Data underlying the research of Enhancing Electrodialysis using Spacer Electrokinetic Effects: The Influence of Bivalent Ions on Spacer Performance
doi: 10.4121/a7bea874-4fd6-4a32-bfd6-d5d6658d0983
Concentration polarization in electrodialysis (ED) stacks can significantly reduce the process efficiency in the separation of ions. We previously investigated an innovative way of reducing the concentration polarization by inducing electro-osmotic mixing through the use of surface-modified spacers and tested this approach using single monovalent salt streams. Typically, more complex mixtures containing multivalent ionic species occur in practical settings which may lead to divalent ion adsorption on spacers and a reduction in electro-osmotic mixing, therefore reducing the improvement in efficiency observed for the monovalent-only case. To further test the effectiveness of using surface-modified spacers for enhancing electrodialytic transport, we have studied the influence of bivalent cations on the resulting ED process using polyelectrolyte-coated spacers. For this, we compared the monovalent feed solutions with feeds containing either bivalent ions or a mixture of monovalent and bivalent salts. The results showed that when using surface-modified spacers in ED with a mixture of bivalent and monovalent salts (MgCl$_2$ + NaCl) in the feed, a similar enhancement to the monovalent ion only case was obtained whereas when using a feed consisting of only a bivalent salt (MgCl$_2$) there was a negligible difference between the performance of surface-modified and conventional spacers. We show that the loss in performance of surface-modified spacers can be plausibly attributed to a reduction in the zeta potential (surface charge) in the presence of divalent cations leading to a reduction in the electro-osmotic remixing of the boundary layer, obtaining the behaviour of an ED process using uncoated spacers. Our findings also indicate that this performance loss in using surface-coated spacers can be mitigated or avoided if there is an additional monovalent cation in the mixture at similar concentrations. This work highlights that the use of surface-modified spacers can be a viable option for enhancing electrodialysis for realistic feed sources consisting of mixtures of mono and higher valence ions.
- 2023-09-08 first online, published, posted
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Grad_45_LF_2V_uncoated_MgCl2NaCl.xlsx - 27,643 bytesMD5:
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Grad_45_LF_3V_coated_MgCl2NaCl.xlsx - 26,020 bytesMD5:
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Grad_45_LF_3V_coated_MgCl2NaCl.xlsx - 27,865 bytesMD5:
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Grad_45_LF_3V_coated_MgCl2NaCl.xlsx - 26,988 bytesMD5:
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Grad_45_LF_3V_coated_MgCl2NaCl.xlsx - 29,999 bytesMD5:
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Grad_45_LF_3V_uncoated_Mgcl2.xlsx - 26,646 bytesMD5:
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Grad_45_LF_3V_uncoated_Mgcl2.xlsx - 31,495 bytesMD5:
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Grad_45_LF_3V_uncoated_Mgcl2.xlsx - 32,588 bytesMD5:
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Grad_45_LF_3V_uncoated_Mgcl2.xlsx - 29,672 bytesMD5:
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Grad_45_LF_3V_uncoated_Mgcl2.xlsx - 27,734 bytesMD5:
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Grad_45_LF_3V_uncoated_MgCl2NaCl.xlsx - 25,699 bytesMD5:
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Grad_45_LF_3V_uncoated_MgCl2NaCl.xlsx - 28,370 bytesMD5:
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Grad_45_LF_3V_uncoated_MgCl2NaCl.xlsx - 27,072 bytesMD5:
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Grad_45_LF_3V_uncoated_MgCl2NaCl.xlsx - 27,072 bytesMD5:
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Grad_45_LF_3V_uncoated_MgCl2NaCl.xlsx - 27,990 bytesMD5:
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Grad_45_LF_4V_coated_MgCl2NaCl.xlsx - 25,913 bytesMD5:
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Grad_45_LF_4V_coated_MgCl2NaCl.xlsx - 25,728 bytesMD5:
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Grad_45_LF_4V_coated_MgCl2NaCl.xlsx - 26,376 bytesMD5:
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Grad_45_LF_4V_coated_MgCl2NaCl.xlsx - 26,675 bytesMD5:
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Grad_45_LF_4V_uncoated_Mgcl2.xlsx - 28,232 bytesMD5:
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Grad_45_LF_4V_uncoated_Mgcl2.xlsx - 34,140 bytesMD5:
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Grad_45_LF_4V_uncoated_Mgcl2.xlsx - 29,099 bytesMD5:
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Grad_45_LF_4V_uncoated_Mgcl2.xlsx - 26,389 bytesMD5:
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Grad_45_LF_4V_uncoated_Mgcl2.xlsx - 27,149 bytesMD5:
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Grad_45_LF_4V_uncoated_MgCl2NaCl.xlsx - 26,614 bytesMD5:
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Grad_45_LF_4V_uncoated_MgCl2NaCl.xlsx - 27,573 bytesMD5:
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Grad_45_LF_4V_uncoated_MgCl2NaCl.xlsx - 26,614 bytesMD5:
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Grad_45_LF_4V_uncoated_MgCl2NaCl.xlsx - 26,564 bytesMD5:
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Grad_45_LF_4V_uncoated_MgCl2NaCl.xlsx - 28,121 bytesMD5:
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Grad_45_LF_5V_coated_MgCl2NaCl.xlsx - 28,154 bytesMD5:
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Grad_45_LF_5V_coated_MgCl2NaCl.xlsx - 23,662 bytesMD5:
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Grad_45_LF_5V_coated_MgCl2NaCl.xlsx - 27,319 bytesMD5:
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Grad_45_LF_5V_coated_MgCl2NaCl.xlsx - 28,898 bytesMD5:
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Grad_45_LF_5V_uncoated_Mgcl2.xlsx - 27,252 bytesMD5:
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Grad_45_LF_5V_uncoated_Mgcl2.xlsx - 25,844 bytesMD5:
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Grad_45_LF_5V_uncoated_Mgcl2.xlsx - 27,546 bytesMD5:
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Grad_45_LF_5V_uncoated_Mgcl2.xlsx - 26,882 bytesMD5:
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Grad_45_LF_5V_uncoated_Mgcl2.xlsx - 26,556 bytesMD5:
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Grad_45_LF_5V_uncoated_MgCl2NaCl.xlsx - 25,293 bytesMD5:
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Grad_45_LF_5V_uncoated_MgCl2NaCl.xlsx - 26,556 bytesMD5:
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Grad_45_LF_5V_uncoated_MgCl2NaCl.xlsx - 27,529 bytesMD5:
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Grad_45_LF_5V_uncoated_MgCl2NaCl.xlsx - 23,684 bytesMD5:
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Grad_45_LF_5V_uncoated_MgCl2NaCl.xlsx - 23,847 bytesMD5:
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Grad_45_LF_6V_coated_MgCl2NaCl.xlsx - 24,905 bytesMD5:
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Grad_45_LF_6V_coated_MgCl2NaCl.xlsx - 26,951 bytesMD5:
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Grad_45_LF_6V_coated_MgCl2NaCl.xlsx - 25,853 bytesMD5:
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Grad_45_LF_6V_coated_MgCl2NaCl.xlsx - 24,430 bytesMD5:
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Grad_45_LF_6V_uncoated_Mgcl2.xlsx - 26,642 bytesMD5:
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Grad_45_LF_6V_uncoated_Mgcl2.xlsx - 26,810 bytesMD5:
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Grad_45_LF_6V_uncoated_Mgcl2.xlsx - 27,456 bytesMD5:
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Grad_45_LF_6V_uncoated_Mgcl2.xlsx - 23,889 bytesMD5:
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Grad_45_LF_6V_uncoated_Mgcl2.xlsx - 25,194 bytesMD5:
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Grad_45_LF_6V_uncoated_MgCl2NaCl.xlsx - 28,170 bytesMD5:
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Grad_45_LF_6V_uncoated_MgCl2NaCl.xlsx - 28,470 bytesMD5:
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Grad_45_LF_6V_uncoated_MgCl2NaCl.xlsx - 25,194 bytesMD5:
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Grad_45_LF_6V_uncoated_MgCl2NaCl.xlsx - 25,483 bytesMD5:
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Grad_45_LF_6V_uncoated_MgCl2NaCl.xlsx - 25,189 bytesMD5:
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Grad_45_LF_7V_coated_MgCl2NaCl.xlsx - 31,608 bytesMD5:
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Grad_45_LF_7V_coated_MgCl2NaCl.xlsx - 26,658 bytesMD5:
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Grad_45_LF_7V_coated_MgCl2NaCl.xlsx - 23,995 bytesMD5:
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Grad_45_LF_7V_coated_MgCl2NaCl.xlsx - 24,720 bytesMD5:
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Grad_45_LF_7V_uncoated_Mgcl2.xlsx - 25,632 bytesMD5:
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Grad_45_LF_7V_uncoated_Mgcl2.xlsx - 26,485 bytesMD5:
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Grad_45_LF_7V_uncoated_Mgcl2.xlsx - 26,433 bytesMD5:
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Grad_45_LF_7V_uncoated_Mgcl2.xlsx - 23,663 bytesMD5:
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Grad_45_LF_7V_uncoated_Mgcl2.xlsx - 26,817 bytesMD5:
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Grad_45_LF_7V_uncoated_MgCl2NaCl.xlsx - 24,446 bytesMD5:
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Grad_45_LF_7V_uncoated_MgCl2NaCl.xlsx - 23,927 bytesMD5:
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Grad_45_LF_7V_uncoated_MgCl2NaCl.xlsx - 27,541 bytesMD5:
