Publications

ÃÛÌÇÖ±²¥ Boulder

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Bentley, M.; Solomon, M.E.; Marten, B.; Shimabuku, K.K.; Cook, S.M. Evaluating landfill leachate treatment by organic municipal solid waste-derived biochar. Environmental Science: Water Research & Technology (2021). .Ìý

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Chambers, K.G.; Carrico, A.; Cook, S.M. Drivers of sustained sanitation access: social network and demographic predictors of latrine reconstruction after flooding disasters. Environmental Science: Water Research & Technology (2021). .Ìý

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Trimmer, J.T.; Miller, D.C.; Byrne, D.M; Lohman, H.A.C.; Banadda, N; Baylis, K.; Cook, S.M.; Cusick, R.D.; Jjuuko, F.; Margenot, A.J.; Zerai, A.; Guest, J.S. Re-envisioning sanitation as a human-derived resource system. Environmental Science & Technology (2020), 54 (17), 10446–10459.Ìý.

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Summers, R.S.; Shiokari, S.T.; Johnson, S.R.; Peterson, E.; Yun, Y.; Cook, S.M. Reuse treatment with ozonation, biofiltration and activated carbon adsorption for TOC control and DBP regulation compliance. AWWA Water Science (2020), 2 (5), e1190.Ìý.

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Thompson, K.A.; Valencia, E.; Summers, R.S.; Cook, S.M. Sorption, coagulation, and biodegradation for greywater reuse. Water Science & Technology (2020), 81 (10), 2152–2162.Ìý.

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Allie Framework TOC Art
Davis, A.L.; Javernick-Will, A.; Cook, S.M.ÌýAnalyzing sanitation sustainability assessment frameworks forÌýresource-limited communities. Environmental Science & Technology (2019),Ìý53 (22), 13535-13545.Ìý.

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Allie QCA
Davis, A.L.; Javernick-Will, A.; Cook, S.M. Identifying Pathways to Successful Sanitation Interventions in Resource Limited Communities using Qualitative Comparative Analysis. Science of the Total Environment (2019),Ìý663, 507-517.Ìý.Ìý

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TOC Art Addressed Priorities
Davis, A.L.; Javernick-Will, A.; Cook, S.M.ÌýPriority Addressment Protocol: Understanding the Ability and Potential of Sanitation Systems to Address Priorities. Environmental Science & Technology (2019), 53 (1), 401-411. .Ìý

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Allie Methods TOC Art
Davis, A.L.; Javernick-Will, A.; Cook, S.M.ÌýA comparison of interviews, focus groups, and photovoice to identify sanitation priorities and increase success of community-based sanitation systems.ÌýEnvironmental Science: Water Research & TechnologyÌý(2018), 4, 1451-1463.Ìý.ÌýÌý

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SIPS TOC art
Jones, C.H., Meyer, J., Cornejo, P.K., Hogrewe, W., Seidel, C.; Cook, S.M.ÌýA new framework for small drinking water plant sustainability support and decision-making. Science of the Total Environment (2019).Ìý.

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Jones BF LCA 2018 TOC Art
Jones, C.H.; Terry, L.G.; Summers, R.S.; Cook, S.M.ÌýEnvironmental Life Cycle Comparison of Conventional and Biological Filtration Alternatives for Drinking Water Treatment. Environmental Science: Water Research & Technology (2018), 4, 1464-1479.Ìý.

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Jones Disinfection LCA 2018 TOC Art
Jones, C.H.; Shilling, E.; Linden, K.; Cook, S.M.ÌýLife Cycle Environmental Impacts of Disinfection Technologies Used in Small Drinking Water Systems. Environmental Science & Technology,Ìý52 (5), 2998–3007.Ìý.

