严寒及寒冷地区凹凸棒土饮用水净化技术
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参考文献

[1] Lucie G.Doing battle with the green monster of Tai hu lake[J].Science,2007,317(5842):1166.

[2] Yang M,Yu J W,Li Z H,et al.Taihu lake not to blame for Wuxi's woes[J].Science,2008,319(5860):158.

[3] Matilainen A,Vepsäläinen M,Sillanpää M.Natural organic matter removal by coagulation during drinking water treatment:A review[J].Advances in Colloid and Interface Science,2010,159(2):189-197.

[4] Zouboulis A,Traskas G,Samaras P.Comparison of efficiency between poly-aluminium chloride and aluminium sulphate coagulants during full-scale experiments in a drinking water treatment Plant[J].Separation Science and Techno logy,2008(11):1507-1519.

[5] 王慧娟,殷小桃,李金辉.低温低浊水混凝实验研究[J].山西建筑,2011,37(30):123-125.

[6] 李新貌,陈晓东.低温低浊微污染长江水优化混凝处理工艺研究[J].城镇供水,2011(5):27-28.

[7] 梅丹.活化硅酸处理低温低浊长江水的应用研究[J].城镇供水,2011(4):74-78.

[8] 陶润先,陈立,刘景艳,等.在线混凝/超滤工艺处理低温、低浊源水的研究[J].中国给水排水,2011,27(9):67-70.

[9] Yang Z L,Gao B Y,Yue Q Y,et al.Effect of pH on the coagulation performance of Al-based co agulants and residual aluminum speciation during the treatment of humic acid-kaolin synthetic water[J].Journal of Hazardous Materials,2010,178(1-3):596-603.

[10] Wang Y L,Feng J,Dentel S K,et al.Effect of polyferric chloride(PFC)doses and pH on the fractal characteristics of PFC-HA flocs[J].Colloids and Surfaces A:Physicochemical and Engineering Aspects,2011,379(1-3):51-61.

[11] 张跃军,赵晓蕾,李潇潇,等.处理低温低浊宁波白溪水库水的混凝剂优化[J].中国给水排水,2007,23(13):52-55.

[12] 李潇潇,张跃军,赵晓蕾,等.强化混凝处理低温低浊北渡水研究[J].工业水处理,2007,27(7):42-44,73.

[13] 张东,乐林生,朱文娜.聚硅硫酸铝处理黄浦江原水中试研究[J].净水技术,2007,26(3):36-38.

[14] Fu Y,Yu S L,Han C W.Morphology and coagulation performance during preparation of poly-silic ic-ferric (PSF)coagulant[J].Chemical Engineering Journal,2009,149(1-3):1-10.

[15] Cheng W P,Chi F H,Li C C.A study on the removal of organic substances from low-turbidity and low-alkalinity water with metal polysilicate coagulants[J].Colloids and Surface A:Physico-chemical and Engineering Aspects,2008,312(2-3):238-244.

[16] Lan W,Qiu H,Zhang J,et al.Characteristic of a novel composite inorganic polymer coagulant-PFAC prepared by hydrochloric pickle liquor[J].Journal of Hazardous Materials,2009,162(1):174-179.

[17] Zhu G C,Zheng H L,Zhang Z,et al.Characterization and coagulation-flocculation behavior of pol ymeric aluminum ferric sulfate(PAFS)[J].2011,178:50-59.

[18] Zhu G C,Zheng H L,Chen W Y,et al.Preparation of a composite coagulant:Polymeric alumi num ferric sulfate(PAFS)for wastewater treatment[J].Desalination,2012,285:315-323.

[19] 李风亭,王铮,王森,等.低温低浊水专用混凝剂——多元聚合氯化铝铁[A].2004全国水处理技术研讨会暨第24届年会论文集[C],2004:157-163.

[20] 夏远景,王松筠,姜传增.新型净水助凝剂在净水厂的实际应用[J].黑龙江水利科技,2008,36(3):9-10.

[21] 薛晓蓓,时文歆,孙楠,等.不同混凝剂处理低温低浊高色度水的对比试验研究[J].环境科学与技术,2010,33(12F):227-229,252.

[22] 徐静,张龑,王珑,等.PAC+改性活化硅酸在处理低温低浊度水中的应用[J].水资源与水工程学报,2010,21(6):41-43,47.

