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首页> 外文期刊>Green chemistry >Towards greener stone shot and stone wool materials: binder systems based on gelatine modified with tannin or transglutaminase
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Towards greener stone shot and stone wool materials: binder systems based on gelatine modified with tannin or transglutaminase

机译:朝着更环保的石头射击和石材羊毛材料:基于明胶的粘合剂系统用单宁或翻谷氨基酶改性

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摘要

In the pursuit of greener stone wool and related materials, the development, study and discussion of strong binder systems for such materials based on gelatine modified with tannin or transglutaminase are presented. The first systematic studies and direct comparisons of gelatines with four different gel strengths modified with 3–50% chestnut tree tannin or transglutaminase are presented and discussed. The development of these non-toxic, biopolymer-based binder systems was achieved using composite bars comprising stone shots with submillimeter diameters as a versatile model for stone wool. Contrary to conventional binder systems, the gelatine-based binder systems were able to cure at ambient temperature, and increased unaged and aged mechanical strengths combined with decreased binder solubility were generally observed as a function of increased gel strength and viscosity of the gelatine component. Several of the compositions resulted in mechanical strengths before and after ageing treatments that were within the range of conventional binder systems. Intriguingly, the gelatine-based binder compositions generally appeared less sensitive towards ageing treatment than conventional binders and in several cases even displayed mechanical strengths after ageing treatments that were at a similar level or better than the corresponding unaged strengths. The developed binder systems thus displayed unprecedented “self-healing” properties. The first DMA studies of cross-sections of the composite bars showed that these binder systems could withstand temperatures well above those required and/or commonly encountered in for example the production and general use of stone wool products. The first SEM studies of the composite bars revealed that the binders created a honeycomb-like structure around the stone shots with several thinner bridging points between adjacent stone shots. The development of this highly promising new generation of bio-inspired binder technologies is expected to enable the manufacture of greener stone wool and related materials through the use of non-toxic and natural components that enable an environmentally improved route to these materials via the reduction of adverse environmental effects such as high energy consumption and emissions during the curing process.
机译:介绍了绿色石棉及相关材料,介绍了基于用单宁或转谷氨酰胺酶改性明胶这种材料的强粘合剂系统的开发,研究和讨论。提出并讨论了具有3-50%栗子树单宁或转谷氨酰胺酶的四种不同凝胶强度的凝胶的第一系统研究和直接比较。使用包含用亚米镜的复合棒实现这些无毒,基于生物聚合物的粘合剂体系的粘合剂系统作为石棉的多功能模型。与传统的粘合剂系统相反,基于明胶基粘合剂体系能够在环境温度下固化,并且通常观察到增加与降低的粘合剂溶解度降低的机械强度增加,作为提高凝胶强度和明胶组分的粘度。几种组合物导致在常规粘合剂系统范围内的老化处理之前和之后的机械强度。有趣的是,基于明胶基粘合剂组合物通常对老化处理的敏感性较小,而不是常规粘合剂,并且在几种情况下甚至在比相应的单位或更好地比相应的预定强度更好地显示机械强度。因此,发达的粘合剂系统显示出前所未有的“自我愈合”属性。复合条的横截面的第一个DMA研究表明,这些粘合剂系统可以承受高于这些所需的温度和/或通常遇到的石棉产品的生产和一般使用。复合条的第一个SEM研究表明,粘合剂在围绕石头射击周围产生蜂窝状结构,在相邻的石头射击之间具有几个较薄的桥接点。这一高度承诺新一代的生物启发性活化技术有望通过使用无毒和天然成分来制造更绿色的石棉和相关材料,这些组成部分通过减少来实现对这些材料的环境改善治疗过程中的高能耗和排放等不利的环境影响。

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