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- Zhang, Yuguang, et al. Show all 9 Authors
- Global change biology 2018 v.24 no.8 pp. 3344-3356
- climate; climate change; databases; dry environmental conditions; inorganic phosphorus; models; particle size; phosphorus; sand fraction; soil depth; temperature; terrestrial ecosystems
- ... Climate is predicted to change over the 21st century. However, little is known about how climate change can affect soil phosphorus (P) cycle and availability in global terrestrial ecosystems, where P is a key limiting nutrient. With a global database of Hedley P fractions and key‐associated physiochemical properties of 760 (seminatural) natural soils compiled from 96 published studies, this study ...