Suppr超能文献

利用屠宰场废弃物开发水解蛋白基胶合板胶粘剂:水解蛋白化学改性对配方胶粘剂耐湿性的影响。

Development of hydrolysed protein-based plywood adhesive from slaughterhouse waste: effect of chemical modification of hydrolysed protein on moisture resistance of formulated adhesives.

作者信息

Adhikari Birendra B, Kislitsin Vadim, Appadu Pooran, Chae Michael, Choi Phillip, Bressler David C

机构信息

Department of Agricultural, Food and Nutritional Science Faculty of Agricultural, Life and Environmental Sciences, University of Alberta Edmonton AB T6G 2P5 Canada

Department of Chemical and Materials Engineering Faculty of Engineering, University of Alberta Edmonton AB T6G 1H9 Canada.

出版信息

RSC Adv. 2018 Jan 15;8(6):2996-3008. doi: 10.1039/c7ra09952e. eCollection 2018 Jan 12.

Abstract

Specified risk materials (SRM) constitute the proteinaceous waste of slaughterhouses and are currently being disposed off either by incineration or by land filling. Over the last few years, our efforts have focused on developing technology platforms for deployment of this renewable resource for various value-added industrial applications. This report describes a technology for utilization of SRM for the development of an environmentally friendly plywood adhesive with an improved water resistance property. The feedstock (SRM) was first thermally hydrolysed according to a standard protocol, and the hydrolysed protein fragments (peptides) were recovered from the hydrolysate. The recovered peptides were chemically modified through esterification reaction using ethanol, and then chemically crosslinked with polyamideamine-epichlorohydrin (PAE) resin to develop a wood adhesive system. Plywood specimens were then developed using the peptides-PAE resin-based adhesive. The effects of crosslinking time, solid content of the adhesive formulation, ratio of peptides and crosslinking agent in the formulation, and curing conditions of specimen preparation on lap shear strength of resulting plywood specimens were systematically evaluated. Despite the hydrophilic nature of hydrolysed protein fragments, the peptides-PAE resin formulations exhibited remarkable water resistance property after curing. Capping of polar carboxyl groups of peptides by converting them to esters further improved the water resistance property of this adhesive system. Under the optimum conditions of adhesive preparation and curing, the ethyl ester derivative of peptides and PAE resin-based formulations resulted in plywood specimens having comparable dry as well as soaked shear strengths to those of commercial phenol formaldehyde resin.

摘要

特定风险物质(SRM)构成了屠宰场的蛋白质废弃物,目前其处置方式要么是焚烧,要么是填埋。在过去几年里,我们致力于开发技术平台,以便将这种可再生资源应用于各种增值工业用途。本报告描述了一种利用SRM开发具有改进耐水性的环保胶合板胶粘剂的技术。首先按照标准方案对原料(SRM)进行热水解,然后从水解产物中回收水解后的蛋白质片段(肽)。回收的肽通过乙醇酯化反应进行化学修饰,然后与聚酰胺胺 - 环氧氯丙烷(PAE)树脂进行化学交联,以开发一种木材胶粘剂体系。然后使用基于肽 - PAE树脂的胶粘剂制作胶合板样本。系统评估了交联时间、胶粘剂配方的固含量、配方中肽与交联剂的比例以及样本制备的固化条件对所得胶合板样本搭接剪切强度的影响。尽管水解后的蛋白质片段具有亲水性,但肽 - PAE树脂配方在固化后表现出显著的耐水性。通过将肽的极性羧基转化为酯进行封端,进一步提高了该胶粘剂体系的耐水性。在胶粘剂制备和固化的最佳条件下,基于肽的乙酯衍生物和PAE树脂的配方所制成的胶合板样本,其干剪切强度和湿剪切强度与商业酚醛树脂相当。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c7af/9077546/8a38d2ee77f3/c7ra09952e-s1.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验