168
P. Giri et al.
5. Wright GF (1956) Studies with tobacco smoke condensate. In: Proceedings of the 3rd national
cancer conference, pp 479–484
6. Hossain MT, Hassi U, Huq SI (2018) Assessment of concentration and toxicological (Cancer)
risk of lead, cadmium and chromium in tobacco products commonly available in Bangladesh.
Toxicol Rep 1(5):897–902
7. Kensler CJ, Battista SP (1963) Components of cigarette smoke with ciliary-depressant activity:
Their selective removal by filters containing activated charcoal granules. New Engl J Med
269(22):1161–1166
8. Patrianakos C, Hoffmann D (1979) Chemical studies on tobacco smoke LXIV. On the analysis
of aromatic amines in cigarette smoke. J Anal Toxicol 3(4):150–154
9. Schmeltz I, Hoffmann D (1977) Nitrogen-containing compounds in tobacco and tobacco
smoke. Chem Rev 77(3):295–311
10. Karch A, GBD (2016) Risk factors collaborators. Global, regional, and national comparative
risk assessment of 84 behavioural, environmental and occupational, and metabolic risks or
clusters of risks, 1990–2016: a systematic analysis for the Global Burden of Disease Study
2016
11. Rodgman A, Smith CJ, Perfetti TA (2000) The composition of cigarette smoke: a retrospective,
with emphasis on polycyclic components. Hum Exp Toxicol 19(10):573–595
12. Doll R, Bradford Hill A (1952) Study of the aetiology of carcinoma of the lung. Br Med J
2(4797):1271
13. Clapp WL, Fagg BS, Smith CJ (1999) Reduction in Ames Salmonella mutagenicity of
mainstream cigarette smoke condensate by tobacco protein removal. Mutat Res/Gen Toxicol
Environl Mutagen 446(2):167–174
14. Smith CJ et al (2000) “IARC group 2B Carcinogens” reported in cigarette mainstream smoke.
Food Chem Toxicol 38(9):825–848
15. Buntin RR, Harding JW, Keller JP, Wollie L, Murdock AO (1971) Patent No. 3595245. United
States
16. Xue LL, Bis.Koller K, Gao Q (2003) Patent No. US 6584979 B2. United States
17. AIP Conference Proceedings 1755, 150006 (2016) https://doi.org/https://doi.org/10.1063/1.
4958579. Accessed 21 July 2016
18. Slaughter E, Gersberg RM, Watanabe K, Rudolph J, Stransky C, Novotny TE (2011) Toxicity of
cigarette butts, and their chemical components, to marine and freshwater fish. Tobacco Control
20(Suppl 1):i25–i29
19. Mohajerani A, Kadir AA, Larobina L (2016) A practical proposal for solving the world’s
cigarette butt problem: recycling in fired clay bricks. Waste Manage 1(52):228–244
20. Brown RC, Wake D (1991) Air filtration by interception—theory and experiment. J Aerosol
Sci 22(2):181–186
21. Jianhui W, Wen D, Bin P, Xiaobing Z, Fuwei X, Huimin L, Kejun Z (2014) Filtration
and retention characteristics of smoke components in filters. Beiträge zur Tabakforschung
International/Contrib Tobacco Res 1;26(3):121–131
22. Cox RT (2014) Inventor; Borealis Technical Ltd, assignee. Cooling filter for cigarettes and
smoking articles. United States patent application US 13/853,034
23. Bosch-Jimenez P, Martinez-Crespiera S, Amantia D, Della Pirriera M, Forns I, Shechter
R, Borràs E (2017) Non-precious metal doped carbon nanofiber air-cathode for Microbial
Fuel Cells application: oxygen reduction reaction characterization and long-term validation.
Electrochim Acta 20(228):380–388
24. Devi B, Venkateswarulu M, Kushwaha HS, Halder A, Koner RR (2018) A polycarboxyldecorated FeIII-based xerogel-derived multifunctional composite (Fe 3 O 4 /Fe/C) as an efficient electrode material towards oxygen reduction reaction and supercapacitor application.
