OS036-0007
Evaluation of the MoDIE method for measuring photochemical mineralization of dissolved organic carbon

Monday, 14 December 2020
Poster
Xi Lu, Stony Brook University, School of Marine and Atmospheric Sciences, Stony Brook, NY, United States and Steven R Beaupre, Stony Brook University, Stony Brook, NY, United States
Abstract:
The Moderate DI13C Isotope Enrichment (MoDIE) method by Powers et al (2017) is a promising method to precisely measure the photochemical mineralization of dissolved organic carbon (DOC) in water samples without dramatically altering a sample’s pH or organic carbon pool. Here, we evaluated the analytical uncertainties of the MoDIE method and used Monte Carlo simulations to optimize the experimental design for the most precise measurements of dissolved inorganic carbon (DIC) that is produced photochemically (DIC). Analytically, we recommend calculating yields of DIChv with an exact expression of conservation of mass that intrinsically reduces error and uncertainty. Methodologically, the overall uncertainty and detection limit of the MoDIE method can be significantly reduced by partially stripping away DIC, enriching the residual DIC with more DI13C, and increasing the yields of DIChv via longer irradiations. Instrumentally, more precise measurements of enriched δ13C values before and after irradiation are needed to further improve the precision of DIC concentration determinations. Higher precision DIChv measurements via the optimized MoDIE method can improve our understanding of the photochemical mineralization of DOC and thus, the budget of marine DOC.

Powers, L. C., J. A. Brandes, A. Stubbins, and W. L. Miller (2017), MoDIE: Moderate dissolved inorganic carbon (DI13C) isotope enrichment for improved evaluation of DIC photochemical production in natural waters, Marine Chemistry, 194, 1-9, doi:10.1016/j.marchem.2017.03.007.