1 | 祝成成, 王涌涛, 李大鹏. 净水污泥制备陶粒及其对废水中磷酸盐的吸附试验研究[J]. 苏州科技学院学报, 2011, 24(4): 12. | 1 | ZHU Chengcheng, WANG Yongtao, LI Dapeng. Adsorption of phosphate from wastewater by ceramists from purified water's sludge [J]. Journal of Suzhou University of Science and Technology, 2011, 24(4): 12. | 2 | LI Jing, LI Bing, HUANG Haiming, et al. Removal of phosphate from aqueous solution by dolomite-modified biochar derived from urban dewatered sewage sludge [J]. Science of the Total Environment, 2019, 687: 461. | 3 | 彭浩, 刘希, 龙小平, 等. 废水中磷的去除行为研究[J]. 广州化工, 2018, 46(21): 51. | 3 | PENG Hao, LIU Xi, LONG Xiaoping, et al. Study on removal behavior of phosphate from wastewater [J]. Guangzhou Chemical Industry, 2018, 46(21): 51. | 4 | 翟由涛. 吸附法除磷研究进展[J]. 安徽农业科学, 2010, 38(15): 8154. | 4 | ZHAI Youtao. Research progress of phosphorus removal by adsorption [J]. Journal of Anhui Agricultural Sciences, 2010, 38(15): 8154. | 5 | OEHMEN A, LEMOS P, CARVALHO G, et al. Advances in enhanced biological phosphorus removal: from micro to macro scale [J]. Water Research, 2007, 41(11): 2273. | 6 | 唐朝春, 陈惠民, 刘名, 等. ZnAl和MgAl水滑石吸附废水中磷的研究进展[J]. 化工进展, 2015, 34(1): 246. | 6 | TANG Chaochun, CHEN Huimin, LIU Ming, et al. Advances in adsorption of phosphate in wastewater by ZnAl and MgAl hydrotalcite [J]. Chemical Industry and Engineering Progress, 2015, 34(1): 246. | 7 | 王婷庭,刘敏,崔桂榕. 五种改性纳米纤维素吸附剂的制备及除磷性能比较[J]. 化工进展, 2017, 36(11): 4279-4280. | 7 | WANG Tingting, LIU Min, CUI Guirong. Preparation of several modified cellulose nanofiber hybrid adsorbents and performance comparison of phosphate removals [J]. Chemical Industry and Engineering Progress, 2017, 36(11): 4279-4280. | 8 | OTHMAN A, DUMITRESCU E, ANDREESCU D, et al. Nanoporous sorbents for the removal and recovery of phosphorus from eutrophic waters: sustainability challenges and solutions [J]. Sustainable Chemistry and Engineering, 2018, 6(10): 12545. | 9 | PARIPURNANDA L, SARAVANAMUTHU V, JAYA K, et al. Removal and recovery of phosphate from water using sorption [J]. Critical Reviews in Environmental Science and Technology, 2014, 44(8): 852. | 10 | RAMASAHAYAM S, GUZMAN L, GUNAWANC G, et al. A comprehensive review of phosphorus removal technologies and processes [J]. Journal of Macromolecular Science A: Pure and Applied Chemistry, 2014, 51(6): 538-539. | 11 | WANG Zhe, LIN Yan, WU Deyi, et al. Hydrous iron oxide modified diatomite as an active filtration medium for phosphate capture [J]. Chemosphere, 2016, 144: 1290-1298. | 12 | 肖力光, 赵壮, 于万增. 硅藻土国内外发展现状及展望[J]. 吉林建筑工程学院学报, 2010, 27(2): 26-27. | 12 | XIAO Liguang, ZHAO Zhuang, YU Wanzeng. The development status and prospects of diatomite [J]. Journal of Jilin Institute of Architecture and Civil Engineering, 2010, 27(2): 26-27. | 13 | 范艺, 王哲, 赵连勤, 等. 锆改性硅藻土吸附水中磷的研究[J]. 环境科学, 2017, 38(4): 1493-1495. | 13 | FAN Yi, WANG Zhe, ZHAO Lianqin, et al. Modification of diatomite by zirconium and its performance in phosphate removal from water [J]. Environmental Science, 2017, 38(4): 1493-1495. | 14 | XIONG Wenhui, PENG Jian. Development and characterization of ferrihydrite-modified diatomite as a phosphorus adsorbent [J]. Water Research, 2008, 42: 4869-4877. | 15 | WU You, LI Xiaoming, YANG Qi, et al. Hydrated lanthanum oxide-modified diatomite as highly efficient adsorbent for low-concentration phosphate removal from secondary effluents [J]. Journal of Environmental Management, 2019, 231: 370-379. | 16 | 段宁, 张银凤, 吴克明, 等. 