近期论文
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I. 南方稻田结皮功能及应用方向
[1] Xiaolin Kuang, Yiling Hu, Liang Peng*, Dan Li, Huijuan Song, Ke Song, Changwu Li, Yuanlong Wang, Shilong He,Application of Biological Soil Crusts for Efficient Cadmium Removal from Acidic Mine Wastewater,Journal of Hazardous Materials, 2024,465:133524
[2] Xiaolin Kuang , Yiyi Hu , Shaoning Chen , Yili Ge , Yiling Hu , Huijuan Song , Ke Song , Liang Peng*,Ecological responses and functional signiffcance of paddy crust in the southern Chinese environment, Environmental Pollution,2024,349:123908
[3] Liang Peng* , Dan Li, Huijuan Song, Xiaolin Kuang, Qingru Zeng, Hejun Ao,The dissolution characteristics of cadmium containing birnessite produced from paddy crusts,Science of the Total Environment, 2024,914:169811
[4] Xiaolin Kuang, Liang Peng*, Ziyi Cheng,Siyan Zhou, Shaoning Chen, Cheng Peng, Huijuan Song, Changwu Li,Dan Li,Fertilizer-Induced Manganese Oxide Formation Enhances Cadmium Removal by Paddy Crusts from Irrigation Water,Journal of Hazardous Materials, 2023, 458:132030
[5] Xiaolin Kuang, Liang Peng*, Shaoning Chen, Chen Peng, Huijuan Song, Immobilization of metal(loid)s from acid mine drainage by biological soil crusts through biomineralization, Journal of Hazardous Materials, 2023, 443:130314
[6] Huijuan Song, Xiaoling Kuang, Xiangdong Wei, Si Luo, Qingru Zeng, Liang Peng*,The effect of TiO2 nanoparticles size on Cd (II) removal by the paddy crusts from waterbody,Journal of Environmental Chemical Engineering,2022,10:107883
[7] Huijuan Song, Liang Peng*, Zhiyi Li, Xiaozhou Deng, Jihai Shao, Ji-dong Gu, Metal Distribution and Biological Diversity of Crusts in Paddy Fields Polluted with Different Levels of Cadmium, Ecotoxicology and Environmental Safety, 2019, 184: 109620
[8] Liang Peng*, Xiaozhou Deng, Huijuan Song, Xiaoke Tan, Ji-dong Gu, Si Luo, Ming Lei,Manganese Enhances the Immobilization of Trace Cadmium from Irrigation Water in Biological Soil Crust,Ecotoxicology and Environmental Safety, 2019, 168:369-377
[9] X. Kuang, J. Shao, L. Peng*, et al., Nano-TiO2 enhances the adsorption of Cd(II) on biological soil crusts under mildly acidic conditions, Journal of Contaminant Hydrology, 2020, 229:103583
II. 污染物去除及重金属超标耕地安全利用方向
[1] Shaoning Chen, Junhui Xu, Liang Peng*, Ziyi Cheng, Xiaolin Kuang, Dan Li, Cheng Peng, Huijuan Song,Cadmium accumulation in rice grains is mitigated by duckweed-like hydrophyte through adsorption and increased ammonia nitrogen,Science of the Total Environment, 2023,890:164510
[2] Yuanlong Wang, Liang Peng*, Xiao Deng, Hejun Ao, Huijuan Song, Xiaolin Kuang, Anwei Chen,Impact of meteorological factors on Cd availability and average concentration prediction in rice growth cycle,Environmental Pollution, 2024, 348:123858
[3] Liang Peng*, Shaoning Chen, Huijuan Song, Mingyang Zheng, Si Luo, Boqing Tie, Quick Removal of Suspended Cadmium from Irrigation Water Using Water Hyacinth (Eichhornia crassipes)‑Phosphoric Fertilizer, Water, Air, & Soil Pollution, 2023, 234:356
[4] X.Kuang, Y.Sikuang, H.Song, L.Peng*, A.Chen, Lime-Phosphorus Fertilizer Efficiently Reduces the Cd Content of Rice: Physicochemical Property and Biological Community Structure in Cd-Polluted Paddy Soil, Frontiers In Microbiology, 2021, 12: 749946
[5] Cheng Peng, Huijuan Song, Zixin Zhao, Xiaolin Kuang, Yuanlong Wang, Shaoning Chen, Youzheng Chai, Ma Bai,Liang Peng*,Foliar spraying with a mixture of transpiration inhibitor-rhamnolipid reduces the Cd content in rice grains,Science of the Total Environment, 2023,855:163844
[6] Yang Mei, Liang Peng*, Chen Anwei, Zeng Qingru, Shao Jihai, Luo Si, Gu Jidong, Enhanced adsorption of Cd(II) using a composite of poly(acrylamide-co-sodium acrylate) incorporated LDH, Environment Technology, 2020, 40: 357-365
[7] Liang Peng∗, Sheng Zhou, Huijuan Song, Yahui Yang, Ming Lei, and Fang Zhou, Enhanced Selective Removal of Cd(II) by an Amino-Functional Water-Retaining Agent Incorporating Nano Hydrous Manganese Oxide,Journal of Nanoscience and Nanotechnology, 2020, 20: 5906-5915
[8] K X Yi, F Wang, J Y Chen, S H Jiang, S J Huang, L Peng, Q R Zeng,S Luo. Annual Input and Output Fluxes of Heavy Metals to Paddy Fields in Four Types of Contaminated Areas in Hunan Province, China. Science of the Total Environment, 2018, 634:67-76.
