Characterizing phosphorus forms in cropland soils with solution 31P-NMR: past studies and future research needs

Author:

Cade-Menun Barbara J.ORCID

Publisher

Springer Science and Business Media LLC

Subject

Agronomy and Crop Science,Biochemistry,Food Science,Biotechnology

Reference81 articles.

1. Richardson AE, Lynch JP, Ryan PR, Delhaize E, Smith FA, Smith SE, Harvey PR, Ryan MH, Veneklaas EJ, Lambers H, Oberson A, Culvenor RA, Simpson RJ. Plant and microbial strategies to improve the phosphorus efficiency of agriculture. Plant Soil. 2011;349:121–56.

2. Faucon MP, Houben D, Reynoird JP, Mercadal-Dulaurent AM, Armand R, Lambers H. Advances and perspectives to improve the phosphorus availability in cropping systems for agroecological phosphorus management. Adv Agron. 2015;134:51–79.

3. Pierzynski GM, McDowell RW, Sims JT. Chemistry, cycling and potential movement of inorganic phosphorus in soils. In: Sims JT, Sharpley AN, editors. Phosphorus, agriculture and the environment. Monograph no 46. Madison: Soil Science Society of America; 2005. p. 53–86.

4. Condron LM, Turner BL, Cade-Menun BJ. Chemistry and dynamics of soil organic phosphorus. In: Sims JT, Sharpley AN, editors. Phosphorus, agriculture and the environment. Monograph no 46. Madison: Soil Science Society of America; 2005. p. 87–121.

5. Turner BL, Papházy MJ, Haygarth PM, McKelvie ID. Inositol phosphates in the environment. Phil Trans R Soc Lond. 2002;357:449–69.

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