Author: Jessica Snyder

Monitoring Diffusion to Equilibrium

In this post I show the sieving coefficients of simulations with a thin membrane, a thick membrane, or a no membrane case as they approach equilibrium.  The simulations were carried out for 48 hours, and plotted for 1 hour time

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Reviewing Simulation/Experimental Comparison

Here is the most up to date figure that I’ve made to compare the simulated and experimental separation results.  I went back through the x-ray crystals and remeasured the longest distances in the molecules.  I used the radii to rerun

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1D Diffusion Model and Nature Results

In this post I will explain how I tried to use the 1D diffusion model to check the results we had in the Nature paper.  Unfortunately I didn’t get the same results in the simulation and I present some ideas

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Reviving 1D Model

In this post I will show that the analytical 1D model of diffusion is similar to our 3D COMSOL model, with the exception that the times do not seem to line up.  This is reasonable though since the 1D model

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Hindrance is magnified in thicker membrane

Using the same procedure as in the last post, I was able to simulate a 6um thick membrane with the same pore characteristics as the experimental pnc-Si membranes.  Material diffuses more slowly through this membrane, but not as slowly as

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Membrane impact on diffusion

Follow up to this post.  As a brief reminder, I have performed 3-D simulations of separations in large and small volume systems.  I have defined an effective diffusion coefficient that takes into account the membrane hindrance and compared this to

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Streaming Potential Device

This device was built similar to the device featured in the Burns(Zydney) 2000 J. Mem. Sci. paper.  Our device seals in a SepCon formatted pnc-Si chip and allows 2 electrodes to be positioned by the chip.  A feed line pressurizes

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How does the membrane affect the separation?

In the previous post it seems that the membrane pores do not significantly retard proteins and that the separation characteristics are due more to the slower diffusion coefficients of the proteins.  However, in certain circumstances, the membrane may provide more

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Comparing Simulation with Experimental

Tweaking simulation was not bringing it any closer to the experimental shown in the last post.  This led me to try the experimental once more.  I set up the same system and used 1:2 dilution of the standard protein mixture.

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Simulating Protein Diffusion

I’ve been attempting to simulate protein sieving using the COMSOL model.  This first figure shows the comparison of the simulated separations to the actual results as determined by gel densitometry. The simulated separations tend to lag behind the experimental data

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