A. Amine-khodja, O. Trubetskaya, O. Trubetskoj, L. Cavani, C. Ciavatta et al., Humic-like substances extracted from composts can promote the photodegradation of Irgarol 1051 in solar light, Chemosphere, vol.62, pp.1021-1027, 2006.
URL : https://hal.archives-ouvertes.fr/hal-00131259

A. Baker, Fluorescence excitation-emission matrix characterization of some sewage-impacted rivers, Environmental Science and Technology, vol.35, pp.948-953, 2001.

A. Baker, Fluorescence excitation-emission matrix characterization of river waters impacted by a tissue mill effluent, Environmental Science and Technology, vol.36, pp.1377-1382, 2002.

M. P. Bernal, C. Paredes, M. A. Sánchez-monedero, and J. Cegarra, Maturity and stability parameters of composts prepared with a wide range of organic wastes, Bioresource Technology, vol.63, pp.91-99, 1998.

Y. Chen, N. Senesi, and M. Schnitzer, Information provided on humic substances by E 4 /E 6 ratios, Soil Science Society of America Journal, vol.41, pp.352-358, 1977.

W. Chen, P. K. Westerhoff, J. A. Leenheer, and K. Booksh, Fluorescence excitationemission matrix regional integration to quantify spectra for dissolved organic matter, Environmental Science & Technology, vol.37, pp.5701-5710, 2003.

P. G. Coble, Characterization of marine and terrestrial DOM in seawater using excitation-emission matrix spectroscopy, Marine Chemistry, vol.51, pp.325-346, 1996.

M. De-bertoldi, G. Vallini, and A. Pera, The biology of composting: a review, Waste Management & Research, vol.1, pp.157-176, 1983.

H. De-haan, Use of ultraviolet spectroscopy, gel filtration, pyrolysis/mass spectrometry and numbers of benzoate-metabolizing bacteria in the study of humification and degradation of aquatic organic matter, Aquatic and Terrestrial Humic Materials, pp.165-182, 1983.

M. Domeizel, A. Khalil, and P. Prudent, UV spectroscopy: a tool for monitoring humification and for proposing an index of the maturity of compost, Bioresource Technology, vol.94, pp.177-184, 2004.

R. M. Duarte, E. B. Santos, and A. C. Duarte, Spectroscopic characteristics of ultrafiltration fraction of fulvic and humic acids isolated from an eucalyptus bleached Kraft pulp mill effluent, Water Research, vol.37, pp.4073-4080, 2003.

M. Fuentes, G. González-gaitano, M. José, and J. M. García-mina, The usefulness of UV-visible and fluorescence spectroscopies to study the chemical nature of humic substances from soils and composts, Organic Geochemistry, vol.37, pp.1949-1959, 2006.

M. Gómez-brandón, C. Lazcano, and J. Domínguez, The evaluation of stability and maturity during the composting of cattle manure, Chemosphere, vol.70, pp.436-444, 2008.

X. Guo, X. He, H. Zhang, Y. Deng, L. Chen et al., Characterization of dissolved organic matter extracted from fermentation effluent of swine manure slurry using spectroscopic techniques and parallel factor analysis (PARAFAC), 2012.

, Microchemical Journal, vol.102, pp.115-122

X. S. He, B. D. Xi, Y. H. Jiang, L. S. He, D. Li et al., Structural transformation study of water-extractable organic matter during the industrial composting of cattle manure, Microchemical Journal, vol.106, pp.160-166, 2013.

A. Jouraiphy, S. Amir, M. El-gharous, J. C. Revel, and M. Hafidi, Chemical and spectroscopic analysis of organic matter transformation during composting of sewage sludge and green plant waste, International Biodeterioration & Biodegradation, vol.56, pp.101-108, 2005.

K. Kalbitz, W. Geyer, and S. Geyer, Spectroscopic properties of dissolved humic substances-a reflection of land use history in a fen area, Biogeochemistry, vol.47, pp.219-238, 1999.

A. Khalil, M. Domeizel, and P. Prudent, Monitoring of green waste composting process based on redox potential, Bioresource Technology, vol.99, pp.6037-6045, 2008.

