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Surface energetics to assess biomass attachment onto hydrophobic interaction adsorbents in expanded beds

机译:表面能评估膨胀床中生物质在疏水相互作用吸附剂上的附着

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摘要

Cell-to-support interaction and cell-to-cell aggregation phenomena have been studied in a model system composed of intact yeast cells and Phenyl-Streamline adsorbents.Biomass components and beaded adsorbents were characterized by contact angle determinations with three diagnostic liquids and zeta potential measurements.Subsequently,free energy of interaction vs.distance profiles between interacting surfaces was calculated in the aqueous media provided by operating mobile phases.The effect of pH and ammonium sulphate concentration within the normal operating ranges was evaluated.Calculation indicated that moderate interaction between cell particles and adsorbent beads can develop in the presence of salt.Cell-to-cell aggregation was suspected to occur at high salt concentration and neutral pH.Predictions based on the application of the XDLVO approach were confirmed by independent experimental methods like biomass deposition experiments and laser diffraction spectroscopy.Understanding biomass attachment onto hydrophobic supports can help in alleviating process limitations normally encountered during expanded bed adsorption of bioproducts.
机译:在完整的酵母细胞和苯基流线型吸附剂组成的模型系统中研究了细胞与支持物的相互作用以及细胞间的聚集现象,并通过与三种诊断液和zeta电位的接触角测定来表征生物质组分和串珠状吸附剂。随后,在操作流动相提供的水性介质中计算了相互作用自由能与相互作用表面之间距离分布的关系,评估了pH和硫酸铵浓度在正常操作范围内的影响。计算表明细胞之间适度的相互作用在高盐浓度和中性pH下,细胞间的聚集被怀疑发生在盐的存在下。通过XDLVO方法的应用,通过独立的实验方法(如生物质沉积实验和激光衍射光谱学在疏水性载体上的大量附接可以帮助减轻通常在生物产品的扩展床吸附过程中遇到的工艺限制。

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