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In vitro and environmental toxicity of reduced graphene oxide as an additive in automotive lubricants

机译:体外和环境毒性降低石墨烯氧化物作为添加剂在汽车润滑剂

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摘要

Despite the ground-breaking potential of nanomaterials, their safe and sustainable incorporation into an array of industrial markets prompts a deep and clear understanding of their potential toxicity for both humans and the environment. Among the many materials with great potential, graphene has shown promise in a variety of applications; however, the impact of graphene based products on living systems remains poorly understood. In this paper, we illustrate that via exploiting the tribological properties of graphene nanosheets, we can successfully improve both the frictional behaviour and the anti-wear capacity of lubricant oil for mechanical transmission. By virtue of reducing friction and enhancing lubricant lifetimes, we can forecast a reduction in friction based energy loss, in addition to a decrease in the carbon footprint of vehicles. The aforementioned positive environmental impact is further strengthened considering the lack of acute toxicity found in our extensive in vitro investigation, in which both eukaryotic and prokaryotic cells were tested. Collectively, our body of work suggests that by the use of safe nanoadditives we could contribute to reducing the environmental impact of transportation and therein take a positive step towards a more sustainable automotive sector. The workflow proposed here for the evaluation of human and environmental toxicity will allow for the study of nanosized bare graphene material and can be broadly applied to the translation of graphene-based nanomaterials into the market.
机译:尽管的突破性的潜力纳米材料,他们的安全、可持续发展工业市场的合并为一个数组提示深和清晰的理解对人类和潜在毒性环境。潜力,石墨烯所承诺的各种各样的应用程序;石墨烯产品基于生命系统仍然存在知之甚少。通过利用摩擦学性能石墨烯nanosheets,我们可以成功提高摩擦行为和润滑油的抗磨能力机械传动。摩擦和提高润滑剂的有生之年,我们可以预测基于减少摩擦的能量损失,除了减少碳车辆的足迹。积极的环境影响是进一步加强考虑严重的缺乏在我们广泛的体外毒性发现调查,在真核和原核细胞进行了测试。的研究表明,使用安全nanoadditives我们可以有助于减少交通和环境的影响其中一个更积极的一步可持续发展的汽车行业。这里提出人类和评估环境毒性研究将允许纳米的石墨烯材料,可以广泛应用于翻译石墨烯纳米材料进入市场。

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