id	author	title	date	pages	extension	mime	words	sentence	flesch	summary	cache	txt
cet-9109	Liu, Zhaohui; Shu, Xin; Lin, Rui; Liu, Na; Luo, Ping	SiO2 Adsorption Aerogel Odor Dissipation Control Technology Based on Active Purification Technology	2018	6	.pdf	application/pdf	3661	80	29	Science of the Total Environment, 367(1), 89-95, DOI: 10.1016/j.scitotenv.2006.01.007 Mizuno H., Takenaka O., Uchiyama K., Kaneko H., 1998, Prevention of car air conditioner oder-rotten oder arising from microorganism and its prevention, Jitsumu Hyomen Gijutsu, 49(4), 391-395, DOI: 10.4139/sfj.49.391 Mizuno H., Uchiyama K., Sato S., Sakakibara K., Sako R., 1996, Surface treatment for air conditioners - study to reduce odor from car air conditioner evaporator, Jsae Review, 17(4), 456, DOI: 10.1016/s0389- 4304(96)80708-9 Morvan M., Talou T., Beziau J.F., 2003, Mos-mosfet gas sensors array measurements versus sensory and chemical characterisation of voc’s emissions from car seat foams, Sensors & Actuators B Chemical, 95(1– 3), 212-223, DOI: 10.1016/s0925-4005(03)00425-8 Ongwandee M., Kruewan A., 2013, Evaluation of portable household and in-car air cleaners for air cleaning potential and ozone-initiated pollutants, Indoor & Built Environment, 22(4), 659-668, DOI: 10.1177/1420326x12460254 Sattar S.A., Zargar B., Wright K.E., Rubino J.R., Ijaz M.K., 2017, Airborne pathogens inside automobiles for domestic use: assessing in-car air decontamination devices using staphylococcus aureus as the challenge bacterium, Appl Environ Microbiol, 83(10), DOI: 10.1128/aem.00258-17 Stemmler K., Bugmann S., Buchmann B., Reimann S., Staehelin J., 2005, Large decrease of voc emissions of switzerland's car fleet during the past decade: results from a highway tunnel study, Atmospheric Environment, 39(6), 1009-1018, DOI: 10.1016/j.atmosenv.2004.10.010 Szczurek A., Maciejewska M., 2016, Categorisation for air quality assessment in car cabin, Transportation Research Part D Transport & Environment, 48, 161-170, DOI: 10.1016/j.trd.2016.08.015 Tamainot-Telto Z., Metcalf S.J., Critoph R.E., 2009, Novel compact sorption generators for car air conditioning, International Journal of Refrigeration, 32(4), 727-733, DOI: 0.1016/j.ijrefrig.2008.11.010 Taniguchi Y., Aoki H., Fujikake K., Tanaka H., Kitada M., 1992, Study on car air conditioning system controlled by car occupants' skin temperatures-part 1: research on a method of quantitative evaluation of car occupants' thermal sensations by skin temperatures. References Brodzik K., Faber J., Goƚdakopek A., Łomankiewicz D., 2016, Impact of multisource voc emission on in-vehicle air quality: test chamber simulation, Materials Science and Engineering, 148(1), 012033, DOI: 10.1088/1757-899x/148/1/012033 Deng A., 2018, Sio2 carrier dispersed perovskite for solar thermal decomposition of h2o, Chemical Engineering Transactions, 66, 355-360, DOI:10.3303/CET1866060 Grabow M., Spak S., Holloway T., Stone B.J., Mednick A., Patz J., 2012, Air quality and exercise-related health benefits from reduced car travel in the midwestern united states, Environmental Health Perspectives, 120(1), 68-76,DOI: 10.1289/ehp.1103440 Kaneko H., Takenaka O., Mizuno H., 2009, Control of car air conditioner odors, coating odor, Journal of the Surface Finishing Society of Japan, 48(7), 733-739, DOI: 10.4139/sfj.48.733 Li T.T., Bai Y.H., Liu Z.R., Liu J.F., Zhang G.S., Li J.L., 2006, Air quality in passenger cars of the ground railway transit system in beijing, china.	cache/cet-9109.pdf	txt/cet-9109.txt
