Zhang Y, Xiong H, Li X, Bi J, Huan Q, Liu X*. Mechanisms and application of wastes-pyrolyzed biochars in soil Cd immobilization, tobacco Cd accumulation reduction and plant growth promotion. Industrial Crops and Products, 2025, 233: 121433. (1区TOP, IF2025=6.2)
Bi J, Zhang HJ, Luo Z, Huan Q, Liu X*. Soil Cd bioavailability, enrichment in raw/cooked rice, transfer to gastrointestinal tract and human health risk: a comparative study in mining-impacted non-karst and karst areas. Environmental Pollution, 2025, 376: 126384. (2区, IF2025=7.3)
Ye FX, Luo Z, Ju Y, Huan Q, Liu X*. Roles of N and P in soil acidification, metals mobilization and bioavailable concentration-based soil fertility assessment in tea plantations in Yunnan, China. Agriculture Basel, 2025, 15: 543. (2区, IF=3.6)
Luo Z, Ju Y, Chen L, Yang X, Long Y*, Liu X*. Fertility assessment and risk management in tea plantations: role of P-promoted metals’ availability. Agriculture Basel, 2025, 15: 953. (2区, IF=3.3)
Ju YW, Luo Z, Bi J, Liu CZ, Liu X*. Transfer of heavy metals from soil to tea and the potential human health risk in a regional high geochemical background area in southwest China. Science of the Total Environment, 2024, 908: 168122. (1区, IF=9.8)
Ma S, Wang CT, Bi J, Ye FX, Liu X*. Calcium carbonate enhanced As uptake in Pteris vittata by increasing pH and As bioavailability and mediating rhizosphere As-transformation bacterial community. Environmental and Experimental Botany, 2024, 226: 105949. (2区, IF=4.5)
Wang CT, Bi J, Zhang YK, Zhang YX, Liu X*. Metals transfer in mushroom Tricholoma matsutake from regional high geochemical background areas: Environmental influences and human health risk. Journal of Fungi, 2024, 10: 608. (2区, IF=4.2)
Hou L*, Liang QB, Yang GY, Gao L, Liu X*. Translocation of TiO2 nanoparticles enhances phosphorus uptake by wetland plants: Evidence from Pistia stratiotes and Alisma plantago-aquatica. Journal of Environmental Management, 2023, 345: 118789. (1区, IF=8.7)
Liu X, Han R, Cao Y, Turner BL, Ma LQ*. Enhancing phytate availability in soils and phytate-P acquisition by plants: a review. Environmental Science & Technology, 2022, 56, 9196–9219. (1区, IF=11.36)
Liu X, Ju Y W, Ma L Q, Clemens S*, Rensing C*. Sporadic Pb accumulation by plants: Influence of soil biogeochemistry, microbial community and physiological mechanisms. Journal of Hazardous Materials, 2022, 444: 130391. (1区, IF=14.22)
Zhang HJ, Wang Q, Xu QJ, Xu WM, Liu X*, Ma LQ*. Sequential fractionation and plant uptake of As, Cu, and Zn in a contaminated riparian wetland. Environmental Pollution, 2020, 268, 115734. (2区, IF=9.99)
