用户名: 密码: 验证码:
CHPAMSTDA-5的制备及其在再生瓦楞纸抄造中的应用
详细信息    本馆镜像全文|  推荐本文 |  |   获取CNKI官网全文
摘要
为了改善废纸纤维再生纸的使用品质,研究了系列AM-ST-DADMAC三元共聚物(简称PAMSTDA-5)无皂乳液及其Hofmann反应改性产物CHPAMSTDA-5的制备,并应用于再生瓦楞纸的抄造。本研究第一章,首先通过无皂乳液聚合制备了高固含量、稳定的PAMSTDA-5,用FTIR和TEM对其进行了表征,并讨论了不同单体配比对单体总转化率、DADMAC转化率和乳液阳离子表面电荷量的影响;第二章,讨论了PAMSTDA-5的Hofmann反应,详细探讨了碱浓度和不同单体配比对反应过程中N-氯代酰胺基、胺基的含量影响规律;第三章将PAMSTDA-5应用于再生瓦楞纸的抄造,详细讨论了不同单体配比对纸张增强性能、助留助滤性能的影响;第四章,考察了不同单体配比和碱浓度对CHPAMSTDA-5的纸张增强性能、助留助滤性能的影响,同时与PAMSTDA-5进行了比较。
In order to improve the properties of paper made from recycled pulps, synthesis of a series of AM-ST-DADMAC copolymer (PAMSTDA-5) by means of soap-free emulsion copolymerization and preparation of CHPAMSTDA-5 from Hofmann reaction of PAMSTDA-5 were studied. Besides, their application in recycled corrugated papermaking were investigated. In the chapter 1, PAMSTDA-5 with high solid content and stability were synthesized by soap-free emulsion polymerization and characterized by FTIR and TEM. Effects of monomer ratio on the conversion rate of total monomer and DADMAC as well as the amount of surface cation were discussed. In the chapter 2, the Hofmann reaction of PAMSTDA-5 was carried out and the effect of the dosage of alkali and monomer ratio on the content of N-chloro amide group and amino group were investigated in details. In the chapter 3, effects of monomer ratio of PAMSTDA-5 on the paper strength, retention and drainage in recycled pulps were discussed. In the chapter 4, effects of the dosage of alkali and monomer ratio on the performance of CHPAMSTDA-5 for paper strength, retention and drainage in recycled pulps were investigated.
引文
[1]Warson H. The applications of synthetic resin emulsions:Benn London; 1972.
    [2]曹同玉等.聚合物乳液合成原理、性能及应用[M].北京:化学工业出版社,1997.408-415.
    [3]贾建民,郭睿,季振清.无皂乳液在造纸工业中的应用[J].黑龙江造纸.2009,37(003):26-28.
    [4]Gee G, Davies C, Melville H. The catalysed polymerisation of butadiene at a liquid-gas interface[J]. Transactions of the Faraday Society.1939,35:1298-1312.
    [5]Matsumoto T, Ochi A. Polymerization of styrene in aqueous solution[J]. Kobunshi Kagaku.1965,22(244):481-487.
    [6]张莉,陈桐,尹松.无皂乳液聚合制备方法的研究进展[J].化学与粘合.2008,(03):7-11
    [7]吴庆云,杨建军,张建安等.无皂型乳液聚合的研究进展[J].精细石油化工进展.2006,7(002):40-44.
    [8]张莉,陈桐,陈梦瑜等.无皂乳液聚合反应机理和制备方法的研究进展[J].中国胶粘剂.2008,17(004):47-52.
    [9]孙亦周,王颖.无皂乳液聚合原理及其制备[J].航天工艺.2001,(002):24-27.
    [10]Fithch R M. The homogeneous nucleation of polymer colloids[J]. British Polymer Journal,2007,5(6):467-483.
    [11]Goodwin J, Hearn J, Ho C et al. The preparation and characterisation of polymer latices formed in the absence of surface active agents[J]. British Polymer Journal. 2007,5(5):347-362.
