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urldate = {2020-12-28}
}
@misc{hugin-lars-article,
author = {{Offshore Engineer}},
howpublished = {Online},
month = mar,
organization = {Offshore Engineer Digital},
title = {Kongsberg Develops New LARS for HUGIN AUVs},
url = {https://www.oedigital.com/news/477126-kongsberg-develops-new-lars-for-hugin-auvs},
urldate = {2020-12-29},
year = {2020}
}
@article{bms-cost-article,
author = {Celine Cluzel and Shane Slater and George Paterson and Rebecca Trengove},
journaltitle = {Resource Guide of Battery Power},
title = {Cost and Performance of Electric Vehicle Batteries},
url = {https://www.batterypoweronline.com/markets/batteries/cost-and-performance-of-electric-vehicle-batteries},
urldate = {2020-12-29},
volume = {2012},
year = {2012}
}
@article{bms-cost-report,
author = {Celine Cluzel and Craig Douglas},
journaltitle = {The Committee on Climate Change},
month = mar,
title = {Cost and performance of EV batteries},
url = {http://www.element-energy.co.uk/wordpress/wp-content/uploads/2012/06/CCC-battery-cost_-Element-Energy-report_March2012_Finalbis.pdf},
urldate = {2020-12-29},
year = {2012}
}
@misc{batt-uni-lithium-chemistry,
author = {{Battery University}},
howpublished = {Online},
month = mar,
title = {Types of Lithium-ion},
url = {https://batteryuniversity.com/learn/article/types_of_lithium_ion},
urldate = {2020-12-29},
year = {2017}
}
@article{li-direct-recycling,
abstract = {Direct recycling of lithium-ion is a promising method for manufacturing sustainability. It is more efficient than classical methods because it recovers the functional cathode particle without decomposition into substituent elements or dissolution and precipitation of the whole particle. This case study of cathode-healing™ applied to a battery recall demonstrates an industrial model for recycling of lithium-ion, be it consumer electronic or electric vehicle (EV) batteries. The comprehensive process includes extraction of electrolyte with carbon dioxide, industrial shredding, electrode harvesting, froth flotation, cathode-healing™ and finally, building new cells with recycled cathode and anode. The final products demonstrated useful capability in the first full cells made from direct recycled cathodes and anodes from an industrial source. The lessons learned on recycling the prototypical chemistry are preliminarily applied to EV relevant chemistries.},
author = {Steve Sloop and Lauren Crandon and Marshall Allen and Kara Koetje and Lori Reed and Linda Gaines and Weekit Sirisaksoontorn and Michael Lerner},
doi = {10.1016/j.susmat.2020.e00152},
issn = {2214-9937},
journal = {Sustainable Materials and Technologies},
pages = {e00152},
title = {A direct recycling case study from a lithium-ion battery recall},
url = {http://www.sciencedirect.com/science/article/pii/S221499371830059921},
urldate = {2020-12-29},
volume = {25},
year = {2020}
}
@misc{price-amron-rov,
author = {{Amron}},
howpublished = {Online},
title = {Outland Technology OTI-ROV-500 ROV Model 500},
url = {https://www.amronintl.com/outland-technology-rov-model-500-oti-rov-500.html},
urldate = {2020-12-29}
}
@misc{price-deep-trekker,
author = {{Deep Trekker}},
howpublished = {Online},
title = {REVOLUTION ROV | NAV PACKAGE},
url = {https://www.deeptrekker.com/shop/products/revolution-nav-rov},
urldate = {2020-12-29}
}

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@ -30,7 +30,7 @@ cell_height = 65; % mm
%cell_price = 6; % £
cell_price = 5; % £
cell_emb_c = 117.5; % kgCO2eq/kWh
cell_emb_c = 80; % kgCO2eq/kWh
cell_rec_emb_c = 15; % kgCO2eq/kWh

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