发表英文论文:
[1] Zhou, Xiaofeng, Yang, Jiajia, Lei, Ying, Zhang, Rui,彭书明, Li, Sihong,黄艺,王新宇,张佩聪,何鹏.Responses of soil microbial communities in a large vanadium-titanium magnetite tailing dam under half a century of revegetation:PLANT AND SOIL.2026
[2] Zhu, Yinghai,Li, Qian,Zou, Chengjie,Zhang, Na,王新宇,Zhao, Kai.Causes and influencing mechanisms of differences in phosphorus occurrence forms in sediments of different types of urban lakes:Science of the Total Environment.2025.981
[3] Cheng-jie Zou,Na Zhang,Ying-hai Zhu,Lü-han Yang,王新宇.Synergistic effects of potassium-silicon-calcium mineral fertilizer combined with rice husk biochar on the immobilization of Cd and Pb in soil:China Geology.2025.v.8(02):253-264
[4] 王新宇,王瑞麟, Li, Luo, Sherman, David M., Yang, Tao,侯明才, Takahashi, Yoshio, Li, Wei.Stable Mo isotopic fractionation during complexation onto hematite surface: Molecular insights from Ab-initio MD and X-ray absorption spectroscopy:GEOCHIMICA ET COSMOCHIMICA ACTA.2025.403:52-66
[5] Chen, Chao,钟瀚霆,王夏,甯濛,王新宇,王瀚, Tang, Ruifeng,侯明才.Recent marine carbonate hardgrounds at Abu Dhabi: towards a better understanding of 'hidden hardgrounds' in the geological past:FRONTIERS IN MARINE SCIENCE.2025.12
[6] Xu, Honglin,王瑞麟, Deng, Yongsheng, Dou, Guofeng,王新宇.Solid-Liquid Phase Equilibrium for the Quaternary System Na+, K+//VO3 -, Cl--H2O at 298.15 K:JOURNAL OF CHEMICAL AND ENGINEERING DATA.2025
[7] Liao, Jianghai, Wang, Hangjia,侯明才, Zhou, Sizhuo,施泽明, Zhan, Yuxiang,倪师军,王瑞麟.Geographical impact on the distribution of polycyclic aromatic hydrocarbons (PAHs) in hilly terrain topsoil: A case study at Chongqing, SW, China:JOURNAL OF HAZARDOUS MATERIALS.2025.487
[8] Xu, Honglin, Deng, Yongsheng,王新宇,王瑞麟.Solid-Liquid Phase Equilibrium for the Ternary System NaVO3-KVO3-H2O at 298.15 K:JOURNAL OF CHEMICAL AND ENGINEERING DATA.2024
[9] Zhu, Yinghai,施泽明,王新宇, Zou, Chengjie, Zhang, Na, Zheng, Peijia, Wang, Jianming, Wang, Yu.Spatial-temporal evolution of ecological risks in a typical urban lake in Southwestern China:JOURNAL OF CLEANER PRODUCTION.2024.434
[10] Chen, Chao,钟瀚霆,王新宇, Ning, Meng, Wang, Xia, Ge, Yuzhu, Wang, Han, Tang, Ruifeng,侯明才.Thermodynamic and Kinetic Studies of Dolomite Formation: A Review:MINERALS.2022.13(12)
[11] Zhang, Hang,王新宇, Wang, Hangjia, Yin, Jinfan, Wang, Ruilin,施泽明,倪师军, Courtin, Alexandra.Distribution of Uranium and Molybdenum in River Sediment near Molybdenite Mining Region: A Case Study in SW China:MINERALS.2022.13(11)
[12] Zhou, Sizhuo,王新宇, Yang, Ye,王瑞麟, Liao, Jianghai, Zhang, Pu, Liu, Lei, Zhao, Yongcai, Deng, Yintian.Distribution and source identification of polycyclic aromatic hydrocarbons (PAHs) with PCA-MLR and PMF methods in the topsoil of Chengdu at SW, China:SCIENCE OF THE TOTAL ENVIRONMENT.2024.908