    [12]Goodall A, Wilkinson M, Hearn J. Mechanism of emulsion polymerization of styrene in soap-free systems [J]. Journal of Polymer Science Polymer Chemistry Edition.1977,15(9):2193-2218.
    [13]Song Z, Poehlein G. Particle nucleation in emulsifier- free aqueous- phase polymerization:Stage 1[J]. Journal of Colloid and Interface Science,1989,128(2): 486-500.
    [14]Song Z, Poehlein G. Particle formation in emulsifier- freeaqueous- phase polymerization of styrene[J]. Journal of Colloid and Interface Science,1989,128 (2):501-510.
    [15]张茂根,翁志学.MMA/BA无皂乳液聚合机理研究——三阶段成粒机理[J].高等学校化学学报.1999,20(011):1795-1799.
    [16]Munro D, Goodall A, Wilkinson M et al. Study of particle nucleation, flocculation, and growth in the emulsifier-free polymerization of styrene in water by total intensity light scattering and photon correlation spectroscopy[J]. Journal of Colloid and Interface Science.1979,68(1):1-13.
    [17]张茂根,翁志学.无皂聚合物乳液制备方法及应用[J].涂料工业.1997,(006):35-36.
    [18]张茂根,翁志学.无皂乳液的稳定性及增加稳定性的原理[J].高分子材料科学与工程.1999,15(005):30-33.
    [19]陈杰,易昌凤,徐祖顺.微波辐射无皂乳液聚合制备聚氰基丙烯酸正丁酯微球[J].应用化学.2007,24(008):929-932.
    [20]陶贵德,张晶晶,罗时忠.微波合成窄分布无皂P(St-co-AA)胶乳粒子[J].安庆师范学院学报:自然科学版.2007,13(004):39-41.
    [21]唐业仓,傅中.无皂乳液聚合合成均分散PMMA微球[J].应用化学.2002,19(010):981-984.
    [22]唐业仓,罗时忠,傅中等.微波辐照下无皂阳离子聚(St-MMA)高分子纳米粒子的制备和表征[J].高分子学报.2003,(006):887-890.
    [23]殷年伟,陈克强.超声辐照下BA/AM体系的无皂乳液聚合[J].四川大学学报:工程科学版.2003,35(003):62-65.
    [24]殷年伟,陈克强,康维.超声无皂乳液聚合制备BA/St/AM三元共聚物乳胶粒及其聚合机理研究[J].高分子学报.2006,(02).
    [25]徐继红,徐国财,王贞平.超声辐射制备纳米镓/聚丙烯酸丁酯核壳复合粒子[J].机械工程材料.2006,30(011):52-55.
    [26]徐继红,苏瑞文,陶俊等.超声辐照下MMA/BA/AA三元无皂乳液聚合的研究[J].安徽理工大学学报:自然科学版.2009,(002):34-37.
    [27]王艳丽,谭德新,闵凡飞等.超声无皂乳液聚合制备AMPS/MMA二元共聚微球[J].应用化学.2009,26(007):866-868.
    [28]贾建民,郭睿,季振清.阳离子无皂乳液在造纸工业中的应用进展[J].湖北造纸.2009,(003):35-38.
    [29]王克全,李国秀,李建文.阳离子乳液型造纸助剂的研究进展[J].广州化工2008,(002):23-25.
    [30]张秀青,邱化玉.阳离子聚合物乳液的性能及应用[J].湖南造纸.2007,3:26-27.
    [31]肖忠柏.阳离子聚合物乳液制备方法[J].胶体与聚合物.2001,(02):30-33.
    [32]李建文,邱化玉.阳离子聚合物乳液的制备及应用[J].中国造纸.2004,23(004):41-44.
    [33]Sanchez J. Method of increasing the dry strength of paper products using cationic dispersion polymers. [P]. US:6315866,2001:11-13.
    [34]张国运,徐永健.乳液型改性淀粉增干强剂的制备及应用[J].西南造纸.2002,31(003):20-21.
    [35]杨秀芳.P(MMA—ST—AM)阳离子聚合乳液纸张增强剂的合成及性能研究[J].宝鸡文理学院学报:自然科学版.2003,23(002):124-126.