Xu WM,Liu X*, Ma LQ*. Closely-related species of hyperaccumulating plants and their ability in accumulation of As, Cd, Cu, Mn, Ni, Pb and Zn. Chemosphere, 2020, 126334. (2区, IF=5.11)
Deng FLa, Liu Xa, Ma L Q*. Aquaporins-mediated arsenite transport in plants: molecular mechanisms and applications in crop improvement. Critical Reviews in Environmental Science and Technology, 2019, 1–27. (共一, 1区, IF=5.98)
Abid R, Liu X*, Ma L Q*. Interactive effects of As, Cd and Zn on their uptake and oxidative stress in As-hyperaccumulator Pteris vittata. Environmental Pollution, 2019, 248: 756–762. (2区, IF=5.71)
Gao P, Liu Y, Wang Y, Liu X*, Wang Z*, Ma LQ. Spatial and temporal changes of P and Ca distribution and fractionation in soil and sediment in a karst farmland-wetland system. Chemosphere, 2019, 220: 644–650. (2区, IF=5.11)
Hadayat N, De Oliveira LM, Liu X*, Ma LQ*. Assessment of trace metals in five most-consumed vegetables in the US: conventional vs. organic. Environmental Pollution, 2018, 243: 292–300. (2区, IF=5.71)
da Silva EB, Lessl JT, Wilkie AC, Liu X*, Liu Y*, Ma LQ. Arsenic removal by As-hyperaccumulator Pteris vittata from two contaminated soils: A 5-year study. Chemosphere, 2018, 206: 736–741. (2区, IIF=5.11)
Moreira JD, da Silva EB, Fontes PF, Liu X*, Ma LQ*. Speciation, bioaccessibility and potential risk of chromium in Amazon forest soils. Environmental Pollution, 2018, 239: 384–391. (2区, IF=5.71)
Liu X, Feng HY, Fu JW, Ma LQ. Phytate promoted arsenic uptake and growth in arsenic-hyperaccumulator Pteris vittata by upregulating phosphorus transporters. Environmental Pollution, 2018, 241: 240–246. (2区, IF=5.71)
Liu X, Feng HY, Fu JW, Chen YS, Liu Y*, Ma LQ*. Arsenic-induced nutrient uptake in As-hyperaccumulator Pteris vittata and their potential role to enhance plant growth. Chemosphere, 2018, 198: 425–431. (2区, IF=5.11)
Liu X, Fu JW, Tang N, Cao Y, Chen Y*, Ma LQ. Phytate induced arsenic uptake and plant growth in arsenic-hyperaccumulator Pteris vittata. Environmental Pollution, 2017, 226: 212–218. (2区, IF=5.1)
Liu X, Fu JW, Cao Y, Rathinasabapathi B, Chen Y*, Ma LQ. Microbial siderophores and root exudates enhanced goethite dissolution and Fe/As uptake by As-hyperaccumulator Pteris vittata. Environmental Pollution, 2017, 223: 230–237. (2区, IF=5.1)
Liu X, Fu JW, Chen Y*, Ma LQ*. Arsenic induced phytate exudation, and promoted FeAsO4 dissolution and plant growth in As-hyperaccumulator Pteris vittata. Environmental Science & Technology, 2016, 50(17): 9070–9077. (1区, IF=6.2)
