[1] |
Ying D, Chuanyu C, Bin H, et al. Characterization and control of odorous gases at a landfill site: A case study in Hangzhou, China[J]. Waste Management, 2012, 32:317-326
|
[2] |
赵鹏, 刘杰民, 伊芹, 等. 异味污染评价与治理研究进展[J]. 环境化学, 2011, 30(1):310-325
|
[3] |
Xu Q, Townsend T. Factors affecting temporal H2S emission at construction and demolition (C&D) debris landfills[J]. Chemosphere, 2014, 96:105-111
|
[4] |
Xu Q Y, Yang K, Jain P, et al. Modeling of H2S migration through landfill cover materials[J]. Journal of Hazardous Materials, 2014, 264:254-260
|
[5] |
Wu C D, Liu J M, Yan L C, et al. Assessment of odor activity value coefficient and odor contribution based on binary interaction effects in waste disposal plant[J]. Atmospheric Environment, 2015, 103:231-237
|
[6] |
Gallego E, Roca F J, Perales J F, et al. Characterization and determination of the odorous charge in the indoor air of a waste treatment facility through the evaluation of volatile organic compounds (VOCs) using TD-GC/MS[J]. Waste Management, 2012, 32:2469-2481
|
[7] |
Selena S, Laura C, Paolo C, et al. Odour emission factors for assessment and prediction of Italian MSW landfills odour impact[J]. Atmospheric Environment, 2005, 39:5387-5394
|
[8] |
Riccardo S, Barbara C, Alessandro T, et al. Evaluation of odour emissions from a landfill through dynamic olfactometry, dispersion modeling and electronic noses[J]. Chem Eng Trans, 2008, 15:315-322
|
[9] |
Solan P J, Dodd V A, Curran T P. Evaluation of the odour reduction potential of alternative cover materials at a commercial landfill[J]. Bioresource Technology, 2010, 101:1115-1119
|