Publications
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“Antibiotic resistance gene dissipation in soil microcosms amended with antibiotics and swine manure”, Journal of Environmental Quality, vol. 50, 2021.
, “Assessing reduction of soil erosion in row-crop-prairie systems through mixed effect and simulation modeling”, Stanford University, Stanford, CA, 2018.
miller_2018_honorsthesis.pdf (1.95 MB)
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“Changes in soil respiration across a chronosequence of tallgrass prairie reconstructions”, Agriculture, ecosystems & environment, vol. 139, pp. 749-753, 2010.
, “Climate-friendly farming strategies can improve the land and generate income for farmers”, 2021. [Online]. Available: https://theconversation.com/climate-friendly-farming-strategies-can-improve-the-land-and-generate-income-for-farmers-157220.
, “Comparing Nitrate Sink Strength in Perennial Filter Strips at Toeslopes of Cropland Watersheds”, Journal of Environmental Quality, 2014.
2014 Mitchell et al. JEQ.pdf (878.38 KB)
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“Contour prairie strips affect adjacent soil but have only slight effects on crops”, Field Crop Research, vol. 269, 2023.
, “Contour prairie strips affect adjacent soil but have only slight effects on crops”, Field Crop Research, vol. 269, 2023.
, “The Cost of Prairie Strips”, 2013. .
the_cost_of_prairie_conservation_strips.pdf (1.36 MB)
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“Degradation of tetracycline, sulfamethazine, and tylosin in soil from prairie strips and row crops in Iowa”, Agroecosystems, Geosciences, and Environment, vol. 5, 2022.
, “Degradation of tetracycline, sulfamethazine, and tylosin in soil from prairie strips and row crops in Iowa”, Agroecosystems, Geosciences, and Environment, vol. 5, 2022.
, “Diversifying agricultural catchments by incorporating tallgrass prairie buffer strips”, Ecological Restoration, vol. 31, pp. 201-211, 2013.
, “Effects of grassland habitat and plant nutrients on soybean aphid and natural enemy populations”, Environmental Entomology, vol. 40, pp. 260-272, 2011.
, “Evaluation of CRP contour buffer and filter strips as habitat for native bees and predatory ground beetles”, Iowa State University, Ames, Iowa, 2016.
moorhouse_2016_msthesis_-_eval_of_crp_contour_buffer_and_filter_strips_as_bee_and_beetle_habitat.pdf (1.1 MB)
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“Exploring stakeholder consensus for multiple outcomes in agriculture: an Iowa case study.”, Frontiers in Sustainable Food Systems, vol. 13, 2019.
, “Extending removal and distance-removal models for abundance estimation by modeling detections in continuous time”, Iowa State University, Ames, IA, 2017.
martinschwarzeadam_2017_dissertation.pdf (1.18 MB)
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“The impact of biodiversity services in row crop production in annual verses perennial landscapes”, 2011.
, “The impact of policy design on willingness to pay for ecosystem services from prairie strips”, Journal of the Agricultural and Applied Economics Association, 2022.
, “The impact of policy design on willingness to pay for ecosystem services from prairie strips”, Journal of the Agricultural and Applied Economics Association, 2022.
, , “ Managing a 2G crop portfolio through sustainable intensification: examples from the US and EU”, Biofuels, Bioproducts & Biorefining, vol. 7, 2013.
, “Miniature temperature data loggers increase precision and reduce bias when estimating the daily survival rate for bird nests”, Journal of Field Ornithology, 2021.
, “Native vegetation embedded in landscapes dominated by corn and soybean improves honey bee health and productivity”, Journal of Applied Ecology, 2023.
, , “Plant Community and Soil Functional Characteristics of Prairie Conservation Strips”, 2015.
Mueller & Liebman 2015 STRIPS poster.pdf (1.63 MB)
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“Prairie strips as a mechanism to promote land sharing by birds in industrial agricultural landscapes”, Agriculture, Ecosystems, and Environment, vol. http://dx.doi.org/10.1016/j.agee.2016.01.007, 2016.
, “Prairie strips’ effect on transport of antimicrobial resistance indicators in poultry litter”, Journal of Environmental Quality, vol. 51, 2022.
, “Prairie strips help honey bees and wild pollinators”, Iowa State University, Ames, 2020.
strips_ffar_infosheet_20200203.pdf (748.6 KB)
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“Prairie strips provide late-summer forage for bees”, Iowa State University, 2019.
strips_ffar_infosheet_final_draft.pdf (702.86 KB)
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“Prairie Strips Reduce Fecal Indicator Bacteria Concentrations in Simulated Runoff”, Journal of the American Water Resources Association, vol. 00, 2022.
, “Prairie Strips Remove Swine Manure Associated Antimicrobial Resistance Genes and Bacteria from Runoff”, Agriculture, Ecosystems & Environment, vol. 349, 2023.
, “Prairie Strips Remove Swine Manure Associated Antimicrobial Resistance Genes and Bacteria from Runoff”, Agriculture, Ecosystems & Environment, vol. 349, 2023.
, “Producing food, feed and energy: How can agriculture do it all?”, 25th Annual Integrated Crop Management Conference. Iowa State University, Ames, Iowa, 2013.
producing_food_feed_and_energy_how_can_agriculture_do_it_all_.pdf (2.95 MB)
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“Producing food, feed and energy: How can agriculture do it all?”, 25th Annual Integrated Crop Management Conference. Iowa State University, Ames, Iowa, 2013.
producing_food_feed_and_energy_how_can_agriculture_do_it_all_.pdf (2.95 MB)
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“Program Evaluation of a Workshop on Prairie Strips for Farm Advisors: Framing the Co-Occurring Outcomes of Low Knowledge Acquisition and High Confidence”, Horiculturae, vol. 8, no. 12, 2022.
horticulturae-08-01215.pdf (8.92 MB)
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“Seasonal patterns in depth of water uptake under contrasting annual and perennial systems in the Corn Belt Region of the Midwestern US”, Plant and Soil, vol. 308, pp. 69-92, 2008.
, “Soil respiration and plant growth across a chronosequence of tallgrass prairie reconstructions”, 2007.
, “Strategies to improve native bee (Hymenoptera: Apoidea) habitat in agroecosystems”, Iowa State University, Ames, Iowa, 2019.
, “Subfield profitability analysis reveals an economic case for cropland diversification”, Environmental Research Letters, vol. 11, no. 1, p. 014009, 2016.
, “Subfield profitability analysis reveals an economic case for cropland diversification”, Environmental Research Letters, vol. 11, no. 1, p. 014009, 2016.
, “Variation in water uptake dynamics among contrasting agricultural and native plant communities in the Midwestern US”, Agriculture, ecosystems & environment, vol. 121, pp. 343-356, 2007.
, “Working landscapes need at least 20% native habitat”, Conservation Letters, vol. 14(2): 14:e12773. https://doi.org/10.1111/conl.12773, 2020.
, “Working landscapes need at least 20% native habitat”, Conservation Letters, vol. 14(2): 14:e12773. https://doi.org/10.1111/conl.12773, 2020.
, “Working landscapes need at least 20% native habitat”, Conservation Letters, vol. 14(2): 14:e12773. https://doi.org/10.1111/conl.12773, 2020.
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