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Alongi, D. M., Murdiyarso, D., Fourqurean, J. W., Kauffman, J. B., Hutahaean, A., Crooks, S., et al. (2016). Indonesia's blue carbon: a globally significant and vulnerable sink for seagrass and mangrove carbon. Wetlands Ecol Manage, 24(1), 3–13.
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Cabezas, A., Mitsch, W. J., MacDonnell, C., Zhang, L., Bydalek, F., & Lasso, A. (2018). Methane emissions from mangrove soils in hydrologically disturbed and reference mangrove tidal creeks in southwest Florida. Ecological Engineering, 114, 57–65.
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Charles, S. P., Charles SP, Kominoski, J. S., Kominoski JS, Armitage, A. R., Armitage AR, et al. (2020). Quantifying how changing mangrove cover affects ecosystem carbon storage in coastal wetlands. Ecology, 101(2), e02916.
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Hinson, A. L., Feagin, R. A., Eriksson, M., Najjar, R. G., Herrmann, M., Bianchi, T. S., et al. (2017). The spatial distribution of soil organic carbon in tidal wetland soils of the continental United States. Glob Change Biol, 23(12), 5468–5480.
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Howard, J. L., Perez, A., Lopes, C. C., & Fourqurean, J. W. (2016). Fertilization Changes Seagrass Community Structure but not Blue Carbon Storage: Results from a 30-Year Field Experiment. Estuaries and Coasts, 39(5), 1422–1434.
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Moseman-Valtierra, S., Abdul-Aziz, O. I., Tang, J., Ishtiaq, K. S., Morkeski, K., Mora, J., et al. (2016). Carbon dioxide fluxes reflect plant zonation and belowground biomass in a coastal marsh. Ecosphere, 7(11), e01560.
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Radabaugh, K. R., Moyer, R. P., Chappel, A. R., Powell, C. E., Bociu, I., Clark, B. C., et al. (2018). Coastal blue carbon assessment of mangroves, salt marshes, and salt barrens in Tampa Bay, Florida, USA. Estuaries and Coast, 41(5), 1496–1510.
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Sanders, C. J., Maher, D. T., Smoak, J. M., & Eyre, B. D. (2019). Large variability in organic carbon and CaCO3 burial in seagrass meadows: a case study from three Australian estuaries. Mar. Ecol. Prog. Ser., 616, 211–218.
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Schile, L. M., Kauffman, J. B., Crooks, S., Fourqurean, J. W., Glavan, J., & Megonigal, J. P. (2017). Limits on carbon sequestration in arid blue carbon ecosystems. Ecol Appl, 27(3), 859–874.
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Simpson,, Stein,, Osborne,, & Feller,. (2019). Mangroves dramatically increase carbon storage after 3 years of encroachment. Hydrobiologia, 834(1), 13–26.
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Steinmuller, H. E., Dittmer, K. M., White, J. R., & Chambers, L. G. (2019). Understanding the fate of soil organic matter in submerging coastal wetland soils: A microcosm approach. Geoderma, 337, 1267–1277.
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Steinmuller, H. E., Foster, T. E., Boudreau, P., Ross Hinkle,, & Chambers, L. G. (2020). Tipping Points in the Mangrove March: Characterization of Biogeochemical Cycling Along the MangroveSalt Marsh Ecotone. Ecosystems, 23, 417�434.
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Wilson, B. J., Wilson BJ, Servais, S., Servais S, Mazzei, V., Mazzei V, et al. (2018). Salinity pulses interact with seasonal dry-down to increase ecosystem carbon loss in marshes of the Florida Everglades. Ecol Appl, 28(8), 2092–2108.
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