Abstract
• Accelerated dissolution • High ionic concentrations for all ion types • Higher pH • At similar ionic strength and pH, • Ca2+ catalyzes the dissolution more effectively than monovalent cations (Na+, K+), and Mg2+, especially at higher pH • HP04 2" at high ionic strength • Reduced dissolution rate • Silicic acid at high ionic strength.
Original language | English |
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Title of host publication | Nanoscale Science and Engineering Forum 2017 - Core Programming Area of the 2017 AIChE Annual Meeting |
Publisher | AIChE |
Pages | 118 |
Number of pages | 1 |
ISBN (Electronic) | 9781510858084 |
Publication status | Published - 2017 |
Event | Nanoscale Science and Engineering Forum 2017 - Core Programming Area of the 2017 AIChE Annual Meeting - Minneapolis, United States Duration: 2017 Oct 29 → 2017 Nov 3 |
Publication series
Name | Nanoscale Science and Engineering Forum 2017 - Core Programming Area of the 2017 AIChE Annual Meeting |
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Volume | 2017-October |
Other
Other | Nanoscale Science and Engineering Forum 2017 - Core Programming Area of the 2017 AIChE Annual Meeting |
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Country/Territory | United States |
City | Minneapolis |
Period | 17/10/29 → 17/11/3 |
Bibliographical note
Publisher Copyright:© 2018 AIChE. All rights reserved.
All Science Journal Classification (ASJC) codes
- General Chemical Engineering
- Materials Chemistry
- General Engineering
- Environmental Engineering