| Citation: | LIU Zhong, WU Rui, GU Nitao, WANG Xilei, XU Jiafeng, LUO Yan, MA Haichuan, DUAN Niangming, YU Xubiao. Analysis of formation mechanism of black-odor water bodies by combining dissolved organic matter data with machine learning[J]. ENVIRONMENTAL ENGINEERING , 2025, 43(8): 280-291. doi: 10.13205/j.hjgc.202508026 |
| [1] |
住房城乡建设部,生态环境部,城市黑臭水体整治工作指南[S].2015.Ministry of Housing and Urban-Rural Development,Ministry of Ecology and Environment.Guidelines for the remediation of urban black-odor water bodies[S].2015.
|
| [2] |
生态环境部,水利部,农业农村部.农村黑臭水体治理工作指南[S].2024.Ministry of Ecology and Environment,Ministry of Water Resources,Ministry of Agriculture and Rural Affairs.Guidelines for the remediation of rural black-odor water bodies[S].2024.
|
| [3] |
徐祖信,徐晋,金伟,等.我国城市黑臭水体治理面临的挑战与机遇[J].给水排水,2019,55(3):1-5
,77.XU Z X,XU J,JIN W,et al.Challenges and opportunities in the remediation of urban black-odor water bodies in China[J].Water&Wastewater Engineering,2019,55(3):1-5,77.
|
| [4] |
吕佳佳,杨娇艳,廖卫芳,等.黑臭水形成的水质和环境条件研究[J].华中师范大学学报(自然科学版),2014,48(5):711-716.LÜ J J,YANG J Y,LIAO W F,et al.Study on water quality and environmental conditions for black-odor water formation[J].Journal of Central China Normal University (Natural Sciences),2014,48(5):711-716.
|
| [5] |
孙韶玲,盛彦清,孙瑞川,等.河流水体黑臭演化过程及恶臭硫化物的产生机制[J].环境科学与技术,2018,41(3):15-22.
SUN S L,SHENG Y Q,SUN R C,et al.Evolution process of black-odor in river water bodies and generation mechanism of malodorous sulfides[J].Environmental Science&Technology (China),2018,41(3):15-22.
|
| [6] |
韩文龙,赵起超,金永涛,等.基于"高分二号"卫星影像的黑臭水体识别[J].航天返回与遥感,2022,43(1):120-128.
HAN W L,ZHAO Q C,JIN Y.T.,et al.Identification of blackodor water bodies based on GF-2 satellite images[J].Spacecraft Recovery&Remote Sensing,2022,43(1):120-128.
|
| [7] |
温爽,王桥,李云梅,等.基于高分影像的城市黑臭水体遥感识别:以南京为例[J].环境科学,2018,39(1):57-67.
WEN S,WANG Q,LI Y M,et al.Remote sensing identification of urban black-odor water bodies based on gaofen images:a case study of Nanjing[J].Environmental Science,2018,39(1):57-67.
|
| [8] |
申茜,朱利,曹红业.城市黑臭水体遥感监测与筛查研究进展[J].应用生态学报,2017,28(10):3433-3439.
SHEN Q,ZHU L,CAO H Y.Research progress on remote sensing monitoring and screening of urban black-odor water bodies[J].Chinese Journal of Applied Ecology,2017,28(10):3433-3439.
|
| [9] |
李玲玲,李云梅,吕恒,等.基于决策树的城市黑臭水体遥感分级[J].环境科学,2020,41(11):5060-5072.
