[1] JIAN G J,YONG Y,SHI H Y,et al. Effects of leachate accumulation on landfill stability in humid regions of China[J]. Waste Management,2010,30(5):848-855.
[2] 中华人民共和国环境保护部.2016年全国大、中城市固体废物污染环境防治年报[R].北京,2016. Ministry of Environmrntal Protection of the People's Republic of China. Annual report on environmental prevention and control of municipal solid waste pollution in China in 2016[R]. Beijing, 2016(in Chinese).
[3] East Asia Infrastructure Department of World. Waste management in China:Issues and tails[R].
[4] LORNAGE R,REDON E,LAGIER T,et al. Performance of a low cost MBT prior to land filling:Study of the biological treatment of size reduced MSW without mechanical sorting[J]. Waste Management,2007,27(12):1755-1764.
[5] SCOTT D T,MCKNIGHT D M,BLUN-T HARRIS E L,et al. Quinone moieties act as electron acceptors in the reduction of humic substances by humics-reducing microorganisms[J]. Environment Science and Technology,1998,32(19):2984-2989.
[6] ALBRECHT R,LE P J,TERROM G,et al. Comparison between UV spectroscopy and Nirs to assess humification process during sewage sludge and green wastes co-composting[J]. Bioresource Technology,2011,102(6):4495-4500.
[7] DOMEIZEL M,KHALIL A,PRUDENT P. UV spectroscopy:A tool for monitoring humification and for proposing an index of the maturity of compost[J]. Bioresource Technology,2004,94(2):177-184.
[8] TIAN W,LI L,LIU F,et al. Assessment of the maturity and biological parameters of compost produced from dairy manure and rice chaff by excitation-emission matrix fluorescence spectroscopy[J]. Bioresource Technology,2012,110(2):330-337.
[9] 赵越,何小松,席北斗,等. 鸡粪堆肥有机质转化的荧光定量化表征[J]. 光谱学与光谱分析,2010,30(6):1555-1560. ZHAO Y,HE X S,XI B D,et al. Quantitative fluorescence characterization of organic matter stability during chicken manure composting[J]. Spectroscopy and Spectral Analysis,2010,30(6):1555-1560 (in Chinese).
[10] AMIR S,JOURAIPHY A,MEDDICH A,et al. Structural study of humic acids during composting of activated sludge-green waste:Elemental analysis, FTIR and 13C NMR[J]. Journal of Hazardous Materials,2010,177(1-3):524-529.
[11] XI B D,HE X S,WEI Z M,et al. Effect of inoculation methods on the composting efficiency of municipal solid wastes[J]. Chemosphere,2012,88(6):744-750.
[12] HE X S,XI B D,WEI Z M,et al. Physicochemical and spectroscopic characteristics of dissolved organic matter extracted from municipal solid waste (MSW) and their influence on the landfill biological stability[J]. Bioresource Technology,2011,102(3):2322-2327.
[13] PEURAVUORI J,PIHLAJA K. Molecular size distribution and spectroscopic properties of aquatic humic substances[J]. Analytica Chimica Acta,1997,337(2):133-149.
[14] GUO M X,CHOROVER J. Transport and fractionation of dissolved organic matter in soil columns[J]. Soil Science,2003,168(2):108-118.
[15] SANTOS L,PINTO A,FILIPE O,et al. Insights on the optical properties of estuarine DOM-hydrological and biological influence[J]. Plos One,2016,11(5):1-26.
[16] ZHAO Y,WEI Y Q,LI Y,et al. Using UV-Vis absorbance for characterization of maturity in composting process with different materials[J]. Spectroscopy and Spectral Analysis,2015,35(4):961-968.
[17] HELMS J R,STUBBINS A,RITCHIE J D,et al. Absorption spectral slopes and slope ratios as indicators of molecular weight, source, and photo bleaching of chromophoric dissolved organic matter[J]. Limnology and Oceanography,2008,53(3):955-969.
[18] LOISELLE S A,BRACCHINI L,DATTILO A M,et al. The optical characterization of chromophoric dissolved organic matter using wavelength distribution of absorption spectral slopes[J]. Limnology and Oceanography,2009,54(2):590-597.
[19] GUO X,HE X,ZHANG H,et al. Characterization of dissolved organic matter extracted from fermentation effluent of swine manure slurry using spectroscopic techniques and parallel factor analysis (PARAFAC)[J]. Microchemical Journal,2012,102(5):115-122.