[13] 王瑞麟,王新宇, Zuo, Zhijun,倪师军, Dai, Jie, Wang, Dewei.Adsorption Equilibrium and Mechanism and of Water Molecule on the Surfaces of Molybdenite (MoS2) Based on Kinetic Monte-Carlo Method:MOLECULES.2021.27(24)
[14] Zhang, Junji,施泽明,倪师军,王新宇, Liao, Chao, Wei, Fei.Source Identification of Cd and Pb in Typical Farmland Topsoil in the Southwest of China: A Case Study. Sustainability 2021, 13(7):3729. https://doi.org/ 10.3390/su13073729 SCI第四且通讯 (IF: 2.576 中科院四区)
[15] Hou Y, Shi Z, Ni S, Wang X, Li Y, Lin Q. Distribution of uranium and heavy metals in pore water and sediment profile of the Mianyuan River near a phosphate mining region[J]. Geochemistry: Exploration, Environment, Analysis (2020) 20 (3): 357–365. SCI
[16] Shi Z, Wang X, Ni S. Metal contamination in sediment of one of the upper reaches of the Yangtze River: Mianyuan River in Longmenshan region, Southwest of China[J]. Soil and Sediment Contamination: An International Journal, 2015, 24(4): 368-385. SCI 第二且通讯 (IF:1.187 中科院四区)
[17] Shi Z, Wang X, Shi Y, et al. Impact of intensive mining on the distribution of heavy metals in water and sediment of Anning River, southwest China[J]. Geochemistry: Exploration, Environment, Analysis, 2019, 19(1): 24-30. SCI 第二且通讯 (IF:1.109 中科院四区)
[18] Zhang J., Shi Z., Ni S., Wang X., Huang W. Evaluation of the Effectiveness of Composite Mineral Remediation Agents on Cd Immobilization in Soils and Rice. Soil and Sediment Contamination. 2021. DOI: 10.1080/15320383.2021.1960795 SCI
[19] Liao, Rong,施泽明, Chen, Yuejiao,王新宇.Redox potential and uranium sorption onto sediments: kinetic and thermodynamic characteristics:CHEMISTRY AND ECOLOGY.2020.36(5):475-485
[20] Liao R., Shi Z., Hou Y., Zhang K., Zhang J., Wang X., Chen K. Uranium sorption onto mullite: Characteristics of isotherms, kinetics and thermodynamics[J]. Journal of Earth System Science, 2019, 128(7): 176-. SCI 第六
[21] Liao R., Shi Z., Chen Y., Zhang J., Wang X., Hou, Y., Zhang, K. Characteristics of uranium sorption on illite in a ternary system: effect of phosphate on adsorption[J]. Journal of Radioanalytical and Nuclear Chemistry, 2020, 323(1): 159-168. SCI 第五
[22] 王新宇,倪师军,施泽明.Predominance diagrams of dissolved uranium species and logfO2(g)-pH diagrams of U-PO43--NaCl-H2O system at 25 degrees C, PCO2=10(-3.5) MPa.781-784:3-8
[23] Wang X. Ratio of Na to K in feldspars as a predictable index to trace the source of sediment: Based on the mass-balance model combined with feldspar weathering kinetics and a case study Journal of Geochemical Exploration.2019.215.SCI 第一 doi: https://doi.org/10.1016/j.gexplo.2020.106566 (IF:3746 中科院二区)
[24] Wang X, Ni S, Shi Z. Uranium distribution in the sediment of the Mianyuan River near a phosphate mining region in China and the related uranium speciation in water[J]. Geochemistry, 2014, 74(4): 661-669. SCI 第一 (IF:2.364 中科院三区)