LI L L,LI Y M,LÜ H,et al.Remote sensing classification of urban black-odor water bodies based on decision tree[J].Environmental Science,2020,41(11):5060-5072.
|
| [10] |
CAI X L,WU L Y,LI Y M,et al.Remote sensing identification of urban water pollution source types using hyperspectral data[J].Journal of Hazardous Materials,2023,459.
|
| [11] |
XU H C,GUO L D.Molecular size-dependent abundance and composition of dissolved organic matter in river,lake and sea waters[J].Water Research,2017,117:115-126.
|
| [12] |
MIAO S,LYU H,XU J,et al.Characteristics of the chromophoric dissolved organic matter of urban black-odor rivers using fluorescence and UV-visible spectroscopy[J].Environmental Pollution,2021,268.
|
| [13] |
ZHAO C,XU X Y,CHEN H M,et al.Exploring the complexities of dissolved organic matter photochemistry from the molecular level by using machine learning approaches[J].Environmental Science&Technology,2023,57(46):17889.
|
| [14] |
WEISHAAR J L,AIKEN G R,BERGAMASCHI B A,et al.Evaluation of specific ultraviolet absorbance as an indicator of the chemical composition and reactivity of dissolved organic carbon[J].Environmental Science&Technology,2003,37(20):4702-4708.
|
| [15] |
MCKNIGHT D M,BOYER E W,WESTERHOFF P K,et al.Spectrofluorometric characterization of dissolved organic matter for indication of precursor organic material and aromaticity[J].Limnology and Oceanography,2001,46(1):38-48.
|
| [16] |
FELLMAN J B,HOOD E,SPENCER R G M.Fluorescence spectroscopy opens new windows into dissolved organic matter dynamics in freshwater ecosystems:a review[J].Limnology and Oceanography,2010,55(6):2452-2462.
|
| [17] |
HUGUET A,VACHER L,RELEXANS S,et al.Properties of fluorescent dissolved organic matter in the Gironde Estuary[J].Organic Geochemistry,2009,40(6):706-719.
|
| [18] |
张运林,秦伯强,龚志军.太湖有色可溶性有机物荧光的空间分布及其与吸收的关系[J].农业环境科学学报,2006(5):1337-1342.ZHANG Y L,QIN B Q,GONG Z J.Spatial distribution of fluorescent chromophoric dissolved organic matter in lake taihu and its relationship with absorption[J].Journal of AgroEnvironment Science,2006
,25(5):1337-1342.
|
| [19] |
PARLANTI E,WöRZ K,GEOFFROY L,et al.Dissolved organic matter fluorescence spectroscopy as a tool to estimate biological activity in a coastal zone submitted to anthropogenic inputs[J].Organic Geochemistry,2000,31(12):1765-1781.
|
| [20] |
WILSON H F,XENOPOULOS M A.Effects of agricultural land use on the composition of fluvial dissolved organic matter[J].Nature Geoscience,2009,2(1):37-41.
|
| [21] |
CHEN W,WESTERHOFF P,LEENHEER J A,et al.Fluorescence excitation-Emission matrix regional integration to quantify spectra for dissolved organic matter[J].Environmental Science& Technology,2003,37(24):5701-5710.
|
| [22] |
李昊.基于k-means算法的非监督学习入侵检测模型和方法的研究[D].哈尔滨:哈尔滨师范大学,2023. LI H. Research on an Unsupervised intrusion detection model and method based on k-means algorithm[D]. Harbin:Harbin Normal University,2023.
|
| [23] |
夏晓圣,陈菁菁,王佳佳,等.基于随机森林模型的中国PM2. 5浓度影响因素分析[J].环境科学,2020,41(5):2057-2065.
XIA X S,CHEN J J,WANG J J,et al. Analysis of influencing factors of PM 2. 5 concentration in China based on Random Forest model[J]. Environmental Science,2020,41(5):2057-2065.
|
| [24] |
PALUSZY S A. Structure mining and knowledge extraction from random forest with applications to The Cancer Genome Atlas project[C],2017.
|
| [25] |
马朝君,彭巨擘,袁海滨,等.基于灰狼优化支持向量机回归与SHAP值的锡冶炼能耗预测[J].有色金属(冶炼部分), 2024(2):1-7. MA C J,PENG J B,YUAN H B,et al. Energy consumption prediction of tin smelting based on grey wolf optimized support vector machine regression and SHAP values[J]. Nonferrous Metals (Extractive Metallurgy),2024(2):1-7.
|
| [26] |
董佳奇,胡冬梅,闫雨龙,等.基于可解释性机器学习的城市O 3驱动因素挖掘[J].环境科学,2023,44(7):3660-3668.
