[1]周向军.基于CiteSpace的溶解性有机质研究进展[J].黑龙江农业科学,2023,(02):102-110.[doi:10.11942/j.issn1002-2767.2023.02.0102]
 ZHOU Xiangjun.Research Progress of Dissolved Organic Matter Based on CiteSpace[J].HEILONGJIANG AGRICULTURAL SCIENCES,2023,(02):102-110.[doi:10.11942/j.issn1002-2767.2023.02.0102]
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基于CiteSpace的溶解性有机质研究进展

参考文献/References:

[1]TANG J,LI X,CAO C,et al.Compositional variety of dissolved organic matter and its correlation with water quality in peri-urban and urban river watersheds[J].Ecological Indicators,2019,104:459-469.[2]凌宇,闫国凯,王海燕,等.6种农业废弃物初期碳源及溶解性有机物释放机制[J].环境科学,2021,42(5):2422-2431.[3]RUTLIDGE H,MCDONOUGH L K,OUDONE P,et al.Characterisation of groundwater dissolved organic matter using LC-OCD:implications for water treatment[J].Water Research,2022,188(1):116422.[4]李海斌,谢发之,李国莲,等.南漪湖上覆水溶解性有机质的光谱特征[J].中国环境科学,2022,42(7):3306-3315.[5]ZHANG X H,CAO F,HUANG Y,et al.Variability of dissolved organic matter in two coastal wetlands along the Changjiang river estuary:responses to tidal cycles,seasons,and degradation processes[J].Science of The Total Environment,2022,807(3):150993.[6]李艳,魏丹,王伟,等.秸秆-牛粪发酵过程中溶解性有机质的荧光光谱特征[J].光谱学与光谱分析,2021,41(9):2846-2852.[7]寇兵,袁英,惠坤龙,等.垃圾渗滤液中溶解性有机质与重金属络合机制研究现状及展望[J].环境工程技术学报,2022,12(3):851-860.[8]FANG G D,LIU C,WANG Y J,et al.Photogeneration of reactive oxygen species from biochar suspension for diethyl phthalate degradation[J].Applied Catalysis B:Environmental,2017,214:34-45.[9]聂雄峰,黄雁飞,刘斌,等.基于CiteSpace的农田安全利用研究态势分析[J/OL] .西南农业学报,2022:1-10(2022-09-30)[2022-10-11].https://kns.cnki.net/kcms/detail/51.1213.S.20220929.1729.018.html.[10]罗斌圣,龙春林.民族生态学研究的文献计量学可视化分析[J].生态学报,2018,38(4):1510-1519.[11]李杰,陈超美.CiteSpace科技文本挖掘及可视化[M].2版.北京:首都经济贸易大学出版社,2017.[12]邹吉宇,庞立健,吕晓东.2000年至2020年国内肺络研究领域的CiteSpace文献计量与可视化分析[J].世界科学技术-中医药现代化,2022,24(4):1466-1474.[13]谢瑶,唐研,刘霞,等.基于文献计量的玉米逆境胁迫机制研究进展分析[J].农业大数据学报,2020,2(2):112-124.[14]王娟,苏德纯.基于文献计量的小麦玉米重金属污染农田修复治理技术及效果分析[J].农业环境科学学报,2021,40(3):493-500.[15]邢素芝,李孝良,肖新,等.基于CiteSpace可视化分析有机肥料研究进展[J].土壤,2020,52(4):659-667.[16]王明恩,吴荻,徐卫平,等.基于CiteSpace的激光荧光材料发展综述[J].激光与红外,2022,52(10):1427-1435.[17]ZHAO S Y,XUE S,ZHANG J,et al.Dissolved organic matter-mediated photodegradation of anthracene and pyrene in water[J].Scientific Reports,2020,10:3413-3421.[18]XUE S,SUN J,LIU Y,et al.Effect of dissolved organic matter fractions on photodegradation of phenanthrene in ice[J].Journal of Hazardous Materials,2019,361:30-36.[19]WANG Y,LIU J,NGUYEN V L,et al.Binding strength of mercury (II) to different dissolved organic matter:the role of DOM properties and sources[J].Science of the Total Environment,2022,807(3):150979.[20]〖JP+1〗WANG M,LIU J,PENG L,et al.Estimation of the biogeochemical reactivities of dissolved organic matter from modified biochars using color[J].Science of the Total Environment,2021,790:147974.[21]CHEN X,YU M,HE X,et al.Fate of dissolved organic matter substructure in a full-scale wastewater treatment plant by using size exclusion chromatography multi-excitation-emission matrix analysis[J].Journal of Cleaner Production,2021,328:129677.[22]赵洪猛,王慎强,赵旭,等.基于Citespace的土壤碳氮磷交互研究可视化分析[J].土壤,2022,54(4):682-690.[23]陈红燕,黄晓仪,魏凤香,等.重型新型冠状病毒肺炎研究热点及前沿分析:基于CiteSpace的可视化分析[J].中华危重病急救医学,2020,32(6):671-676.[24]张紫玄,王雪颖,王昊.题名与关键词在文献内容揭示中的对比研究——基于农产品品牌评价领域[J].情报科学,2017,35(10):88-93.[25]王娟,陈世超,王林丽,等.基于CiteSpace的教育大数据研究热点与趋势分析[J].现代教育技术,2016,26(2):5-13.[26]王知津,李博雅.近五年我国情报学研究热点动态变化分析——基于布拉德福定律分区理论[J].情报资料工作,2016(3):34-40.

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备注/Memo

甘肃省自然科学基金(20JR5RA499)。

更新日期/Last Update: 2023-02-10