. Microfluidics, Anal. Chem, vol.90, pp.4445-4451

K. E. Laintz, C. M. Wai, C. R. Yonker, and R. D. Smith, Solubility of fluorinated metal diethyldithiocarbamates in 428, 1991.

, Supercritical carbon dioxide, J. Supercrit. Fluids, vol.4, pp.194-198

K. Liu, J. Li, S. Yan, W. Zhang, Y. Li et al., A review of status of tetrabromobisphenol A (TBBPA) in China, 2016.

, Chemosphere, vol.148

J. Lu, B. Han, and H. Yan, UV-Vis spectroscopic studies of solute-solvent and solute-cosolvent interactions in supercritical 432 carbon dioxide, Phys. Chem. Chem. Phys, vol.1, pp.3269-3276, 1999.

C. Ma, J. Yu, B. Wang, Z. Song, J. Xiang et al., Chemical recycling of brominated flame retarded 434 plastics from e-waste for clean fuels production: a review, Renewable and Sustainable Energy Reviews, vol.61, pp.433-450, 2016.

,

G. Madras, C. Thibaud, C. Erkey, and A. Akgerman, Modeling of supercritical extraction of organics from solid matrices, 1994.

, AlChE J, vol.40, pp.777-785

E. Marioth, G. Bunte, and T. Hardle, Supercritical fluid extraction of ABS-composites in order to separate organic flame 439 retardants, Polymer Recycling(UK), vol.2, pp.303-308, 1996.

A. Maurice, J. Theisen, and J. P. Gabriel, Microfluidic Lab-on-Chip Advances for Liquid-Liquid Extraction Process, p.441, 2020.
URL : https://hal.archives-ouvertes.fr/hal-02865802

, Studies. Curr. Opin. Colloid Interface Sci

K. Nakajima, T. Kawakami, T. Ueno, and H. Onishi, Method for treating thermoplastic resin composition containing flame 443 retardant, 2002.

M. Ni, H. Xiao, Y. Chi, J. Yan, A. Buekens et al., Combustion and inorganic bromine emission of waste, 2012.

,

G. Nimet, E. A. Da-silva, F. Palú, C. Dariva, L. Dos-santos-freitas et al., , vol.448, p.24, 2011.

, Heliantus annuus L.) oil with supercritical CO2 and subcritical propane: Experimental and modeling, Chem. Eng

, J, vol.168, pp.262-268

S. Peng, S. Liang, M. Yu, and X. Li, Extraction of polybrominated diphenyl ethers contained in waste high impact 451 polystyrene by supercritical carbon dioxide, J. Mater. Cycles Waste Manage, vol.16, pp.178-185, 2014.

M. Poliakoff, S. M. Howdle, and S. G. Kazarian, Vibrational spectroscopy in supercritical fluids: from analysis and 454 hydrogen bonding to polymers and synthesis, Angewandte Chemie International Edition in English, vol.34, pp.1275-1295, 1995.

,

S. Sakai, J. Watanabe, Y. Honda, H. Takatsuki, I. Aoki et al., Combustion of brominated 457 flame retardants and behavior of its byproducts, Chemosphere, vol.42, pp.519-531, 2001.

M. E. Sikorski, Recycling of polymeric materials from carpets and other multi-component structures by means of 459 supercritical fluid extraction, 1993.

G. Sodeifian, S. Ghorbandoost, S. A. Sajadian, and N. S. Ardestani, Extraction of oil from Pistacia khinjuk using 461 supercritical carbon dioxide: Experimental and modeling, J. Supecrit. Fluids, vol.110, pp.265-274, 2016.

,

H. Sovová, Rate of the vegetable oil extraction with supercritical CO2-I. Modelling of extraction curves, Chem. Eng, 1994.

. Sci, , vol.49, pp.87012-87020

M. Srinivasan, J. Smith, and B. Mccoy, Supercritical fluid desorption from activated carbon, Chem. Eng. Sci, vol.45, pp.1885-466, 1990.

W. A. Stubbings, L. V. Nguyen, K. Romanak, L. Jantunen, L. Melymuk et al., , 2019.

, Flame retardants and plasticizers in a Canadian waste electrical and electronic equipment (WEEE) dismantling facility

, Total Environ, vol.675, pp.594-603

P. Subra, S. Castellani, P. Jestin, and A. Aoufi, Extraction of ?-carotene with supercritical fluids: experiments and 471 modelling, J. Supecrit. Fluids, vol.12, pp.261-269, 1998.

J. Sunarso and S. Ismadji, Decontamination of hazardous substances from solid matrices and liquids using supercritical 473 fluids extraction: A review, J. Hazard. Mater, vol.161, pp.1-20, 2009.

M. Suzuki, K. Nakajima, and H. Onishi, Method for treating flame retardant resin composition, 2002.

C. S. Tan and D. C. Liou, Modeling of desorption at supercritical conditions, AlChE J, vol.35, pp.1029-1031, 1989.

,

L. T. Taylor, Supercritical fluid extraction, 1996.

D. Villanueva-bermejo, T. Fornari, M. V. Calvo, J. Fontecha, J. A. Coelho et al., Application of 479 a novel approach to modelling the supercritical extraction kinetics of oil from two sets of chia seeds, J. Ind. Eng. Chem, vol.82, pp.317-323, 2020.

H. Wang, M. Hirahara, M. Goto, and T. Hirose, Extraction of flame retardants from electronic printed circuit board by 482 supercritical carbon dioxide, J. Supecrit. Fluids, vol.29, pp.73-74, 2004.

Z. Wang, Q. Zhou, H. Guo, P. Yang, and W. Lu, Determination of water solubility in supercritical CO2 from 313.15 to 484 473.15 K and from 10 to 50 MPa by in-situ quantitative Raman spectroscopy, Fluid Phase Equilib, vol.476, pp.170-178, 2018.

,

P. Xiong, X. Yan, Q. Zhu, G. Qu, J. Shi et al., A review of environmental occurrence, fate, and toxicity 487 of novel brominated flame retardants, Environ. Sci. Technol, vol.53, pp.13551-13569, 2019.

G. Yu, Q. Bu, Z. Cao, X. Du, J. Xia et al., Brominated flame retardants (BFRs): a review on 489 environmental contamination in China, Chemosphere, vol.150, pp.479-490, 2016.

C. C. Zhang and F. S. Zhang, Removal of brominated flame retardant from electrical and electronic waste plastic by 491 solvothermal technique, J. Hazard. Mater, vol.221, pp.193-198, 2012.

Y. Zhao, X. Lv, and H. Ni, Solvent-based separation and recycling of waste plastics: A review, Chemosphere, vol.209, pp.493-707, 2018.

X. Zhou, J. Guo, K. Lin, K. Huang, and J. Deng, Leaching characteristics of heavy metals and brominated flame retardants 495 from waste printed circuit boards, J. Hazard. Mater, pp.96-102, 2013.

E. Zuiderveen, J. C. Slootweg, and J. De-boer, Novel brominated flame retardants-A review of their occurrence in indoor 497 air, dust, consumer goods and food, Chemosphere, 2020.