pompstations het probleem bijzonder voelbaar maakte. De praktijkkennis van operators bleek essentieel voor een werkbare oplossing. Het principe is bewust open source. Alle specificaties en implementatievoorbeelden zijn vrij beschikbaar voor waterschappen, gemeenten en leveranciers. Geen licentiekosten, geen vendor lock-in. TDSC bewijst dat duurzame innovatie niet altijd complexe technologie vereist, maar soms een frisse blik op een bekend probleem. Door slim gebruik van tijd als coördinatiemechanisme ontstaat een oplossing die vandaag toepasbaar is, op elke schaal, door elke organisatie. Wij nodigen de watersector uit om TDSC toe te passen en gezamenlijk verder te ontwikkelen.