导航菜单

刘玉灿

★以第一作者或通讯作者发表的SCI论文

[1] Sun Hong–wei,  Liu Yu–can*. Strong suppression of silver nanoparticles on antibiotic resistome in anammox process [J]. Journal of Hazardous Materials, 2024, 470: 134128.(中科院SCI一区TOP)

[2] Ji Xian–guo, Liu Yu–can*, Gao Zhong–lu, et al. Efficiency and mechanism of adsorption for imidacloprid removal from water by Fe–Mg co–modified water hyacinth–based biochar: Batch adsorption, fixed–bed adsorption, and DFT calculation [J]. Separation and Purification Technology, 2024, 330: 125235.(中科院SCI一区TOP)

[3] Sun Hong–wei, Liu Yu–can*. Effects of tetracycline on nitrification: Nitrogen removal performance and the microbial community [J]. Water Air and Soil Pollution, 2024, 235: 434.(中科院SCI四区)

[4] Liu Yu–can, Ji Xian–guo, Gao Zhong–lu, et al. Adsorption characteristics and removal mechanism of malathion in water by high and low temperature calcium–modified water hyacinth–based biochar [J]. Journal of Cleaner Production, 2023, 411: 137258.(中科院SCI一区TOP)

[5] Sun Hong–wei,  Liu Yu–can*. Deciphering the antibiotic resistome and microbial community in municipal wastewater treatment plants at different elevations in eastern and western China [J]. Water Research, 2023, 229: 119461.(中科院SCI一区TOP)

[6] Liu Yu–can, Zhu Yu–liang, Wu Dai–shun, et al. Effect of free nitrous acid on nitritation process: Microbial community, inhibitory kinetics, and functional biomarker [J]. Bioresource Technology, 2023, 371: 128595.(中科院SCI一区TOP)

[7] Huang Li–hua, Yao Yi–fan,  Liu Yu–can*. Activation of peroxymonosulfate by CoFe2O4 layered catalyst derived from steel pickling sludge for the decolorization of tartrazine solution [J]. Journal of Water Process Engineering, 2023, 56: 104462.(中科院SCI二区)

[8] Liu Yu–can, Ji Xian–guo, WangYing, et al. A stable Fe–Zn modified sludge–derived biochar for diuron removal: Kinetics, isotherms, mechanism, and practical research [J]. Molecules, 2023, 28: 2868.(中科院SCI二区)

[9] Liu Yu–can, Gao Zhong–lu, Ji Xian–guo, et al. Efficient adsorption of tebuconazole in aqueous solution by calcium modified water hyacinth–based biochar: Adsorption kinetics, mechanism, and feasibility [J]. Molecules 2023, 28: 3478.(中科院SCI二区)

[10] Wang Yu–xia, Liu Yu–can*, Zhang Yan, et al. Comparison of direct UV photolysis and advanced oxidation technologies in the degradation efficiencies and kinetics of six typical organic pesticides [J]. Desalination and Water Treatment, 2023, 282: 189–211.(中科院SCI四区)

[11] Liu Yu–can, Ji Xian–guo, Yang Jing–jie, et al. Degradation of the typical herbicide atrazine by UV/persulfate: kinetics and mechanisms [J]. Environmental Science and Pollution Research, 2022, 29(29): 43928–43941.(中科院SCI三区)

[12] Sun Hong–wei,  Liu Yu–can*. Response of substrate kinetics and biological mechanisms to various pH constrains for cultured Nitrobacter and Nitrospira in nitrifying bioreactor [J]. Journal of Environmental Management, 2022, 307: 114499.(中科院SCI一区TOP)

[13] 刘玉灿*, 王颖, 朱玉良, 等. 气相色谱–串联质谱法同时测定水中13种挥发性消毒副产物的方法研究 [J]. 分析化学, 2022, 50(01): 145–158.(中科院SCI四区)

[14] Liu Yu–can*, Dong Jin–kun, Su Miao–miao, et al. Impact of prechlorination on removal of atrazine during drinking water treatment [J]. Fresenius Environmental Bulletin, 2021, 30(2): 1294–1303.(中科院SCI四区)

[15] Wang Yu–xia, Zhao Ya–guang, Liu Yu–can*. Effect of solution chemistry on aqueous As(III) removal by titanium salts coagulation [J]. Environmental Science and Pollution Research, 2021, 28(17): 21823–21834.(中科院SCI三区)

[16] Liu Yu–can, Zhu Kai*, Zhu Hua–yu, et al. Photooxidation of atrazine and its influence on disinfection byproducts formation during post–chlorination: effect of solution pH and mechanism [J]. Scientific Reports, 2020, 10(1): 20355.(中科院SCI三区)

[17] Zhu Kai*, Liu Yu–can*, Sun Qing, et al. Determination of volatile fuel oxygenates in water by gas chromatography–triple quadrupole mass spectrometry: effect of automated sample preparation techniques [J]. Water, 2020, 12, 2266.(中科院SCI三区)