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Grad_45_LF_7V_uncoated_MgCl2NaCl.xlsx - 24,446 bytesMD5:
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Grad_45_LF_7V_uncoated_MgCl2NaCl.xlsx - 22,682 bytesMD5:
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Grad_45_LF_8V_coated_MgCl2NaCl.xlsx - 24,303 bytesMD5:
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Grad_45_LF_8V_coated_MgCl2NaCl.xlsx - 28,537 bytesMD5:
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Grad_45_LF_8V_coated_MgCl2NaCl.xlsx - 26,550 bytesMD5:
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Grad_45_LF_8V_coated_MgCl2NaCl.xlsx - 26,598 bytesMD5:
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Grad_45_LF_8V_uncoated_Mgcl2.xlsx - 26,376 bytesMD5:
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Grad_45_LF_8V_uncoated_Mgcl2.xlsx - 27,943 bytesMD5:
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Grad_45_LF_8V_uncoated_Mgcl2.xlsx - 25,401 bytesMD5:
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Grad_45_LF_8V_uncoated_Mgcl2.xlsx - 27,206 bytesMD5:
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Grad_45_LF_8V_uncoated_Mgcl2.xlsx - 25,024 bytesMD5:
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Grad_45_LF_8V_uncoated_MgCl2NaCl.xlsx - 25,682 bytesMD5:
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Grad_45_LF_8V_uncoated_MgCl2NaCl.xlsx - 26,215 bytesMD5:
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Grad_45_LF_8V_uncoated_MgCl2NaCl.xlsx - 26,215 bytesMD5:
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Grad_45_LF_8V_uncoated_MgCl2NaCl.xlsx - 22,999 bytesMD5:
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Grad_45_LF_8V_uncoated_MgCl2NaCl.xlsx - 26,580 bytesMD5:
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Grad_45_LF_9.98V_coated_MgCl2NaCl.xlsx - 21,776 bytesMD5:
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Grad_45_LF_9.98V_coated_MgCl2NaCl.xlsx - 26,438 bytesMD5:
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Grad_45_LF_9.98V_coated_MgCl2NaCl.xlsx - 25,668 bytesMD5:
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Grad_45_LF_9.98V_uncoated_Mgcl2.xlsx - 26,920 bytesMD5:
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Grad_45_LF_9.98V_uncoated_Mgcl2.xlsx - 24,215 bytesMD5:
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Grad_45_LF_9.98V_uncoated_Mgcl2.xlsx - 26,326 bytesMD5:
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Grad_45_LF_9.98V_uncoated_Mgcl2.xlsx - 26,293 bytesMD5:
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Grad_45_LF_9.98V_uncoated_Mgcl2.xlsx - 25,992 bytesMD5:
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Grad_45_LF_9.98V_uncoated_MgCl2NaCl.xlsx - 25,075 bytesMD5:
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Grad_45_LF_9.98V_uncoated_MgCl2NaCl.xlsx - 26,966 bytesMD5:
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Grad_45_LF_9.98V_uncoated_MgCl2NaCl.xlsx - 25,997 bytesMD5:
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Grad_45_LF_9.98V_uncoated_MgCl2NaCl.xlsx - 26,966 bytesMD5:
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Grad_45_LF_9.98V_uncoated_MgCl2NaCl.xlsx - 24,047 bytesMD5:
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Grad_45_LF_9V_coated_MgCl2NaCl.xlsx - 24,810 bytesMD5:
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Grad_45_LF_9V_coated_MgCl2NaCl.xlsx - 24,972 bytesMD5:
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Grad_45_LF_9V_coated_MgCl2NaCl.xlsx - 13,900 bytesMD5:
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Grad_45_LF_9V_coated_MgCl2NaCl.xlsx - 26,213 bytesMD5:
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Grad_45_LF_9V_uncoated_Mgcl2.xlsx - 25,253 bytesMD5:
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Grad_45_LF_9V_uncoated_Mgcl2.xlsx - 24,065 bytesMD5:
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Grad_45_LF_9V_uncoated_Mgcl2.xlsx - 24,272 bytesMD5:
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Grad_45_LF_9V_uncoated_Mgcl2.xlsx - 26,531 bytesMD5:
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Grad_45_LF_9V_uncoated_Mgcl2.xlsx - 25,517 bytesMD5:
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Grad_45_LF_9V_uncoated_MgCl2NaCl.xlsx - 26,055 bytesMD5:
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Grad_45_LF_9V_uncoated_MgCl2NaCl.xlsx - 27,426 bytesMD5:
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Grad_45_LF_9V_uncoated_MgCl2NaCl.xlsx - 26,055 bytesMD5:
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Grad_45_LF_9V_uncoated_MgCl2NaCl.xlsx - 27,347 bytesMD5:
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Grad_45_LF_9V_uncoated_MgCl2NaCl.xlsx - 11,054 bytesMD5:
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HFBivalentMgCl2.m - 12,792 bytesMD5:
5449863330413c71f846b64c4d73cbf2
LFBivalentMgCl2.m - 17,453 bytesMD5:
9d8c4c08d4238a6bc8f1b3f1769453f9
LFMonoBi1_1.m - 1,112 bytesMD5:
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