DONG J Q,HU D M,YAN Y L,et al. Mining driving factors of urban O 3 based on interpretable machine learning[J]. Environmental Science,2023,44(7):3660-3668.
|
| [27] |
YU F B,WEI C H,DENG P,et al. Deep exploration of random forest model boosts the interpretability of machine learning studies of complicated immune responses and lung burden of nanoparticles[J]. Science Advances,2021,7(22).
|
| [28] |
ZHOU S Q,LIU Z Y,WANG M,et al. Impacts of building configurations on urban stormwater management at a block scale using XGBoost[J]. Sustainable Cities and Society,2022,87.
|
| [29] |
PENG Y M,UNLUER C. Interpretable machine learning-based analysis of hydration and carbonation of carbonated reactive magnesia cement mixes[J]. Journal of Cleaner Production, 2024,434.
|
| [30] |
WU W C,ZHANG M H,ZHAO L,et al. CFD-DPM data-driven GWO-SVR for fast prediction of nitrate decomposition in blast furnaces with nozzle arrangement optimization[J]. Process Safety and Environmental Protection,2023,176:438-449.
|
| [31] |
WANG S Y,REN Y,XIA B S. PM2. 5 and O3 concentration estimation based on interpretable machine learning[J]. Atmospheric Pollution Research,2023,14(9).
|
| [32] |
HE B H,ZHAO Y H,MAO W,et al. Explainable artificial intelligence reveals environmental constraints in seagrass distribution[J]. Ecological Indicators,2022,144. DOI:10. 1016/ j. ecolind. 2022. 109523.
|
| [33] |
TRAN V. Hybrid gradient boosting with meta-heuristic algorithms prediction of unconfined compressive strength of stabilized soil based on initial soil properties,mix design and effective compaction[J]. Journal of Cleaner Production, 2022,355.
|
| [34] |
ZHANG Z C,XU B,XU W M,et al. Machine learning combined with the PMF model reveal the synergistic effects of sources and meteorological factors on PM pollution[J]. Environmental Research,2022,212.
|
| [35] |
LI T S,ZHANG Q Z,PENG Y B,et al. Contributions of various driving factors to air pollution events:Interpretability analysis from Machine learning perspective[J]. Environment International,2023,173.
|
| [36] |
朱秋丽. 基于BP神经网络-模糊数学的汾河太原城区段黑臭评价研究[D]. 太原:太原理工大学,2010. ZHU Q L. Evaluation of black-odor in the Fenhe River taiyuan urban section based on BP Neural network-fuzzy mathematics[D]. Taiyuan:Taiyuan University of Technology,2010.
|
| [37] |
LI M M,KONG F L,LI Y,et al. Ecological indication based on source,content,and structure characteristics of dissolved organic matter in surface sediment from Dagu River estuary,China[J]. Environmental Science and Pollution Research,2020,27(36): 45499-45512.
|
| [38] |
CARSTEA E M, BRIDGEMAN J, BAKER A, et al. Fluorescence spectroscopy for wastewater monitoring:A review[J]. Water Research,2016,95:205-219.
|
| [39] |
HANSEN A M,KRAUS T E C,PELLERIN B A,et al. Optical properties of dissolved organic matter (DOM): Effects of biological and photolytic degradation[J]. Limnology and Oceanography,2016,61(3):1015-1032.
|
| [40] |
WANG Q, REN X N, SUN Y, et al. Improvement of the composition and humification of different animal manures by black soldier fly bioconversion[J]. Journal of Cleaner Production, 2021,278.
|
| [41] |
GUO X J,LI C W,ZHU Q L,et al. Characterization of dissolved organic matter from biogas residue composting using spectroscopic techniques[J]. Waste Management,2018,78:301-309.
|
| [42] |
秦纪洪,王姝,刘琛,等. 海拔梯度上川西高山土壤溶解性有机 质(DOM)光谱 特征[J]. 中国 环境 科学,2019,39(10): 4321-4328.
