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No tillage increases soil microarthropod(Acari and Collembola)abundance at the global scale
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作者 Yulin Liu Lihong Song +4 位作者 Donghui Wu Zihan Ai Qian Xu Xin Sun Liang Chang 《Soil Ecology Letters》 CSCD 2024年第2期5-19,共15页
Conservation tillage increases soil microarthropod abundance at the global scale.The effect of conservative tillage on microarthropods is soil texture-dependent.This positive effect of conservation tillage is particul... Conservation tillage increases soil microarthropod abundance at the global scale.The effect of conservative tillage on microarthropods is soil texture-dependent.This positive effect of conservation tillage is particularly evident in nutrient-poor soil areas.In temperate humid regions,however,this positive effect of conservation tillage is limited.The effect of conservative tillage on microarthropods varies with fauna group and climate regions. 展开更多
关键词 no tillage soil microarthropod ACARI COLLEMBOLA META-ANALYSIS
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Characterization of soil fauna under the influence of mercury atmospheric deposition in Atlantic Forest, Rio de Janeiro, Brazil 被引量:3
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作者 Andressa Cristhy Buch Maria Elizabeth Fernandes Correia +1 位作者 Daniel Cabral Teixeira Emmanoel Vieira Silva-Filho 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2015年第6期217-227,共11页
The increasing levels of mercury(Hg) found in the atmosphere arising from anthropogenic sources, have been the object of great concern in the past two decades in industrialized countries. Brazil is the seventh count... The increasing levels of mercury(Hg) found in the atmosphere arising from anthropogenic sources, have been the object of great concern in the past two decades in industrialized countries. Brazil is the seventh country with the highest rate of mercury in the atmosphere.The major input of Hg to ecosystems is through atmospheric deposition(wet and dry), being transported in the atmosphere over large distances. The forest biomes are of strong importance in the atmosphere/soil cycling of elemental Hg through foliar uptake and subsequent transference to the soil through litter, playing an important role as sink of this element. Soil microarthropods are keys to understanding the soil ecosystem, and for such purpose were characterized by the soil fauna of two Units of Forest Conservation of the state of the Rio de Janeiro, inwhich one of the areas suffer quite interference from petrochemicals and industrial anthropogenic activities and other area almost exempts of these perturbations. The results showed that soil and litter of the Atlantic Forest in Brazil tend to stock high mercury concentrations, which could affect the abundance and richness of soil fauna, endangering its biodiversity and thereby the functioning of ecosystems. 展开更多
关键词 Biodiversity Litter microarthropods soil Trace-element
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