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Assessing the importance of organic matrix materials in biofilm chemical reactivity: Insights from proton and cadmium adsorption onto the commercially available biopolymer alginate

机译:评估有机基质材料在生物膜化学反应中的重要性:质子和镉吸附到市售生物聚合物藻酸盐上的见解

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Biofilms coat the exterior of most water-exposed interfaces, from the surfaces of sediments and rocks to the interior walls of fluid transport systems and even medical and dental apparatus. Composed of a diverse assemblage of microbial species growing in a matrix of extracellular polymeric substances (EPS), biofilms are well-known for their ability to sorb metals and nucleate mineral phases. In this study, purified alginate, a major polysaccharide component of some algal and bacterial EPS, was studied to ascertain its chemical reactivity towards dissolved cadmium and protons, and thus better constrain its role in overall EPS reactivity. FTIR analysis and compositional constraints based on known molecular structure indicate that alginate's geochemical behaviour is dominated by a single carboxyl functional group. Correspondingly, potentiometric titration data were best fit using a single functional group acidity constant (pK_a) and site concentration of 3.98± 0.01 and 1.728 ± 0.02 mol/kg, respectively, which are in agreement with typical carboxyl acidity (pK_a 3-6) and carboxyl functional group concentration based on alginate polymer composition. The logarithm of the Cd-carboxyl complexation constant (log K) was determined to be -0.52 ± 0.22, lower than carboxyl-Cd stability constants reported from independent studies of isolated microbes. Together, these results place important constraints on organic matrix contributions to overall biofilm reactivity.
机译:从沉积物和岩石的表面到流体输送系统甚至医疗和牙科器械的内壁,生物膜覆盖着大多数与水接触的界面的外部。生物膜由在细胞外聚合物质(EPS)基质中生长的各种微生物组成,生物膜以吸收金属和成核矿物相的能力而闻名。在这项研究中,研究了藻酸盐和细菌EPS的主要多糖成分精制藻酸盐,以确定其对溶解的镉和质子的化学反应性,从而更好地限制了其在总EPS反应性中的作用。 FTIR分析和基于已知分子结构的组成限制表明,藻酸盐的地球化学行为主要由单个羧基官能团决定。相应地,电位滴定数据最适合使用单个官能团酸度常数(pK_a)和位点浓度分别为3.98±0.01和1.728±0.02 mol / kg,这与典型的羧基酸度(pK_a 3-6)和基于藻酸盐聚合物组成的羧基官能团浓度。 Cd-羧基络合常数(log K)的对数确定为-0.52±0.22,低于对独立微生物进行独立研究报告的羧基-Cd稳定常数。总之,这些结果对有机基质对整体生物膜反应性的贡献施加了重要的限制。

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