Please wait a minute...
档案学研究  2023, Vol. 37 Issue (1): 140-148    DOI: 10.16065/j.cnki.issn1002-1620.2023.01.017
  档案安全保障 本期目录 | 过刊浏览 |
国内外脱酸技术研究:体系构建与趋势探索
于晨
中国人民大学信息资源管理学院 北京 100872
Research on Deacidification Technology at Home and Abroad: System Construction and Trend Exploration
Chen YU
School of Information Resource Management, Renmin University of China, Beijing 100872
全文: HTML    PDF(1337 KB)  
输出: BibTeX | EndNote (RIS)      
摘要: 

脱酸技术的方法、效果、质量等是纸质文献保护研究的核心问题,当前学界缺少对脱酸技术研究现状的整体回顾。本研究采用文献研究法和内容分析法,依据布拉德福定律确定文献样本148篇,通过对内容的编码分析,将其分为机理、效果、产品、方式等四个研究主题,并依据“机理-技术研发—设备应用—评估”脱酸流程,构建脱酸技术研究体系。研究发现,当前脱酸技术研究存在基础理论滞后于应用研究、无水纳米技术异军突起、重研发而轻评估的现象。基于此,本研究提出自主研发脱酸新技术、脱酸技术与多种修复技术集成化、健全现有理论与应用研究体系的建议,为我国脱酸技术研究发展提供参考。

关键词 脱酸技术体系构建研究现状发展趋势    
Abstract

The method, effect, and quality of deacidification technology are the key issues of paper preservation research. Currently, a comprehensive review of the research status of deacidification technology is still lacking. Both the method of literature research and the method of content analysis are used in this study, and 148 literature samples are determined according to Bradford's Law. Through coding and analysis of the content, the literature samples are divided into four research topics, such as mechanism, effect, product, and method. According to the deacidification process of "mechanism-technology research and development-equipment application-evaluation", the research system of deacidification technology is established. The results indicate that the basic theory lags behind the application research, non-aqueous nanotechnology emerges as a new force, and the research and development is emphasized but the evaluation is neglected. Based on this, independent research and development of new deacidification technology, integration of deacidification technology and various conservation technologies, and improvement of the existing theoretical and applied research system are put forward, which provide a reference for the research and development of deacidification technology in China.

Key wordsdeacidification technology    system construction    research status    development tendency
出版日期: 2024-02-22
引用本文:

于晨. 国内外脱酸技术研究:体系构建与趋势探索[J]. 档案学研究, 2023, 37(1): 140-148.
Chen YU. Research on Deacidification Technology at Home and Abroad: System Construction and Trend Exploration. Archives Science Study, 2023, 37(1): 140-148.

链接本文:

http://journal12.magtechjournal.com/Jwk_dax/CN/10.16065/j.cnki.issn1002-1620.2023.01.017      或      http://journal12.magtechjournal.com/Jwk_dax/CN/Y2023/V37/I1/140

