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Insoluble fractions after both processes had significantly higher protein efficiency ratio: 3.08 and 2.93 compared to soluble fractions: 2.62 and 2.76 after hydrolysis and thermal extraction respectively.
Both stick water from thermal extraction and fish protein hydrolysates, after hydrolysis, are nutritionally rich fractions and yielded approx. 18 and 25% of dry material in these fractions respectively.
The instrumental performances of a Thermo Desorption-Cooled Injection System coupled with a gas chromatography mass spectrometer (GC MS) were improved by a Plackett-Burman experimental design for the direct thermal extraction of volatile compounds from extra-virgin olive oils.
Two different processes were tested in semi-industrial scale: (i) thermal extraction to separate oil and proteins and (ii) enzymatic hydrolysis with different commercial proteases to produce fish protein hydrolysates (FPH) and separate oil.
The optimal extraction conditions were determined: pH of extraction solvent 1.24, extraction voltage 156 V, extraction time 240 s, with the predicted extraction yield was 209 g/kg, which was very consistent with the experimental value (209 ± 2 g/kg) and significantly higher than traditional thermal extraction method (175 ± 6 g/kg at 85 °C for 80 min).
Experimentally, such structures have not shown any clear improvement in device performance yet, but the thermal extraction of carriers was suppressed due to improved quantum confinement [63].
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Here, we developed a novel semi-automated thermal signal extraction method employing deep learning algorithms for facial landmark identification.
Using these landmarks for ROI placement for thermal signal extraction required minimal manual intervention which was specifically needed only once on the first frame for each subject.
In this study the performance of a low concentrator photovoltaic system with thermal (LCPV/T) extraction was conceptualised and evaluated in depth.
Interesting next steps would be, e.g., the addition of binding sites to the PNIPAM shell that would allow for controlled capture, magneto-thermal aggregation, extraction and release of specifically bound biomolecules in integrated systems, as well as enhanced targeted magnetic resonance imaging and therapy utilizing the stronger response of induced particle aggregates.
During heat extraction thermal response tests (TRTs) the effect of the changing convective flow is more dominant than during heat injection tests.
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