    [36]张力,任庆海AM-St-DADMAC-VAc四元共聚物乳液增干强剂的研究[J].陕西科技大学学报:自然科学版.2004,22(004):27-31.
    [37]张金枝,彭顺金St/BA/DBMEA无皂阳离子乳液聚合动力学[J].胶体与聚合物.2000,18(002):15-17.
    [38]易昌凤,高庆,肖桂林等.苯乙烯/羟甲基丙烯酰胺无皂乳液共聚合的研究[J].胶体与聚合物.2005,23(002):6-8.
    [39]赖晓琳,谢剑妹,陈少平等.反应条件对苯丙乳液共聚中阳离子单体转化率的影响[J].福建师范大学学报:自然科学版.2008,24(003):69-72.
    [40]林坤龙,谢剑妹,陈少平等.第三单体对丙烯酰胺/苯乙烯无皂乳液共聚反应的影响[J].胶体与聚合物.2008,26(001):1-3.
    [41]谢剑妹,郭永新,陈少平等.丙烯酰胺-苯乙烯共聚物乳胶粒理化性质的研究[J].福建师范大学学报:自然科学版.2008,24(003):73-76.
    [42]McDonald C, Beaver R. The Mannich Reaction of Poly(acrylamide)[J]. Macromolecules.1979,12(2):203-208.
    [43]Tanaka H. Hofmann reaction of polyacrylamide:Relationship between reaction condition and degree of polymerization of polyvinylamine[J]. Journal of Polymer Science:Polymer Chemistry Edition.2003,17(4):1239-1245.
    [44]吴宗华,陈少平,王春燕.阳离子型聚丙烯酰胺乳液的制备[J].中国造纸学报.2005,20(002):130-133.
    [45]张国运,沈一丁.PMAA阳离子乳液的合成及在造纸增强中的作用[J].西南造纸.2002,31(005):27-28.
    [46]胡宗渊.激荡六十年,中国造纸工业的“建国大业”[J].中华纸业.2009,(019):20-27.
    [47]钱桂敬.六十年的辉煌与未来绿色纸业的展望[J].中华纸业.2009,(019):46-50.
    [48]黄磷.2008全球纸业发展报告[J].中华纸业.2009,17:6-11.
    [49]黄磷.金融危机:造纸业应化“危”为“机”[J],上海造纸.2009,40(001):68-69.
    [50]董文海.金融海啸下造纸业的转型与机遇[J].中华纸业.2009,(003):8-11.
    [51]林鹏.我国造纸工业的未来须紧抓四大主题[J].包装世界.2009,(005):24-24.
    [52]纸业要持续发展必须勇闯环保关[J].纸和造纸.2009,(09):1.
    [53]张震宇.造纸工业环境保护现状,进步与发展要求[J].中华纸业.2009,(019):57-58.
    [54]李汉鹏.中华人民共和国循环经济促进法[J].国外塑料.2009,27(001):16-16.
    [55]苏讯.国家发布《清洁生产标准造纸工业(废纸制浆)》(HJ468-2009)[J].江苏造纸.2009,(003):29-29.
    [56]赵宇,陈中豪,李友明.二次纤维与造纸工业的可持续性发展[J].湖北造纸.2005,(003):5-8.
    [57]张茵.加大废纸资源的回收利用,实现造纸业可持续发展[J].中华纸业.2009,(019):62-64.
    [58]陈炎生.建设“资源节约,环境友好”型社会造纸行业必需努力提高废纸的回收和利用[J].上海造纸.2006,37(002):3-5.
    [59]张琼,杨少辉.我国废纸回收利用与造纸工业可持续发展[J].造纸科学与技术.2007,26(002):30-33.
    [60]李雪梅.废纸再生之我见[J].林业科技情报.2009,(002):20-21.
    [61]侯庆喜,刘苇,洪义梅.我国废纸回收利用情况及发展趋势[J].中华纸业.2008, 29(014):10-14.
    [62]李书红.我国废纸再生利用现状及对策[J].河南农业.2008,11:33.
