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In this study pinch technology has been improved for wastewater temperature reduction.
The variation is due to variations in the influent wastewater flow, concentrations of oxygen-demanding substances, and wastewater temperature.
The wastewater temperature affected the adsorption rate as well as the adsorption capacity; in some positively and in others negatively.
The wastewater temperature decreased 0.19 °C per meter in the flow direction with a 120 mm wide square pipe.
The effects of wastewater temperature, transmembrane pressure, and feed-flow rate on the microfiltration model fit were studied.
In Chaosakuo's model, the wastewater temperature was taken into consideration in comparison to Foley's model, however, the R2 value of model was rather low (0.06).
Similar(42)
Low wastewater temperatures affect microbial growth rates and microbial populations, as well as physical chemical characteristics of the wastewater.
Mesophilic conditions are not respected for couples of ambient air and wastewater temperatures ranging respectively from 8 35 to 35 29 °C.
A simple steady-state heat transfer model based on energy balance has been designed to forecast the biogas production depending on ambient air and dairy wastewater temperatures variations.
During the operation period four HRTs (i.e., 6 days, 8 days, 14 days and 20 days) were used, while wastewater temperatures varied from about 0.0 °C to 29.1 °C.
The influence of some key parameters including reaction time, the volume of dye wastewater, testing temperature, and calcination temperature were evaluated.
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