Liu X, Yang G, Guan D, Ghosh P, Ma LQ*. Catecholate-siderophore produced by As-resistant bacterium effectively dissolved FeAsO4 and promoted Pteris vittata growth. Environmental Pollution, 2015, 206: 376–381. (2区, IF=5.1)
李龙菲, 环琴, 阎恒硕, 王威, 叶阜鑫, 刘雪*. 植物促生菌的定殖及其影响因素与效率提高方法研究进展. 微生物学报, 2025, 录用.(CSCD)
张玉康, 瞿福, 阮若涵, 王翠婷, 刘雪*. 重金属生物可给性体外模拟方法研究进展. 生态毒理学报, 2025, 20(1): 221–237.(CSCD)
刘朝柱, 杨瑷瑄, 吴博贤, 剧永望, 刘雪*. 砷超积累植物对低温胁迫的响应及耐寒性分析. 生态学杂志, 2025, 44(01): 196–205.(CSCD)
王翠婷, 张玉康, 阮若涵, 瞿福, 刘雪*. 食用菌中砷、汞富集特征与吸收机制研究进展. 食品科学, 2024, 45(15): 338–351.(权威期刊/EI/CSCD)
曹兴圆, 杨晓莉, 毛佳璇, 马露冉, 刘雪*. 有机酸活化植酸-矿物络合物的作用机制与影响因素综述. 生态与农村环境学报, 2024, 40(09): 1167–1178.(CSCD)
徐其静, 毛佳璇, 马露冉, 杨晓莉, 刘雪*. 钙磷对蜈蚣草淹水胁迫响应的调控效应. 生态学杂志, 2024, 43(5): 1271–1278.(CSCD)
李佳骏, 叶阜鑫, 刘朝柱, 刘雪*. 砷对植物生长和生理生化特征的影响与机制综述. 生态毒理学报, 2024, 19(1): 185–206.(CSCD)
吴博贤, 艾雯妍, 文思颖, 杨晓莉, 刘雪*. 土壤/沉积物中植酸对砷磷形态转化和生物有效性影响综述. 生态与农村环境学报, 2024, 40(4): 449–460.(CSCD)
杨晓莉, 毛佳璇, 马露冉, 徐其静, 刘雪*. 纳米材料固定化植酸酶的制备及其催化效率与影响因素综述. 生态环境学报, 2023, 32(10): 1889–1900.(CSCD)
剧永望, 毛佳璇, 马露冉, 杨晓莉, 刘雪*. 秸秆生物炭吸附/钝化土壤重金属的过程机理与影响因素. 生态毒理学报, 2023, 18(5): 16–33.(CSCD)
曹兴圆, 艾雯妍, 文思颖, 杨晓莉, 刘雪*. 有机酸提高土壤植酸生物有效性的作用机制、影响因素及应用. 植物营养与肥料学报, 2023, 21(11): 2150–2171.(CSCD)
刘朝柱, 艾雯妍, 文思颖, 剧永望, 刘雪*. 水稻磷转运蛋白Pht1家族研究进展. 植物营养与肥料学报, 2023, 29(9): 1725–1737.(CSCD)
杨晓莉, 曹兴圆, 吴博贤, 徐其静, 刘雪*. 土壤中微生物植酸酶的活性及其提高方法与应用. 微生物学通报, 2023, 50(6): 2687–2708.(CSCD)
苏奇倩, 丁豪杰, 李林, 李晓锋, 徐其静, 刘雪*. 微生物植酸酶及其对土壤植酸的矿化作用综述. 环境化学, 2023, 42(4): 1366–1380.(CSCD)
罗增明, 剧永望, 张慧娟, 丁豪杰, 徐其静, 刘雪*. 三七及种植土壤重金属污染特征与风险评价. 中国环境科学, 2022, 42(12): 5775–5784.(EI)
马晟, 杨晓莉, 刘朝柱, 徐其静, 刘雪*. 三种含钙物质对土壤砷植物有效性的影响. 中国环境科学, 2022, 42(12): 5785–5795.(EI)
赵宇, 文思颖, 李林, 徐其静, 刘雪*. 微生物–植物联合修复镉砷污染农田土壤技术与应用. 生态毒理学报, 2022, 17(6): 144–162.(CSCD)
李林, 艾雯妍, 文思颖, 苏奇倩, 徐其静, 刘雪*. 微生物吸附去除重金属效率与应用研究综述. 生态毒理学报, 2022, 17(4): 505–524.(CSCD)
徐其静, 罗增明, 李林, 赵宇, 马晟, 刘雪*. 野生牛肝菌重金属的污染特征及风险评价研究进展. 生态毒理学报, 2022, 17(5): 272–291.(CSCD)
罗增明, 马晟, 李林, 赵宇, 徐其静, 刘雪*. 土壤污染对中药材三七中重金属含量的影响. 生态毒理学报, 2022, 17(5): 292–306.(CSCD)
张慧娟, 苏奇倩, 丁豪杰, 李晓锋, 徐其静, 刘雪*. 降低水稻籽粒镉砷含量的调控措施综述. 生态与农村环境学报, 2022, 38(7): 827–838.(CSCD)
李晓锋, 丁豪杰, 苏奇倩, 赵宇, 徐其静, 刘雪*. 降低烟草吸收土壤镉的钝化技术及其机理研究进展. 环境工程技术学报, 2022, 12(03): 893–904.(CSCD)
李晓锋, 吴锋颖, 剧永望, 丁豪杰, 徐其静, 刘雪*. 石灰、羟基磷灰石、秸秆生物炭对烟草吸收镉的影响. 生态毒理学报, 2022, 17(1): 381–394.(CSCD)
丁豪杰, 苏奇倩, 李林, 李晓锋, 徐其静, Rensing Christopher, 刘雪*. 土壤农用地膜微生物降解研究进展. 中国环境科学, 2021, 41(09): 4231–4244.(EI)
高媛, 徐其静, 苏奇倩, 张慧娟, 刘雪*. 典型野生食用菌重金属含量及其人体健康风险评价. 环境化学, 2021, 40(01): 223–231.(CSCD)
苏奇倩, 徐其静, 丁豪杰, 马晟, 李林, Rensing Christopher, 刘雪*. 微生物解磷特性及其铅污染土壤修复应用. 环境科学与技术, 2020, 43(12): 177–184. (CSCD)
张慧娟, 王齐, 高媛, 李晓锋, 徐其静, 刘雪*. 水稻重金属积累分布与风险分析研究综述. 环境科学与技术, 2020, 8: 64–72.(CSCD)