[1] LUO Weijun, WANG Shijie. Transmission of oxygen isotope signals of precipitation-soil water-drip water and its implications in Liangfeng Cave of Guizhou, China[J]. Chinese Science Bulletin, 2008, 53(21): 3364-3370.
[2] LUO Weijun, WANG Shijie. Transmission of δ13C signals and its paleoclimatic implications in Liangfeng Cave System of Guizhou Province, SW China[J]. Environmental Earth Sciences, 2009, 59(3): 655-661.
[3] LUO Weijun, WANG Shijie, XIE Xingneng, ZHOU Yunchao, LI Tingyu. Temporal and spatial variations in cave percolation water hydro-geochemistry and theirs implications in four caves of Guizhou, China[J]. Chinese Journal of Geochemistry, 2013, 32(2): 119-129.
[4] LUO Weijun, WANG Shijie, XIE Xingneng. A comparative study on the stable isotopes from precipitation to speleothem in four caves of Guizhou, China[J]. Chemie der Erde - Geochemistry, 2013, 71(2): 205-215.
[5] LUO Weijun, WANG Shijie, XIE Xingneng, ZHOU Yunchao, LI Tingyu. Stable carbon isotope variations in cave percolation waters and theirs implications in four caves of Guizhou, China[J]. Acta Geologica Sinica (English Edition), 87(5): 1396-1411.
[6] LUO Weijun, WANG Shijie, ZENG Guangneng, ZHU Xiaolong, LIU Wei. Daily response of drip water isotopes to precipitation in Liangfeng Cave, Guizhou Province, SW China[J]. Quaternary International, 2014, 349: 153-158.
[7] ZENG Guangneng, LUO Weijun, WANG Shijie, DU Xuelian. Hydrogeochemical and climatic interpretations of isotopic signals from precipitation to drip waters in Liangfeng Cave, Guizhou Province, China[J]. Environmental Earth Sciences, 2015, 74(2): 1509-1519.
[8] Duan Wuhui, Ruan Jiaoyang, Luo Weijun, Li Tingyong, Tian Lijun, Zeng Guangneng, Zhang Dezhong, Bai Yijun, Li Jilong, Tao Tao, Zhang Pingzhong, Andy Baker, Tan Ming. The transfer of seasonal isotopic variability between precipitation and drip water at eight caves in the monsoon regions of China[J]. Geochimica et Cosmochimica Acta, 2016, 183, 250-266.
[9] ZHU Xiaolong, WANG Shijie, LUO Weijun. Characteristics of strontium isotopes and their implications in the Qixing Cave of Guizhou, China[J]. Chinese Science Bulletin, 2011, 56(7): 670-675.
[10] Liu Wei, Wang Shijie, Luo Weijun, Dai Weiwei, Bai Edith. The characteristics of soil water movement in the grass slope in karst peak-cluster region, China[J]. Hydrological Processes, Accepted, DOI: 10.1002/hyp.11105.
[11] ZHOU Yunchao, WANG Shijie, XIE Xingneng, LUO Weijun, LI Tingyu. Significance and dynamics of drip water responding to rainfall in four caves of Guizhou, China[J]. Chinese Science Bulletin, 2005, 50(2): 154-161.
[12] XIE Xingneng, WANG Shijie, ZHOU Yunchao, LUO Weijun. Three dimensional fluorescence spectral characteristics of dissolved organic carbon in cave drip waters and their responses to environment changes: Four cave systems in Guizhou Province, China[J]. Chinese Science Bulletin, 2008, 53(6): 884-889.
[13] FENG Zhigang, WANG Shijie, LIU Xiuming, LUO Weijun, WANG Qingliang. Micro area transportation of residues: A style forming the red weathering crusts of carbonate rocks[J]. Chinese Journal of Geochemistry, 2006, 25(B08, suppl.): 170-171.
[14] LIU Yu, WANG Shijie, XU Sheng, LIU Xiuming, FABEL Derek, ZHANG Xinbao, LUO Weijun, CHENG Anyun. New evidence for the incision history of the Liuchong River, Southwest China, from cosmogenic 26Al/10Be burial ages in cave sediments[J]. Journal of Asian Earth Sciences, 73, 274-283.