QIN J H,WANG S,LIU C,et al. Spectral characteristics of dissolved organic matter (DOM) in alpine soils along an altitude gradient in Western Sichuan[J]. China Environmental Science, 2019,39(10):4321-4328.
|
| [43] |
韩成卫,李忠佩,刘丽,等. 去除溶解性有机质对红壤水稻土碳氮矿化的影响[J]. 中国农业科学,2007(1):107-113. HAN C W,LI Z P,LIU L,et al. Effect of removing dissolved organic matter on carbon and nitrogen mineralization in red paddy soil[J]. Scientia Agricultura Sinica,2007
,40(1):107-113.
|
| [44] |
赵彦龙,李心清,丁文慈,等. 水中有机质矿化作用的生物地球化学室内模拟研究[J]. 地球与环境,2007(3):233-238. ZHAO Y L,LI X Q,DING W C,et al. Laboratory simulation study on biogeochemical mineralization of organic matter in water[J]. Earth and Environment,2007
,35(3):233-238.
|
| [45] |
王鹏,刘梅,翁益松,等. 河道水体黑臭前后微生物种群变化研究[J]. 安徽农业科学,2019,47(22):47-51.
WANG P, LIU M, WENG Y S, et al. Study on microbial community changes in river water before and after black-odor occurrence[J]. Anhui Agricultural Science,2019,47(22): 47-51.
|
| [46] |
于莉莉,钟晔,孙福红,等. pH值对滇池水体溶解性有机质(DOM)光降解作用的影响[J]. 光谱学与光谱分析,2019,39(08):2533-2539.
YU L L, ZHONG Y, SUN F H, et al. Effect of pH on photodegradation of dissolved organic matter (DOM) in Dianchi Lake Water[J]. Spectroscopy and Spectral Analysis,2019,39(8):2533-2539.
|
| [47] |
HE X-S,FAN Q-D. Investigating the effect of landfill leachates on the characteristics of dissolved organic matter in groundwater using excitation - emission matrix fluorescence spectra coupled with fluorescence regional integration and self-organizing map[J]. Environmental Science and Pollution Research,2016,23(21):21229-21237.
|
| [48] |
YU G H,LUO Y H,WU M J,et al. PARAFAC modeling of fluorescence excitation-emission spectra for rapid assessment of compost maturity[J]. Bioresource Technology,2010,101(21): 8244-8251.
|
| [49] |
WANG Z W,WU Z C,TANG S J. Characterization of dissolved organic matter in a submerged membrane bioreactor by using three-dimensional excitation and emission matrix fluorescence spectroscopy[J]. Water Research,2009,43(6):1533-1540.
|
| [50] |
WANG Y L,HU Y Y,YANG C M,et al. Variations of DOM quantity and compositions along WWTPs-river-lake continuum: Implications for watershed for environmental management[J]. Chemosphere,2019,218:468-476.
|
| [51] |
ZHANG S H,CHEN Z Q,WEN Q X,et al. Assessment of maturity during co-composting of penicillin mycelial dreg via fluorescence excitation-emission matrix spectra:Characteristics of chemical and fluorescent parameters of water-extractable organic matter[J]. Chemosphere,2016,155:358-366.
|
| [52] |
WEI D,YAN T,ZHANG K Y,et al. Qualitative and quantitative analysis of extracellular polymeric substances in partial nitrification and full nitrification reactors[J]. Bioresource Technology,2017,240:171-176.
|
| [53] |
GUO L,LU M M,LI Q Q,et al. Three-dimensional fluorescence excitation-emission matrix (EEM) spectroscopy with regional integration analysis for assessing waste sludge hydrolysis treated with multi-enzyme and thermophilic bacteria[J]. Bioresource Technology,2014,171:22-28.