    [63]顾民达.论中国造纸工业废纸回收与应用[J].上海造纸.2005,36(001):3-7.
    [64]田中建,邱化玉.二次纤维的造纸特性[J].黑龙江造纸.2004,(03):14-15.
    [65]邵素英,胡开堂.二次纤维的回用对纤维和成纸性能的影响[J].西南造纸.2001,30(004):16-17.
    [66]Horn R. The Basic Effects of Recycling on Pulp properties[J]. Pap Trade J.1975, 159(7/8):78.
    [67]Chatterjee A, Kortschot M, Roy D et al. Tear and fracture behavior of recycled paper[J]. Tappi journal (USA).1993,76 (7):109.
    [68]Khantayanuwong S. Effects of Beating and Recycling on Strength of Pulp Fibers and Paper[J]. The Kasetsart Journal.2002,36(2):193-199
    [69]Horn R. The Basic Effects of Recycling on Pulp properties [J]. Pap Trade J.1975, 159(7/8):78.
    [70]田中建,邱化玉,吉兴香.二次纤维专用助留助滤剂的研究进展[J].造纸科学与技术.2005,24(001):37-41.
    [71]刘士亮,李世扬.如何提高二次纤维的使用品质[J].中华纸业.2000,21(008):31-31.
    [72]刘士亮.中浓打浆对二次纤维高效利用的重要性[J].黑龙江造纸.2004,32(004):24-25.
    [73]沈葵忠,房桂干.化学预处理提高二次纤维使用品质的研究[J].中华纸业.2003,24(001):34-37.
    [74]姚献平,郑丽萍.再生纸专用化学品的开发与应用[J].造纸化学品.2002,14(001):3-8.
    [75]田中建,邱化玉.二次纤维用湿部化学品的开发与利用[J].湖南造纸.2004,(001):37-39.
    [76]逢锦江,赵传山.二次纤维在造纸中现存问题及解决措施[J].造纸科学与技术.2008,(005):38-40.
    [77]Richard L, Ellis K. Recycled vs virgin fiber characteristics:a comparison[J]. Tappi Journal.1993,76(2):143
    [78]Nachtergaele W. The benefits of cationic starches for the paper industry[J]. Starch-St rke.2006,41(1):27-31.
    [79]Pal S, Mal D, Singh R. Cationic starch:an effective flocculating agent[J]. Carbohydrate polymers.2005,59(4):417-423.
    [80]Howard R, Jowsey C. The effect of cationic starch on the tensile strength of paper[J]. Journal of pulp and paper science.1989,15(6):J225-J229.
    [81]阚兴传,万小红,陈克利.季铵型阳离子淀粉在废纸回用过程中的增强效果[J].纸和造纸.2008,27(001):28-30.b
    [82]刘全,许文才,曹国荣等.阳离子淀粉在再生纸中的应用[J].包装工程.2009,30(001):54-57.
    [83]Pelton R. Model cationic flocculants from the Mannich reaction of polyacrylamide[J]. Journal of Polymer Science:Polymer Chemistry Edition.2003,22(12):3955-3966.
    [84]Kawaguchi H, Hoshino H, Amagasa H et al. Modifications of a polymer latex[J]. Journal of Colloid and Interface Science.1984,97(2):465-475.
    [85]Mullier M, Smets G. Polymers and group interaction. Ⅳ. Hofmann reaction on polyvinylamides[J]. Journal of Polymer Science.2003,23(104):915-930.
    [86]张宏伟,唐爱民,陈港等.阳离子聚丙烯酰胺对二次纤维的增强作用[J].造纸科学与技术.2002,21(6):24-26.
    [87]车大军,龙柱,何秋实.提高废纸箱纸浆抄造包装纸强度的研究[J].国际造纸.2003,22(003):32-34.
    [88]杨开吉,苏文强,沈静.两性聚丙烯酰胺类化学品的合成与应用[J].上海造纸.2008,39(002):44-49.
    [89]陈小燕,卢玉栋,吴宗华.淀粉/PVAm在废纸箱再生浆造纸中的应用[J].造纸科学与技术.2002,(01):25-28.