硅藻土复合吸附剂的制备及其在废水中去氮除磷性能研究[J]. 硅酸盐通报, 2013, 32(8): 1529-1532. | 16 | DUAN Ning, ZHANG Yinfeng, WU Keming, et al. Performance of diatomite-zeolite complex absorbent for phosphorus adsorption from aqueous solution [J]. Bulletin of the Chinese Ceramic Society, 2013, 33(8): 1529-1532. | 17 | 高耀文, 段宁, 吴克明, 等. 硅藻土基复合除磷剂的制备及其吸附性能[J]. 生态与农村环境学报, 2012, 28(6): 706-711. | 17 | GAO Yaowen, DUAN Ning, WU Keming, et al. Preparation and adsorption performance of diatomite-based composite phosphorus removal agent [J]. Journal of Ecology and Rural Environment, 2012, 28(6): 706-711. | 18 | ZHANG Yongyin, WANG Liping, DU Erdeng, et al. The removal of phosphorus in wastewater by modified 4A zeolite [J]. Advanced Materials Research, 2011, 356/360: 502. | 19 | FIGUEIREDO H, QUINTELAS C. Tailored zeolites for the removal of metal oxyanions: overcoming intrinsic limitations of zeolites [J]. Journal of Hazardous Materials, 2014, 274: 287-290. | 20 | 程婷. 酸改性沸石处理含磷废水的制备条件研究[J]. 山西大同大学学报(自然科学版), 2017, 33(1): 35-36. | 20 | CHENG Ting. The experimental study of prepared conditions of acid modified zeolite to treat the phosphorus wastement [J]. Journal of Shanxi Datong University (Natural Science), 2017, 33(1): 35-36. | 21 | 李辉, 左金龙, 王军霞. 天然沸石及其改性对污水中磷的吸附[J]. 哈尔滨商业大学学报(自然科学版), 2015, 31(3): 312-314. | 21 | LI Hui, ZUO Jinlong, WANG Junxia. Phosphorus adsorption in wastewater by zeolite and its modification [J]. Journal of Harbin University of Commerce (Natural Sciences Edition), 2015, 31(3): 312-314. | 22 | 崔有为, 李杰, 杜兆富. 镧、铈改性沸石对污水除磷性能和机制的比较研究[J]. 中国稀土学报, 2016, 34(4): 461-465. | 22 | CUI Youwei, LI Jie, DU Zhaofu, et al. Comparative study of performance and mechanism of lanthanum and cerium modified zeolite on phosphorus removal in wastewater [J]. Journal of the Chinese Society of Rare Earths, 2016, 34(4): 461-465. | 23 | 李海芳. 改性沸石吸附废水中氮磷的试验研究[D]. 邯郸: 河北工程大学, 2017. | 23 | LI Haifang. Experimental study on adsorption of nitrogen and phosphorus in water by modified zeolite [D]. Handan: Hebei University of Engineering, China, 2017. | 24 | SHI Wenmin, FU Youwei, JIANG Wei, et al. Enhanced phosphate removal by zeolite loaded with Mg-Al-La ternary (hydr)oxides from aqueous solutions: performance and mechanism [J]. Chemical Engineering Journal, 2018, 357: 33-44. | 25 | MITROGIANNIS D, PSYCHOYOU M, BAZIOTIS I, et al. Removal of phosphate from aqueous solutions by adsorption onto Ca(OH)2 treated natural clinoptilolite [J]. Chemical Engineering Journal, 2017, 320: 510-522. | 26 | GAN Fangqun, ZHOU Jianmin, WANG Huoyan, et al. Removal of phosphate from aqueous solution by thermally treated natural palygorskite [J]. Water Research, 2009, 43(11): 2907-2910. | 27 | 张建民, 周磊, 刘玉涛. 凹凸棒石的碱酸改性及除磷效果探究[J]. 西安工程大学学报, 2013, 27(6): 761-762. | 27 | ZHANG Jianmin, ZHOU Lei, LIU Yutao. Modification of palygorskites by alkali-acid and the effect of the phosphorus removal [J]. Journal of Xi’an Ploytechnic University, 2013, 27(6): 761-762. | 28 | 余荣台, 冯杰, 马湘. 改性凹凸棒土对废水脱氮除磷研究[J]. 陶瓷学报, 2016, 37(5): 531-535. | 28 | YU Rongtai, FENG Jie, MA Xiang. Phosphate and ammonium adsorption removal from wastewater by modified attapulgite [J]. Journal of Ceramics, 2016, 37(5): 531-535. | 29 | 潘敏, 林旭萌, 黄晓鸣, 等. 热改性凹凸棒石吸附磷的试验研究[J]. 