|
| [54] |
MAQBOOL T,LY Q V,ASIF M B,et al. Fate and role of fluorescence moieties in extracellular polymeric substances during biological wastewater treatment:a review[J]. Science of the Total Environment,2020,718.
|
| [55] |
刘辉,周琼芝,朱嘉浩,等. 有机碳源对微生物代谢所致水体黑 臭现 象形 成的 影响 机制[J]. 净水 技术 ,2022,41(7): 111-118. LIU H,ZHOU Q Z,ZHU J H,et al. Mechanism of black-odor water formation caused by microbial metabolism induced by organic carbon sources[J]. Water Purification Technology, 2022,41(7):111-118.
|
| [56] |
李翔,李致春,汪旋,等. 蓝藻衰亡过程中上覆水溶解性有机物变化特征[J]. 环境科学,2021,42(7):3281-3290.
LI X,LI Z C,WANG X,et al. Variation characteristics of dissolved organic matter in overlying water during cyanobacteria decay[J]. Environmental Science,2021,42(7):3281-3290.
|
| [57] |
张圣洁,蔡中华,朱伟胜,等. 藻际环境中胞外聚合物的研究进展[J]. 微生物学报,2020,60(8):1521-1533.
ZHANG S J,CAI Z H,ZHU W S,et al. Research progress on extracellular polymeric substances in algal micro-environments[J]. Acta Microbiologica Sinica,2020,60(8):1521-1533.
|
| [58] |
WANG Y,GONG X Y,HUANG D Y,et al. The binding effect and photooxidation on oxytetracycline with algal extracellular polymeric substances and natural organic matter[J]. Chemosphere,2022,307.
|
| [59] |
逄勇,颜润润,余钟波,等. 风浪作用下的底泥悬浮沉降及内源释放量研究[J]. 环境科学,2008(9):2456-2464. PANG Y, YAN R R, YU Z B, et al. Study on sediment resuspension and internal release under wind-wave action[J]. Environmental Science,2008
,29(9):2456-2464.
|
| [60] |
胡明,刘心远,薛娇,等. 水深和扰动对北运河沉积物释放的模拟研究[J]. 环境科学学报,2021,41(1):174-180.
HU M,LIU X Y,XUE J,et al. Simulation study on the release of sediments from the north canal under different water depths and disturbances[J]. Acta Scientiae Circumstantiae,2021,41(1): 174-180.
|
| [61] |
LI P,YE J F,ZHANG W C,et al. The blackening process of black-odor water: Substance types determination and crucial roles analysis[J]. Journal of Hazardous Materials,2023,443.
|
| [62] |
LI P,YE J F,ZHANG J Y,et al. Evaluation of levels of black in black-odor waters through absorption coefficient method[J]. Science of the Total Environment,2022,820.
|
| [63] |
赵秀云,赵昕宇,杨津津,等. 堆肥过程中木质素的降解机理及影响因素研究进展[J]. 环境工程,2021,39(6):128-136.
ZHAO X Y,ZHAO X Y,YANG J J,et al. Research progress on degradation mechanism and influencing factors of lignin during composting[J]. Environmental Engineering, 2021, 39(6): 128-136.
|
| [64] |
PéREZ J, MUñOZ-DORADO J, DE LA RUBIA T, et al. Biodegradation and biological treatments of cellulose, hemicellulose and lignin: an overview[J]. International Microbiology,2002,5(2):53-63.
|
| [65] |
邓科. 城市生活污水有机成分与ASM水质特性参数关系研究[D]. 上海:同济大学,2006. DENG K. Study on the relationship between organic components of municipal wastewater and ASM water quality parameters[D]. Shanghai:Tongji University,2006.
|
| [66] |
XU W H,WANG W W,DENG B B,et al. A review of the formation conditions and assessment methods of black and odorous water[J]. Environmental Monitoring and Assessment,2024,196(1). DOI:10. 1007/s10661-023-12222-5.
|