1. Zhao WB, Guo ZF, Zhang ML, Sun YT, Cheng ZH, Li JJ, and Dingwell DB. 2025. Continental subduction and the deep carbon cycle in northern Tibet. Journal of Geophysical Research: Solid Earth, 130: e2024JB028999
2. Zhao WB, Guo ZF, Liu WJ, Caracausi A, Buttitta D, Sun YT, Li JJ, Xie XG, Sun CQ, and Xu ZF. 2025. Deep carbon degassing from strike-slip fault and rift system in India-Asia collision zone: Insights from fluid geochemistry in hydrothermal systems. Applied Geochemistry, 183: 106340
3. Zhao WB, Guo ZF, Zheng GD, Pinti DL, Zhang ML, Li JJ, and Ma L. 2022. Subducting Indian lithosphere controls the deep carbon emission in Lhasa terrane, southern Tibet. Journal of Geophysical Research: Solid Earth, 127: e2022JB024250
4. Zhao WB, Sun CQ and Guo ZF*. 2022. Reawaking of Tonga volcano. The Innovation, 3(2): 100218
5. Zhao WB, Guo ZF, Lei M, Zhang ML, Ma L, Fortin D, and Zheng GD. 2019. Volcanogenic CO2 degassing in the Songliao continental rift system, NE China. Geofluids, 2019: 8053579
6. 赵文斌, 郭正府, 李菊景, 马琳, 刘嘉麒. 2022. 青藏高原南部及邻区深部碳释放规模与成因. 岩石学报, 38(5): 1541-1556
7. 赵文斌, 郭正府, 刘嘉麒, 张茂亮, 孙玉涛, 雷鸣, 马琳, 李菊景. 2021. 中国东北新生代火山区CO2释放规模与成因. 岩石学报, 37(4): 1255-1269
8. 赵文斌, 郭正府*, 孙玉涛, 张茂亮, 张丽红, 雷鸣, 马琳. 2018. 火山区CO2气体释放研究进展. 矿物岩石地球化学通报, 37(4): 601–620
9. Sun JM, Zhao WB, Ghalamghash J, Talebian M, and Sun C. 2026. Late Cenozoic provenance shifts in the Alborz foreland basin in response to uplift and southward growth of the orogeny driven by Arabia-Eurasia collision. Palaeogeography, Palaeoclimatology, Palaeoecology, 682: 113447
10.Sun YT, Li P, Zhang Y, Zhao XC, Li Y, Guo ZF, Zhao WB, and Xie XG. 2025. Gaseous elemental mercury emissions in the Yangbajing geothermal field, Tibetan Plateau. Applied Geochemistry, 193: 106540S
11.Sun YT, Li X, Guo ZF, Zhao WB, Zhang Y, Li P, Zhao X, Li Y, and Hong B. 2025. Microbial characteristics and CO2 diffuse emission in the Mt. Changbai volcanic field, northeast China. Journal of Asian Earth Sciences, 281: 106513
12.Sun YT, Zhao XC, Zhang Y, Li P, Guo ZF, Zhao WB, Li JJ, Zhou XC, Li Y, Chen ZH, and Liu L. 2025. CO2 emissions in the Datong monogenetic volcanic field, eastern China: Implications for the carbon cycle in a continental rift system. Journal of Hydrology, 652: 132644
13.Sun JM, Talebian M, Windley BF, Cao MM, Ghalamghash J, Sheikh M, Sha JG, and Zhao WB. 2025. Neogene provenance evolution of the Zagros foreland basin: Implication for the uplift and outward growth history of the Zagros orogenic belt, Iran. GSA Bulletin, 137(9-10): 3981-3996