A. I. Khalil, M. S. Hassouna, H. M. El-ashqar, and M. Fawzi, Changes in physical, chemical and microbial parameters during the composting of municipal sewage sludge, World Journal of Microbiology and Biotechnology, vol.27, pp.2359-2369, 2011.

F. J. Larney and R. E. Blackshaw, Weed seed viability in composted beef cattle feedlot manure, Journal of Environmental Quality, vol.3, pp.1105-1113, 2003.

A. Li, J. Hu, W. Li, W. Zhang, and X. Wang, Polarity based fractionation of fulvic acids, Chemosphere, vol.77, pp.1419-1426, 2009.

Y. Li, S. Wang, L. Zhang, H. Zhao, L. Jiao et al., Composition and spectroscopic characteristics of dissolved organic matter extracted from the sediment of Erhai Lake in China, Journal of Soils and Sediments, vol.14, pp.1599-1611, 2014.

X. Luciani, S. Mounier, R. Redon, and A. Bois, A simple correction method of inner filter effects affecting FEEM and its application to the PARAFAC decomposition, vol.96, pp.227-238, 2009.
URL : https://hal.archives-ouvertes.fr/hal-00807769

F. C. Marhuenda-egea, E. Martínez-sabater, J. Jordá, R. Moral, M. A. Bustamante et al., Dissolved organic matter fractions formed during composting of winery and distillery residues: evaluation of the process by fluorescence excitation-emission matrix, Chemosphere, vol.68, pp.301-309, 2007.

D. M. Milori, L. Martin-neto, C. Bayer, M. Joao, V. S. Bagnato et al., Humification degree of soil humic acids determined by fluorescence spectroscopy, Soil Science, vol.167, pp.739-749, 2002.

S. Mounier, N. Patel, L. Quilici, J. Y. Benaïm, and C. Benamou, Fluorescence 3D de la matière dissoute du fleuve amazone (Three-dimensional fluorescence of the dissolved organic carbon in the amazon river), Water Research, vol.33, pp.1523-1533, 1999.

M. Mustin, Le compostage, gestion de la matière organique. Edition Francois Dubus, p.954, 1987.

A. H. Nafez, M. Nikaeen, and S. Kadkhodaie, Sewage sludge composting: quality assessment for agricultural application, Environmental Monitoring and Assessment, vol.187, pp.1-9, 2015.

E. Parlanti, K. Wörz, L. Geoffroy, and M. Lamotte, Dissolved organic matter fluorescence spectroscopy as a tool to estimate biological activity in a coastal zone submitted to anthropogenic inputs, Organic Geochemistry, vol.31, pp.1765-1781, 2000.
URL : https://hal.archives-ouvertes.fr/hal-02293400

J. Peuravuori and K. Pihlaja, Molecular size distribution and spectroscopic properties of aquatic humic substances, Analytica ChimicaActa, vol.337, pp.133-149, 1997.

A. D. Pifer and L. Fairey, Improving on SUVA 254 using fluorescence-PARAFAC analysis and asymmetric flow-field flow fractionation for assessing disinfection byproduct formation and control, Water Research, vol.46, pp.2927-2936, 2012.

M. L. Pype, D. Patureau, N. Wery, Y. Poussade, and W. Gernjak, Monitoring reverse osmosis performance: conductivity versus fluorescence excitationemission matrix (EEM), Journal Membrane Science, vol.428, pp.205-211, 2013.

D. Said-pullicino, F. G. Erriquens, and G. Gigliotti, Changes in the chemical characteristics of water-extractable organic matter during composting and their influence on compost stability and maturity, Bioresource Technology, vol.98, pp.1822-1831, 2007.

D. Said-pullicino, K. Kaiser, G. Guggenberger, and G. Gigliotti, Changes in the chemical composition of water-extractable organic matter during composting: distribution between stable and labile organic matter pools, Chemosphere, vol.66, pp.2166-2176, 2007.

F. Sellami, S. Hachicha, M. Chtourou, K. Medhioub, and E. Ammar, Maturity assessment of composted olive mill wastes using UV spectra and humification parameters, Bioresource Technology, vol.99, pp.6900-6907, 2008.

