Division of Food Sciences, School of Biosciences, University of Nottingham, Sutton Bonington Campus, Loughborough, LE12 5RD, UK.
Division of Food Sciences, School of Biosciences, University of Nottingham, Sutton Bonington Campus, Loughborough, LE12 5RD, UK.
Carbohydr Polym. 2018 Apr 1;185:112-119. doi: 10.1016/j.carbpol.2017.12.086. Epub 2018 Jan 2.
New microstructures with interesting, unique and stable textures, particularly relevant to food systems were created by redispersing Microfibrillar cellulose (MFC). This paper reports the interactions between microfibrillar cellulose and carboxymethyl cellulose (CMC) in redispersed aqueous suspensions, by using rheological measurements on variable ratios of MFC/CMC and correlating these with apparent water mobility as determined by time domain NMR. MFC is a network of cellulose fibrils produced by subjecting pure cellulose pulp to high-pressure mechanical homogenisation. A charged polymer such as CMC reduces the aggregation of microfibrillar/fibre bundles upon drying. Small amplitude oscillatory rheological analysis showed viscoelastic gel-like behaviour of suspensions which was independent of the CMC content in the MFC suspension. A viscous synergistic effect was observed when CMC was added to MFC before drying, leading to improved redispersibility of the suspension. Novel measurements using NMR relaxation suggested that the aggregated microfibrillar/fibre bundles normally dominate the relaxation times (T). The dense microfibrillar network plays an important role in generating stable rheological properties and controlling the mobility of the polymer and hence the apparent mobility of the water in the suspensions.
通过重新分散微原纤维纤维素(MFC),可以形成具有有趣、独特和稳定纹理的新微观结构,这些结构尤其与食品系统相关。本文通过流变测量研究了在可变比例的 MFC/CMC 中微原纤维纤维素和羧甲基纤维素(CMC)之间的相互作用,并将这些相互作用与通过时域 NMR 确定的表观水流动性相关联。MFC 是通过对纯纤维素纸浆进行高压机械均化而产生的纤维素纤维束网络。在干燥过程中,像 CMC 这样的带电聚合物可以减少微原纤维/纤维束的聚集。小振幅振荡流变分析表明,悬浮液具有粘弹性凝胶状行为,与 MFC 悬浮液中的 CMC 含量无关。当 CMC 在干燥前添加到 MFC 中时,观察到粘性协同效应,从而提高了悬浮液的再分散性。使用 NMR 弛豫进行的新测量表明,通常聚集的微原纤维/纤维束主导着弛豫时间(T)。密集的微原纤维网络在产生稳定的流变性能以及控制聚合物的流动性方面起着重要作用,从而控制了悬浮液中聚合物的表观流动性。