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首页> 外文期刊>Nordic Pulp & Paper Research Journal >Can redispersible low-charged nanofibrillated cellulose be produced by the addition of carboxymethyl cellulose?
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Can redispersible low-charged nanofibrillated cellulose be produced by the addition of carboxymethyl cellulose?

机译:通过添加羧甲基纤维素可以生产可再分散的低电荷纳米原纤化纤维素吗?

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摘要

Carboxymethyl cellulose (CMC) was added in various amounts (<= 10% (w/w)) to a low-charged (enzymatically pre-treated) NFC, and the suspensions were blended by either a low-shear propeller mixing- or high shear homogenization protocol. The suspensions were thereafter oven-dried, and redispersed using a high shear protocol. It was found that the mixing method has a profound effect on the apparent rheology of the never-dried systems. The addition of highly charged CMC-grades enabled, already at 1% (w/w) addition, the apparent dispersion of dried NFC. The rheological responses (viscosity and storage modulus) of the never-dried NFC-CMC systems were judged as conserved, when the rheological responses of the redispersed systems were compared with those of never-dried systems that had been produced by propeller mixing. The rheological responses of the redispersed systems were on the other hand found to be lower when compared to the rheological responses of the never-dried systems that had been produced by high shearing mixing. However, the mechanical- and barrier properties of the redispersed systems were found to be inferior to the never-dried equivalents - regardless of the mixing protocol.
机译:将各种量的羧甲基纤维素(CMC)(<= 10%(w / w))添加到低电荷(经过酶预处理)的NFC中,然后将悬浮液通过低剪切螺旋桨混合-剪切均质方案。然后将悬浮液烘箱干燥,并使用高剪切规程再分散。发现混合方法对从未干燥的系统的表观流变学具有深远的影响。添加高电荷的CMC级产品已经使干燥NFC的表观分散性已经达到1%(w / w)。当将再分散系统的流变响应与螺旋桨混合产生的未干燥系统的流变响应进行比较时,从未干燥的NFC-CMC系统的流变响应(粘度和储能模量)被判定为守恒。另一方面,与通过高剪切混合产生的从未干燥系统的流变响应相比,发现再分散系统的流变响应较低。但是,无论混合方案如何,都发现再分散体系的机械性能和阻隔性能比未干燥的同类产品差。

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