Vauchel P, Le Roux K, Kaas R, Arhaliass A, Baron R, Legrand J
Département Sciences et Techniques Alimentaires Marines, IFREMER, Nantes Cedex 03, France.
Bioresour Technol. 2009 Feb;100(3):1291-6. doi: 10.1016/j.biortech.2008.03.005. Epub 2008 Oct 11.
Alginates being depolymerized during their alkaline extraction, reducing extraction time could help producing higher rheological quality alginates. The purpose of the present work is to study fresh Laminaria digitata destructuration during alkaline extraction and its link to extraction kinetics. Both alginate extraction yield and mean diameter of algae particles were followed for different values of agitation level and initial size of algae pieces. Results highlighted the existence of a link between extraction yield and algal destructuration. Those elements and the specificity of L.digitata structure have been taken into account to propose a kinetics model based on a fluid-particle reaction with decreasing size particles. The model parameters have been adjusted thanks to acquisition data and its predictive capacity was assessed by validation data. Provided predictions appeared to be relevant and the model structure suitability was confirmed, as extraction yield kinetics specific shape was quite reliably described.
藻酸盐在碱性提取过程中会发生解聚,缩短提取时间有助于生产出流变学质量更高的藻酸盐。本研究的目的是研究新鲜海带在碱性提取过程中的结构破坏及其与提取动力学的关系。针对不同的搅拌水平和藻片初始尺寸值,跟踪了藻酸盐提取率和藻类颗粒的平均直径。结果突出了提取率与藻类结构破坏之间存在联系。考虑到这些因素以及海带结构的特殊性,提出了一个基于流体-颗粒反应且颗粒尺寸减小的动力学模型。借助采集的数据对模型参数进行了调整,并通过验证数据评估了其预测能力。所提供的预测似乎是相关的,并且模型结构的适用性得到了证实,因为提取率动力学的特定形状得到了相当可靠的描述。