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Modeling three-dimensional surface morphology of biocake layer in a membrane bioreactor based on fractal geometry

机译:基于分形几何的膜生物反应器在膜生物反应器中建模三维表面形态

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摘要

While the adsorptive fouling in membrane bioreactors (MBRs) is highly dependent of the surface morphology, little progress has been made on modeling biocake layer surface morphology. In this study, a novel method, which combined static light scattering method for fractal dimension (D-f) measurement with fractal method represented by the modified two-variable Weierstrass-Mandelbrot function, was proposed to model biocake layer surface in a MBR. Characterization by atomic force microscopy showed that the biocake surface was stochastic, disorder, self-similarity, and with non-integer dimension, illustrating obvious fractal features. Fractal dimension (D-f) of sludge suspension experienced a significant change with operation of the MBR. The constructed biocake layer surface by the proposed method was quite close to the real surface, showing the feasibility of the proposed method. It was found that D-f was the critical factor affecting surface morphology, while other factors exerted moderate or minor effects on the roughness of biocake layer. (C) 2016 Elsevier Ltd. All rights reserved.
机译:虽然膜生物反应器(MBRS)中的吸附污染高度依赖于表面形态,但在模拟的生物层表面形态学方面取得了一点进展。在该研究中,提出了一种新的方法,其用修改的双变量Weierstrass-mandelbrot功能表示的分形方法(D-F)测量的分形尺寸(D-F)测量,以在MBR中模拟生物层表面。原子力显微镜的表征显示,生物聚焦表面是随机,紊乱,自相似性和非整数尺寸,说明明显的分形特征。污泥悬浮液的分形尺寸(D-F)经历了MBR操作的显着变化。通过所提出的方法构造的生物层表面非常靠近真实表面,显示出该方法的可行性。发现D-F是影响表面形态的关键因素,而其他因素对生物层的粗糙度产生了中等或微小的影响。 (c)2016 Elsevier Ltd.保留所有权利。

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