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When Franklin Richards was kidnapped by Onslaught, Doom joined the Fantastic Four, Avengers and the X-Men to battle Onslaught in Central Park. An enraged Hulk was able to crack open Onslaught's shell. However, Onslaught remained as pure psionic energy, separated Hulk and Banner, planning to spread across the planet. Thor Odinson plunged into Onslaught, trying to contain him. The Fantastic Four, the majority of the Avengers, and the Hulk-less Banner followed in short order, with Doom being forced to join the sacrifice when Iron Man tackled the villain into the energy mass. Thanks to this sacrifice, the X-Men finally managed to destroy Onslaught. Doom, the Fantastic Four, and the Avengers and Banner were believed dead but were instead saved by Franklin, who created a pocket dimension called Counter-Earth to keep them safe. After several months away, the missing heroes returned from Counter-Earth, except for Doom, who remained there for a time. Doom uncovers the secret power at the heart of the planet, an avatar of his arch-foe Reed Richards' son, Franklin, the super-powered youth who conjured this globe and left a bit of himself behind to guide it from within. Doom managed to convince the little boy to relinquish control of this world with little more than a few errant promises of a better life.
Doom is a polymath, scientist, and inventor who possesses genius-level intellect. Doom has invented several doomsday machines and robots during his career as a supervillain, among them being his Doombots. Doctor Doom can exert technopathic control over certain machines, most notably his Doombots. Throughout most of his publication history he has been depicted as one of the most intelligent humans in the Marvel Universe, famously restoring the Thing's human form (a feat Reed Richards also accomplished but had difficulty in maintaining). On the other hand, Richards managed to process all the computer calculations necessary to save the life of a disintegrating Kitty Pryde by himself, a feat that Doom professed to be unable to do. Doom has used his scientific talents to steal or replicate the power of other beings such as the Silver Surfer, the Beyonder and in one case the entity Galactus's world-ship.
The mass transfer coefficients for the diffusion phase increased almost linearly with increasing temperature but it is less significant compared to the washing phase. These results confirm the effectiveness of MAE-brine at beginning of the extraction (washing phase), thus releasing more lipids during the washing phase. The enhancement of the mass transfer with increasing temperature during the diffusion phase may be due to the increase of kinetic energy of the lipid particles in the cracked microalgal cells. As the kinetic energy of the lipid particles increases, the lipids begin to move faster and more significantly .
According to Pereira et al. , PUFAs are the main fatty acids class found in the microalgal cell wall. The highest PUFAs percentage found at the higher temperature of MAE extraction (100 C) could be because more cell walls were ruptured and cracked at this temperature. The proportional trend of the PUFAs percentage with temperature also supports this hypothesis. Additionally, at higher temperatures, the mass transfer rate is proven higher as per calculated in the subsection above. Another possible reason is that less degradation of microalgal thermolabile compounds the as shorter extraction time due to the high heating rate in MAE technique although the high temperature was used . The study of Tyagi and Vasishtha  reported that PUFAs from soybean oil and vanaspati become saturated at high temperature and time by deep-frying at 190 C, showing that heating treatment at a longer time increase saturation. It was reported that a low thermal degradation of carotenoids obtained from olive oil were detected when microwave heating was applied compared to the rapid degradation when conventional heating was used . The highest PUFAs percentage at 44.1% (25.2 mg/g) was obtained at an extraction temperature of 100 C at 30 min.
The picture of the effect of the cell cracks on the lipid recovery using SEM micrograph (10 k) for Nannochloropsis sp. microalgae (a) before MAE, (b) at MAE conditions of 100 C and 3 min, (c) at at MAE conditions of 100 C and 30 min, (d) at MAE conditions of 60 C and 30 min and (e) at MAE conditions of 80 C and 30 min.
where Mt is the lipid yield at any time, Mw is the lipid yield at equilibrium for the washing step, Md is the lipid yield at equilibrium for the diffusion step, kw is the mass transfer coefficient for the washing step, kd is the mass transfer coefficient for the diffusion step, and t is the time. The values of lipid yields at equilibrium (Mw and Md) and mass transfer coefficients (kw and kd) were calculated using Polymath Software ver. 6.10 (CACHE Corporation, Austin, TX, USA). 1e1e36bf2d