[23] 王慧娟,殷小桃,李金辉.低温低浊水混凝实验研究[J].山西建筑,2011,37(30):123-125.

[24] 张跃军,李潇潇,赵晓蕾,等.PDM复合混凝剂用于低温低浊宁波北渡水处理[J].江南大学学报(自然科学版),2010,9(3):328-333.

[25] 李潇潇,张跃军,赵晓蕾,等.聚二甲基二烯丙基氯化铵对聚合硫酸铁处理冬季长江水的助凝效果[J].工业用水与废水,2009,40(2):19-22.

[26] Sun C Z,Yue Q Y,Gao B Y,et al.Effect of pH and shear force on flocs characteristics for humic acid removal using polyferric aluminum chloride-organic polymer dual-coagulants[J].Desalination,2011,281:243-247.

[27] Moussas P,Zouboulis A.A new inorganic-organic composite coagulant,consisting of polyferric sul phate(PFS)and polyacrylamide(PAA)[J].Water Research,2009,43(14):3511-3524.

[28] Sun C Z,Yue Q Y,Gao B Y,et al.Synthesis and floc properties of polymeric ferric aluminum chloride-polydimethyl diallylammonium chloride coagulant in coagulating humic acid-kaolin synthetic water[J].Chemical Engineering Journal,2012,185-186:29-34.

[29] Bhatnagar A,Sillanpää M.Applications of chitin-and chitosan-derivatives for the detoxification of water and wastewater—A short review[J].Advances in Colloid and Interface Science,2009,152(1-2):26-38.

[30] Deans J R,Heinsohn G E,Link B A.Removalof organic contaminants from aqueous media[P].US:5393435A,1995-02-28.

[31] Zeng D F,Wu J J,Kennedy J F.Application of a chitosan flocculant to water treatment[J].Car bohydrate Polymers,2008,71(1):135-139.

[32] Fabris R,Chow CW,Drikas M.Evaluation of chitosan as a natural coagulant for drinking water treatment[J].Water Science and Technology,2010,61(8):2119-2128.

[33] Zemmouri H,Drouiche M,Sayeh A,et al.Coagulation flocculation test of keddara's water dam using chitosan and sulfate aluminium[J].Procedia Engineering,2012,33:254-260.

[34] Guibal E,Van V M,Dempsey B A,et al.A review of the use of chitosan for the removal of partic ulate and dissolved contaminants[J].Separation Science and Technology,2006,41:2487-514.

[35] Bratby J.Coagulation and flocculation in water and wastewater treatment[M].London:IWA Pub lishing,2006:186-214.

[36] Divakaran R,Sivasankara Pillai V N.Mechanism of kaolinite and titanium dioxide flocculation using chitosan-assistance by fulvic acids[J].Water Research,2004,38(8):2135-2143.

[37] Gupta A,Yunus M,Sankararamakrishnan N.Zerovalent iron encapsulated chitosan nanospheres-a novel adsorbent for the removal of total inorganic arsenic from aqueous systems[J].Chemosphere,2012,86(2):150-155.

[38] Bleiman N,Mishael Y G.Selenium removal from drinking water by adsorption to chitosan-clay com posites and oxides:Batch and columns tests[J].Journal of Hazardous Materials,2010,183(1-3):590-595.

[39] Jagtap S,Yenkie M K N,Labhsetwar N,et al.Defluoridation of drinking water using chitosan based mesoporous alumina[J].Microporous and Mesoporous Materials,2011,142(2-3):454-463.

[40] Muzzarelli R A A.Potential of chitin/chitosan-bearing materials for uranium recovery:An interdisci plinary review[J].Carbohydrate Polymers,2011,84(1):54-63.

[41] Zhang H J,Zhu G Y,Jia X Y,et al.Removal of microcystin-LR from drinking water using a bam boo-based charcoal adsorbent modified with chitosan[J].Journal of Environmental Sciences,2011,23(12):1983-1988.

[42] Wiarachai O,Thongchul N,Kiatkamjornwong S,et al.Surface-quaternized chitosan particles as an alternative and effective organic antibacterial material[J].Colloids and Surfaces B:Biointerfaces,2012,92:121-129.

[43] 董怡华,李亮,胡筱敏,等.壳聚糖改性阳离子絮凝剂的制备及其应用研究[J].环境保护科学,2006,32(5):20-22.

