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Accumulation of plant nutrients and changes in soil properties of sandy soils under fertilized pasture in southeastern South-Australia .II. Total sulfur and nitrogen, organic carbon and pH

DC Lewis, AL Clarke and WB Hall
25(2) pp.203 - 210


20 articles found in Crossref database.

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The Journal of Agricultural Science. 1992 119(1). p.89
Handbook of Soil Acidity (2003)
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Accumulation of soil sulphur fractions in grazed pastures receiving long-term superphosphate applications
Nguyen M. L., Goh K. M.
New Zealand Journal of Agricultural Research. 1990 33(1). p.111
Predicted change in soil carbon following afforestation or reforestation, and analysis of controlling factors by linking a C accounting model (CAMFor) to models of forest growth (3PG), litter decomposition (GENDEC) and soil C turnover (RothC)
Paul K.I, Polglase P.J, Richards G.P
Forest Ecology and Management. 2003 177(1-3). p.485
Plant-Soil Interactions at Low pH (1991)
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Plant-Soil Interactions at Low pH (1991)
Bolan N. S., Hedley M. J., White R. E.
Handbook of Soil Acidity (2003)
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Plant-Soil Interactions at Low pH: Principles and Management (1995)
Crawford D. M., Parnell C. D., Maheswaran J.
Sulphur mineralization and release of soluble organic sulphur from camp and non-camp soils of grazed pastures receiving long-term superphosphate applications
Nguyen M. L., Goh K. M.
Biology and Fertility of Soils. 1992 14(4). p.272
Pasture production and changes in phosphorus and sulphur status in irrigated pastures receiving long-term applications of superphosphate fertiliser
Nguyen M. L., Rickard S. D., McBride S.D.
New Zealand Journal of Agricultural Research. 1989 32(2). p.245
Sulphur cycling and its implications on sulphur fertilizer requirements of grazed grassland ecosystems
Nguyen M.L., Goh K.M.
Agriculture, Ecosystems & Environment. 1994 49(2). p.173
The effect of nitrogen, phosphorus and potassium fertilizer applications on the seed yield of sunflower (Helianthus annuus L.) grown on sandy soils and the prediction of phosphorus and potassium responses by soil tests
Lewis D. C., Potter T. D., Weckert S. E.
Fertilizer Research. 1991 28(2). p.185
Nutrient cycling and losses based on a mass-balance model in grazed pastures receiving long-term superphosphate applications in New Zealand: 2. Sulphur
Nguyen M. L., Goh K. M.
The Journal of Agricultural Science. 1992 119(1). p.107
The soil fertility effects of leguminous ley pastures in north-east Thailand
Waring S.A., Gibson T.A.
Field Crops Research. 1994 39(2-3). p.129
The Potential of U.S. Grazing Lands to Sequester Carbon and Mitigate the Greenhouse Effect (2000)
Schnabel R, Franzluebbers A, Stout W, Sanderson M, Stuedemann J
Plant-Soil Interactions at Low pH (1991)
Hodge T. J. V.
Processes of soil acidification during nitrogen cycling with emphasis on legume based pastures
Bolan N. S., Hedley M. J., White R. E.
Plant and Soil. 1991 134(1). p.53
Status and distribution of soil sulphur fractions, total nitrogen and organic carbon in camp and non-camp soils of grazed pastures supplied with long-term superphosphate
Nguyen M. L., Goh K. M.
Biology and Fertility of Soils. 1992 14(3). p.181
Plant-Soil Interactions at Low pH (1991)
Hodge T. J. V., Michelsen P. P.
Recent trends in soil fertility across the farms of East Gippsland
Crawford D. M., Mitchard B., Burton W. R.
Soil Research. 2020 58(6). p.561

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