代表論文
1. Wang Bing, Zeng Yao ,Xiong Ming yang, Qiu, Ruisi. Adsorption performance and mechanism of mesoporous carbon-doped Al2O3 adsorbent derived from NH2-MIL-53 (Al) for removing Cr(Ⅵ) and methyl orange from aqueous solution.Journal of Environmental Chemical Engineering, 2023(3):110081
2. Wang Bing, Zeng Yao,Ou Jinghan,Xiong Ming yang, Qiu, Ruisi. Different strengthening effects of amino and nitro groups on the bisphenol A adsorption of an aluminum metal-organic framework in aqueous solution. Environmental Science And Pollution Research,2023(24):65712-65727
3. Gao Chunyang, Wang Bing, Li Xingchun,Zhang Yuzhu. Removal of Cr(VI) by hollow micron zero-valent iron in groundwater containing different ions: Mechanisms and mineralized products, Process Safety and Environmental Protection,2023(137):614-626
4. Zhang Yuzhu, Wang Bing, Gao Chunyang, Du Xianyuan, Developing novel persulfate pellets to remediate BTEXs-contaminated groundwater, Journal Of Water Process Engineering,2023(52):103505
5.Huan Zhang, Bing Wang, Mingyang Xiong. Process intensification of the ozone-liquid mass transfer in ultrasonic cavitation-rotational flow interaction coupled-field: Optimization and application. Journal of Environmental Management,310(2022)114710
6.Zhang H , Wang B , Gao C , et al. Effective degradation of hydrolyzed polyacryamide (HPAM) in a simultaneous combination of acoustic cavitation and microbubbles ozonation: Process optimization and degradation mechanism. Process Safety and Environmental Protection, 159(2022):465-476.
7.Ren, H. , Hou, D. , Zhou, S. , Wang, B. , Yang, D. Study on the effect of petroleum components on the elution of oily sludge by a compound biosurfactant,Langmuir, 2022 38 (6), 2026-2037
8.Huan Zhang , Bing Wang , Mingyang Xiong , Chunyang Gao. Process intensification in gas-liquid mass transfer by nanofluids Mechanism and current status, Journal of Molecular Liquids ,346 (2022) 118268
9.Li, X,Luo T, Wang Y, Wang B.Improving the degradation of benzo[a]pyrene and soil biodegradability by enhanced ozonation with mechanical agitation. Chemical Engineering Journal, 4(2021):130056.
10.Bing Wang,Wen Shi, Huan Zhang, et al. Promoting the ozone-liquid mass transfer through external physical fields and their applications in wastewater treatment: A review. Journal of Environmental Chemical Engineering ,9 (2021) 106115
11.Bing Wang,Mingyang Xiong ,Bin Shi, et al. Treatment of shale gas flowback water by adsorption on carbon-nanotube-nested diatomite adsorbent. Journal of Water Process Engineering, 42 (2021) 102074
12.Bing Wang, Chaoxiao Deng,Wei Ma , Yubo Sun. Modified nanoscale zero-valent iron in persulfate activation for organic pollution remediation: a review[J]. Environmental Science and Pollution Research, 2021, 28(26):34229-34247
13.Bing Wang, HuanZhang, QingjieMeng, et al. The enhancement of ozone–liquid mass transfer performance in a PTFE hollow fiber membrane contactor using ultrasound as a catalyzer. RSC Adv., 2021, 11:14017–14028
14.Xi Li, Yaxuan Wang, Ting Luo,Yongsong Ma, Bing Wang, et al. Remediation potential of immobilized bacterial strain with biochar as carrier in petroleum hydrocarbon and Ni co-contaminated soil. Environmental technology,2022, 43(7): 1068–1081
15.Bing Wang ,Mingyang Xiong ,Peijie Wang,Bin Shi. Chemical characterization in hydraulic fracturing flowbackand produced water (HF-FPW) of shale gas in Sichuan of China. Environmental Science and Pollution Research ,2020, 27:26532–26542
16.Hongyang Ren, Sanyu Zhou, Bing Wang, et al. Treatment mechanism of sludge containing highly viscous heavy oil using biosurfactant. Colloids and Surfaces A Physicochemical and Engineering Aspects, 2019, 585:124117.