[15] Xin Zhao, Ting-Yong Li, Tao-Tao Zhang, Wei-Jun Luo, and Jun-Yun Li. Distribution and Health Risk Assessment of Dissolved Heavy Metals in the Three Gorges Reservoir, China (Section in the Main Urban Area of Chongqing)[J], Environmental Science and Pollution Research, Accepted, DOI: 10.1007/s11356-016-8046-6.
[16] 罗维均, 王世杰, 刘秀明. 洞穴现代沉积物δ13C的生物量效应及机理探讨: 以贵州4个洞穴为例[J]. 地球化学, 2007, 36(4): 344-350.
[17] 罗维均, 王世杰, 刘秀明. 中国大气降水δ18O区域特征及其对古气候研究的意义[J]. 地球与环境, 2008, 36(1): 47-55.
[18] 罗维均, 王世杰. 贵州凉风洞大气降水-土壤水-滴水的δ18O信号传递及其意义[J]. 科学通报, 2008, 53(17): 2071-2076.
[19] 罗维均, 王世杰. 喀斯特洞穴系统中稳定同位素信号传递的研究与展望[J]. 矿物岩石地球化学通报, 2008, 27(z1): 486-488.
[20] 罗维均, 王世杰, 刘秀明. 喀斯特洞穴系统碳循环的烟囱效应研究现状及展望[J]. 地球科学进展, 2014, 29(12): 1333-1340.
[21] 王世杰, 罗维均, 刘秀明, 谢兴能, 周运超, 黎廷宇, 刘启明. 贵州七星洞系统中水文地球化学特征对滴水δ13CDIC的影响及其意义[J]. 地学前缘, 2009, 16(6): 66-76.
[22] 肖德安, 罗维均, 王世杰, 陈生华. 喀斯特地区土壤水和表层泉水对植被退化的地球化学响应—以贵州荔波拉桥小流域为例[J]. 地球与环境, 2012, 40(3): 297-304.
[23] 朱小龙, 王世杰, 罗维均. 贵州七星洞洞穴系统中锶同位素特征及其意义[J]. 科学通报, 2011, 56(3): 254-260.
[24] 刘伟, 王世杰, 罗维均, 容丽. 贵州荔波喀斯特与非喀斯特地区土壤水运移的对比研究[J]. 地球与环境, 2011, 39(2): 137-149.
[25]刘伟, 王世杰, 罗维均. 贵州荔波岩溶峰丛区表层岩溶泉对大气降雨的响应及其指示意义[J]. 地球化学, 2011, 40(4): 487-496.
[26]杨涛, 王世杰, 罗维均, 谢兴能, 肖德安, 黎廷宇, 周运超. 现代环境监测研究中的一种新示踪 指示剂(SO4)[J]. 地球与环境, 2012, 40(1): 1-8.
[27]胡文帙, 王世杰, 罗维均, 刘秀明, 白晓永. 喀斯特峰丛洼地土地利用演变及其土壤侵蚀效应[J]. 生态学杂志. 2012, 31(4): 975-980.
[28]周运超, 王世杰, 谢兴能, 罗维均, 黎廷宇. 贵州4个洞穴滴水对大气降雨响应的动力学及其意义[J]. 科学通报, 2004, 49(21): 2220-2227.
[29]谢兴能, 王世杰, 周运超, 罗维均. 洞穴滴水溶解有机碳三维荧光光谱特征及其对环境的响 应: 以贵州4个洞穴系统为例[J]. 科学通报, 2007, 52(23): 1781-1784.
[30]冯志刚, 王世杰, 罗维均, 刘秀明, 王清良, 史文革. 不同前处理方法对红色风化壳粒度测试 结果的影响[J].矿物学报, 2006, 26(1): 1-7.
[31]冯志刚, 王世杰, 刘秀明, 罗维均. 微地域搬运—碳酸盐岩红色风化壳形成过程的一种方式 [J]. 地质学报, 2007, 81(1): 127-138.
[32]冯志刚, 王世杰, 刘秀明, 罗维均. 酸不溶物对碳酸盐岩风化壳发育程度的影响[J]. 地质学报, 2009, 83(6): 885-893.
[33]刘彧, 王世杰, 刘秀明, 徐胜, Fabel Derek, 罗维均. 贵州荔波黑洞碎屑沉积物宇宙成因核素 26Al/10Be埋藏年龄[J]. 第四纪研究, 2013, 33(3): 437-444.