[25] Wang X, Shi Z, Ni S, et al. Geochemical factors affecting chronological reconstruction of a historical arsenic pollution accident in Lake Qionghai, Southwest of China[J]. Aquatic Ecosystem Health & Management, 2017, 20(4): 457-464.SCI 第一 (IF:0.876 中科院四区)
[26] Shi Z, Pan P, Wang X, et al. Stable isotopes of hydrogen and oxygen in runoff waters in northwestern Sichuan of Southwestern China [J]. Applied Ecology and Environmental Research, 2017, 15(4): 1489-1510. SCI
[27] Wang R, Wang X, Shi Z, et al. Comparison of redox-potential calculated and measured to calculate the speciation of arsenic and selenium: a case study. Fresenius Environmental Bulletin. 2018, 27 (7):4715-4724. SCI 第二且通讯 (IF:0.691 中科院四区)
[28] Wang X, Shi Z, Shi Y, et al. Distribution of potentially toxic elements in sediment of the Anning River near the REE and V-Ti magnetite mines in the Panxi Rift, SW China[J]. Journal of Geochemical Exploration, 2018, 184: 110-118. SCI 第一 (IF:3457 中科院二区)
[29] Yin J., Wang X., Wang R. et al. Impact of wind direction and distance from Pb-Zn smelter on the distribution and speciation of heavy metals at the topsoil:Fresenius Environmental Bulletin.2021.30(6B):7362-7374.SCI 第二且通讯 (IF: 0.553 中科院四区)
[30] 王新宇, Sherman, David M..Molecular speciation of Mo (VI) on goethite and its implications for molybdenum and its isotopic cycle in ocean:GEOCHIMICA ET COSMOCHIMICA ACTA.2021.313:116-132.SCI (IF: 5.01 中科院一区 Nature index期刊)
[31] 王新宇.Equilibrium between dolomitization and dedolomitization of a global set of surface water samples: A new theoretical insight on the dolomite inorganic formation mechanism:MARINE CHEMISTRY.2021.235SCI 第一 https://doi.org/10.1016/j.marchem.2021.104017 (IF:3807 中科院二区 )
[32] Wang X, Shi Z, Kinniburgh D G, et al. Effect of thermodynamic database selection on the estimated aqueous uranium speciation[J]. Journal of Geochemical Exploration, 2019, 204: 33-42. SCI 第一 (IF:3457 中科院二区).
发表中文论文:
[1]王霞, 王瑞麟, 吕升浩, 王新宇, 倪师军. 1个大气压下离子强度与温度变化对方解石-文石-球霞石溶解度的影响机制[J]. 矿物岩石, 1-27.
[2]赵永才, 王新宇, 施泽明, 倪师军, 王瑞麟. 富磷水体中铀在水—钠长石界面的吸附机制研究[J]. 矿物岩石, 2024, 44 (02): 1-11.
[3]王建明, 郑培佳, 施泽明, 王新宇, 朱英海. 四川省典型工业园区周边土壤重金属风险评价及来源分析[J]. 广州化工, 2023, 51 (11): 154-158.
[4]郑培佳, 施泽明, 王建明, 王新宇, 朱英海, 王钰, 朱永贵, 刘定勇. 成都市三岔湖表层沉积物重金属地球化学特征及生态风险评价[J]. 地球与环境, 2023, 51 (03): 318-329.
[5]周思卓, 王新宇, 朱英海, 施泽明, 倪师军. 二氧化碳地质储存技术比对与现状分析[J]. 山东化工, 2022, 51 (24): 203-207.
[6]王建明, 施泽明, 郑培佳, 王新宇, 朱英海, 张凯亮, 王钰. 四川铅锌冶炼工业区周边土壤重金属地球化学特征及源解析[J]. 地球与环境, 2023, 51 (03): 287-298.
[7]张峻基, 施泽明, 廖容, 王钰, 王新宇. 成都平原西缘典型水稻土壤风险元素及磷、硒来源解析与评价[J]. 农业环境科学学报, 2023, 42 (02): 327-338.
[8]董阳阳, 施泽明, 王新宇, 杨旅涵, 张峻基. 矿物肥复配生物炭对镉吸附和土壤镉钝化特征[J]. 广州化工, 2022, 50 (05): 36-39.
