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Effects of different process variables such as initial concentration, pH, aeration, and media temperature were tested.
In ethanol media, temperature turned out to be a critical factor on peak retention and separation.
Growth media temperature and nutrients played a major role in the production of bacteriocin (Todorov et al. 2006).
The culture conditions, including the culture media, temperature, agitation speed and air flow were tested in order to obtain an increased expression levels of the modified protein.
Table 1 Sputtering parameters of ITO and Pt-13%Rh thin films Sputtering parameters Pressure Paa) Sputtering Power (W) Sputtering media Temperature ITO 0.4 RF 150 Ar/O2 = 40 2 RT Pt-13%Rh 0.4 DC 120 Ar RT.
The effect of media temperature on pyridine degradation was investigated at an initial pyridine concentration of 100 ppm, pH of 9.1, air flow at 1.5 L min −1, and power of 360 W.
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With increasing media temperatures, the removal efficiencies of pyridine increased in the temperature range in this study.
Table1 was analyzed with double factor variance analysis, because the effects of different media, temperatures and the interactions are all significant, so main effect was ignored.
Electrochemical probes monitored the dissolved oxygen and pH in each vessel, while individual thermocouples recorded the media temperatures.
We used next generation sequencing (RNA-seq) to determine the transcriptional profile of C. parapsilosis growing in several conditions including different media, temperatures and oxygen concentrations.
We have used a combination of different growth media, temperatures and growth phases to test the expression stability of twelve reference gene candidates in P. atrosepticum, and completed the test with an experiment in infected potato leaves.
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