环境科技, 2016, 29(6): 8-11. | 29 | PAN Min, LIN Xumeng, HUANG Xiaoming, et al. Study on phosphate adsorption onto thermal modified palygorskite [J]. Environmental Science and Technology, 2016, 29(6): 8-11. | 30 | YIN Hongbin, KONG Ming. Simultaneous removal of ammonium and phosphate from eutrophic waters using natural calcium-rich attapulgite-based versatile adsorbent [J]. Desalination, 2014, 351: 128-137. | 31 | YIN Hongbin, REN Chao, LI Wei. Introducing hydrate aluminum into porous thermally-treated calcium-rich attapulgite to enhance its phosphorus sorption capacity for sediment internal loading management [J]. Chemical Engineering Journal, 2018, 348: 704-712. | 32 | ZHOU Xuexiao, CHEN Yongli, XIA Wentang, et al. An efficient technology of phosphorous removal from wastewater by the low-grade oolitic hematite with high phosphorous [J]. Metallurgical Research and Technology, 2019, 116(1): 116. | 33 | AJMAL Z, MUHMOOD A, USMAN M, et al. Phosphate removal from aqueous solution using iron oxides: adsorption, desorption and regeneration characteristics [J]. Journal of Colloid and Interface Science, 2018, 528: 145-155. | 34 | SAHA B, GRIFFIN L, BLUNDEN H. Adsorptive separation of phosphate oxyanion from aqueous solution using an inorganic adsorbent [J]. Environmental Geochemistry and Health, 2010, 32(4): 341-347. | 35 | 孙丽华, 俞天敏, 齐晓璐, 等. 原位生成羟基氧化铁凝聚吸附除磷影响因素研究[J]. 给水排水, 2015, 41(7): 129-132. | 35 | SUN Lihua, YU Tianmin, QI Xiaolu, et al. Study on influencing factors of in-situ formation of hydrogen oxide iron oxide condensation [J]. Water and Wastewater Engineering, 2015, 41(7): 129-132. | 36 | 郑晓英, 李楠, 邱丽佳, 等. 羟基铁对污水厂二级处理出水中低浓度磷的深度处理性能[J]. 净水技术, 2019, 38(3): 70-75. | 36 | ZHENG Xiaoying, LI Nan, QIU Lijia, et al. Advanced phosphorus removal from low phosphorus concentration water by iron hydroxyl [J]. Water Purification Technology, 2019, 38(3): 70-75. | 37 | KRALCHEVSKA R, PRUCEK R, KOLARIK J, et al. Remarkable efficiency of phosphate removal: ferrate(Ⅵ)-induced in situ sorption on core-shell nanoparticles [J]. Water Research, 2016, 103: 83-91. | 38 | ZHU Zongqiang, HUANG C P, ZHU Yinian, et al. A hierarchical porous adsorbent of nano-alpha-Fe2O3/Fe3O4 on bamboo biochar (HPA-Fe/C-B) for the removal of phosphate from water [J]. Journal of Water Process Engineering, 2018, 25: 96-104. | 39 | YUAN Ling, QIU Zhaofu, YUAN Lin, et al. Adsorption and mechanistic study for phosphate removal by magnetic Fe3O4-doped spent FCC catalysts adsorbent [J]. Chemosphere, 2018, 219: 183-190. | 40 | 胡小莲, 杨林章, 何世颖, 等. Fe3O4/BC复合材料的制备及其吸附除磷性能[J]. 环境科学研究, 2018, 31(1): 144-151. | 40 | HU Xiaolian, YANG Linzhang, HE Shiying, et al. Preparation of Fe3O4/BC composite and its application for phosphate adsorptive removal [J]. Research of Environmental Sciences, 2018, 31(1): 144-151. | 41 | 李永球. 磁性纳米锆/铁氧化物的制备及其对废水中磷的吸附研究[D]. 长沙: 湖南大学, 2017. | 41 | LI Yongqiu. Preparation and performance of magnetic zirconium-iron oxide nanoparticle adsorbent for phosphate removal [D]. Changsha: Hunan University, 2017. | 42 | WANG Jia, WU Liying, LI Jun, et al. Simultaneous and efficient removal of fluoride and phosphate by Fe-La composite: adsorption kinetics and mechanism [J]. Journal of Alloys and Compounds, 2018, 753: 422-432. | 43 | LI Ronghua, WANG J J, ZHANG Zengqiang, et al. Recovery of phosphate and dissolved organic matter from aqueous solution using a novel CaO-MgO hybrid carbon composite