首页> 外文会议>Conference on Cosmetic Measurements and Testing >New wideband electromagnatic on-line system for microalgae production monitoring
【24h】

New wideband electromagnatic on-line system for microalgae production monitoring

机译:用于微藻生产监控的新型宽带电磁在线系统

获取原文

摘要

Hyaluronic acid (HA) is present in almost all biological fluids and tissues. The chemical HA structure is described as a linear polysaccharide with a high molecular mass (about one MDa) formed from disaccharide units containing Nacetyl-d-glucosamine and glucuronic acid. This chemical structure ensures an excellent biocompatibility. In addition its viscoelastic properties are singularly appreciated in cosmetic products like moisturizing preparations, anti-wrinkle effect cream (for the elasticity restoration) [1], and skin protection against ultraviolet irradiation [2]. HA is usually produced from non-sustainable resource, or from genetically modified (GMO) bacteria, or from animal waste [3]. A novel method production of this high value product (more than 100 k€/kg [4]) had recently emerged based on microalgae production process [5]. In order to be competitive, users of this new manufacturing method need to assess in-line the quality of the product and if it possible use this information for product quality optimization. Electromagnetic sensors are well known in the food industry for reliability and quick quality assessment of hydrocarbon based food like wheat [6]. This paper reports some preliminary results on microalgae by product of an electromagnetic wideband radiofrequency sensor. This sensor consists of an open coaxial line cell filled with a liquid solution and impedance measurement of the cell is carried by an network analyzer at a temperature of 25°C. The microalgae studied where separated in two phases, a liquid one extracted directly from the reactor (MC) and a foam like extracted by an in-reactor skimmer (ME). In order to assess the sensibility of the measurement and simulate different production yield, extracted fraction MC and ME where diluted. These dilutions were carried with respectively microalgae nutriment solution (NS) and pure water in order to keep a constant ionic strength to achieve the low frequency conductivity constant and t- avoid a measurement bias. The preliminary results show a good sensitivity of impedance vs HA microalgae concentration in the 1 MHz to 10 MHz range.
机译:透明质酸(HA)几乎存在于几乎所有生物液体和组织中。化学HA结构被描述为具有高分子质量(约一MDA)的线性多糖,由含有含甲酰基-D-葡糖胺和葡糖醛酸的二糖单元形成。这种化学结构确保了优异的生物相容性。此外,在化妆品中的粘弹性性质是单独理解的,如保湿制剂,抗皱作用霜(用于弹性恢复)[1],以及针对紫外线照射的皮肤保护[2]。 HA通常由非可持续资源生产,或从基因改性(GMO)细菌或动物废物[3]产生。最近出现了这种高价值产品的新型方法生产(超过100k€/ kg [4]),基于微藻生产方法[5]。为了具有竞争力,这种新的制造方法的用户需要在线评估产品的质量,如果可能使用此信息进行产品质量优化。电磁传感器在食品工业中是众所周知的,以获得烃类食物的可靠性和快速评估,如小麦[6]。本文通过电磁宽带射频传感器的产品报告了微藻的初步结果。该传感器由填充有液体溶液的开放同轴线单元组成,并且电池的阻抗测量由网络分析仪在25°C的温度下承载。在两相分开的情况下,微血脂在两相中分开,液体直接从反应器(MC)中提取,并用反应器撇渣器(ME)提取的泡沫。为了评估测量的敏感性并模拟不同的产量,提取的分数MC和ME稀释。这些稀释液分别具有微藻营养溶液(NS)和纯水,以保持恒定的离子强度以实现低频电导率恒定和T-避免测量偏差。初步结果表明,在1MHz至10MHz的范围内,阻抗与HA微藻浓度的良好敏感性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号