[44] 胡勇有,李泗清,郭艳平,等.壳聚糖接枝三元共聚阳离子絮凝剂对高岭土悬浊液的絮凝特性[J].环境科学,2008,29(4):954-959.

[45] 田国鹏,张雯,魏刚,等.壳聚糖/铁絮凝剂的制备及其絮凝性能[J].北京化工大学学报,2008,35(4):47-51.

[46] 张文轩,尚亚波,袁 博,等.壳聚糖改性絮凝剂絮凝性能的研究[J].高分子通报,2010(4):49-54.

[47] 王锦涛,姚春才,谢思思.微波辐射下壳聚糖—丙烯酰胺接枝物的合成及其絮凝性能研究[J].生物质化学工程,2010,44(4):17-20.

[48] 王香爱.壳聚糖季铵盐复合絮凝剂对高岭土悬浮液的絮凝处理[J].化工科技,2011,19(2):6-9.

[49] 巴金华,苍会升,王圆圆.Fe2(SO43-壳聚糖絮凝剂的制备及絮凝性能的研究[J].有色矿冶,2009,25(1):41-43.

[50] 蒋明,娄金生,熊正为.壳聚糖复合絮凝去除水源水中有机物与铝离子的实验研究[J].南华大学学报(自然科学版),2007,21(3):104-107.

[51] 王丽坤,王启山,孙晓明,等.壳聚糖助凝对三氯化铁絮体形态和强度的影响[J].中国环境科学,2009,29(7):718-721.

[52] 张秀芝,张雨山,王静,等.壳聚糖在海水混凝处理过程中的助凝作用研究[J].化学工业与工程,2010,27(1):38-42.

[53] 夏德强,吕维华,苏晓云,等.新型絮凝剂APAC与壳聚糖复配处理浊度水的实验研究[J].非金属矿,2011,34(6):59-61,65.

[54] 刘秉涛,姜安玺,李瑞涛.给水絮凝处理中壳聚糖的助凝作用和机理研究[J].哈尔滨工业大学学报,2008,40(12):1570-1573.

[55] 石宝友,汤鸿霄.聚合铝与有机高分子复合絮凝剂的絮凝性能及其吸附特性[J].环境科学,2000,(1):18-22.

[56] Zhao L,Luo F,Wasikiewicz J M,et al.Adsorption of humic acid from aqueous solution onto irra diation-crosslinked carboxymethyl chitosan[J].Bioresource Technology,2008,99(1):1911-1917.

[57] Wan Ngah W S,Hanafiah M A K M,Yong S S.Adsorption of humic acid from aqueous solutions on crosslinked chitosan-epichlorohydrin beads:Kinetics and isotherm studies[J].Colloids and Surfaces B:Biointerfaces,2008,65(1):18-24.

[58] Wan Ngah W S,Fatinathan S,Yosop N A.Isotherm and kinetic studies on the adsorption of humic acid onto chitosan-H2SO4 beads[J].Desalination,2011,272(3):293-300.

[59] 王家宏,郑寿荣,刘凤玲,等.磁性壳聚糖去除水中腐殖酸的研究[J].无机化学学报,2010,26(10):1761-1767.

[60] Maghsoodloo Sh,Noroozi B,Haghi A K,et al.Sorial.Consequence of chitosan treating on the ad sorption of humic acid by granular activated carbon[J].Journal of Hazardous Materials,2011,191(1-3):380-387.

[61] 马放,刘俊良,李淑更,等.复合型微生物絮凝剂的开发[J].中国给水排水,2003,19(4):1-4.

[62] Wang W,Ma F,Yue X L,et al.Purification and characterization of compound bioflocculant[C].The 2nd International Conference on Bioinformatics and Biomedical Engineering.Shanghai:IEEE,2008.

[63] 孟路,杨基先,马放,等.复合型生物絮凝剂处理低温低浊水影响因素[J].哈尔滨工业大学学报,2009,24(11):42-45.

[64] Bo X W,Gao B Y,Peng N N,et al.Coagulation performance and floc properties of compound bio flocculant-aluminum sulfate dual-coagulant in treating kaolin-humic acid solution[J].Chemical Engineering Journal,2011,173(2):400-406.

[65] Li Z,Zhong S,Lei H Y,et al.Production of a novel bioflocculant by Bacillus Licheni form is X14and its application to low temperature drinking water treatment[J].Bioresource Technology,2009,100(14):3650-3656.