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Algae TOCart
Leow, S.; Shoener, B.D.; Li, Y.; Debellis, J.L.; Markham, J.; Davis, R.; Laurens, L.M.L.; Pienkos, P.T.; Cook, S.M.; Strathmann, T.J.; Guest, J.S.ÌýA Unified Modeling Framework to Advance Biofuel Production from Microalgae. Environmental Science & Technology (2018), 52 (22), 13591–13599.Ìý.Ìý

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Welsh-Huggins, S.; Liel, A.; Cook, S.M. Reduced, Reused, Resilient? Life-cycle seismic and environmental performances of buildings with alternative concretes.ÌýJournal of Infrastructure SystemsÌý(2020), 26 (1), 04019033. .ÌýÌý

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Qui, J.; Artier, J.; Cook, S.M.; Srubar, W.V.; Cameron, J.; Hubler, M. Engineering Living Building Materials for Enhanced Bacterial Viability and Mechanical Properties. iScience (2021), 24 (2), 102083. .Ìý

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Heveran, C.M.; Williams, S.L.; Qui, J.; Artier, J.; Hubler, M.; Cook, S.M.; Cameron, J.; Srubar, W.V. Biomineralization and Successive Regeneration of Engineered Living Building Materials. Matter (2020). DOI: 10.1016/j.matt.2019.11.016. .Ìý

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Chelsea Calcite Art
Heveran, C.M., Liang, L.; Nagarajan, A.; Hubler, M.; Gill, R.; Cameron, J.; Cook, S.M., Srubar, W.V.* Engineered ureolytic microorganisms can tailor the morphology and nanomechanical properties of microbial-precipitated calcium carbonate. Scientific Reports (2019), 9, 14721.Ìý.

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Liya Styrene
Liang, L.; Lui, R.; Foster, K.E.O.; Cook, S.M.; Cameron, J.C.; Srubar, W.V.; Gill, R.T.ÌýGenome engineering of E. coli for improved styrene tolerance and production. Metabolic Engineering (2019), 57, 74-84. .

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Ecoli Calcite TOCart
Liang, L.; Heveran, C.; Liu, R.; Gill, R.; Nagarajan, A.; Cameron, J.; Hubler, M.; Srubar, W.V.; Cook, S.M.ÌýRational Control of Calcite Precipitation by Engineered Escherichia coli. ACS Synthetic Biology (2018),Ìý7 (11), 2497–2506.Ìý.Ìý

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Pyrite Solid State Battery Production Flow Chart
Keshavarzmohammadian, A.; Cook, S.M.; Milford, J.B. Cradle-to-gate Environmental Impacts of Sulfur-based Solid-state Lithium Batteries for Electric Vehicle Applications.ÌýJournal of Cleaner Production (2018), 202, 770-778.Ìý.

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Thompson, K.A.; Summers, R.S.; Cook, S.M.ÌýDevelopment and experimental validation of the composition and treatability of a new synthetic bathroom greywater (SynGrey) (2017),ÌýEnvironmental Science: Water Research & Technology,Ìý3, 1120-1131. .

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Byrne, D.M.; Lohman, H.A.C.; Cook, S.M.; Peters, G.M.; Guest, J.S. Life cycle assessment (LCA) of urban water infrastructure: Emerging approaches to balance objectives and inform comprehensive decision-making (2017), Environmental Science: Water Research & Technology,Ìý3, 1002-1014. .Ìý Ìý Ìý

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Cook, S.M.; Skerlos, S.J.; Raskin, L.; Love, N.G. The establishment of a stability algorithm for anaerobic codigestion (2017), Water Research, 117, 19-28. .

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Thompson, K.A.; Shimabuku, K.K.; Kearns, J.P.; Knappe, D.R.U.; Summers, R.S.; Cook, S.M. Environmental comparison between biochar and activated carbon for tertiary wastewater treatment (2016), Environmental Science & Technology, 50Ìý(20), 11253-11262. .

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2012 Environmental Science & Technology abstract art

Cook, S.M.; VanDuinen, B.J.; Love, N.G.; Skerlos, S.J. Life cycle comparison of environmental emissions from three disposal options for unused pharmaceuticals (2012), Environmental Science & Technology, 46 (10), 5535-5541. .

Cook, S.M.; Love, N.G.; Skerlos, S.J.ÌýResponse to "Comment on ‘Life cycle comparison of environmental emissions from three disposal options for unused pharmaceuticals’" (2012) Environmental Science & Technology, 46Ìý(15), 8521–8522. .

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