[20] HE X S,XI B D,CUI D Y,et al. Influence of chemical and structural evolution of dissolved organic matter on electron transfer capacity during composting[J]. Journal of Hazardous Materials,2014,268(3):256-263.
[21] LI P,JIN H. Utilization of UV-Vis spectroscopy and related data analyses for dissolved organic matter (DOM) studies:A review[J]. Critical Reviews in Environmental Science and Technology,2017,47(6):23-36.
[22] WANG K,LI W,GONG X J,et al. Spectral study of dissolved organic matter in biosolid during the composting process using inorganic bulking agent:UV-Vis, GPC, FTIR and EEM[J]. International Biodeterioration and Biodegradation,2013,85(7):617-623.
[23] 张华,彭勤纪,李亚明,等. 现代有机波谱分析[M]. 北京:化学工业出版社,2005. ZHANG H,PENG Q J,LI Y M,et al. Modern spectral analysis of organic matters[M]. Beijing:Chemical Industry Press,2005 (in Chinese).
[24] 郝瑞霞,曹可心,赵钢,等. 用紫外光谱参数表征污水中溶解性有机污染物[J]. 北京工业大学学报,2006,32(12):1062-1066. HAO R X,CAO K X,ZHAO G,et al. Ultraviolet absorption spectrum characterization approach for quantitative analysis of dissolved organic contaminants in sewage[J]. Journal of Beijing University of Technology,2006,32(12):1062-1066 (in Chinese).
[25] ZOU L Q,HE P J,SHAO L M,et al. Pollution control of leachate in landfill site by microbial metabolism in the landfill layer[J]. Techniques and Equipment for Environmental Pollution Control,2003,4(6):70-73.
[26] 何小松,席北斗,刘学建,等. 城市垃圾填埋初期物质转化的光谱学特性研究[C].中国环境科学学会2010年学术年会,2010. HE X S,XI B D,LIU X J,et al. Study on the spectroscopic properties of material transformation during the initial landfill[C]. China Environmental Science Society 2010 Academic Year,2010 (in Chinese).
[27] 冯广德,俞凯觎. 垃圾填埋场内垃圾成分变化的研究[J].环境卫生工程,2000, 18(2):74-75. FENG G D,YU K J. A study on the solid waste content change in solid waste landfill site[J].Environmental Sanitation Engineering,2000, 18(2):74-75 (in Chinese).
[28] 郝晓地,周鹏,曹达啓. 餐厨垃圾处置方式及其碳排放分析[J]. 环境工程学报,2017,11(2):673-682. HAO X D,ZHOU P,CAO D Q. Analyses of disposal methods and carbon emission of food wastes[J].Chinese Journal of Environmental Engineering,2017,11(2):673-682 (in Chinese).
[29] 王威,李成,魏自民,等. 不同来源水溶性有机物光谱学特性研究[J]. 东北农业大学学报,2011,42(6):135-140. WANG W,LI C,WEI Z M,et al. Study on spectra characteristics of dissolved organic matters from different sources[J]. Journal of Northeast Agricultural University,2011,42(6):135-140 (in Chinese).
[30] PROVENZANO M R,SENESI N,PICEONE G. Thermal and spectroscopic characterization of composts from municipal solid wastes[J]. Compost Science and Utilization,1998,6(3):67-73.
[31] ZSOLNAY A,BAIGAR E,JIMENEZ M,et al. Differentiating with fluorescence spectroscopy the sources of dissolved organic matter in soils subjected to drying[J]. Chemosphere,1999,38(1):45-50.
[32] PEURAVUORI J,KOIVIKKO R,PIHLAJA K. Characterization, differentiation and classification of aquatic humic matter separated with different sorbents:Synchronous scanning fluorescence spectroscopy[J]. Water Research,2002,36(18):4552-4562.
[33] KALBITZ K,GEYER W,GEYER S. Spectroscopic properties of dissolved humic substances——a reflection of land use history in a fen area[J]. Biogeochemistry,1999,47(2):219-238.
[34] DROUSSI Z,DORAZIO V,HAFIDI M,et al. Elemental and spectroscopic characterization of humic-acid-like compounds during composting of olive mill by-products[J]. Journal of Hazardous Materials,2009,163(2):1289-1297.
[35] STEVENSON F J,GOH K M. Infrared spectra of humic acids and related substances[J]. Geochimica et Cosmochimica Acta,1971,35(5):471-483.
[36] TAN K H. Humic matter in soil and the environment:principles and controversies[J]. Soil Science Society of America Journal,2003,79(5):1520-1537.