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Purification rate of silica fume.
In 5 days, a purification rate of 93.1% was obtained.
The latter value reflects water purification rate of 94.6%.
The BOD of 14 (±1) mg L−1 corresponds to the purification rate of 82%.
The COD value of 47 mg L−1 corresponds to the purification rate of 85.9%.
The BOD value of 4.0 (±0.1) mg L−1 corresponds to the purification rate of 97.8%.
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The average purification rates were 70 96% for chemical oxygen demand (COD), 39 90% for total nitrogen (TN), 36 82% for NH4 N, and 70 93% for total phosphorous (TP).
In addition, the purification rates of particulate matters with particle size below 2.5 (PM2.5) and below 10 µm (PM10) are about 20%.
Results show that the optimum spraying amount of environment-friendly SFS materials is 0.75 kg/m2, the highest cooling effect can reach more than 5 °C, and the purification rates of carbon oxides, nitrogen oxides, and sulfur dioxides can reach more than 16%.
A mathematical model based optimization was used to theoretically predict the optimal purification rates for an equimolar mixture of the two components resulting in product purities of up to 99.5%.
There was no apparent effect of protein size on the purification success rate for this collection, but the overall success rate for proteins predicted to contain trans-membrane domains (http://www.cbs.dtu.dk/services/TMHMM/) was only 57% compared with the overall success rate of 72%.
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