Agriculture Reference
In-Depth Information
Harris, JA; Birch, P. Soil microbial activity in opencast coal mine restoration. Soil Use and
Management , 1989 5, 155-160.
Hayano, K; Tubaki, K. Origin and properties of b-glucosidase activity of tomato field soil.
Soil Biology and Biochemistry , 1985 17, 53-557.
Hernandez, T; Moral, R; Perez-Espinosa, A; Moreno-Caselles, J; Perez-Murcia, MD; Garcia,
C. Nitrogen mineralization potential in calcerous soils amended with sewage sludge.
Bioresource Technology , 2002 83, 213-219.
Hinojosa, MB; Carreira, JA; García-Ruíz, R; Dick, RP. Soil moisture pre-treatment effects on
enzyme activities as indicators of heavy metal-contaminated and reclaim soils. Soil
Biology and Biochemistry , 2004 1559-1568.
Ibekwe, AM; Angle, JS; Chaney, RL; van Berkum, P. Sewage sludge and heavy metal effects
on nodulation and nitrogen fixation of legumes. Journal of Environmental Quality , 1995
24, 1199-1204.
Ibekwe, AM; Angle, JS; Chaney, RL; van Berkum, P. Differentiation of clover Rhizobium
isolated from biosolids-amended soils with varying pH. Soil Science Society American
Journal , 1997 61, 1679-1685.
Ibekwe, AM; Angle, JS; Chaney, RL; van Berkum, P. Zinc and cadmium effects on Rhizobia
and white clover using chelator-buffered nutrient solution. Soil Science Society American
Journal , 1998 62, 204-211.
Kizilkaya, R; Askin, T; Bayrakli, B; Saglam, M. Microbiological characteristics of soils
contaminated with heavy metals, European Journal of Soil Science , 2004 40, 95-102.
Lakzian, A; Murphy, P; Turner, A; Beynon, JL; Giller, KE. Rhizobium leguminosarum bv.
viciae populations in soils with increasing heavy metal contamination: abundance,
plasmid profiles, diversity and metal tolerance. Soil Biology and Biochemistry , 2002 34,
519-529.
Malik, A. Metal bioremediation through growing cells. Environmental International , 2004
30, 261-278.
Margesin, R; Zimmerbauer, A; Schinner, F. Monitoring of bioremediation by soil biological
activities. Chemosphere , 2002 40, 339-346.
Mathur, SP; MacDougall, JI; McGrath, M. Levels of activities of some carbohydrates,
protease, lipase and phosphates in organic soils of differing copper content. Soil Science ,
1980 129, 376-385.
Marzadori, C; Ciavatta, C; Montecchio, D; Gessa, C. Effetcs of lead pollution on different
soil enzyme activities. Biology and Fertility of Soils , 1996 22, 53-58.
Matsuda A; Moreira, FMS; Siqueira, JO. Tolerância de rizóbios de diferentes procedências ao
zinco, cobre e cádmio. Pesquisa Agropecuária Brasileira , 2002 37, 343-355.
McGrath, SP; Chaudri, AM; Giller, KE. Long-term effects of metals in sewage sludge on
soils, microorganisms and plants. Journal of Industrial Microbiology 1995 14, 94-104.
Nannipieri, P; Pechozzini, F; Arcada, PG; Pioranelli, C. Changes in amino acids, enzyme
activities and biomass during soil microbial growth. Soil Science , 1979 127, 26-34.
Nannipieri, P. The potential use of soil enzymes as indicators of productivity, sustainability
and pollution. In: Pankhurst CE, Doube BM, Gupta VVSR, Grace PR editors. Soil Biota,
Management in Sustainable Farming Systems . Australia: CSIRO Publication; 1994; 238-
244.
Obbard, JP. Ecotoxicological assessment of heavy metals in sewage sludge amended soils.
Applied Geochemistry , 2001 16, 1405-1411.
Search WWH ::




Custom Search