[9] Li Bingyu, Peng Liang*,Wei Dongning, Lei Ming, Liu Bin, Lin Yiqing, Li Zhiyi, Gu Jidong. Enhanced flocculation and sedimentation of trace cadmium from irrigation water using phosphoric fertilizer, Science of the Total Environment, 2017, 601:485-492.
[10] Y Yang , Y C Ge, H Y Zeng, X H Zhou, L Peng,Q R Zeng. Phytoextraction of cadmium contaminated soil and potential of regenerated tobacco biomass for recovery of cadmium. Scientific Reports,2017, 7:7210.
[11] Liang Peng*, Liu Bin, Zeng Qingru, et al. Highly efficient removal of methylene blue from aqueous solution by a novel fishing-net effect of manganese oxide nano-sheets, Clean Technologies & Environmental Policy, 2017, 19(1):269-277.
[12] Liang Peng*, Yi Xu, Fang Zhou, Baorui Sun, Boqing Tie, Ming Lei, Jihai Shao , Jidong Gu, Enhanced removal of Cd(II) by poly(acrylamide-co-sodium acrylate) water-retaining agent incorporated nano hydrous manganese oxide, Materials and Design 2016,96:195-202
[13] Y Yang, H L Li, L Peng*, Z P Chen, Q R Zeng*. Assessment of Pb and Cd in seed oils and meals and methodology of their extraction. Food Chemistry, 2016, 197:482-488.
[14] Yuncong Fu, Liang Peng*,Qingru Zeng, Yang Yang, Huijuan Song, Jihai Shao, Shiyu Liu, Jidong Gu, High Efficient Removal of Tetracycline from Solution by Degradation and Flocculation with Nanoscale Zerovalent Iron, Chemical Engineering Journal, 2015, 270: 631-640
[15] Liang Peng, Qingru Zeng, Boqing Tie, Ming Lei, Jiao Yang, Si Luo, Zheng guo Song, MnO2 Nanosheet Suspension: a Novel Absorbent for Cd(II) Contamination in waterbody, Journal of Colloid and Interface Science, 2015, 456:108-115
[16] Liang Peng*, Yaping Chen, Hong Dong, Qingru Zeng, Huijuan Song, Liyuan Chai and Ji-dong Gu, Removal of Trace As(V) from Water with the Titanium Dioxide/ACF Composite Electrode, Water, Air, & Soil Pollution, 2015, 226(7):1-11
[17] Yaping Chen, Liang Peng*, Qingru Zeng, Yang Yang, Ming Lei, Huijuan Song, Liyuan Chai, Jidong Gu*,Removal of Trace Cd(Ⅱ) from Water with the Manganese Oxides/ACF Composite Electrode,Clean Technologies and Environmental Policy,2015, 17:49-57
[18] Liang Peng*, Yanqing Ren, Ji-Dong Gu, Pufeng Qin, Qingru Zeng*, Jihai Shao, Ming Lei, Liyuan Chai, Iron improving bio-char derived from microalgae on removal of tetracycline from aqueous system, Environmental Science and Pollution Research, 2014, 21(12):7631-40
[19] Jiao Yang,Qingru Zeng,Liang Peng*,Ming Lei,Huijuan Song,Boqing Tie,Jidong Gu, La-EDTA coating Fe3O4 nanomaterial:preparation and application on removal of phosphate from water,Journal of Environmental Science,2013,25: 413-418
[20] Liang Peng*,Pufeng Qin,Ming Lei,Qingru Zeng,Huijuan Song,Jiao Yang,Jihai Shao,Bohan Liao,Jidong Gu,Modifying Fe3O4 nanoparticles with humic acid for removal of Rhodamine B in water,Journal of Hazardous Materials,2012,209-210:193-198
Ⅲ. 光电传感与分析技术方向
[1] Liang Peng*,Pufeng Qin,Qingru Zeng,Huijuan Song,Tengfeng Xie and Dejun Wang,Improvement of Formaldehyde Sensitivity of ZnO Nanorods by Modifying with Ru(dcbpy)2(NCS)2,Sensors and Actuators B: Chemical,2011,160:39-45
[2] Liang Peng*,Qingru Zeng,Huijuan Song,Pufeng Qin,Ming Lei,Boqing Tie,Tianyang Wang,Room-temperature Gas Sensing Properties of Cobalt-doped ZnO Nanobelts with Visible Light Irradiation,Applied Physics A: Materials Science & Processing,2011,105:387-392
[3] Liang Peng,Jiali Zhai,Dejun Wang,Yu Zhang,Ping Wang,Tengfeng Xie,Size- and photoelectric characteristics-dependent formaldehyde sensitivity of ZnO irradiated with UV light,Sensors and Actuators B: Chemical,2010,148:66-73
[4] Liang Peng,Qidong Zhao,Dejun Wang,Jiali Zhai,Ping Wang,Shan Pang,Tengfeng Xie,Ultraviolet-assisted Gas Sensing: a Potential Formaldehyde Detection Approach at Room Temperature Based on Zinc Oxide Nanorods,Sensors and Actuators B: Chemical,2009,136:80-85