and its feasibility in phosphorus recycling [J]. Science of the Total Environment, 2018, 642: 526-536. | 44 | LIU Ting, WU Kun, ZENG Lihua. Removal of phosphorus by a composite metal oxide adsorbent derived from manganese ore tailings [J]. Journal of Hazardous Materials, 2012, 217: 29-35. | 45 | LIN Jianwei, HE Siqi, WANG Xingxing, et al. Removal of phosphate from aqueous solution by a novel Mg(OH)2/ZrO2 composite: adsorption behavior and mechanism [J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2019, 561: 301-314. | 46 | 杨雪, 陈静, 李秋梅, 等. 新型铁铜铝三元复合氧化物除磷性能与机制研究[J]. 环境科学学报, 2018, 38(2): 502-508. | 46 | YANG Xue, CHEN Jing, LI Qiumei, et al. The adsorption of phosphate on a novel Fe-Cu-Al trimetal oxide: behavior and mechanism [J]. Acta Scientiae Circumstantiae, 2018, 38(2): 502-508. | 47 | WU Kun, LIU Ting, MA Chao, et al. The role of Mn oxide doping in phosphate removal by Al-based bimetal oxides: adsorption behaviors and mechanisms [J]. Environmental Science and Pollution Research, 2014, 21(1): 620-630. | 48 | BACELO H, PINTOR A, SANTOS S, et al. Performance and prospects of different adsorbents for phosphorus uptake and recovery from water [J]. Chemical Engineering Journal, 2019, 381: 4. | 49 | 王镜渊, 汪国庆, 叶春, 等. ZnxCa(2-x)-Fe吸附剂的制备及其除磷机制[J]. 环境科学研究, 2015, 28(7): 1145-1151. | 49 | WANG Jingyuan, WANG Guoqing, YE Chun, et al. Preparation of ZnxCa(2-x)-Fe adsorbent and mechanisms of phosphate adsorption [J]. Research of Environmental Sciences, 2015, 28(7): 1145-1151. | 50 | TRIANTAFYLLIDIS K, PELEKA E, KOMVOKIS V, et al. Iron-modified hydrotalcite-like materials as highly efficient phosphate sorbents [J]. Journal of Colloid and Interface Science, 2010, 342: 427-436. | 51 | JIA Zhiqian, HAO Shuang, LU Xiaoyu. Exfoliated Mg-Al-Fe layered double hydroxides/polyether sulfone mixed matrix membranes for adsorption of phosphate and fluoride from aqueous solutions [J]. Journal of Environmental Sciences, 2018, 70: 63-73. | 52 | HU Pan, ZHANG Yihe, Fengzhu Lü, et al. Preparation of layered double hydroxides using boron mud and red mud industrial wastes and adsorption mechanism to phosphate [J]. Water and Environment Journal, 2017, 31(2): 145-157. | 53 | YAN Hanlu, CHEN Qiuwen, LIU Jinhua, et al. Phosphorus recovery through adsorption by layered double hydroxide nano-composites and transfer into a struvite-like fertilizer [J]. Water Research, 2018, 145: 721-730. | 54 | YANG Kun, YAN Liangguo, YANG Yanming, et al. Adsorptive removal of phosphate by Mg-Al and Zn-Al layered double hydroxides: kinetics, isotherms and mechanisms [J]. Separation and Purification Technology, 2013, 124: 36-42. | 55 | ASHEKUZZAMAN S, JIANG J. Strategic phosphate removal/recovery by a re-usable Mg-Fe-Cl layered double hydroxide [J]. Process Safety and Environmental Protection, 2017, 107: 454-462. | 56 | QIAO Weichuan, BAI Han, TANG Tianhao, et al. Recovery and utilization of phosphorus in wastewater by magnetic Fe3O4/Zn-Al-Fe-La layered double hydroxides (LDHs) [J]. Colloids and Surfaces A-Physicochemical and Engineering Aspects, 2019, 577: 118-128. | 57 | ASHEKUZZAMAN S, JIANG Jiaqian. Study on the sorption-desorption-regeneration performance of Ca-, Mg- and CaMg-based layered double hydroxides for removing phosphate from water [J]. Chemical Engineering Journal, 2014, 246: 97-105. | 58 | CHENG Xiang, HUANG Xinrui, WANG Xingzu, et al. Phosphate adsorption from sewage sludge filtrate using zinc-aluminum layered double hydroxides [J]. Journal of Hazardous Materials, 2009, 169(1/2/3): 961. | 59 | XIONG Jibing, HE Zhenli, MAHMOOD Q, et al. Phosphate removal from solution using steel slag through magnetic separation [J]. Journal of Hazardous Materials, 2008, 152(1): 211-215. | 60 | 杨合, 王振. 