[1]林滨,陶澍,曹军,等.伊春河流域土壤与沉积物中水溶性有机物的含量与吸着系数[J].中国环境科学,1996,16(04):307-310.
[2]蒋驱,王果,方玲.土壤水溶解态有机物质与重金属的络合作用[J].土壤与环境,2001,10(01):67-71.
[3]Murphy K R,Butler K D,Spencer R G M,et al.Measurement ofdissolved organic matter fluorescence in aquatic environments:aninterlaboratory comparison [J].Environmental Science Technolo-y,2010,44(24):9405-9412.
[4]陈同斌,陈志军。水溶性有机质对土壤中镉吸附行为的影响[J].应用生态学报,2002,13(02):183-186
[5]王帅,王楠,张溪,等.改良方式对盐碱地稻田总有机碳及腐殖质组成的影响[J].西北农林科技大学学报(自然科学版),2017,45(11):43-50.
[6]Hassouna D L,Massiani C,Dudal Y,et al.Changes in water ex-tractable organic matter WEOC)in a calcareous soil under fieldconditions with time and soil depth J].Geoderma,2010,155(1/2):75-85.
[7]Chen W,Westerhoff P L,Leenheer J A,et al.Fluorescence Ex-citation-Emission Matrix Regional Integration to Quantify Spectra forDissolved Organic Matter [J].Environmental Science &Technology,2003,37:5701-5710.
[8]李明堂,王继红,赵兰坡.大豆与玉米根部土壤水溶性有机的荧光特性比较研究[J].水土保持学报,2013,27(02):140-144.
[9]魏丹,蔡姗姗,李艳,等。黑土水溶性有机碳对有机物料还田的响应[J].中国农业科学,2020,53(06):1180-1188.
[10]李新华,郭洪海,朱振林,等.不同秸秆还田模式对土壤有机碳及其活性组分的影响[J].农业工程学报,2016,32(09):130-135.
[11]Mitchell P J,Simpson A J,Soong R,Simpson M J.Shiftsinmi-crobial community and water extractable organic matte compositionwith biochar amendment in a temperate forest soil [J].Soil Biolo-gy and Biochemistry,2015,81:244-254.
[12]葛之葳,张玲,卜丹蓉,等.杨树人工林沼液和生物炭混施对表层土壤活性有机碳的影响[J刀.南京林业大学学报(自然科学版),2016,40(06):9-14.
[13]谢军,赵亚南,陈轩敬,等.长期不同施肥对土壤溶解性有机质含量及其结构特征的影响[J].光谱学与光谱分析,2018,38(07):2250-2255.
[14]周影,王琳,魏启舜.晚播对紫云英生长、养分积累和根际微生物的影响[J].土壤,2019,51(01):46-50.
[15]李慧敏,田胜营,李丹丹,等.有机物料施用对潮土活性有机碳及微生物群落组成的影响[J].土壤学报,2021,58(03):777-787.
[16]高洁,江韬,李璐璐,等.三峡库区消落带土壤中溶解性有机质(D0M)吸收及荧光光谱特征[J].环境科学,2015,36(01):151-162.
[17]梁远宇,王小利,徐明岗,孙楠,练金山.长期不同施肥土壤对可溶性有机碳的吸附特征[J].植物营养与肥料学报,2021,27(11):1915-1925. |