[1] Zervos S, Alexopoulou I. Paper conservation methods:a literature review[J]. Cellulose, 2015(5):2859-2897.
[2] 何晓晶, 孙星光. 纸质档案脱酸技术研究现状与启示[J]. 中国档案, 2020(6):68-70.
[3] Baty J W, Maitland C L, Minter W, et al. Deacidification for the conservation and preservation of paper-based works:a review[J]. BioResources, 2010(3):1955-2023.
[4] 朱庆华, 陈铭.信息分析基础、 方法及应用[M]. 北京: 科学出版社, 2004:100-101.
[5] 邱均平, 王曰芬, 颜端武. 内容分析法研究与发展综述[J]. 情报学进展, 2006:1-45.
[6] 郭莉珠. 档案保护技术学教程[M]. 北京: 中国人民大学出版社, 2008:330.
[7] 刘家真. 去酸技术和去酸方式的评价及选择[J]. 档案学通讯, 2020(2):95-103.
[8] Jablonský M, Katuščák S, Holúbková S, et al. The effect of acetic and formic acid formation during accelerated ageing on embrittlement of newsprint paper[J]. Restaurator, 2011(4):318-347.
[9] Potthast A, Ahn K, Becker M, et al. Acetylation of cellulose-another pathway of natural cellulose aging during library storage of books and papers[J]. Carbohydrate Polymers, 2022, 287:119323.
[10] Jablonsky M, Hrobonova K, Katuscak S, et al. Formation of acetic and formic acid in unmodified and modified papers during accelarated ageing[J]. Cellulose Chemistry and Technology, 2012(5):331-340.
[11] Banik G. Discoloration of green copper pigments in manuscripts and works of graphic art[J]. Restaurator, 1989(2):61-73.
[12] Poggi G, Giorgi R, Toccafondi N, et al. Hydroxide nanoparticles for deacidification and concomitant inhibition of iron-gall ink corrosion of paper[J]. Langmuir, 2010(24): 19084-19090.
[13] Sanna C, Sodo A, Laguzzi G, et al. Tert-butyl amine borane complex:an unusual application of a reducing agent on model molecules of cellulose based materials[J]. Journal of Cultural Heritage, 2009(3):356-361.
[14] Botti L, Mantovani O, Ruggiero D. Calcium phytate in the treatment of corrosion caused by iron gall inks:effects on paper[J]. Restaurator, 2005(1):44-62.
[15] Botti L, Mantovani O, Orrù M, Ruggiero D. The effect of sodium and calcium ions in the deacidification of paper: a chemo-physical study using thermal analysis[J]. Restaurator, 2006(1):9-23.
[16] Areal Guerra, Rogelio, et al. The effect of aqueous solutions of alkoxypolyethyleneglycols(ALKPG)on the mechanical properties of paper[J]. Restaurator, 1998(4):187-211.
[17] 张美芳, 娄文婷. 针对档案纸张酸化与老化机理的实验论证[J]. 档案学通讯, 2019(5):74-78.
[18] 刘晓春, 童雁, 姬凤英. 铁盐墨水字迹档案自毁成因和抢救修复研究[J]. 中国档案, 2015(3):62-63.
[19] 于一平, 张旭, 张昊诚, 等. 铁基与铜基颜料对纸质文物的化学腐蚀降解[J]. 文物保护与考古科学, 2021(6):52-60.
[20] Piovesan C, Fabre-Francke I, Dupont A L, et al. The impact of paper constituents on the efficiency of mechanical strengthening by polyaminoalkylalkoxysilanes[J]. Cellulose, 2017(12):5671-5684.
[21] Wójciak A. Deacidification of paper with Mg(OH)2 nanoparticles:the impact of dosage on process effectiveness[J]. Wood Res, 2016(6):937-950.
[22] ZappalàM P. Conservation of acid paper:studies carried out in the chemistry laboratory of the Istituto Centrale per la Patologia del Libro[J]. Restaurator, 1997(1):12-24.
[23] Kelly G B, Fowler S. Penetration and placement of alkaline compounds in solution-deacidified paper[J]. Journal of the American Institute for Conservation, 1978(2):33-43.
[24] Daniel F, Flieder F, Juchauld F, et al. Study of the homogeneity of mass deacidification treatments using atomic absorption spectrometry[J]. Studies in Conservation, 1994(sup2):217-222.
[25] Bukovský V, Trnková M, Nemeček P, et al. Light-induced oxidation of newsprint sheets in a paper block. Part 1:colour changes in paper[J]. Restaurator, 2006(2):114-130.