反应条件对钢渣除磷的影响[J]. 东北大学学报(自然科学版), 2015, 36(11): 1605-1608. | 60 | YANG He, WANG Zhen. Effects of reaction conditions on phosphorus removal by steel slag [J]. Journal of Northeastern University ( Natural Science), 2015, 36(11): 1605-1608. | 61 | 王莉红, 高外琼, 张艮林, 等. 钢渣对水溶液中磷、砷的吸附特性[J]. 实验室研究与探索, 2018, 37(2): 16-18. | 61 | WANG Lihong, GAO Waiqiong, ZHANG Genlin, et al. Adsorption characteristics of phosphorus and arsenic from aqueous solution by steel slag [J]. Research and Exploration in Laboratory, 2018, 37(2): 16-18. | 62 | 李延波, 邱立平, 王广伟, 等. 水热改性颗粒钢渣的除磷效能[J]. 中国给水排水, 2011, 27(9): 74-77. | 62 | LI Yanbo, QIU Liping, WANG Guangwei, et al. Phosphorus removal efficiency of hydrothermally modified granular steel slag [J]. China Water and Wastewater, 2011, 27(9): 74-77. | 63 | YU Jian, LIANG Wenyan, WANG Li, et al. Phosphate removal from domestic wastewater using thermally modified steel slag [J]. Journal of Environmental Sciences, 2015, 31: 81-88. | 64 | BOWDEN L, JARVIS A, YOUNGER P, et al. Phosphorus removal from waste waters using basic oxygen steel slag [J]. Environmental Science and Technology, 2009, 43(7): 2476-2481. | 65 | LI Jianguo, WU Boran, ZHOU Tao, et al. Preferential removal of phosphorus using modified steel slag and cement combination for its implications in engineering applications [J]. Environmental Technology and Innovation, 2018, 10: 264-274. | 66 | ZHANG Yi, XIA Shibin, KOU Dandan, et al. Phosphorus removal from domestic sewage by adsorption combined photocatalytic reduction with red mud [J]. Desalination and Water Treatment, 2013, 51(37/38/39): 7131. | 67 | LIU Changjun, LI Yanzhong, LUAN Zhaokun, et al. Adsorption removal of phosphate from aqueous solution by active red mud [J]. Journal of Environmental Sciences, 2007, 19(10): 1166-1170. | 68 | HUANG Weiwei, WANG Shaobin, ZHU Zhonghua, et al. Phosphate removal from wastewater using red mud [J]. Journal of Hazardous Materials, 2008, 158: 35-42. | 69 | YE Jie, ZHANG Panyue, HOFFMANN E, et al. Comparison of response surface methodology and artificial neural network in optimization and prediction of acid activation of Bauxsol for phosphorus adsorption [J]. Water Air and Soil Pollution, 2014, 225(12): 2225. | 70 | CUSACK P, HEALY M, RYAN P, et al. Enhancement of bauxite residue as a low-cost adsorbent for phosphorus in aqueous solution, using seawater and gypsum treatments [J]. Journal of Cleaner Production, 2018, 179: 217-224. | 71 | 王春丽, 吴俊奇, 宋永会, 等. 活化赤泥颗粒吸附除磷的效能与机制研究[J]. 环境工程技术学报, 2015, 5(2): 144-147. | 71 | WANG Chunli, WU Junqi, SONG Yonghui, et al. Research on performance and mechanisms of activated red mud particles on adsorbing and removing phosphorus [J]. Journal of Environmental Engineering Technology, 2015, 5(2): 144-147. | 72 | 张婧, 吴俊奇, 向连城, 等. 优化改性赤泥颗粒吸附含磷废水[J]. 水处理技术, 2017, 43(1): 77-81. | 72 | ZHANG Jing, WU Junqi, XIANG Liancheng, et al. Adsorption of phosphorus-containing wastewater by optimized granular modified red mud [J]. Technology of Water Treatment, 2017, 43(1): 77-81. | 73 | 李一兵, 呼瑞琪, 张彦平, 等. 