    [90]吴宗华.聚胺分子量对其与淀粉的复合物在再生浆上作用效果的影响[J].造纸科学与技术.2003,(01):34-36
    [91]吴宗华.抄纸条件对淀粉/聚胺复合物作用效果的影响[J].造纸化学品.2003,(02):12-15.
    [92]刘站,韩卿.改性酚醛树脂对OCC废纸增强作用的研究[J].中国造纸.2007,26(002):72-73.
    [93]游长江,鲁光,莫海等.高分子乳液/蒙脱土杂化物对废纸纤维的增强作用[J].高分子材料科学与工程.2006,22(006):114-117.
    [94]Wagberg L, Forsberg S, Johansson A et al. Engineering of fibre surface properties by application of the polyelectrolyte multilayer concept. Part I:Modification of paper strength[J]. Journal of pulp and paper science.2002,28(7):222-228.
    [95]Tsuchida E, Abe K. Interactions between macromolecules in solution and intermacromolecular complexes [J]. Interactions Between Macromolecules in Solution and Intermacromolecular Complexes.1982:1-119.
    [96]王高升,蔺亚娟,杨甲一等.聚电解质复合物对OCC再生浆强度性能的影响[J].中国造纸学报.2008,23(002):67-70.
    [97]Gill R. Developments in retention aid technology[J]. Paper technology.1991,32(8): 34-41.
    [98]Main S, Simonson P. Retention aids for high-speed paper machines[J]. Tappi journal. 1999,82(4):78-84.
    [99]Aloi F, Trsksak R. Retention in Neutral and Alkaline Papermaking[J]. Chapter.5: 70.
    [100]刘军钛.国内助留剂的现状和发展趋势[J].中华纸业.2007,28(004):51-54.
    [101]刘军钛.助留剂在我国的发展简史[J].中华纸业.2009,(013):100-103.
    [102]王科,袁世炬.造纸助留助滤剂和微粒助留体系的应用和发展[J].湖北造纸.2005,(001):15-18.
    [103]Wiputri Y, Englezos P. Microparticle retention aid systems in mechanical pulp suspensions [J]. Recent Patents on Engineering.2007,1(2):177-186.
    [104]张红杰,胡惠仁.新型的微粒助留体系[J].西南造纸.2001,(006):17-18.
    [105]刘军钛.超微粒助留剂及其应用[J].中华纸业.2009,(006):82-84.
    [106]张久政.聚丙烯酰胺在造纸工业中的应用[J].天津造纸.2002,24(001):23-26.
    [107]陈少平,陈德坚.反应性纸张增强剂——N-氯代聚丙烯酰胺的开发研究[J].中国造纸.2002,3:8-11
    [108]Shao-ping Chen, Hiroo Tanaka. Effects of N-Chloropolyacrylamide on Improvement of Paper Strength[J]. Japan Tappi Journal,1994,48(3):81-88
    [109]千手谅一,(?)滴定法[M].日本:南江堂出版社,1969,7-10
    [110]董炎明.高分子分析手册[M].北京:中国石化出版社,2004,245-289.
    [111]Arcus C. The hofmann reaction with polymethacrylamide[J]. Journal of Polymer Science.2003,8(4):365-370.
    [112]Mullier M, Smets G. Polymers and group interaction. Ⅳ. Hofmann reaction on polyvinylamides[J]. Journal of Polymer Science.2003,23(104):915-930.
    [113]王春燕,吴宗华.聚丙烯酰胺分子量对其Hofmann反应的影响[J].应用化学.2003,20(008):803-805.
    [114]杨开吉,苏文强,沈静等.阳离子聚丙烯酰胺的Hofmann法制备及其助留助滤性能[J].西南造纸.2006,35(003):23-24.
    [115]Tanaka, H. and R.. Hofmann degradation of polyacrylamide[J].Kobunshi Ronbunshu.1976,33:309-316.
    [116]张国运,沈一丁.阳离子乳液型纸张增强剂的制备及应用[J].造纸化学品.2002,14(3):34-36.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700