Abstract:
A system (100, 200, 300) and method for the on-demand on-line treatment of water is disclosed. The system (100, 200, 300) uses ultra high energy UV light coupled with the introduction of a strong oxidant to induce photo-catalytic degradation of chemical compounds and biocidal activity. When an agent or substance is detected in the water the treatment system (100, 200, 300) would be activated.
Abstract:
A process analysis system (100) includes sensors (102, 103, 104) and a processing system (105). The sensors (102, 103, 104) monitor the process to generate sensor signals (111). The processing system (105) processes the sensor signals (111) to detect a deviation from a baseline for the process (101). The processing system (105) generates a process vector for the deviation in response to detecting the deviation. The processing system (105) compares the process vector to a plurality of library vectors to classify the deviation. In some examples, the process (101) comprises a system that supplies water.
Abstract:
A process analysis system includes sensors and a processing system. The sensors monitor the process to generate sensor signals. The processing system processes the sensor signals to detect a deviation from a baseline for the process. The processing system generates a process vector for the deviation in response to detecting the deviation. The processing system compares the process vector to a plurality of library vectors to classify the deviation. In some examples, the process comprises a system that supplies water.
Abstract:
A system and method for the on-demand on-line treatment of water is disclosed. The system uses ultra high energy UV light coupled with the introduction of a strong oxidant to induce photo-catalytic degradation of chemical compounds and biocidal activity. When an agent or substance is detected in the water the treatment system would be activated.
Abstract:
A process analysis system (100) includes sensors (102, 103, 104) and a processing system (105). The sensors (102, 103, 104) monitor the process to generate sensor signals (111). The processing system (105) processes the sensor signals (111) to detect a deviation from a baseline for the process (101). The processing system (105) generates a process vector for the deviation in response to detecting the deviation. The processing system (105) compares the process vector to a plurality of library vectors to classify the deviation. In some examples, the process (101) comprises a system that supplies water.