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Selenium in White Sturgeon Tissues: 2015 Sturgeon Derby. SFEI Contribution No. 834.
2017. (1.85 MB)A Simple Mass Balance Model for PAH Fate in the San Francisco Estuary. SFEI Contribution No. 115. San Francisco Estuary Institute: Oakland, CA.
2004. (604.4 KB)Small Tributaries Pollutants of Concern Reconnaissance Monitoring: Loads and Yields-based Prioritization Methodology Pilot Study. SFEI Contribution No. 817. San Francisco Estuary Institute: Richmond, CA.
2019. (1.48 MB)Small Tributaries Pollutants of Concern Reconnaissance Monitoring: Pilot Evaluation of Source Areas Using PCB Congener Data. SFEI Contribution No. 956. San Francisco Estuary Institute: Richmond, CA.
2019. (2.31 MB)Sources, Pathways and Loadings Workgroup: Five-Year Workplan (2008-12). SFEI Contribution No. 567. San Francisco Estuary Institute: Oakland.
2008. South Bay/Fairfield-Suisun Trace Organic Contaminants in Effluent Study. SFEI Contribution No. 236. p 53.
2001. (204.03 KB)Statistical Methods Development and Sampling Design Optimization to Support Trends Analysis for Loads of Polychlorinated Biphenyls from the Guadalupe River in San Jose, California, USA. SFEI Contribution No. 876. Applied Marine Sciences: Livermore, CA.
2018. (1.76 MB)Status and Trends Report on Dredging and Waterway Modification in the San Francisco Estuary. SFEI Contribution No. 159. San Francisco Estuary Project: Oakland, CA.
1990. Status and Trends Report on Pollutants in the San Francisco Estuary. SFEI Contribution No. 161. San Francisco Estuary Project: Oakland, CA.
1991. Status and Trends Report on Pollutnats in the San Francisco Estuary. San Francisco Bay-Delta Aquatic Habitat Institute: Richmond CA. p 291.
1991. Strategy for In-Bay Fate Modeling to Support Contaminant and Sediment Management in San Francisco Bay. SFEI Contribution No. 1090. San Francisco Estuary Institute: Richmond, California.
2022. (2.81 MB)This report presents a strategy and multi-year workplan for modeling polychlorinated biphenyls (PCBs), contaminants of emerging concern (CECs), and sediment in San Francisco Bay (the Bay). Robust in-Bay fate modeling is needed to address priority management questions that have been identified for these constituents.
The strategy for in-Bay modeling presented in this report is a major element of a broader, integrated strategy that is being developed across RMP Workgroups for modeling contaminants flowing from the Bay watersheds and other pathways into the Bay. The broader project is expected to yield an integrated strategy in 2022, followed by implementation of a pilot effort in 2023. Coordination of the in-Bay modeling effort with the broader integrated strategy and other modeling work (e.g., nutrient modeling under the Nutrient Management Strategy) will be critical to optimizing use of the funds allocated to modeling.
Summary of 10 years of sediment toxicity monitoring for the San Francisco Estuary RMP. SFEI Contribution No. 281. San Francisco Estuary Institute.
2003. (3.39 MB)Support for Sediment Bioaccumulation Evaluation: Toxicity Reference Values for the San Francisco Bay. SFEI Contribution No. 916. San Francisco Estuary Institute : Richmond, CA.
2018. (317.14 KB)SWAMP/RMP/Bight Program Report on Contaminants in Fish from the California Coast. California State Water Resources Control Board: Sacramento, CA.
2011. (8.62 MB) (3.88 MB) (1.2 MB)Technical Report of the Chlorinated Hydrocarbon Workgroup. San Francisco Estuary Institute: Richmond, CA.
1999. (623.93 KB)Technical Report of the Sources, Pathways, and Loadings Workgroup. SFEI Contribution No. 266. San Francisco Estuary Institute: Richmond, CA.
2001. (3.4 MB)The tidal marsh food web. SFEI Contribution No. 472. University of California: Berkeley, CA. p 12 pp.
. 2002. (212.27 KB)The Transport of contaminants to San Francisco Bay by stormwater. SFEI Contribution No. 344. Vol. 9, pp 5-7.
2000. The UC Davis Biosentinel Mercury Program: Using Small Fish to Monitor Fine-scale Patterns of Methylmercury Contamination in the Watershed. SFEI Contribution No. 552. San Francisco Estuary Institute.
2008. (3.21 MB)