欢迎登录材料期刊网

材料期刊网

高级检索

首先简述了发展秸秆建材的必要性、生产工艺,接着重点阐述了秸秆建材的特点和优势:(1)秸秆建材保温隔热性能良好,其建筑物保温性好节能效果显著,并具有抗震防火隔音和有害挥发物少的特色;(2)秸秆产量大、生产周期短,生产成本低,同时秸秆建材具有应用广泛施工便捷的特点,因此推广秸秆建材不仅环保护林而且具有很好的社会和经济效益。最后指出了发展秸秆建材的瓶颈所在,提出了利用仿生手法加强研发,开发隔热和环保功能材料,通过完善收购和建立产品标准、加强民众普及和政府宣传促进秸秆建材发展的若干具体措施。

This essay first briefly introduced the necessity of developing straw-based building material and the production process.Then,characteristics and advantages of straw-based building materials were emphasized:(1)it has good thermal insulation performance so that buildings constructed by it could perform well in thermal insulation and energy saving.It also harbors properties like earthquake-resistance,fire-resistance,noise-insula-tion and it volatiles less harmful substances;(2)the output of straw is large and it has short production circle and low cost.Meanwhile,straw is widely used and it provides convenience for construction.Thus,propelling straw-based building materials is not only eco-friendly but also provided with attractive social and economic ben-efits.Finally,where lies the bottleneck of developing straw-based building materials was pointed out and some specific methods were put forward such as beefing up research and development of heat-insulation and environ-mentally friendly materials with the help of bionic tactics of propaganda along with promoting its development by perfecting purchase,setting up product standards,strengthening the public popularization and propaganda.

