Methods and systems for treating biological contaminants
Unwanted material in water, such as Legionella and scale, may be treated using a combination of technologies. Components of each technology may be controlled using a database, such as an Internet-of-things (IoT) database. An additional advantage of the treatment technologies is an increase in the efficiency of heat transfer components, such as cooling towers, and a related reduction in carbon footprint.
1 . A system for treating unwanted material, the system comprising:
a first chamber comprising one or more electrodes (“first” electrodes), wherein each pair of the of the one or more first electrodes comprises a positively charged first anode and a negatively charged first cathode operable to form an amount of ionized, dissolved metal ions in a cooling liquid depending on the magnitude of a first electrical current supplied to each pair of first electrodes and upon the flow rate of the cooling liquid through the first electrodes to reduce the unwanted material, wherein the unwanted material comprises at least biofilm; and
a second chamber, the second chamber comprising one or more electrodes (“second” electrodes), wherein each pair of the of the one or more second electrodes comprises a second positively charged anode and a second negatively charged cathode operable to form hypochlorite ions in the cooling liquid depending upon the magnitude of a second electrical current supplied to the second electrodes and upon the flow rate of the cooling liquid through the second electrodes, wherein each pair of second electrodes comprises an electrolysis “cell” enclosed in a steel baffle.
2 . The system as in claim 1 wherein the cooling liquid comprises water.
3 . The system as in claim 1 wherein one or more of the one or more first electrodes is composed of a variable amount of silver and copper.
4 . The system as in claim 3 wherein the variable amount of silver-to-copper is 60:40 silver to copper.
5 . The system as in claim 3 wherein the variable amount of silver-to-copper is 80:20 silver to copper.
6 . The system as in claim 1 wherein one or more of the one or more first electrodes is composed of a zinc or a lead.
7 . The system as in claim 1 wherein the unwanted material is composed of at least biological contaminants.
8 . The system as in claim 7 wherein the biological contaminants is composed of at least Legionella pneumophila or scale.
9 . The system as in claim 1 further comprising a control system for controlling the magnitude of the electrical current supplied to each pair of the first electrodes.
10 . The system as in claim 1 wherein the second positively charged anode and the second negatively charged cathode comprises multiple, material layers.
11 . The system as in claim 10 wherein the multiple, material layers of the second negatively charged cathode comprises a titanium mesh and the second positively charged anode comprises a titanium mesh with a mixed metal oxide layer covering the titanium mesh.
12 . The system as in claim 1 further comprising an epoxy resin applied to electrical connections of each of the one or more second electrodes to protect the connections from the cooling liquid and to limit oxidation which degrades the ability of the one or more second electrodes to generate a sufficient voltage or current required for the formation of the hypochlorite ions.