论文著作:
[1] Yuhe Zhou, Guocan Zheng, Renlong Liu*, Advanced oxidation processes for wet-process phosphoric acid: Enhanced phosphorus recovery and removal of organic matters[J]. Hydrometallurgy, 2022, 210.
[2] Renlong Liu*, Youqin Long, Yuhe Zhou, et al. Rigid-Flexible Combined Impeller Enhancement in Leaching of Phosphate Rock: A Kinetics Study[J]. ACS Omega, 2021, 48: 33206-33214.
[3] Geng Chen, Chunlin Jiang, Renlong Liu, et al. Leaching kinetics of manganese from pyrolusite using pyrite as a reductant under microwave heating[J]. Separation and Purification Technology, 2021.
[4] Renlong Liu*, Hongwei Wang, Zuohua Liu, et al. Electrokinetic remediation with solar powered for electrolytic manganese residue and researching on migration of ammonia nitrogen and manganese[J]. Journal of Water Process Engineering, 2020, 38.
[5] Bing Li, Jiancheng Shu, Renlong Liu, et al. An innovative method for simultaneous stabilization/solidification of PO4 3− and F− from phosphogypsum using phosphorus ore flotation tailings[J]. Journal of Cleaner Production, 2019, 235: 308-316.
[6] Jiancheng Shu, Wu Haiping, Renlong Liu*, et al. Simultaneous stabilization/solidification of Mn2+ and NH4+-N from electrolytic manganese residue using MgO and different phosphate resource[J]. Ecotoxico-ogy and Environmental Safety, 2018, 148: 220–227.
[7] Solidification/stabilization of electrolytic manganese residue using phosphate resource and low-grade MgO/CaO[J]. Journal of Hazardous Materials, 2016, 317:267-274.
[8] Simultaneous removal of ammonia and manganese from electrolytic metal manganese residue leachate using phosphate salt[J]. Journal of Cleaner Productio, 2016, 135:468-475.
[9] Manganese recovery and ammonia nitrogen removal from simulation wastewater by pulse electrolysis[J]. Separation and Purification Technology, 2016, 168:107-113.
[10] Electrokineti Remediation of Manganese and Ammonia Nitrogen from Electrolytic Manganese Residue[J]. Environmental Science and Pollution Research, 2015, 22:16004-16013.
[11] Enhanced extraction of manganese from electrolytic manganese residue by electrochemical[J]. Journal of Electroanalytical Chemistry, 2016, 780:32-37.
[12] Leaching of manganese from electrolytic manganese residue by electro-reduction, Environmental Tech-nology[J]. 2016. 12-17.
[13] Simultaneous removal of ammonia nitrogen and manganese from wastewater using nitrite by electroche-mical method[J]. Environmental Technology, 2017, 38:70-376.
[14] Enhanced discharge performance of electrolytic manganese anode slime using Calcination and pickling approach[J]. Journal of Electroanalytical Chemistry, 2017, 806: 15–21.
[15] Simultaneous stabilization/solidification of Mn2+ and NH4+-N from electrolytic manganese residue using MgO and different phosphate resource[J]. Ecotoxico-ogy and Environmental Safety, 2018, 148:220–227.
[16] Adsorption of methylene blue on modified electrolytic manganese residue: Kinetics, isotherm, thermodynamics and mechanism analysis[J].Journal of the Taiwan Institute of Chemical Engineers, 2018, 82: 351-359.
[17] Carbonation precipitation of manganese from electrolytic manganese residue treated by CO2 with alkaline additives [P]. 2015 2nd International Conference on Machinery, Materials Engineering, Chemical Engineering and Biotechnology, 2016.
[18] 电氧化法去除电解锰渣滤液中NH4+-N试验研究[J]. 湿法冶金, 2017, 36(03):242-246.
[19] 刚柔组合搅拌桨强化搅拌槽中流体混沌混合[J]. 化工学报, 2014, 65(1): 61-70.
[20] 电解锰渣的理化特性分析研究[J]. 金属材料与冶金工程, 2014, 42(01):3-17.
[21] 刚柔组合搅拌桨与刚性桨调控流场结构的对比[J]. 化工学报, 2014, 65(6):2078-2084.
[22] 柔性桨强化高黏度流体混合的能效分析[J]. 化工学报, 2013, 64(10):3260-3265.
发明专利:
[1] 一种固定电解锰渣中可溶性锰及氨氮的方法. 中国发明专利, ZL201310260888.8.
[2] 一种用双金属粉还原降解氯代有机废水的方法. 中国发明专利,ZL201110417669.7.
[3]一种电解锰渣二次浸出及锰回收的方法. 中国发明专利, 201410107528.9.
[4] 一种电解锰工艺中的氨氮废水的处理方法. 中国发明专利, 201410069647.X.
[5] 一种提高电流效率和防结晶的金属锰电解槽. 中国发明专利, ZL201010042022.6.
[6] 从电解锰过程产生复盐结晶中回收锰和镁的方法. 中国发明专利,201110049937.4.
[7] 一种锰矿浸取除铁的装置及其除铁方法. 中国发明专利, ZL2009102509706.
[8]一种用低品位软锰矿浸出硫酸锰的方法. 中国发明专利, 201110191394.X.
[9] 直接在压滤板框内无害化处理电解锰渣的方法. 重庆:CN104690080A, 2015-06-10.
[10] 一种强化矿物浸出的刚柔组合式搅拌桨[P]. 重庆:CN107433176A, 2017-12-05.