14.Li JJ, Guo Z, Zhang M, Zhao WB, Dingwell DB, Zheng GD, Sun YT, and Cheng ZH. 2024. Deep-sourced CO2 emissions from the Eastern Himalaya Syntaxis and the Tengchong Volcanic Field, southeast Tibet. Chemical Geology, 645: 121888
15.Sun YT, Guo ZF, Fortin D, Zhao WB, Cheng ZH, Li JJ, and Zhang Y. 2023. Diffuse emission of CO2 from the Langjiu Geothermal Field, Western Tibet. Journal of Geochemical Exploration, 249: 107219
16.Sun YT, Guo ZF, Zhao WB, Li JJ, Ma L, Zhou XC, and Sun FX. 2023. Geochemical characteristics and water quality assessment in the Mt. Changbai volcanic field, Northeastern China. Applied Geochemistry, 150: 105583
17.Zhang ML, Zhang LH, Zhao WB, Guo ZF*, Xu S*, Sano Y, Lang YC, Liu CQ and Li Y. 2021. Metamorphic CO2 emissions from the southern Yadong-Gulu rift, Tibetan Plateau: Insights into deep carbon cycle in the India-Asia continental collision zone. Chemical Geology, 584(B14): 120534
18.Lei M, Guo ZF*, Zhao WB, Zhang ML and Ma L. 2020. Coexisting Late Cenozoic Potassic and Sodic Basalts in NE China: Role of Recycled Oceanic Components in Intraplate Magmatism and Mantle Heterogeneity. Lithosphere, 2020: 8875012
19.Sun YT, Guo ZF*, Du JG and Zhao WB. 2020. Diffuse emission and transport of gaseous elemental mercury (GEM) in the Mapamyum geothermal system, Western Tibet (China). Journal of Volcanology and Geothermal Research, 397: 106825
20.Cheng ZH, Guo ZF*, Dingwell DB, Li XH, Zhang ML, Liu JQ, Zhao WB and Lei M. 2020. Geochemistry and petrogenesis of the post-collisional high-K calc-alkaline magmatic rocks in Tengchong, SE Tibet. Journal of Asian Earth Sciences, 193: 104309
21.Zhang ML, Guo ZF*, Liu JQ, Liu GM, Zhang LH, Lei M, Zhao WB, Ma L, Sepe V and Ventura G. 2018. The intraplate Changbaishan volcanic field (China/North Korea): A review on eruptive history, magma genesis, geodynamic significance, recent dynamics and potential hazards. Earth-Science Reviews, 187: 19–52
22.谢显刚, 赵文斌, 张茂亮, 郭正府,徐胜. 2025. 青藏高原典型时段火山活动碳释放规模及其环境意义. 地学前缘, 32(03): 350-361
23.成智慧, 赵文斌, 杨志军, 孙玉涛, 张学智, 赖淇彬. 2025. 青藏高原羌塘新生代火山-地热区碳释放规模与成因. 矿物岩石地球化学通报, 44
24.马琳, 郭正府, 宋文佳, 赵文斌. 2024. 中国活火山喷发物对航空安全的影响评估. 岩石学报, 40(7): 2267-2286
25.谢显刚, 赵文斌, 李晓光, 李菊景, 郭正府, 张茂亮,徐胜. 2024. 拉萨地块西部碰撞后富钾火山作用CO2释放规模初探. 岩石学报, 40(7): 2225-2237
26.孙玉涛, 张悦, 郭正府, 赵文斌, 李菊景, 马琳. 2023. 火山口湖温室气体释放规模研究: 第四纪研究, 43(2): 473-484
27.郑国东, 赵文斌,陈志, 胥旺, 宋之光, 李琦,徐胜, 郭正府, 马向贤, 梁明亮, 王云鹏.2021. 中国地质源温室气体释放近十年研究概述.矿物岩石地球化学通报, 40(6): 1250–1271
28.成智慧, 杨志军, 赵文斌, 张茂亮, 雷鸣, 马琳, 李菊景. 2020. 青藏高原东南缘腾冲后碰撞粗面安山岩形成的深部岩浆过程: 来自辉长质物质的启示. 岩石学报, 36(7): 2127–2148
29.徐青鹄, 刘嘉麒*, 莫宣学, 贺怀宇, 张云辉, 赵文斌. 2020. 长白山新生代玄武岩中橄榄岩包体所揭示的岩石圈地幔特征. 岩石学报, 36(7): 2047–2066