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Decomposition of carboxymethyl cellulose based on nano-knife principle
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作者 Qin Zhou Li Hong +1 位作者 Marcello Di Bonito Gang Pan 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2019年第6期93-98,共6页
The traditional degradation of organic pollutants is based on the sacrifice of chemical or biological reagents. In this study, a purely physical technique was developed to break the chemical bonds and consequently dec... The traditional degradation of organic pollutants is based on the sacrifice of chemical or biological reagents. In this study, a purely physical technique was developed to break the chemical bonds and consequently decompose macromolecules in aqueous solution. Assisted with a high-speed mechanical blade, refined quartz sand grains with particularly sharp nanoscale edges can act as ‘nano-knives', which are able to cut the long chain of carboxymethyl cellulose(CMC, as a model molecule). High performance size exclusion chromatography measurements evidenced that the original CMC molecules(41,000 Da) were decomposed into a series of smaller molecules(460, 1000, 2200, 21,000, 27,000 and 31,000 Da). Consequently, the initial viscosity of the CMC solution(2 g/L) rapidly decreased by approximately 50% after 3 min treatment by the nano-knife materials along with the mechanical blade. Fourier transform infrared(FTIR) spectra indicated that the original functional groups were still present and new functional groups were not produced after shearing. The intensity of the main functional groupβ-1-4-glycosidic bond(wavenumber 1062 cm-1) was observed to markedly decrease after shearing. These results indicated that the long-chain CMC was cleaved into short-chain CMC. A degradation mechanism was proposed whereby the cutting force generated by the rapid motion of the nano-knives may be responsible for the breakage of β-1-4-glycosidic bonds in the macromolecular cellulose backbone. These results provide support for a potentially more affordable and environment-friendly strategy for physical-based decomposition of recalcitrant organic pollutants from aqueous solution without the need of chemical or biological reagents. 展开更多
关键词 Nano-knives Shear degradation CARBOXYMETHYL CELLULOSE Glycosidic bond physical-based decomposition
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实时模拟固体燃烧现象 被引量:5
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作者 朱鉴 鲍凯 +2 位作者 常元章 柳有权 吴恩华 《计算机辅助设计与图形学学报》 EI CSCD 北大核心 2011年第1期11-20,共10页
为了模拟固体燃烧时产生的火焰及其伴随的物质分解过程,提出一个实时的燃烧模型.为了在模拟速度和视觉效果间取得一个很好的折中,采用一套混合的网格模拟系统;整个空间的热传导过程在一个统一的框架下模拟,因此能够很好地耦合动态的火... 为了模拟固体燃烧时产生的火焰及其伴随的物质分解过程,提出一个实时的燃烧模型.为了在模拟速度和视觉效果间取得一个很好的折中,采用一套混合的网格模拟系统;整个空间的热传导过程在一个统一的框架下模拟,因此能够很好地耦合动态的火焰和燃烧的固体.提出了一个改进的燃面更新方案以及一个新的固体表面纹理映射算法,能够生成逼真的结果.还提出了一系列提高模型效率的加速算法.最终实时地模拟出了真实感的固体燃烧现象. 展开更多
关键词 基于物理的火焰模拟 物质分解 移动网格 MarchingCubes 计算统一设备架构
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