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Vegetation Chronosequence in Hong Kong

Soil Properties and SuccessionalDevelopment

Bibliographic Data

ID20153357
AuthorsK C Chau (Chinese University of Hong Kong), Lawal M Marafa (0000-0001-5281-563X, Chinese University of Hong Kong)
Year1999
Volume20
Issue1
Pages24-35
Publication date1999-06-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueSingapore Journal of Tropical Geography (JOURNAL)
Journal identifiersISSN: 0129-7619 • E-ISSN: 1467-9493
PublisherWiley (PUBLISHER • GB)
DOI10.1111/1467-9493.00041
OpenAlexW2076294824
LanguageEN
Citations received1

The soil properties of a vegetation chronosequence in Hong Kong involving a grassland, a 22‐year mixed woodland, a 52‐year forest and two graduation 150‐year old climax ( feng shui ) forests were examined. The objectives were to test the three hypotheses: (1) there are no significant differences in soil chemical properties between different climax forests, (2) exotic species are inferior to native species in soil amelioration; and (3) organic carbon, nitrogen and cation nutrients tend to accumulate in the soils during successional development of the vegetation. The results show that the soils along the vegetation chronosequence are strongly acidic in reaction, contained moderate to high levels of organic carbon, high exchangeable acidity, and low levels of mineral nitrogen (NH⊂4⊂> and NO⊂3⊂), available phosphorus and cation nutrients. All the three hypotheses are rejected. While the feng shui forests differed markedly in soil properties, exotic species were superior to native species in augmenting soil organic carbon, mineral nitrogen and exchangeable Ca. There was no accumulation of organic carbon, nitrogen and cation nutrients with ecological succession, due to the influence of patchy fire, species composition, parent materials and distance from the sea

Agronomy · Biology · Chronosequence · Climax · Climax community · Ecological succession · Grassland · Nutrient · Primary succession · Soil carbon · Soil organic matter · Soil water · Vegetation (pathology) · Ecology · Ecology and Vegetation Dynamics Studies · Environmental Science · Geology and Paleoclimatology Research · Plant Ecology and Soil Science · Soil Science

  • Species adoption for sustainable forestry in Hong Kong’s degraded countryside

    Hanxi Zhang, C Y Jim•International Journal of…•2013

Unique citing works1
Citations per year0,08
Citation span2013 - 2013 (1)
Citation velocityhistorical
Highly citedNo
Citation typesNeutral: 1

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