N. Senesi, T. M. Miano, M. R. Provenzano, and B. Gennaro, Characterization, differentation and classification of humic substances by fluorescencia spectroscopy, Soil Science, vol.152, pp.259-271, 1991.

Z. H. Shao, P. J. He, D. Q. Zang, and L. M. Shao, Characterization of water extractable organic matter during the biostabilization of municipal solid waste, Journal of Hazardous Materials, vol.164, pp.1191-1197, 2009.

C. A. Stedmon, S. Markager, and R. Bro, Tracing dissolved organic matter in aquatic environments using a new approach to fluorescence spectroscopy, Marine Chemistry, vol.82, pp.239-254, 2003.

F. J. Stevenson, Extraction, fractionation, and general chemical composition of soil organic matter: In Humus chemistry, genesis, composition, reactions, pp.26-54, 1982.

R. S. Summers, P. K. Cornel, and P. V. Roberts, Molecular size distribution and spectroscopic characterization of humic substances, Science of the Total Environment, vol.62, pp.27-37, 1987.

Z. Tang, G. G. Yu, D. D. Liu, D. Xu, and Q. Shen, Different analysis techniques for fluorescence excitation-emission matrix spectroscopy to assess compost maturity, Chemosphere, vol.82, pp.1202-1208, 2011.

W. Tian, L. Li, F. Liu, Z. Zhang, G. Yu et al., Assessment of the maturity and biological parameters of compost produced from dairy manure and rice chaff by excitation-emission matrix fluorescence spectroscopy, Bioresource Technology, vol.110, pp.330-337, 2012.

U. Tomati, E. Galli, L. Pasetti, and E. Volterra, Bioremediation of olive-mill wastewaters by composting, Waste Management & Research, vol.13, pp.509-518, 1995.

Z. Wang, Z. Wu, and S. Tang, Characterization of dissolved organic matter in a submerged membrane bioreactor by using three-dimensional excitation and emission matrix fluorescence spectroscopy, Water Research, vol.43, pp.1533-1540, 2009.

Z. Wei, X. Zhao, C. Zhu, B. Xi, Y. Zhao et al., Assessment of humification degree of dissolved organic matter from different composts using fluorescence spectroscopy technology, Chemosphere, vol.95, pp.261-267, 2014.

J. L. Weishaar, G. R. Aiken, B. A. Bergamaschi, M. S. Fram, R. Fujii et al., Evaluation of specific ultraviolet absorbance as an indicator of the chemical composition and reactivity of dissolved organic carbon, Environmental Science & Technology, vol.37, pp.4702-4708, 2003.

G. H. Yu, Y. H. Luo, M. J. Wu, Z. Tang, D. Y. Liu et al., PARAFAC modelling of fluorescence excitation-emission spectra for rapid assessment of compost maturity, Bioresource Technology, vol.101, pp.8244-8251, 2010.

G. H. Yu, M. J. Wu, Y. H. Luo, X. M. Yang, W. Ran et al., Fluorecence excitation-emission spectroscopy with regional integration analysis for assessment of compost maturity, Waste Management, vol.31, pp.1729-1736, 2011.

R. G. Zepp, W. M. Sheldon, and M. A. Moran, Dissolved organic fluorophores in southeastern US coastal waters: correction method for eliminating Rayleigh and Raman scattering peaks in excitation-emission matrices, Marine Chemistry, vol.89, pp.15-36, 2004.

J. Zhang, B. Lv, M. Xing, and J. Yang, Tracking the composition and transformation of humic and fulvic acids during vermicomposting of sewage sludge by elemental analysis and fluorescence excitation-emission matrix, Waste Management, vol.39, pp.111-118, 2015.

S. Zhang, Z. Chen, Q. Wen, and J. Zheng, Assessing the stability in composting of penicillin mycelial dreg via parallel factor (PARAFAC) analysis of fluorescence excitation-emission matrix (EEM), Chemical Engineering Journal, vol.299, pp.167-176, 2016.

H. Y. Zhao, J. Li, J. J. Liu, Y. C. Lü, X. F. Wang et al., Microbial community dynamics during biogas slurry and cow manure compost, Journal of Integrative Agriculture, vol.12, pp.1087-1097, 2013.