[26] Stephens C H, Whitmore P M, Morris H R, et al. Assessing the risks of alkaline damage during deacidification treatments of oxidized paper[J]. Journal of the American Institute for Conservation, 2009(3):235-249.
[27] 童丽媛, 鲁钢, 孙大东, 等. 不同年代凸版纸脱酸前后耐久性的比较[J]. 文物保护与考古科学, 2015(2):47-51.
[28] Giorgi R, Dei L, Ceccato M, et al. Nanotechnologies for conservation of cultural heritage:paper and canvas deacidification[J]. Langmuir, 2002(21):8198-8203.
[29] Stefanis E, Panayiotou C. Deacidification of documents containing iron gall ink with dispersions of Ca(OH)2 and Mg(OH)2 nanoparticles[J]. Restaurator, 2010(1):19-40.
[30] Souguir Z, Dupont A L, Fatyeyeva K, et al. Strengthening of degraded cellulosic material using a diamine alkylalkoxysilane[J]. RSC advances, 2012(19):7470-7478.
[31] Yanjuan W, Yanxiong F, Wei T, et al. Preservation of aged paper using borax in alcohols and the supercritical carbon dioxide system[J]. Journal of Cultural Heritage, 2013(1): 16-22.
[32] Li Q, Xi S, Zhang X. Deacidification of paper relics by plasma technology[J]. Journal of Cultural Heritage, 2014(2): 159-164.
[33] Saoud K M, Saeed S, Al Soubaihi R, et al. Application of Mg(OH)2 nanosheets for conservation and restoration of precious documents and cultural archives[J]. BioResources, 2018(2):3259-3274.
[34] Jia Z, Yang C, Zhao F, et al. One-step reinforcement and deacidification of paper documents:application of lewis base-chitosan nanoparticle coatings and analytical characterization[J]. Coatings, 2020(12):1226.
[35] Völkel L, Prohaska T, Potthast A. Combining phytate treatment and nanocellulose stabilization for mitigating iron gall ink damage in historic papers[J]. Heritage Science, 2020(1):1-15.
[36] 王鹤云, 鲁钢, 张金萍, 等. 纳米氢氧化镁应用于纸质文物的脱酸[J]. 中国造纸, 2012(3):36-38.
[37] 谭伟, 黄宇嘉, 程丽芬, 等. 四硼酸锂用于纸张脱酸研究[J]. 中国造纸, 2014(6):40-43.
[38] 张艳霞, 吕淑贤. 碳酸氢钠用于古籍水相脱酸的研究[J]. 中国造纸, 2022(1):45-49.
[39] 黄晓霞, 陈玲. 非水相纳米MgO脱酸技术对档案字迹的影响探析[J]. 档案学通讯, 2020(3):80-87.
[40] 申永峰, 李振兴, 侯爱芹, 等. 氨基硅烷偶联剂用于宣纸脱酸加固研究[J]. 中国造纸, 2018(4):45-48.
[41] 梁兴唐, 凡晓宇, 胡道道. 乙基纤维素稳定纳米Mg(OH)2 乙醇分散液用于纸质档案的加固脱酸[J]. 档案学通讯, 2017(5):80-84.
[42] Cheradame H, Ipert S, Rousset E. Mass deacidification of paper and books. I:study of the limitations of the gas phase processes[J]. Restaurator, 2003(4):227-239.
[43] Ipert S, Rousset E, Cheradame H. Mass deacidification of papers and books Ⅲ:study of a paper strengthening and deacidification process with amino alkyl alkoxy silanes[J]. Restaurator, 2005(4):250-264.
[44] Banik G. Mass deacidification technology in Germany and its quality control[J]. Restaurator, 2005(1):63-75.
[45] Wagner B, Bulska E, Sobucki W. Magnesium distribution in paper subjected to deacidification investigated by means of laser ablation inductively coupled plasma mass spectroscopy[J]. Journal of Cultural Heritage, 2008(1):60-65.
[46] 于书大, 张金萍, 郑冬青, 等. 图书脱酸保护研究[J]. 中国造纸, 2016(11):14-18.
[47] 孙洪鲁. 纸质档案去酸工艺及设备研制[J]. 中国档案, 2018(7):64-65.
[1] 李颖, 魏歌. 从历届全国档案工作者年会看我国档案事业发展趋势[J]. 档案学研究, 2019, 33(4): 98-102.
[2] 牛力, 杜丽华, 韩小汀. 从档案学核心期刊看国内档案学研究现状及发展趋势[J]. 档案学研究, 2018, 32(3): 4-9.
[3] 张若楠. 从宋代文化对图书档案事业发展的影响[J]. 档案学研究, 2016, 30(4): 73-76.
[4] 王晴. 大学科语境下档案学的研究现状及趋势预测——基于多维视角的统计分析[J]. 档案学研究, 2013, 27(3): 8-15.
[5] 安小米, 张维, 孙舒扬. 电子文件管理的国际进展、发展趋势与未来方向[J]. 档案学研究, 2012, 26(3): 82-86.
[6] 肖文建, 戚红岩. 重大自然灾害中档案文献保护研究现状及述评[J]. 档案学研究, 2010, 24(5): 71-74.
[7] 李宝玲. 我国档案资源整合研究现状分析[J]. 档案学研究, 2010, 24(2): 31-33.
[8] 吕元智. 我国公共档案馆服务绩效评价研究现状分析[J]. 档案学研究, 2010, 24(2): 40-44.