[66] 周华,陈卫,孙敏,等.长江水源水厂低温低浊期排泥水直接回用试验研究[J].水处理技术,2010,36(9):93-96.

[67] 徐勇鹏,何利,崔福义,等.回用净水厂生产废水强化低温低浊水的混凝效能[J].中国给水排水,2011,27(7):55-58.

[68] Johnson B A,Gong B,Bellamy W,et al.Pilot plant testing of dissolved air flotation for treating Bostons low-turbidity surface water supply[J].Water Science and Technology,1995,31(3-4):83-92.

[69] 郑全枝,王承春,彭福弟,等.低温低浊污染水源的气浮处理[J],中国给水排水,1990,6(2):50-52.

[70] 田利,王启山.预氧化与气浮工艺联用处理高藻水效果比较[J].河北工业大学学报,2006,35(2):24-27.

[71] 周莉珺,张玉先,张硕,等.气浮—生物接触氧化集成技术处理受污染水源水研究[J].江苏环境科技,2007,20(1):13-16.

[72] 孙志民,赵洪宾,马军.新型侧向流斜板浮沉池处理低温低浊水的试验研究[J].给水排水,2004,30(11):19-21.

[73] 苏定江,邱利祥,张静.一种侧向流斜板浮沉池[P].中国:201971694U,2011-09-14.

[74] 张克峰,李梅,王永磊,等.一种斜管浮沉池净水系统及净水方法[P].中国:102153215A,2011-08-17.

[75] 梁恒.浮沉池工艺设计及处理引黄水库低温低浊水技术研究[D].山东:山东建筑大学,2011:17-25.

[76] 卜恩云.用微絮凝接触过滤工艺处理低温低浊水[J].建筑技术通讯(给水排水),1983,(6):6-9.

[77] 卜恩云,刘德明,徐爱军.“B-X型微絮凝接触反应”处理低温低浊度水[J].建筑技术通讯(给水排水),1987,(3):38.

[78] 李桂平.微絮凝—深床直接过滤技术在城市给水及废水处理中的应用研究[D].北京:中国科学院生态环境研究中心,2002:30-50.

[79] 陈超,王燕蓉,冯修梅.微絮凝直接过滤工艺处理微污染水库水源的应用研究[J].山东工业大学学报,2000,30(6):558-592.

[80] 周楠.西宁市低温水处理实验研究与工艺优化[D].西安:西安建筑科技大学,2002:30-50.

[81] 田红霞.微絮凝工艺处理大庆市低温低浊水的实验研究[D].哈尔滨:哈尔滨工业大学,2005:36-51.

[82] 高欣.均质滤料微絮凝过滤处理微污染水源水的试验研究[D].陕西:长安大学,2006:32-59.

[83] 李冬梅,施周,金同轨,等.阳离子聚合物对低温低浊水的絮凝效果及形态学特性[J].环境科学学报,2007,27(6):1013-1019.

[84] 郑蓓,葛小鹏,李涛,等.微絮凝强化过滤工艺处理低温低浊水的实验研究[J].环境科学学报,2010,30(11):2184-2188.

[85] 郑蓓.接触絮凝工艺应用于低温低浊水体及印染企业尾水深度处理的实验研究[D].河南:河南师范大学,2010:37-46.

[86] 刘洋,张声,张晓健.活性炭深床浮滤池以直接过滤方式运行处理低温低浊水研究[J].环境污染治理技术与设备,2005,12(6):101-104.

[87] 任芝军,刘桂芳,朱丽楠,等.生物活性炭滤池直接过滤处理低温低浊水研究[J].现代化工,2010,30(z2):295-297.

[88] 田力,汪学杰,孙立滨.微涡流混凝沉淀技术处理低温低浊水的应用[J].城镇供水,2011(2):36-38.

[89] 刘汝鹏,翟华丽,曲莹.旋流扰流组合涡混合反应器的应用研究[J].环境科学与技术,2006,29(02):93-94,100.

[90] 庞焕岩,于水利,于志伟.新型旋流扰流反应器试验研究[J].哈尔滨商业大学学报(自然科学版),2007,23(03):303-306.

[91] 赫俊国,宋学峰,金昌锦,等.微涡旋混凝低脉动沉淀技术处理低温低浊水[J].中国给水排水,1999,15(4):17-19.

