![]() ![]() His task done, Ryo bids his new friends a tearful farewell and returns home, where his parents note he seems to have grown up a bit. After a fierce battle, Ryo and his Digimon comrades are able to vanquish the villain and rescue Tai, the last of the DigiDestined being held prisoner. ![]() (Depending on which game, he takes on the form of one of his two components, either Machinedramon or Kimeramon). He also encounters villains previously defeated by the DigiDestined beginning with Devimon, then Etemon, Myotismon and the Dark Master Piedmon before confronting Milleniumon. Along the way, he befriends a number of Digimon allied to the DigiDestined, including Leomon, Andromon, Piximon and the DigiDestined partners themselves. He thus begins his quest to rescue the DigiDestined and defeat Millenniumon. This alerts him to the fact that this is not a dream and very real. He quickly realizes he has no choice but to help after getting injured by a Kuwagamon/Shellmon (depending on which game). After Agumon explains that Ryo was summoned because a powerful evil Digimon called Millenniummon captured the DigiDestined, then warped the very essence of time and resurrected previously defeated evil Digimon such as Devimon and Myotismon, Ryo quite understandably finds it all hard to believe and thinks he's having a nightmare from too many video games. The next thing he knows, he's suddenly in the middle of a forest and confronted by Agumon, Taichi "Tai" Kamiya's Digimon partner. The voice pleads to him to touch the device, which Ryo (rather naively) does. Before he can do so, however, a voice calls out to him from his computer, which is displaying a machine he's never seen before. ![]() On December 31, 1999, while chatting online a blackout occurs and Ryo's mother asks him to check the fuse-box. He lives with his parents in a comfortable two-story house. Finally, we revised the data included in GREET for graphite (the anode active material), battery electronics, and battery assembly.Ryo is a boy roughly the same age as the older DigiDestined, which is about 11. Also as input to GREET, we calculated new emission factors for equipment (kilns, dryers, and calciners) that were not previously included in the model and developed new material and energy flows for the battery electrolyte, binder, and binder solvent. As input for GREET, more » we developed new or updated data for the cathode material and the following materials that are included in its supply chain: soda ash, lime, petroleum-derived ethanol, lithium brine, and lithium carbonate. Our analysis concluded that cobalt- and nickel-containing compounds are the most energy intensive to = as the cathode material using Argonne's Battery Performance and Cost (BatPaC) model for hybrid electric vehicles, plug-in hybrid electric vehicles, and electric vehicles. Further, we used Argonne National Laboratory’s Battery Performance and Cost (BatPaC) model to determine battery composition (e.g., masses of cathode, anode, electrolyte, housing materials) when different cathode materials were used in the battery. For some cathode materials, we considered solid state and hydrothermal preparation methods. This report documents the material and energy flows of producing each of these cathode and anode materials from raw material extraction through the preparation stage. Lithium metal is also an emerging anode material. ![]() In the case of the LMR-NMC cathode, the anode is either graphite or a graphite-silicon blend. In GREET, these cathode materials are incorporated into batteries with graphite anodes. The Greenhouse gases, Regulated Emissions and Energy use in Transportation (GREET) model has been expanded to include four new cathode materials that can be used in the analysis of battery-powered vehicles: lithium nickel cobalt manganese oxide (LiNi 0.4Co 0.2Mn 0.4O 2 ), lithium iron phosphate (LiFePO 4 ), lithium cobalt oxide (LiCoO 2 ), and an advanced lithium cathode (0.5Li 2MnO 3∙0.5LiNi 0.44Co 0.25Mn 0.31O 2 ). ![]()
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