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| 1 | 单宁基木材胶黏剂的研究进展显示文摘在常见凝缩类单宁结构特征基础上,讨论了单宁与醛的反应机理,总结了单宁基木材胶黏剂存在的问题及其解决办法,并综述了单宁基木材胶黏剂的应用研究进展。 | 雷洪 杜官本 A Pizzi | 2008 | 林产工业2008,35,6: | 23 |
| 2 | 乙二醛对蛋白基胶黏剂结构及性能的影响显示文摘选用2种典型蛋白原料大豆粉及谷蛋白粉,通过刨花板内结合强度性能测试及CP-MAS 13CNMR分析,对比乙二醛化蛋白基胶黏剂与甲醛化蛋白基胶黏剂的性能特征。结果表明,乙二醛与蛋白分子之间发生了化学反应,但由于其交联程度不及甲醛化蛋白胶黏剂,导致其胶接性能不及后者,若提高pMDI等交联剂的添加量,乙二醛化蛋白胶黏剂也可用于人造板制备。 | 雷洪 杜官本 Pizzi A 周晓剑 | 2011 | 西南林学院学报2011,31,2: | 17 |
| 3 | Organosolv Lignin for Non-Isocyanate Based Polyurethanes (NIPU) as Wood Adhesive显示文摘A non-isocyanate-based polyurethane(NIPU)wood adhesive was produced from organosolv lignin,which is a bio-sourced raw material,available in large quantities and produced as a by-product of the paper industry.The formulation of this new lignin-based NIPU adhesive,which is presented,was chemically characterised by Matrix-Assisted Laser Desorption Ionization Time of Flight(MALDI ToF)mass spectrometry and by Fourier Transform Infra-Red(FTIR)spectrometry analyses.The oligomers formed were determined and showed that the three species involved in the NIPU adhesive preparation were formed by the co-reaction of the three reagents used:lignin,dimethyl carbonate,and hexamethylene diamine.Linear and branched structures were both identi-fied.Mechanical properties of the adhesive were determined using the Automated Bonding Evaluation System(ABES)and internal bond(IB)strength test of the laboratory particleboard bonded with it.The adhesive has shown satisfactory mechanical properties after hot pressing at 230℃.Such a temperature is used industrially in the most modern particleboard factories,but since it is hardly feasible for more conventional wood bonding equipment,the reactivity of the NIPU adhesive was successfully increased with the addition of a small percentage of a silane coupling agent.With the addition of the silane,the proposed NIPU adhesive could also be used at a hot-pressing temperature lower than 200℃. | Jaša Saražin Antonio Pizzi Siham Amirou Detlef Schmiedl MilanŠernek | 2021 | Journal of Renewable Materials2021,9,5: | 4 |
| 4 | 植物鞣剂/MUF树脂鞣制时皮革的耐光性及鞣剂的抗老化性显示文摘制备了一种蜜胺含量相对较低的新型磺化蜜胺-脲-甲醛(MUF)缩聚树脂,此树脂与不同的天然植物鞣质复合鞣革,成革具有和铬鞣革一样良好的性能。提出了不同的鞣质/MUF树脂复合物鞣制的皮革,在长时间的紫外线辐射下,以革色的变化作为老化时间的函数,建立并阐明了此函数的预测模型和公式。此函数不仅与固态纯鞣质的抗老化能力有关,还与其在皮革内总体的抗老化能力有关。 | B George A Pizzi C Simon M C Triboulot 张业聪 付丽红 | 2007 | 中国皮革2007,36,15: | 2 |
| 5 | Curing Kinetics of Tannin and Lignin Biobased Adhesives Determined by DSC and ABES显示文摘The curing process of two biobased adhesives:pine tanninhexamine(TH)and organosolv lignin non-isocyanate polyurethane(NIPU),suitable for interior nonstructural use,were compared with commercial urea-formaldehyde(UF)adhesive.Changes in chemical structure before and after the curing process were observed with Fouriertransform infrared spectroscopy(FTIR).The process of adhesive curing was monitored with differential scanning calorimetry(DSC)and the automated bonding evaluation system(ABES).Both DSC and ABES measurements confirmed UF as the fastest and NIPU as the slowest curing adhesive observed.Taking into account the ABES results,the optimal pressing parameters for the TH adhesive would be 4 min at 175℃,for the NIPU adhesive 7 min at 200℃and for the UF 1.5 min at 100℃.Strong linear correlation was observed between mechanical and chemical curing for the UF and NIPU adhesives,whereas lower correlation was observed for the TH adhesive.At all observed adhesives,the DSC measurements were underestimating the curing process determined by ABES in the first part and overestimating it at the end.The underestimation was