[92] 黄林平,李静,陈立功.微涡旋混凝技术处理低温低浊水[J].东北电力大学学报,2006,26(16):84-87.

[93] 白芸,胡良,陈雷.涡旋混凝低脉动沉淀技术处理低温低浊水[J].北华大学学报:自然科学版,2007,8(6):573-575.

[94] 童祯恭,方永忠,胡锋平.微涡流混凝技术在十堰水厂的应用[J].中国给水排水,2008,24(4):66-68.

[95] 王福进.混凝沉淀强化工艺处理低温低浊黄河水的中试研究[J].供水技术,2008,2(3):29-33.

[96] 崔志刚,孙铁,李艳华.涡旋混凝沉淀技术在吴家堡水厂扩建中的应用[J].给水排水,2009,35(9):26-28.

[97] 黄继华,方永辉,程霄,等.微涡流絮凝/斜管沉淀技术用于机械搅拌澄清池改造[J].中国给水排水,2009,25(20):77-78.

[98] 郭娟,邵云霞,吴建泉.微涡流混凝工艺在东海水厂改造中的应用[J].供水技术,2010,4(6):21-23.

[99] 刘华.微涡流絮凝/立式斜管沉淀/曝气生物过滤/气水反洗过滤技术应用于水厂建设[J].湖南水利水电,2010,(6):54-55,59.

[100] 谭学军.高梯度磁分离饮用水深度处理器的应用研究[D].哈尔滨:哈尔滨工业大学,2001:1-20.

[101] 倪鸿,周勉.低温低浊及高浊高藻黄河水超磁分离净化技术[J].中国建设信息(水工业市场),2011,03:76-80.

[102] Desjardins C,Koudjonou B,Desjardins R.Laboratory study of ballasted flocculation[J].Water Research,2002,36(3):744-754.

[103] Philip S.Treatment of liquids with ballasted flocculation[P].US:6689277 B2,2004-02-10.

[104] Binot P,Gaid A,Roche P.Method of treating water with an inorganic powder reagent[P].US:7678278 B2,2010-03-16.

[105] Sauvignet P.Method for water treatment by flocculation/settling using ballasted floc degritting of the sludge[P].US:8062529 B2,2011-11-22.

[106] Sauvignet P,Beaudet J F,Ursel V.Method of treating water by ballasted flocculation/settling,which includes a continuous measurement of the ballast,and corresponding installation[P].US:8092688 B2,2012-01-10.

[107] Perri J S,Hertel W M.Ballasted flocculation process and system incorporating an electrocoagula tion reactor for treating water or wastewater[P].US:2006/0108273 A1,2006-05-25.

[108] Daugherty J S.Method and system for utilizing activated sludge in a ballasted flocculation process to remove BOD and suspended solids[P].US:7153431 B2,2006-12-26.

[109] Sun J W.System for removing BOD and suspended solids through an activated sludge process and a ballasted flocculation process[P].US:7563366 B2,2009-07-21.

[110] Sauvignet P,Abdelkader.Water treatment method by ballasted flocculation,settling,and prior ad sorbent contact[P].US:7648637 B1,2010-01-19.

[111] Garbett R A,Gutshall M L,Hendley B W,et al.Combined biological and ballasted flocculation process for treating wastewater[P].US:7323108 B1,2008-01-29.

[112] 刘杨,赵建伟,杨兴涛,等.水厂排泥水处理系统优化运行研究[J].供水技术,2007,1(5):56-57.

[113] 方小桃.给水处理厂中高密度沉淀池沉淀区流态模拟及设计优化研究[D].重庆:重庆交通大学,2010:51-68.

[114] 饶明.粉末活性炭与高密度沉淀池联用处理低浊微污染水试验研究[D].北京:北京工业大学,2009:23-52.

[115] 李星,芦澍,孙文鹏,等.高密度沉淀池—超滤组合工艺处理微污染水中试[J].北京工业大学学报,2011,37(9):1387-1392.

[116] 廖强,刘钰,赵欣,等.成都市自来水六厂B厂工艺特点、应急机制及案例分析[J].中国给水排水,2011,27(4):97-100.

[117] 许嘉炯,郑毓佩,沈裘昌,等.新型中置式高密度沉淀池的开发与应用[J].给水排水,2007,33(2):19-24.