给水厂含铝污泥对含磷废水的吸附特性研究[J]. 工业水处理, 2018, 38(5): 31-34. | 73 | LI Yibing, HU Ruiqi, ZHANG Yanping, et al. Research on the adsorption capability of aluminum-containing sludge for the phosphorus-containing wastewater in waterworks [J]. Industrial Water Treatment, 2018, 38(5): 31-34. | 74 | 邢孟, 耿雅妮, 张军, 等. 热改性铝污泥对水中磷的吸附性能[J]. 净水技术, 2017, 36(9): 61-64. | 74 | XING Meng, GENG Yani, ZHANG Jun, et al. Performance of thermal modified aluminum sludge adsorption of phosphorus in water [J]. Water Purification Technology, 2017, 36(9): 61-64. | 75 | 朱宏伟, 于涛, 郭志鹏, 等. 新型给水污泥-粉煤灰陶粒性能与除磷效果[J]. 环境工程学报, 2018, 12(10): 2741-2748. | 75 | ZHU Hongwei, YU Tao, GUO Zhipeng, et al. Phosphorus removal performance of novel ceramsite made from water treatment sludge and fly ash [J]. Chinese Journal of Environmental Engineering, 2018, 12(10): 2741-2748. | 76 | 王信, 马啸宙, 周雯, 等. 给水污泥负载Fe物除磷行为效果及机理[J]. 环境工程学报, 2016, 10(10): 5421-5426. | 76 | WANG Xin, MA Xiaozhou, ZHOU Wen, et al. Water supply sludge loaded iron compound on behavioral effect and functional mechanism of phosphorus removal [J]. Chinese Journal of Environmental Engineering, 2016, 10(10): 5421-5426. | 77 | 杨杭炽. 铁锆负载活性污泥生物炭的制备及其除磷行为的研究[J]. 广东化工, 2019, 46(11): 14-17. | 77 | YANG Hangchi. Preparation of iron-zirconium loaded activated sludge biochar and its phosphorus removal behavior [J]. Guangdong Chemical Industry, 2019, 46(11): 14-17. | 78 | SONG Xiaoyan, PAN Yanqiu, WU Quyin, et al. Phosphate removal from aqueous solutions by adsorption using ferric sludge [J]. Desalination, 2011, 280: 384-390. | 79 | YANG Lan, WEI Jie, ZHANG Yumei, et al. Reuse of acid coagulant-recovered drinking waterworks sludge residual to remove phosphorus from wastewater [J]. Applied Surface Science, 2014, 305: 337-346. | 80 | LUO Huayong, ZENG Xueyang, LIAO Peng, et al. Phosphorus removal and recovery from water with macroporous bead adsorbent constituted of alginate-Zr4+ and PNIPAM interpenetrated networks [J]. International Journal of Biological Macromolecules, 2019, 126: 1133-1144. | 81 | ZHOU Aijiao, ZHU Chang, CHEN Wangwei, et al. Phosphorus recovery from water by lanthanum hydroxide embedded interpenetrating network poly(vinyl alcohol)/sodium alginate hydrogel beads [J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2018, 554: 237-244. | 82 | LIN Licheng, LI Zhentao, SONG Xi, et al. Preparation of chitosan/lanthanum hydroxide composite aerogel beads for higher phosphorus adsorption [J]. Materials Letters, 2018, 218: 201-204. | 83 | 张小娜, 林晓艳, 罗学刚. 载镧羧甲基魔芋葡甘聚糖凝胶微球的吸附除磷性能[J]. 西南科技大学学报, 2018, 33(3): 16-18. | 83 | ZHANG Xiaona, LIN Xiaoyan, LUO Xuegang. Adsorption and removal performance of phosphorus of the CMKGM gel microspheres loaded with metal ions [J]. Journal of Southwest University of Science and Technology, 2018, 33(3): 16-18. | 84 | YUAN Ling, QIU Zhaofu, YANG Ji, et al. Adsorption performance and mechanism for phosphate removal by cerium hydroxide loaded on molecular sieve [J]. Journal of the Taiwan Institute of Chemical Engineers, 2018, 93: 450-460. | 85 | DING Shilin, FANG Dexin, PANG Zishan, et al. Immobilization of powdery calcium silicate hydrate via PVA covalent cross-linking process for phosphorus removal [J]. Science of the Total Environment, 2018, 645: 937-945. |
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