[18] Liu Yu–can*, Zhu Kai, Su Miao–miao, et al. Influence of solution pH on degradation of atrazine during UV and UV/H2O2 oxidation: kinetics, mechanism, and degradation pathways [J]. RSC Advances, 2019, 9(61): 35847–35861.(中科院SCI三区)

[19] 刘玉灿*, 苏苗苗, 张岩, 等. 溶液制备过程引入的甲醇对阿特拉津UV光氧化速率和降解机理的影响 [J]. 化学学报, 2019, 77(1): 72–83.(中科院SCI三区,卓越期刊)

★以第一作者或通讯作者发表的EI、核心期刊论文:

[1] 刘玉灿*, 高中鲁, 徐心怡, 等. 钙改性水葫芦基生物炭吸附水中敌草隆的效能与机理 [J]. 化工进展, 2024(EI,卓越期刊)

[2] 刘玉灿, 朱玉良, 纪现国, 等. 水中药物和个人护理品分析方法研究 [J]. 化学通报, 2022, 85(02): 228–234.

[3] 王玉霞, 李瑞华, 刘玉灿*. 化学混凝法去除水中砷的研究进展 [J]. 应用化工, 2022, 51(01): 155–163.

[4] 刘玉灿*, 王颖, 王玉霞, 等. UV工艺降解阿特拉津机理及对DBPFP的影响规律 [J]. 中国环境科学, 2021, 41(10): 4606–4615.(EI收录)

[5] 刘玉灿*, 董金坤, 秦昊, 等. 水中农药的控制与去除研究进展 [J]. 中国给水排水, 2020, 36(24): 45–53.

[6] 秦昊, 刘玉灿*, 董金坤, 等. 胶东地区某食品厂供水水质提升改造工程实例 [J]. 水处理技术, 2020, 46(12): 124–128+137.

[7] 刘玉灿*, 王颖, 董金坤, 等. 水中有机农药检测分析方法研究进展 [J].分析测试学报, 2020, 39(5): 688–696.

[8] 刘玉灿*, 苏苗苗, 张岩, 等. 不同UV工艺中阿特拉津的降解效果与机理研究 [J]. 中国给水排水, 2019, 35(5): 60–66.

[9] 刘玉灿*, 苏苗苗, 董金坤, 等. UV和UV/H2O2工艺对水中二嗪磷的降解规律及机理 [J].中国环境科学, 2019, 39(04): 1602–1610.(EI收录)

[10] 刘玉灿*, 董金坤, 苏苗苗, 等. 阿特拉津在不同UV光氧化工艺中的降解动力学研究 [J]. 水处理技术, 2019, 45(12): 57–64.

★以第一作者或通讯作者发表的其他主要论文如下:

[1]刘玉灿*,董金坤,王玉霞,等.校企协同实践教学育人机制研究[J].文教资料, 2021(03): 184–187.

[2]刘玉灿*,王金丛,管晓倩,等.常态化网络教学和后疫情时期双线混融教学机制探析[J].文教资料, 2020(24): 189–191.

[3]刘玉灿*,朱玉良,王颖,张岩.特殊时期在线本科毕业设计(论文)指导问题及对策[J].文教资料, 2020(32): 147–149.

[4]刘玉灿*,张玲玲,苏庆亮,张岩.基于“给水排水管网系统”课程的创新式教学研究[J].科教文汇(中旬刊), 2020(11): 94–95.

[5]刘玉灿*,王颖,王金丛.疫情防控期间我国高校工科类专业线上教学启示[J].科教文汇(下旬刊), 2020(11): 75–76.

[6]刘玉灿*,王亚宝,司文艳,等.新冠肺炎疫情期间给排水科学与工程专业网络教学思考[J].山西建筑, 2020, 46(13): 187–188.

[7]刘玉灿,苏庆亮,王鹏飞,等.疫情期间土木建筑类专业网络教学效果提高策略[J].山西建筑, 2020, 46(20): 190–192.

[8]刘玉灿*,张岩,吕建波.《水工艺设备基础》的教学改革与探索[J].教育现代化, 2019, 35(15): 43–45+48.

[9]刘玉灿*,田一,苏庆亮,等.我国地表水污染现状与防治策略探索[J].净水技术, 2021, 40(11): 62–70.

[10]刘玉灿*,张忠兴,苏庆亮,等.供热管道保温层厚度的动态优化数值模拟研究[J].建筑节能(中英文), 2021, 49(02): 97–102.

[11]刘玉灿*,马明玉,张晓倩,等.我国农村地区饮用水水质现状与保障措施[J].净水技术, 2019, 38(7): 65–70.

★参编书籍和标准如下:

[1] 2019全国勘察设计注册公用设备工程师职业资格考试用书,《给水排水专业历年真题与解析》,ISBN: 9787112234462,参编,中国建筑工业出版社,2019年5月;

[2]《室外排水设计标准》GB 50014–2021解读,ISBN: 9787112274284,副主编,中国建筑工业出版社,2022年5月;

[3] 中国建筑节能协会团体标准,《住宅小区建筑节水运行技术规程》,T/CABEE–JH2021038 ,主要起草人,2024年7月1日开始实施。

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