[118] 许嘉炯,雷挺,沈裘昌,等.嘉兴南郊水厂微污染河网水集成净水处理工艺选择与设计[J].给水排水,2008,34(9):9-14.

[119] 荣国栋,成爱友,蔡传利,等.胜利油田供水公司民丰水厂改造工程[J].中国给水排水,2010,26(22):88-91.

[120] 刘晓飞,杜茂安,马军,等.低压膜直接过滤处理低温低浊水性能研究[J].哈尔滨工业大学学报,2003,35(8):982-984,988.

[121] 史慧婷,杨艳玲,李星,等.混凝—超滤处理低温低浊受污染水试验研究[J].哈尔滨商业大学学报(自然科学版),2010,26(2):144-148.

[122] 裴亮,姚秉华,付兴隆,等.UF膜与混凝粉末活性炭联用处理冬季黄河水[J].环境科学与技术,2009,32(3):165-168,188.

[123] 左金龙,崔福义,杨威,等.膜生物反应器处理低温低浊水的工艺研究[J].环境科学,2007,28(2):377-381.

[124] Ersahin M E,Ozgun H,Dereli R K,et al.A review on dynamic membrane fltration:Materials,applications and future perspectives[J].Bioresource Technology,2012,122:196-206.

[125] Marcinkowsky A E,Philips K A,Johnson H O,et al.Hyperfiltration studies(Ⅳ)salt rejection by dynamically formed hydrous oxide membranes[J].Journal of the American Chemical Society,1966,88:5744-5750.

[126] 李伟光.一种酸改性竹炭及其制备方法和利用其去除饮用水中氨氮的方法[P].中国:102228822,2011-11-02.

[127] Barrer R M.Zeolites and Clay Minerals[M].New York:Academic Press,1978.

[128] Breck D W.Zeolites Molecular Sieves[M].New York:Wiley,1974.

[129] Huang H,Xiao X,Yan B,et al.Ammonium removal from aqueous solutions by using natural Chinese (Chende)zeolite as adsorbent[J].Journal of Hazardous Materials,2010,175(1-3):247-252.

[130] Malekian R,Abedi-Koupai J,Eslamian S S,et al.Ion-exchange process for ammonium removal and release using naturalIranian zeolite[J].Applied Clay Science,2011,51(3):323-329.

[131] 任红强.一种对废水中氨氮具有高选择性的改性分子筛及其制备方法[P].中国:101804324 A,2010-08-18.

[132] 刘海峰,刘元,赵玉华.13X分子筛联合强化混凝对微污染水中氨氮去除试验研究[J].工业安全与环保,2010,36(11):18-20.

[133] 周健,胡晓静,李凯荣,等.4A分子筛处理高浓度氨氮废水[J].环境化学,2010,29(5):943-947.

[134] 陶红,高廷耀,俞靓,等.微孔分子筛的合成及其去除水中氨氮的实验研究[J].环境污染治理技术与设备,2004,5(3):48-50.

[135] Arslan A,Veli S.Zeolite 13X for adsorption of ammonium ions from aqueous solutions and hen slaughterhouse wastewaters[J].Journal of the Taiwan Institute of Chemical Engineers,2012,43(3):393-398.

[136] 张健,万东锦,朱云云,等.两种ZSM-5沸石分子筛吸附水中氨氮的研究[J].环境科学与技术,2011,34(8):104-108.

[137] 方瑾.新型分子筛制备及其处理高氨氮废水的性能研究[D].浙江:浙江工商大学,2011:44-51.

[138] 王霞.利用粉煤灰合成分子筛及脱除高浓度氨氮的研究[D].太原:太原理工大学,2007:56-63.

[139] 苑鑫.粉煤灰合成分子筛处理高浓度氨氮废水的研究[D].太原:太原理工大学,2008:37-41.

[140] 王天翔.粉煤灰合成分子筛处理高浓度氨氮废水的研究[D].太原:太原理工大学,2009:57-65.

[141] 郭俊温.粉煤灰合成沸石及氨氮吸附性能的研究[D].内蒙古:内蒙古科技大学,2011:58-68.

[142] Zhang M L,Zhang HY,Xu D,et al.Ammonium removal from aqueous solution by zeolites syn thesized from low-calcium and high-calcium fly ashes[J].Desalination,2011,277(1-3):46-53.