参考文献

[1] 傅志前;朱兰玺.国外秸秆建筑的产生与发展研究[J].工业建筑,2012(2):33-36.
[2] 于文吉;马红霞;王天佑;李同军;来宽清.农作物秸秆人造板发展现状与应用前景[J].木材工业,2005(4):5-8.
[3] 李凯夫;彭万喜.国内外秸秆制人造板的研究现状与趋势[J].世界林业研究,2004(2):34-36.
[4] 成果.秸秆建筑的发展历史[J].艺术探索,2012(04):101-104.
[5] 陈怡.国内秸秆人造板发展探析[J].林产工业,2013(04):9-11,16.
[6] 陈琳;沈文星;周定国.我国秸秆人造板工业的发展现状与对策[J].福建林业科技,2006(3):166-168.
[7] 袁斌;曹宝珠;段文峰.秸秆草砖在建筑中的应用与研究现状分析[J].吉林建筑大学学报,2014(3):19-22.
[8] 严文莲;刘端阳;孙燕;魏建苏;濮梅娟.秸秆焚烧导致的江苏持续雾霾天气过程分析[J].气候与环境研究,2014(2):237-247.
[9] Camilo Mancera;Nour-Eddine El Mansouri;Maria Angels Pelach.Feasibility of incorporating treated lignins in flberboards made from agricultural waste[J].Waste Management,201210(10):1962-1967.
[10] Mehmet Akguel.Suitability of stinging nettle (Urtica dioica L.) stalks for medium density fiberboards production[J].Composites, Part B. Engineering,20131(1):925-929.
[11] A.H. Juliana;M.T. Paridah;S. Rahim;I. Nor Azowa;U.M.K. Anwar.Properties of particleboard made from kenaf (Hibiscus cannabinus L) as function of particle geometry[J].Materials & design,2012Feb.(Feb.):406-411.
[12] Li XianJun;Cai, Z. Y.;Winandy, J. E.;Basta, A. H..Effect of oxalic acid and steam pretreatment on the primary properties of UF-bonded rice straw particleboards.[J].Industrial Crops and Products,20113(3):665-669.
[13] D.Z. Li;H.X. Chen;Eddie C.M. Hui;J.B. Zhang;Q.M. Li.A methodology for estimating the life-cycle carbon efficiency of a residential building[J].Building and environment,2013Jan.(Jan.):448-455.
[14] Li, XJ;Cai, ZY;Winandy, JE;Basta, AH.Selected properties of particleboard panels manufactured from rice straws of different geometries[J].Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies,201012(12):4662-4666.
[15] H.A. Aisyah;M.T. Paridah;M.H. Sahri;U.M.K. Anwar;A.A. Astimar.Properties of medium density fibreboard (MDF) from kenaf (Hibiscus cannabinus L.) core as function of refining conditions[J].Composites, Part B. Engineering,20131(1):592-596.
[16] 言智钢;盛振湘.秸秆人造板发展的瓶颈分析[J].中国人造板,2013(4):1-4.
[17] B.S. Ndazi;S. Karlsson;J.V. Tesha.Chemical and physical modifications of rice husks for use as composite panels[J].Composites, Part A. Applied science and manufacturing,20073(3):925-935.
[18] 周晓燕;周定国;施登军.微波处理对稻草表面特性的影响[J].林产工业,2005(5):28-30,42.
[19] Han, Guangping;Deng, James;Zhang, Shuyin;Bicho, Paul;Wu, Qinglin.Effect of steam explosion treatment on characteristics of wheat straw[J].Industrial Crops and Products,20101(1):28-33.
[20] 付顺鑫;韩广萍;程万里.蒸汽爆破改性处理对麦秸板性能的影响[J].东北林业大学学报,2011(4):99-100,104.
[21] 张洋;江华;周兆兵;贾翀;陈曦曦;高翔.酶处理对麦秸表面胶合性能的影响[J].木材工业,2008(1):15-18.
[22] 苏芸;刘珊杉;何金存.农作物秸秆制备人造板的研究现状与发展趋势[J].林业机械与木工设备,2012(9):7-9.
[23] Taghi Tabarsa;Shayeste Jahanshahi;Alireza Ashori.Mechanical and physical properties of wheat straw boards bonded with a tannin modified phenol-formaldehyde adhesive[J].Composites, Part B. Engineering,20112(2):176-180.
[24] Halvarsson Sceren;Edlund HcEkan;Norgren Magnus.Properties of medium-density fibreboard (MDF) based on wheat straw and melamine modified urea formaldehyde (UMF) resin[J].Industrial Crops and Products,20081(1):37-46.
[25] 付彬彬;冯勇;晋强;史阳光.两种密度棉花秸秆草砖在不同受压方式下的力学性能试验研究[J].新疆农业大学学报,2014(3):236-239.
[26] Steven Goodhew;Richard Griffiths.Sustainable earth walls to meet the building regulations[J].Energy and buildings,20055(5):451-459.
[27] Yao Fei;Wu Qinglin;Lei Yong;Xu Yanjun.Rice straw fiber-reinforced high-density polyethylene composite: Effect of fiber type and loading[J].Industrial Crops and Products,20081(1):63-72.
[28] Khadijeh Azizi;Taghi Tabarsa;Alireza Ashori.Performance characterizations of particleboards made with wheat straw and waste veneer splinters[J].Composites, Part B. Engineering,20117(7):2085-2089.
[29] 马鸣图;易红亮;路洪洲;万鑫铭.论汽车轻量化[J].中国工程科学,2009(9):20-27.
[30] 刘金鹏;鞠美庭;刘英华;王平;吴文韬;佟树敏.中国农业秸秆资源化技术及产业发展分析[J].生态经济,2011(5):136-141.
[31] 丁铭;刘志宏;丁光远.江苏省秸秆焚烧污染现状及防治对策[J].环境监测管理与技术,2012(5):72-74.
[32] 左艳.淮安市秸秆焚烧的现状与防治对策研究[J].安徽农学通报,2013(6):94-95.
[33] 周定国.关于稻秸秆人造板的几个问题[J].林产工业,2008(01):3-6,12.
[34] 罗岚.秸杆资源循环利用效益研究[J].四川师范大学学报(自然科学版),2011(06):911-914.
[35] Halvarsson, Sceren;Edlund, HcEkan;Norgren, Magnus.Manufacture of non-resin wheat straw fibreboards[J].Industrial Crops and Products,20092/3(2/3):437-445.
[36] Li, X;Li, YH;Zhong, ZK;Wang, DH;Ratto, JA;Sheng, KC;Sun, XS.Mechanical and water soaking properties of medium density fiberboard with wood fiber and soybean protein adhesive[J].Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies,200914(14):3556-3562.
[37] Ciannamea, EM;Stefani, PM;Ruseckaite, RA.Medium-density particleboards from modified rice husks and soybean protein concentrate-based adhesives[J].Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies,20102(2):818-825.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%