Chemistry–A Eur J 2;24(25):6586–6594
P. Giri et al.
5. Wright GF (1956) Studies with tobacco smoke condensate. In: Proceedings of the 3rd national
cancer conference, pp 479–484
6. Hossain MT, Hassi U, Huq SI (2018) Assessment of concentration and toxicological (Cancer)
risk of lead, cadmium and chromium in tobacco products commonly available in Bangladesh.
Toxicol Rep 1(5):897–902
7. Kensler CJ, Battista SP (1963) Components of cigarette smoke with ciliary-depressant activity:
Their selective removal by filters containing activated charcoal granules. New Engl J Med
269(22):1161–1166
8. Patrianakos C, Hoffmann D (1979) Chemical studies on tobacco smoke LXIV. On the analysis
of aromatic amines in cigarette smoke. J Anal Toxicol 3(4):150–154
9. Schmeltz I, Hoffmann D (1977) Nitrogen-containing compounds in tobacco and tobacco
smoke. Chem Rev 77(3):295–311
10. Karch A, GBD (2016) Risk factors collaborators. Global, regional, and national comparative
risk assessment of 84 behavioural, environmental and occupational, and metabolic risks or
clusters of risks, 1990–2016: a systematic analysis for the Global Burden of Disease Study
2016
11. Rodgman A, Smith CJ, Perfetti TA (2000) The composition of cigarette smoke: a retrospective,
with emphasis on polycyclic components. Hum Exp Toxicol 19(10):573–595
12. Doll R, Bradford Hill A (1952) Study of the aetiology of carcinoma of the lung. Br Med J
2(4797):1271
13. Clapp WL, Fagg BS, Smith CJ (1999) Reduction in Ames Salmonella mutagenicity of
mainstream cigarette smoke condensate by tobacco protein removal. Mutat Res/Gen Toxicol
Environl Mutagen 446(2):167–174
14. Smith CJ et al (2000) “IARC group 2B Carcinogens” reported in cigarette mainstream smoke.
Food Chem Toxicol 38(9):825–848
15. Buntin RR, Harding JW, Keller JP, Wollie L, Murdock AO (1971) Patent No. 3595245. United
States
16. Xue LL, Bis.Koller K, Gao Q (2003) Patent No. US 6584979 B2. United States
17. AIP Conference Proceedings 1755, 150006 (2016) https://doi.org/https://doi.org/10.1063/1.
4958579. Accessed 21 July 2016
18. Slaughter E, Gersberg RM, Watanabe K, Rudolph J, Stransky C, Novotny TE (2011) Toxicity of
cigarette butts, and their chemical components, to marine and freshwater fish. Tobacco Control
20(Suppl 1):i25–i29
19. Mohajerani A, Kadir AA, Larobina L (2016) A practical proposal for solving the world’s
cigarette butt problem: recycling in fired clay bricks. Waste Manage 1(52):228–244
20. Brown RC, Wake D (1991) Air filtration by interception—theory and experiment. J Aerosol
Sci 22(2):181–186
21. Jianhui W, Wen D, Bin P, Xiaobing Z, Fuwei X, Huimin L, Kejun Z (2014) Filtration
and retention characteristics of smoke components in filters. Beiträge zur Tabakforschung
International/Contrib Tobacco Res 1;26(3):121–131
22. Cox RT (2014) Inventor; Borealis Technical Ltd, assignee. Cooling filter for cigarettes and
smoking articles. United States patent application US 13/853,034
23. Bosch-Jimenez P, Martinez-Crespiera S, Amantia D, Della Pirriera M, Forns I, Shechter
R, Borràs E (2017) Non-precious metal doped carbon nanofiber air-cathode for Microbial
Fuel Cells application: oxygen reduction reaction characterization and long-term validation.
Electrochim Acta 20(228):380–388
24. Devi B, Venkateswarulu M, Kushwaha HS, Halder A, Koner RR (2018) A polycarboxyldecorated FeIII-based xerogel-derived multifunctional composite (Fe 3 O 4 /Fe/C) as an efficient electrode material towards oxygen reduction reaction and supercapacitor application.
Chemistry–A Eur J 2;24(25):6586–6594