[143] Yusof A M,Keata L K,Ibrahim Z,et al.Kinetic and equilibrium studies of the removal of ammo nium ions from aqueous solution by rice husk ash-synthesized zeolite Y and powdered and granulated forms of mordenite[J].Journal of Hazardous Materials,2010,174(1-3):380-385.

[144] Lei L C,Li X J,Zhang X W.Ammonium removal from aqueous solutions using microwave-treated natural Chinese zeolite[J].Separation and Purification Technology,2008,58(3):359-366.

[145] Liang Z,Ni J R.Improving the ammonium ion uptake onto natural zeolite by using an integrated modification process[J].Journal of Hazardous Materials 2009,166(1):52-60.

[146] Li M Y,Zhu X Q,Zhu F H,et al.Application of modified zeolite for ammonium removal from drinking water[J].Desalination,2011,271(1-3):295-300.

[147] 张素芳,蒋白懿,李亚峰.膨润土的改性对水中氨氮和磷的去除效果研究[J].辽宁化工,2011,40(11):1115-1120.

[148] 符瞰,夏启斌,李忠,等.麦饭石吸附氨氮应用研究[J].工业安全与环保,2011,37(4):3-5.

[149] 尹敬杰,蒋白懿,刘军,等.膨胀蛭石吸附微污染水源水中氨氮的影响因素研究[J].辽宁化工,2009,38(3):170-172,194.

[150] 唐超.由天然斜发沸石和铝土矿合成4A沸石研究[D].湖南:湖南大学,2008:45-52.

[151] Zhao Y F,Zhang B,Zhang X,et al.Preparation of highly ordered cubic NaA zeolite from halloys ite mineral for adsorption of ammonium ions[J].Journal of Hazardous Materials,2010,178(1-3):658-664.

[152] Zheng H,Han L J,Ma H W,et al.Adsorption characteristics of ammoniumion by zeolite 13X[J].Journal of Hazardous Materials,2008,158(2-3):577-584.

[153] Ugˇ urlu M,Hamdi Karaogˇ lu M.Adsorption of ammonium from an aqueous solution by fly ash and sepiolite:Isotherm,kinetic and thermodynamic analysis[J].Microporous and Mesoporous Materials,2011,139(1-3):173-178.

[154] 韩春来.一种低温除氨氮絮凝剂[C].中国水污染治理技术装备论文集(第十七期),2011,163-165.

[155] 李伟光.可在低温、好氧条件下去除微污染水源水中氨氮的细菌及筛选驯化方法[P].中国:101570736 A,2009-11-04.

[156] 陈立,郭兴芳.利用包埋菌对高氨氮污染水源水进行预处理的方法[P].中国:102198979 A,2011-09-28.

[157] 刘国庆,桑军强,张锡辉,等.低温下生物陶粒反应器去除水源水中氨氮的研究[J].中国环境科学,2003,23(6):644-647.

[158] 张硕,张玉先,汪胜,等.生物沸石溶气滤罐处理低温微污染原水的中试[J].中国给水排水,2006,22(23):47-55.

[159] 李伟光,曲艳明,何文杰,等.臭氧生物活性炭技术在低温低浊水处理中的应用[J].水处理技术,2006,32(11):4-6.

[160] 宋晓静.微污染水源水生物强化过滤的研究[D].天津:南开大学,2006:29-47.

[161] Bao R L,Yu S L,Shi W X,et al.Aerobic granules formation and nutrients removal characteris tics in sequencing batch airlift reactor(SBAR)at low temperature[J].Journal of Hazardous Materials,2009,168(2-3):1334-1340.

[162] 林朝晖,黄瑞芬,李劲,等.低温条件下膜生物反应器的启动和除污[C].《中国给水排水》第七届年会暨2010年水处理新技术新工艺及给(污)水厂运行管理高级研讨会.2010,109-114.

[163] Ma C,Yu S L,Shi W X,et al.High concentration powdered activated carbon-membrane bioreac tor (PAC-MBR)for slightly polluted surface water treatment at low temperature[J].Bioresource Technology,2012,113:761-767.

[164] 郑少奎,张燕燕,杨志峰,等.低温下表面流人工湿地中氨氮型富营养化水体净化研究[J].环境科学,2006,27(10):2014-2018.

[165] 郑翀,孙梅,郑少奎,等.低温下水芹浮床对氨氮类富营养水体的连续小试净化[J].环境污染治理技术与设备,2006,7(8):23-26.

