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operation temperature
Detectivity values measured for all 4×288 FPAs at operation temperature T ≈ 78 K with skimming mode included and background temperature Tb ≈295 K were in the range D*λ ? (1.2-1.7)×1011 cmHz1/2/W.
      
The enzyme electrode readily oxidizes primary alcohols and secondary alcohols with maximum current densities varying between 0.43 and 0.98 A m-2 depending on the substrate and the operation temperature.
      
The operation temperature and pH were 30°C and 5.0-5.5, respectively.
      
The operation temperature and pH were 41°C and 7.6-7.9, respectively.
      
Operation temperature and pH were 45°C, and 5.0-5.5, respectively.
      
Operation temperature and pH were 35°C, and 5.0-5.5, respectively.
      
The working volume of upflow anaerobic sludge blanket (UASB) type reactor was 1200 L, and operation temperature and pH were 41°C, and 7.7-7.9, respectively.
      
It is very important for electrode materials to have a wider operation temperature range.
      
The maximum operation temperature for the metallization with aluminum as coverlayer was found at 450?°C.
      
By adopting the formulae developed for both sintered spherical powder and fiber and adjusting their proportion, the agreement between experimental results and prediction is found to be quite good in the tested operation temperature range.
      
The optimum operation temperature was around 23?°C, but the styrene removal was still satisfactory at 12?°C.
      
The microbial growth rate decreased with increasing average inlet concentration and increased with increasing operation temperature at average inlet concentration ranging from 50 to 300?ppm and operation temperature ranging from 30 to 40°C.
      
The microbial growth rate would be inhibited with increasing average inlet concentration, and the inhibitive effect was more pronounced at higher operation temperature.
      
The microbial growth rate would be enhanced with increasing operation temperature, and the enhancing effect was more pronounced at higher average inlet concentration.
      
The biochemical reaction rate decreased with increasing average inlet concentration and increased with increasing operation temperature.
      
The biochemical reaction rate would be inhibited with increasing average inlet concentration, and the inhibitive effect was more pronounced at lower operation temperature.
      
The biochemical reaction rate would be enhanced with increasing the operation temperature, and the enhancing effect was more pronounced at higher average inlet concentration.
      
The maximum elimination capacity of biofilter increased with increasing operation temperature.
      
Both microbial growth rate and biochemical reaction rate would be enhanced and inhibited with increasing operation temperature in the operation temperature ranges of 25 to 30 and 30 to 40 °C, respectively.
      
The enhancing and inhibitive effects resulting from increased operation temperature were the most pronounced at the average inlet concentration of 200?ppm.
      
 

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