[9]朱英海, 施泽明, 王新宇, 张凯亮, 朱伯丞. 攀西大梁子铅锌矿区水系沉积物重金属地球化学特征及源解析[J]. 现代地质, 2022, 36 (03): 923-932.
[10]彭琪贵, 王新宇, 施泽明. 基于乡镇尺度的农田土壤中污染物来源解析及风险评价[J]. 地球与环境, 2021, 49 (06): 694-706.
[11]彭琪贵, 施泽明, 王新宇. 针铁矿对水溶液中Cd2+、Pb2+的吸附影响[J]. 广州化工, 2020, 48 (17): 50-52+93.
[12]王新宇, 施泽明, 彭秀红. 地学类专业本科毕业设计中论文选题的“收与放”[J]. 中国地质教育, 2020, 29 (01): 100-102.
[13]秦琳, 朱英海, 陈月娇, 王新宇, 许伟. 邛海水体富营养化评价及成因分析[J]. 清洗世界, 2019, 35 (12): 50-52.
[14]施泽明, 高英, 王新宇. 地方院校在“世界一流学科”建设中的机遇、挑战和对策[J]. 中国地质教育, 2018, 27 (04): 20-23.
[15]朱泊丞, 施泽明, 王新宇, 许伟, 杨伟河, 廖超. 安宁河水体中重金属空间分布特征及来源识别[J]. 四川冶金, 2018, 40 (04): 24-31.
[16]廖容, 施泽明, 王新宇, 林清, 林勇征, 王洋, 程科. 富磷水系中方解石吸附铀的探究[J]. 河南科学, 2017, 35,228 (11): 1845-1851.
[17]廖容, 王新宇, 杨旅涵, 程科. 影响黏土矿物吸附铀的因素研究进展[J]. 广州化工, 2017, 45 (21): 10-12+37.
[18]王新宇, 姜浩宇, 衡一嘉, 张校晨, 杨富麟. 模拟电路统一软故障诊断的研究[J]. 山东工业技术, 2017, (18): 217.
[19]王新宇, 施泽明, 王瑞麟. 地学本科毕业论文(设计)中“批判-创新”思维的培养方法探讨[J]. 高教学刊, 2017, 57(09): 193-194.
[20]吴鹏盛, 施泽明, 王新宇, 林勇征, 王京, 林清, 王洋. 汞矿区尾矿渣的淋滤特征研究[J]. 中国锰业, 2016, 34 (04): 114-116.
[21]林清, 施泽明, 王新宇. 沱江流域上游水系沉积物重金属元素空间分布特征及环境质量评价[J]. 四川环境, 2016, 35 (04): 29-35.
[22]吴鹏盛, 施泽明, 王新宇, 李文博, 林勇征, 王洋, 林清, 王京. 乌斯河铅锌矿重金属淋滤特征[J]. 科技创新与生产力, 2016, 265(02): 113-115.
[23]施泽明, 王新宇, 倪师军. 四川省阿坝地区地表水地球化学特征[J]. 中国地质调查, 2015, 2 (04): 31-35.
[24]侯赟, 施泽明, 王新宇, 廖超, 魏菲. 龙门山地区水系沉积物中铀含量分布特征[J]. 广东微量元素科学, 2015, 22 (02): 46-50.
[25]王新宇, 施泽明, 倪师军. 环境地球化学模型的应用与发展[J]. 物探化探计算技术, 2013, 35 (06): 722-726.
[26]王新宇, 施泽明, 倪师军. 四川清平磷矿开发对沱江水系的铀贡献[J]. 矿物学报, 2013, 33 (S2): 711-712.
[27]王新宇, 倪师军, 施泽明. 磷矿影响区—绵远河铀含量分析与形态计算[J]. 地球科学进展, 2012, 27 (S1): 426.
[28]王瑞麟, 王新宇. 热脱附~气相色谱法对空气中苯系物测试精度的实验研究[J]. 物探化探计算技术, 2011, 33 (04): 455-457+350.
[29]王新宇, 闫书一. 高效萃取剂LIX841的合成及应用[J]. 四川化工, 2010, 13 (01): 12-14.