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Data from: Intensive forest harvesting increases susceptibility of northern forest soils to carbon, nitrogen and phosphorus loss
负责人:
关键词:
Harvest intensity;Clearcutting;Compound disturbance;phosphorus;forest harvesting;nitrogen;Rotation length;carbon;1970s to 2016;Whole-tree harvesting;meta-analysis
DOI:
doi:10.5061/dryad.dd602
摘要:
with fire. Stem-only and whole-tree harvesting similarly reduced forest floor [P]. The negative effects of harvesting were most pronounced in conifer stands
Data from: Ecological restoration success is higher for natural regeneration than for active restoration in tropical forests
负责人:
关键词:
Active restoration;tropical forests;restoration;natural regeneration;biodiversity;Vegetation structure
DOI:
doi:10.5061/dryad.5428h
摘要:
Is active restoration the best approach to achieve ecological restoration success (the return to a reference condition, that is, old-growth forest
Data from: Ants as ecological indicators of rainforest restoration: community convergence and the development of an Ant Forest Indicator
负责人:
关键词:
ants;bioindicators;restoration
DOI:
doi:10.5061/dryad.rs8vc
摘要:
Ecosystem restoration can help reverse biodiversity loss, but whether faunal communities of forests undergoing restoration converge with those
Data from: Limited biomass recovery from gold mining in Amazonian forests
负责人:
关键词:
gold mining;Amazon land use;biomass recovery;Forest recovery;forest restoration;Tropical forest recovery;secondary forests
DOI:
doi:10.5061/dryad.j6q573n9s
摘要:
-based quantification of gold mining impacts on Amazon forest biomass recovery.?
  • We found that woody biomass recovery rates on abandoned mining
    Data from: Acceleration and novelty: community restoration speeds recovery and transforms species composition in Andean cloud forest
    负责人:
    关键词:
    DOI:
    doi:10.5061/dryad.41356
    摘要:
    forest increased biodiversity and accelerated forest recovery, restored forests may also represent novel ecosystems that are distinct from the region
    Data from: Biomass resilience of Neotropical secondary forests
    负责人:
    关键词:
    biomass;rainfall;mitigation;land use;secondary succession;carbon;Tropical Forest;neotropics;soil fertility
    DOI:
    doi:10.5061/dryad.82vr4
    摘要:
    of old-growth forests. Aboveground biomass stocks took a median time of 66 years to recover to 90% of old-growth values. Aboveground biomass recovery after 20 yea
    Data from: Do secondary forests act as refuges for old growth forest animals? Recovery of ant diversity in the Atlantic forest of Brazil
    负责人:
    关键词:
    Soil fauna;Formicidae;Nested subsets;Insecta;tropical forests;Faunal recovery;Hymenoptera;secondary forests;resilience
    DOI:
    doi:10.5061/dryad.3h12j8d3
    摘要:
    , to investigate the recovery of soil taxa during secondary forest succession in the Atlantic Forest of Southern Brazil. We compared the resilience of epigeic
    Data from: Effects of restoration on tree communities and carbon storage in rainforest fragments of the Western Ghats, India
    负责人:
    关键词:
    Carbon storage;conservation;Ecological restoration;climate change mitigation;tree diversity.;natural regeneration;Forest recovery
    DOI:
    doi:10.5061/dryad.g7j45sn
    摘要:
    tropical forests. There have been few comprehensive assessments of recovery following restoration in fragmented forest landscapes, and the efficacy of active ver
    Data from: Which landscape size best predicts the influence of forest cover on restoration success? – A global meta-analysis on the scale of effect
    负责人:
    关键词:
    habitat loss;scale of effect;Mammals;Reptiles;Vegetation structure;1981-2009;Birds;Invertebrates;buffer size;fragmentation;species composition;Amphibians
    DOI:
    doi:10.5061/dryad.v1r34
    摘要:
    s of ecological restoration remains unclear. Thus, a primary question arises: which landscape size best predicts the effects of forest cover on restoration success? To answer
    Data from: Effects of tree harvest on the stable-state dynamics of savanna and forest
    负责人:
    关键词:
    Human impact;Interactions: plant\/plant;Grasslands;Anthropocene;fuelwood harvest;Life history: ecology;survey;Homo Sapiens;Tropical Forest;Modeling: population ecology;Savanna
    DOI:
    doi:10.5061/dryad.vg121
    摘要:
    about the differential demographic responses of savanna trees and forest trees to harvest to show how tree harvest influences tree cover, demography

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