17.Xi Li , Hongmin Mao,Yongsong Ma,Bing Wang,et al. Life cycle greenhouse gas emissions of China shale gas. Resources Conservation and Recycling, 152 (2020):104518
18.Wang Bing,Xie Hong-Li,Ren Hong-Yang ,Li Xi .Application of AHP, TOPSIS, and TFNs to plant selection for phytoremediation of petroleum-contaminated soils in shale gas and oil fields. Journal of Cleaner Production, 233 (2019): 13-22
19.Bing Wang, Tian Kun, Xiong Xingaoyuan, Ren Hongyang. Treatment of overhaul wastewater containing N-methyldiethanolamine (MDEA) through modified Fe-C microelectrolysis-configured ozonation: Investigation on process optimization and degradation mechanisms. Journal of Hazardous Materials, 369 (2019): 655–664
20.Bing Wang, Huan Zhang, Feifei Wang , Xingaoyuan Xiong ,et al.Application of Heterogeneous Catalytic Ozonation for Refractory Organics in Wastewater. Catalysts 2019, 9(241):2-40
21.Bing Wang, Xiong Xingaoyuan,Shui Yiyu, Huang Zhiyu ,et al.A systematic study of enhanced ozone mass transfer for ultrasonic-assisted PTFE hollow fiber membrane aeration process. Chemical Engineering Journal, 357 (2019) :678–688
22.Xiong Xingaoyuan, Bing Wang, Zhu Wei,Tian Kun,et al. A Review on Ultrasonic Catalytic Microbubbles Ozonation Processes: Properties, Hydroxyl Radicals Generation Pathway and Potential in Application. Catalysts. 2019, 9, 10,3-18
23.Yong song Ma, Xi Li, Hong min Mao, Bing Wang,et al. Remediation of hydrocarbon–heavy metal co-contaminated soil by electrokinetics combined with biostimulation. Chemical Engineering Journal. 353 (2018), 410–418
24.Bing Wang,Yiyu Shu,Min He,et al.Comparison of flocs characteristics using before and after composite coagulants under different coagulation mechanisms. Biochemical Engineering Journal ,121 (2017) 107–117
25.Bing Wang,Yiyu Shui,Puzhen Liu,Min He. Preparation, characterization and flocculation performance of the inorganic-organic composite coagulant polyferric chloride and polydimethyldiallylammonium chloride. J Chem Technol Biotechnol,2017,92(4):884-892
26.Bing Wang,Yiyu Shui, Hongyang Ren,Min He .Research of combined adsorption-coagulation process in treating petroleum refinery effluent. Environmental Technology,2017,38(4): 456-466
27.Bing Wang,Xingaoyuan Xiong,Hongyang Ren,et al.Preparation of MgO nanocrystals and catalytic mechanism on phenol ozonation. RSC Advances,2017,7 (69):43464-43473
28.Hongyang Ren, Lingli Ma, Bing Wang, Hang Gong, Zeng Yuan, Zhenzhen Li. Systematic analysis of the Biochemical Characteristics of Activated Sludge During Ozanation foe Lowering of Biomass Production. Ozone: Science & Engineering,2017,39(2):80-90
29.Yong-Tao Li, Dong Yue, Bing Wang,Hong-Yang Ren. Degradation of MDEA in aqueous solution in the thermally activated persulfate. Environmental technology, 2017,38(6):730-736
30.王兵,歐景菡,熊明洋等.磁性椰殼炭制備及對頁巖氣壓返液中有機物的吸附研究[J].水處理技術, 2022, 48(363):30-35
31.王兵,師雯,孫玉波.陶瓷膜曝氣強化臭氧傳質研究[J].水處理技術, 2022, 48(362):61-69
32.王兵,張勁松,田坤等.表面活性劑主導的兩階段法強化對BaP的洗脫[J].環境科學與技術, 2021, 44(11):138-144
33.王兵,王佩潔,祝偉等.頁巖氣開發中壓裂返排液的水質污染特征研究[J].安全與環境學報,2020, 20(1):231-237
34.陳丹丹,王兵,王波. Na2SO3氧化處理高濃度含硫廢水的過程探討[J].環境工程,2020(06):115-120
35.王兵,王佩潔,祝偉,熊明洋等.混凝-吸附聯用預處理頁巖氣壓裂返排液[J].環境工程學報,2019,13(10):2475-2481
36.任宏洋,彭磊,王兵等. 剩余污泥臭氧化溶胞過程研究[J].安全與環境學報,2019(04):1308-1315
37.王兵,謝紅麗,任宏洋,李琋.基于層次分析法的石油污染土壤修復植物評價[J].安全與環境學報,2019,19(111):985-991
38.王兵,李珍珍,李琋,任宏洋. 頁巖氣井場土壤石油類污染特性及對理化性質的影響[J].安全與環境學報,2018, 18(106):1598-1604.
39.王兵,稅奕瑜,劉璞真,曾揚等.臭氧在柱反應器中的強化傳質過程[J].環境工程學報,2017, 11 (02) :760-768
40.王兵,舒幫云,任宏洋,王波.填充粒子對三維電極處理MDEA污水的影響[J].環境工程學報,2017,11 (01):205-210
41.王兵,陳丹丹,任宏洋等.高含硫廢水受控氧化的混凝強化研究[J].工業水處理,2016(07):29-34
42.王兵,劉璞真,任宏洋,張悅等. 非均相催化臭氧化降解水中苯酚動力學[J].環境工程學報, 2016,10 (07):3427-3433
43.王兵,周鋆,任宏洋等.MgO催化臭氧氧化降解苯酚機理研究[J].環境科學學報,2016,36(11):4009-4016
44.王兵,李潔,任宏洋,李娟.電化學法處理聚驅采油廢水的研究[J].安全與環境學報,2015,90(6):245-249
45.王兵,王波,任宏洋等.高級氧化技術處理天然氣凈化廠檢修污水中試[J].中國給水排水,2015.31:105-109
46.王兵,王波,任宏洋,羅東寧. 電壓波形對三維電極法降解苯酚的影響[J].環境化學,2015 ,34(05): 983-988
47.張悅,王兵,任宏洋. O3/Mn2O3對鉆井廢水多相催化臭氧化試驗研究[J].環境科學學報,2015(10): 3185-3192
48.王兵,李潔,任宏洋等.臭氧氧化法分解聚驅采油廢水中水解聚丙烯酰胺的過程分析[J]. 石油化工,2014(07):832-837
49.王兵等.環境工程綜合實驗教程.北京:化學工業出版社, 2010
50.諸林,劉瑾,王兵,王治紅. 化工原理.北京:石油工業出版社,2007
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