Soil Organic Carbon: Past, Present, and Future Research
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Publisher
Springer Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-16-0917-6_3
Reference86 articles.
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2. Alvarez G, Shahzad T, Andanson L, Bahn M, Wallenstein MD, Fontaine S (2018) Catalytic power of enzymes decreases with temperature: New insights for understanding soil C cycling and microbial ecology under warming. Global Change Biol 24:4238–4250
3. Arrouays D, McBratney A, Minasny B, Hempel J, Heuvelink G, MacMillan R, Hartemink A, Lagacherie P, McKenzie N (2014) The GlobalSoilMap project specifications. In: Arrouays D, McKenzie N, de Forges AR, Hempel J, McBratney AB (eds) GlobalSoilMap: Basis of the global spatial soil information system. CRC Press, Taylor & Francis Group, Orleans, France
4. Badgery WB, Simmons AT, Murphy BM, Rawson A, Andersson KO, Lonergan VE, van de Ven R (2013) Relationship between environmental and land-use variables on soil carbon levels at the regional scale in Central New South Wales, Australia. Soil Res 51(8):645–656
5. Banwart SA, Black H, Cai Z, Gicheru PT, Joosten H, Victoria RL, Milne E, Noellemeyer E, Pascual U (2015) Executive summary. In: in Banwart SA, Noellemeyer E, Milne E (eds) Soil carbon: science, management, and policy for multiple benefits. CAB International, London, pp xxi–xxvii
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