[166] 纪庆亮.三种水生植物氨氮耐受性和冬季净水效果研究[D].南京:南京林业大学,2010:33-45.

[167] önal M,Sarlkaya Y.Some physicochemical properties of a clay containing smectite and palygors kite[J].Applied Clay Science,2009,44(1-2):161-165.

[168] Shuali U,Nir S,Rytwo G.Chapter 15-Adsorption of surfactants,dyes and cationic herbicides on sepiolite and palygorskite:Modifications,Applications and Modelling[J].Developments in Clay Science,2011,3:351-374.

[169] Wang M S,Liao L B,Zhang X L,et al.Adsorption of low concentration humic acid from water by palygorskite[J].Applied Clay Science,2011,67-68:164-168.

[170] Wang J H,Han X J,Ma H G,et al.Adsorptive removal of humic acid from aqueous solution on polyaniline/attapulgite composite[J].Chemical Engineering Journal,2011,173(1):171-177.

[171] 晗桢.矿物复配PAC混凝去除给水中腐殖酸研究[D].青岛:青岛科技大学,2009:41-47.

[172] 杨慧,宁海丽,裴亮.凹凸棒土的氨氮吸附性能研究[J].环境工程学报,2011,5(2):343-346.

[173] 张秀丽,王明珊,廖立兵.凹凸棒石吸附地下水中氨氮的实验研究[J].非金属矿,2011,33(6):64-67.

[174] 陈泽恩,王郑,缪伟,等.凹凸棒复合滤料对氨氮的静态吸附研究[J].广东化工,2009,36(8):19-20,66.

[175] 缪伟,黄新,王郑,等.复合凹凸棒滤料去除氨氮和有机物试验研究[J].森林工程,2009,25(3):66-70.

[176] 王爱勤,郑易安,张俊平.网络型凹凸棒黏土复合吸附剂及其制备方法.中国:101664666A,2010-03-10.

[177] 于鹄鹏,钱运华,陈静,等.金叶玲利用凹凸棒土制备废水氨氮吸附剂的研究[J].应用化工,2009,38(8):1194-1195,1198.

[178] 王雅萍,刘云,董元华,等.凹凸棒石黏土对氨氮废水吸附性能的研究[J].农业环境科学学报,2008,27(4):1525-1529.

[179] 张俊,赵跃智.复合纳米TiO2/凹凸棒土处理氨氮废水[J].中国非金属矿工业导刊,2007(6):46-47.

[180] 李彦锋,杨艳.表面改姓凹凸棒阳离子絮凝剂及其制备方法[P].中国:1872722A,2006-12-06.

[181] 叶瑛,张平萍,陈雪刚.以坡缕石为原料制备沸石分子筛及其方法[P].中国:101066766A,2007-11-07.

[182] 蒋金龙,金叶玲,固旭,等.凹凸棒石黏土合成4A沸石、P型沸石和方钠石的方法[P]中国:101618880A,2010-01-06.

[183] 王青宁,俞树荣,田静,等.采用凹凸棒石黏土合成A型分子筛的方法[P].中国:101817539A,2010-09-01.

[184] 蒋金龙,金叶玲,固旭.以凹凸棒石黏土为原料合成X型沸石的方法[P].中国:101337681A,2009-01-07.

[185] 周伟,李登好.凹凸棒黏土直接碱液合成4A分子筛的研究[J].化工矿物与工,2008(6):18-20.

[186] 赵登山,李登好.利用凹凸棒石黏土制备4A沸石分子筛的研究[J].非金属矿,2008,31(6):7-9.

[187] Jiang J L,Feng L D,Gu X,et al.Synthesis of zeolite A from palygorskite via acid activation[J].Applied Clay Science,2012,55:108-113.

[188] 蒋金龙,固旭,冯良东,等.酸活化凹凸棒石黏土合成沸石的方法[P].中国:101774604A,2010-07-14.

[189] 张磊,王青宁,田静,等.凹凸棒石黏土矿除铁增白在合成分子筛上的应用[J].非金属矿,2009,32(2):25-29.

[190] 张平萍,陈雪刚,程继鹏,等.以坡缕石为原料制备方沸石[J].材料科学与工程学报,2010,28(4):501-504.

[191] 姚华.一种用海泡石合成Mg-NaY沸石的方法[P].中国:101391780A,2009-03-25.