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Fig. 1 High temperature coal activation reactor.
Therefore, the whole temperature region was divided into three temperature ranges: (1) high temperature range (413 to 463 K), (2) intermediate temperature range (373 to 412 K), and (3) low temperature range (343 to 372 K).
The initial high solids experiment was an endpoint saccharification performed in two steps: 1) high temperature digestion using purified endocellulase E1 from A. cellulolyticus followed by 2) a lower temperature digestion using the enzyme cocktail, Cellic® CTec2.
The following stress conditions were used: 1) high temperature 25°C; 2) low temperature 2°C; 3) salinity 32‰ (addition of salt, NaCl); 4) Re-use water, presenting lower DO and higher CO2; and finally 5) handling/crowding stressors, following procedures previously described by Weber and colleagues [ 71] as adapted from Pottinger et al. [ 44].
Stepwise saccharifications at about 2% solids loading were performed in a 1.5-mL volume in two steps: 1) high temperature (80°C) digestion using a mixture of thermophilic enzymes and 2) a lower temperature digestion (50°C) using the enzyme cocktail Cellic® CTec2.
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These include one and two dimensional quantum magnets, highly disordered magnets, lamellar CuO2 high temperature superconductors, and Fe pnictide and chalcogenide superconductors.
The effect of elevated CO2, high temperature and the interaction elevated CO2 × high temperature (3 °C above the ambient temperature) on the growth and proliferation of the root system of two spring wheat genotypes differing in vigorous growth was evaluated.
They can be considered as the solid solution between cubic LiNi1/2Ti1/2O2 and Li[Li1/3Ti2/3]O2 (high temperature form).
A 35kV high temperature superconducting controllable reactor (HTS-CR) is under development and the electromagnetic design has been completed.
Two decades after the discovery of the CuO2 high temperature superconductors, quite unexpectedly, an entirely new class of superconductors based on sheets of FeAs or Fe(Se/Te) has been discovered.
Fig. 9 High temperature valve construction.
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