Soil Health Analysis, Set. Группа авторов
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40 Liebig, M. A., Miller, M. E., Varvel, G. E., Doran, J. W., & Hanson, J. D. (2004). AEPAT: Software for assessing agronomic and environmental performance of management practices in long‐ term agroecosystem experiments. Agronomy Journal, 96, 109–115. https://doi.org/10.2134/agronj2004.0109
41 Mausbach, M. J., & Seybold, C. A. (1998). Assessment of soil quality. In R. Lal (Ed.), Soil quality and agricultural sustainability (pp. 33–43). Chelsea, MI: Ann Arbor Press.
42 McDaniel, M. D., Tiemann, L. K., & Grandy, A. S. (2014). Does agricultural crop diversity enhance soil microbial biomass and organic matter dynamics? A meta‐analysis. Ecological Applications, 24(3), 560–570. https://doi.org/10.1890/13‐0616.1
43 Moebius, B. N., van Es, H. M., Schindelbeck, R. R., Idowu, O. J., Thies, J. E., & Clune, D. J. (2007). Evaluation of laboratory‐measured soil properties as indicators of soil physical quality. Soil Science, 172, 895–912. https://doi.org/10.1097/ss.0b013e318154b520
44 Montgomery, D. R. (2007). Dirt: The erosion of civilizations. Berkley, CA: University of California Press.
45 National Research Council. (1993). Soil and water quality: An agenda for agriculture. Washington, DC: National Academic Press.
46 Norris, C. E., Bean, G. M., Cappellazzi, S. B., Cope, M., Greub, K. L. H., Liptzin, D., Rieke, E. L., Tracy, P. W., Morgan, C. L. S., & Honeycutt, C. W. (2020). Introducing the North American project to evaluate soil health measurements. Agronomy Journal. https://doi.org/10.1002/agj2.20234
47 Nutrien Ltd. (2018). Nutrien Announces Agreement to Purchase Waypoint Analytical, a Leading U.S. Agricultural Lab and Soil Science Company. https://www.prnewswire.com/news‐releases/nutrien‐announces‐agreement‐to‐purchase‐waypoint‐analytical‐a‐leading‐us‐agricultural‐lab‐and‐soil‐science‐company‐300677498.html (verified 13 July 2020).
48 Pankhurst, C. E., Doube, B. M., & Gupta, V. V. S. R. (1997). Biological indicators of soil health: Synthesis. In C. E. Pankhurst, B. M. Doube, & V. V. S. R. Gupta (Eds.), Biological indicators of soil health (pp. 419–435). New York: CAB International.
49 Paustian, K., Lehmann, J., Ogle, S., Reay, D., Robertson, G. P., & Smith, P. (2016). Climate‐smart soils. Nature, 532(7597), 49–57. https://doi.org/10.1038/nature17174
50 Renard, K. G., Yoder, D. C., Lightle, D. T., & Dabney, S. M. (2011). Universal soil loss equation and revised universal soil loss equation. In R. P. C. Morgan & M. A. Nearing (Eds.), Handbook of erosion modelling (pp. 137–167). Oxford, UK: Blackwell Publishing.
51 Schjønning, P., Elmholt, S., & Christensen, B. T. (2004). Soil quality management– Concepts and terms. In P. Schjønning, S. Elmholt, & B. T. Christensen (Eds.), Managing soil quality: Challenges in modern agriculture (pp. 1–15). Wallingford, UK: CABI Publishing.
52 Singh, B. K., Millard, P., Whiteley, A. S., & Murrell, J. C. (2004). Unravelling rhizosphere–microbial interactions: Opportunities and limitations. Trends in Microbiology, 12(8), 386–393. https://doi.org/10.1016/j.tim.2004.06.008
53 Stott, D. E., Andrews, S. S., Liebig, M. A., Wienhold, B. J., & Karlen, D. L. (2010). Evaluation of β‐ glucosidase activity as a soil quality indicator for the soil management assessment framework (SMAF). Soil Science Society of America Journal, 74, 107–119. https://doi.org/10.2136/sssaj2009.0029
54 Sustainability Reports. (2019). 86% of S&P 500 Index Companies Publish Sustainability / Responsibility Reports in 2018. https://www.sustainability‐reports.com/86‐of‐sp‐500‐index‐companies‐publish‐sustainability‐responsibility‐reports‐in‐2018/
55 Tilman, D. G. (1998). The greening of the green revolution. Nature, 396, 211–212. doi:10.1038/24254
56 Turmel, M. S., Speratti, A., Baudron, F., Verhulst, N., & Govaerts, B. (2015). Crop residue management and soil health: A systems analysis. Agricultural Systems, 134, 6–16. https://doi.org/10.1016/j.agsy.2014.05.009
57 USDA‐ARS. (2015). Revised Universal Soil Loss Equation, Version 2 (RUSLE2). USDA National Soil Erosion Research Laboratory. https://data.nal.usda.gov/dataset/revised‐universal‐soil‐loss‐equation‐version‐2‐rusle2 (verified 12 June 2020).
58 USDA‐ARS. (2017). Water Erosion Prediction Project (WEPP). USDA Agricultural Research Service. Washington, DC. https://data.nal.usda.gov/dataset/water‐erosion‐prediction‐project‐wepp (verified 12 June 2020).
59 USDA‐ARS. (2018). Wind Erosion Prediction System (WEPS). USDA ARS Engineering & Wind Erosion Research Unit. Washington, DC. https://data.nal.usda.gov/dataset/wind‐erosion‐prediction‐system‐weps (verified 12 June 2020).
60 USDA‐NRCS. (2019a). The Basics of Addressing Resource Concerns with Conservation Practices within Integrated Soil Health Management Systems on Cropland, by D. Chessman, B.N. Moebius‐Clune, B.R. Smith, and B. Fisher. Soil Health Technical Note No. 450‐04. Available on NRCS Electronic Directive System. Washington, DC. https://directives.sc.egov.usda.gov (verified 12 June 2020).
61 USDA‐NRCS. (2019b). Recommended Soil Health Indicators and Associated Laboratory Procedures, by D.E. Stott. Soil Health Technical Note No. 430‐03. Available on NRCS Electronic Directive System. Washington, DC. https://directives.sc.egov.usda.gov (verified 12 June 2020).
62 USDA‐NRCS. (2020a). Electronic Directive, National Bulletin. NB 450‐20‐1 Field Office Technical Guide Resource Concerns and Planning Criteria List and Update (Title 450). Washington, DC. https://directives.sc.egov.usda.gov/ (verified 12 June 2020).
63 USDA‐NRCS. (2020b). Electronic Directive, National Handbook of Conservation Practices (Title 450), Part 620, Subpart C, National Practice Standards. Washington, DC https://directives.sc.egov.usda.gov/(verified 6‐12‐2020).
64 USDA‐NRCS. (2020c). NRCS Conservation Activity Soil Testing (Code 216). Washington, DC. https://directives.sc.egov.usda.gov/