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Restoration of ecosystem function in an abandoned sandpit: plant and soil responses to paper de‐inking sludge
Author(s) -
Fierro Alejandro,
Angers Denis A.,
Beauchamp Chantal J.
Publication year - 1999
Publication title -
journal of applied ecology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.503
H-Index - 181
eISSN - 1365-2664
pISSN - 0021-8901
DOI - 10.1046/j.1365-2664.1999.00395.x
Subject(s) - environmental science , phosphorus , amendment , agronomy , nutrient , biomass (ecology) , ecosystem , sewage sludge , land reclamation , nutrient cycle , growing season , zoology , environmental engineering , chemistry , biology , ecology , sewage treatment , organic chemistry , political science , law
1. In minesoil reclamation, the establishment of a sustainable plant cover requires the improvement of limiting conditions and the re‐initiation of carbon (C) and nutrient cycling. 2. The approach used in this study for reclaiming an abandoned sandpit in Quebec, Canada, was based on a heavy organic amendment as an attempt to accelerate the reconstruction of a functional ecosystem. 3. The one‐time intervention consisted of incorporating paper de‐inking sludge into soil at two rates (0 and 105 dry t ha –1 ), supplemented with nitrogen (N) at three rates (3, 6 and 9 g kg –1 sludge) and phosphorus (P) at two rates (0·5 and 1·0 g kg –1 sludge) followed by seeding (mid‐summer) of Agropyron elongatum (Host) Beauv. (tall wheatgrass). 4. Standing biomass increased in the presence of sludge after both the first and second full growing seasons. High N application rates further increased yield, more importantly in the second season. The high P rate improved grass establishment in all cases. Ground cover increased with time and doubled in the presence of sludge whereas it declined in the absence of sludge. Phosphorus and N uptake was improved consistently in the presence of sludge. 5. Sludge application resulted in improved water retention and cation exchange capacities, and an increase in pH and bulk density of sandpit minesoil, all of which may have accounted for the significant improvement in plant responses. Levels of soil C and N suggest that this reconstructed system is approaching sustainability. 6. Adequate N and P supplements will accentuate the positive influence of sludge on revegetation.

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