Howard D E,Evans R D. Acid-volatile sulfide (AVS) in a seasonally anoxic mesotrophic lake: seasonal and spatial changes in sediment AVS. Environ Toxicol Chem, 1993, 12: 1051-1057
[2]
Leonard E N, Mattson V R, Benoit D A, et al. Seasonal variation of acid volatile sulfide concentration in sediment cores from three northeastern Minnesoda lakes. Hydrobiologia, 1993, 271:87-95
[3]
Van den Berg G A, Gustav Loch J P, Van Der Heijdt L M, et al. Vertical distribution of acid-volatile sulfide and simultaneously extracted metals in a recent sedimentation area of the river Meuse in the Netherlands. Environ Toxicol Chem, 1998, 17: 758-763
[4]
Besser J M, Ingersoll C G, Giesy J P. Effects of special and temporal variation of acid -volatile sulfide on the bioavailability of copper and zinc in freshwater sediments. Environ Toxicol Chem, 1996, 15: 286-293
Feng J ,Hsieh Y P. Sulfate reduction in freshwater wetland soils and the effects of sulfate and substrate loading. J Environ Quality, 1998, 27: 968-972
[9]
Oenema O. Pyrite accumulation in salt marshes in the Eastern Scheldt, Southwest Netherlands. Biogeochem, 1990, 9: 75-98
[10]
Dornblaser M, Giblin A E, Fry B, Peterson B J. Effect of sulfate concentration in the overlying water on sulfate reduction and sulfur storage in lake sediments. Biogeochem, 1994, 24:129-144
[11]
Capone D G, Kiene R P. Comparison of microbial dynamics in marine and freshwater sediments: contrast in anaerobic carbon metabolism. Limnol Oceanogr, 1988, 33:725-749