Department of Civil and Environmental Engineering, University of Illinois at Urbana Champaign, Urbana, IL, USA.
Beckman Institute for Advanced Science and Technology, Urbana, IL, USA.
Biofouling. 2023 Jan;39(1):36-46. doi: 10.1080/08927014.2023.2177538. Epub 2023 Feb 27.
Biofilms, a porous matrix of cells aggregated with extracellular polymeric substances under the influence of chemical constituents in the feed water, can develop a viscoelastic response to mechanical stresses. In this study, the roles of phosphate and silicate, common additives in corrosion control and meat processing, on the stiffness, viscoelasticity, porous structure networks, and chemical properties of biofilm were investigated. Three-year biofilms on PVC coupons were grown from sand-filtered groundwater with or without one of the non-nutrient (silicate) or nutrient additives (phosphate or phosphate blends). Compared with non-nutrient additives, the phosphate and phosphate-blend additives led to a biofilm with the lowest stiffness, most viscoelastic, and more porous structure, including more connecting throats with greater equivalent radii. The phosphate-based additives also led to more organic species in the biofilm matrix than the silicate additive did. This work demonstrated that nutrient additives could promote biomass accumulation but also reduce mechanical stability.
生物膜是在给水中的化学物质的影响下,细胞与细胞外聚合物物质聚集形成的多孔基质,可以对机械应力产生粘弹性响应。在这项研究中,研究了磷和硅这两种常见的腐蚀控制和肉类加工添加剂对生物膜的硬度、粘弹性、多孔结构网络和化学性质的影响。从砂滤地下水培养了三年的 PVC 试片生物膜,有无非营养物质(硅)或营养物质添加剂(磷或磷混合物)。与非营养添加剂相比,磷和磷混合物添加剂形成的生物膜硬度最低,粘弹性最强,多孔结构更多,包括更多具有更大等效半径的连接通道。基于磷的添加剂还导致生物膜基质中的有机物质比硅添加剂更多。这项工作表明,营养添加剂可以促进生物量的积累,但也会降低机械稳定性。