the most evident with the TH adhesive and the less with the UF adhesive.When comparing the uncured and cured FTIR spectra of all three types of adhesives,a drastic decrease in the characteristic band of-OH groups at 3330–3400 cm^(−1)and an increase in the signal intensity at 2920 cm^(−1)of aliphatic-CH2-groups were observed.For the UF adhesive,the C=O stretching frequency has shifted from 1632 cm^(−1)for uncured to three different bands at 1766,1701,and 1655 cm^(−1)for cured UF.The sharp band for phenolic alcohols at 1236 cm^(−1)of C–O stretch and hydroxyl O–H functional group at 1009 cm^(−1)and at 684 cm^(−1)of uncured TH adhesive diminished during curing,which indicates that a crosslinking reaction occurs via-OH groups.The peak of the C=O group of urethane bridges at 1697 cm^(−1)for uncured NIPU shifted to lower wavenumber at 1633 cm^(−1)for cured NIPU. | Jaša Saražin Ida Poljanšek Antonio Pizzi MilanŠernek | 2022 | Journal of Renewable Materials2022,10,8: | 2 |
| 6 | Synthesis-Structure-Performance Relationship of Cocondensed Phenol-Urea-Formaldehyde Resins by MALD1-ToF andl3CNMR显示文摘 | Du G B Lei H Pizzi A | 2008 | JAppIPolymSci2008,110,2: | 1 |
| 7 | Recent developments in eco-efficient bio-based adhesives for wood bonding:opportunities and issues 显示文摘 | Pizzi A | 2006 | J Adhesion Sei Teehnol2006,20,8: | 1 |
| 8 | Influence of grain di- rection and pre-heating on linear wood welding 显示文摘 | Onrrani P Mansouri H R Pizzi A | 2010 | European Journal of Wood and Wood Products2010,68,1: | 1 |
| 9 | Dependance on the adhesive formulation of the upgrading of MUF particleboard adhesives and decrease of melamine content by buffer and additives显示文摘 | Zanetti M Pizzi A | 2004 | Holz als Roh-und Werkstoff2004,62,6: | 1 |
| 10 | Uron and uron-urea-formaldehyde resins显示文摘 | Soulard C Kamoun C Pizzi A | 1999 | Journal of Applied Polymer Science1999,72,2: | 1 |
| 11 | Theory and practice of the preparation of how formaldehyde emission UF adhesive显示文摘 | PIZZI A | 1994 | Holzforschung1994,,48: | 1 |
| 12 | Characterisation of thermally modfied wood: molecular reasons for wood performance improvement显示文摘 | Tjeerdsma BF Boonstra M Pizzi A | 1998 | Holz als Roh-Und Werkstoff1998,56,3: | 1 |
| 13 | Wood welding: A chal- lenging ahemative to conventional wood gluing显示文摘 | Leban J M Pizzi A Properzi M | 2005 | Scandinavian Journal of Forest Research2005,20,: | 1 |
| 14 | Flexible-elastic eo- polymerized polyurethane-tannin foams显示文摘 | Basso M C Giovando S Pizzi A | 2014 | Journal of Ap- plied Polymer Science2014,131,40: | 1 |
| 15 | Alkaline PF Resins Linear Ex- tension by Urea Condensation with Hydroxybenzylalcohol Groups 显示文摘 | Pizzi A Stephanou A Antunes I | 1993 | Journal of Applied Polymer Science1993,50,12: | 1 |
| 16 | Phenol-formaldehyde wood adhesive under very alkaline conditions显示文摘 | PIZZI A | 1994 | Holzforschung1994,48,2: | 1 |
| 17 | On the correlation equations of liquid and solid 13C-NMR,thermomechanical analysis,Tg,and network strength in polycondensation resins显示文摘 | Pizzi A | 1999 | Journal of Applied Polymer Science1999,71,10: | 1 |
| 18 | Dental, gingival and periodontal health indices in patients with inherited bleeding disorders 显示文摘 | Ugolotti T G Pizzi S Tagliaferri A | 2004 | Haemophilia2004,10,4: | 1 |
| 19 | Wheat straw particleboard bonding improvements by enzyme pretreatment显示文摘 | Zhang Y Lu X Pizzi A Delmotte L | | 0,,01: | 1 |
| 20 | Influenee of nanoelay on phenol- formaldehyde and phenol- urea- formaldehyde resins for wood adhesives显示文摘 | LEI H DUG B PIZZI A | 2010 | Journal of Adhesion Science & Technology2010,24,810: | 1 |