用电弧炉炉渣替代炭黑制备新型可持续橡胶复合材料

IF 6.4 3区 环境科学与生态学 Q2 ENERGY & FUELS
Anna Gobetti , Giovanna Cornacchia , Silvia Agnelli , Mattia Ramini , Giorgio Ramorino
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引用次数: 0

摘要

炭黑(CB)是使用最广泛的橡胶补强填料。如今,人们对这种传统的石油基填料有几种担忧:一方面,它对环境的影响巨大,其生产过程不再具有可持续性;另一方面,它的价格每年都在上涨。因此,人们正在研究可持续的替代填料。本研究将钢铁工业的主要废弃物,即电弧炉(EAF)产生的钢渣,作为丁腈橡胶(NBR)基体的非常规填料进行研究。根据重金属浸出情况,对钢渣进行了表征,以确保其作为填料的安全再利用。通过流变参数、机械性能、佩恩效应和物理化学性能对矿渣填充化合物进行了表征,并与 CB 填充化合物进行了比较,以研究填料与基体之间的相互作用。结果表明,在交联动力学方面,EAF 矿渣填充的丁腈橡胶与 CB 填充的丁腈橡胶相当;在相同的硬度水平下进行比较时,粘度、刚度和断裂伸长率相当;在相同的填充物体积分数下进行比较时,压缩永久变形和应力松弛相似。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A novel and sustainable rubber composite prepared from electric arc furnace slag as carbon black replacement

A novel and sustainable rubber composite prepared from electric arc furnace slag as carbon black replacement

Carbon black (CB) is the most widely used reinforcing filler for rubber. Nowadays there are several concerns regarding this traditional petroleum-based filler: on one side its environmental footprint is enormous and its production process is no more sustainable and on the other side its price increases annually. For these reasons, sustainable alternative fillers are being studied. In the present research the main waste of the steel industry, namely the steel slag from electric arc furnace (EAF), is investigated as non-conventional filler for a nitrile butadiene rubber matrix (NBR). The slag has been characterized to ensure its safe reuse as filler according to the heavy metals leaching. The slag filled compounds have been characterized and compared to CB filled compounds, in terms of processability by rheometric parameters, mechanical properties, Payne effect, and physicochemical properties to investigate the filler-matrix interaction. From the obtained results, it was shown that EAF slag-filled NBRs are comparable to CB filled NBRs in terms of crosslink kinetics and, when compared at the same hardness level, are comparable in terms of viscosity, stiffness, and elongation at break, while when compared at the same filler volume fraction are similar in terms of compression set and stress relaxation.

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来源期刊
Carbon Resources Conversion
Carbon Resources Conversion Materials Science-Materials Science (miscellaneous)
CiteScore
9.90
自引率
11.70%
发文量
36
审稿时长
10 weeks
期刊介绍: Carbon Resources Conversion (CRC) publishes fundamental studies and industrial developments regarding relevant technologies aiming for the clean, efficient, value-added, and low-carbon utilization of carbon-containing resources as fuel for energy and as feedstock for materials or chemicals from, for example, fossil fuels, biomass, syngas, CO2, hydrocarbons, and organic wastes via physical, thermal, chemical, biological, and other technical methods. CRC also publishes scientific and engineering studies on resource characterization and pretreatment, carbon material innovation and production, clean technologies related to carbon resource conversion and utilization, and various process-supporting technologies, including on-line or off-line measurement and monitoring, modeling, simulations focused on safe and efficient process operation and control, and process and equipment optimization.
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