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Nature, 2000
Carbon deposition under extreme conditions causes tree-like structures to spring up. The complex deposition and growth of graphitic carbon has come up with several surprises in recent years, including the growth of fullerenes and carbon nanotubes1. Here we describe the spectacular growth of micron-sized tree-like carbon structures produced by chemical ...
Ajayan, P. +4 more
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Carbon deposition under extreme conditions causes tree-like structures to spring up. The complex deposition and growth of graphitic carbon has come up with several surprises in recent years, including the growth of fullerenes and carbon nanotubes1. Here we describe the spectacular growth of micron-sized tree-like carbon structures produced by chemical ...
Ajayan, P. +4 more
openaire +3 more sources
Limits to Tree Growth and Longevity
Trends in Plant Science, 2018Tree growth and longevity are key features to understand fundamental issues of plant biology, environmental sciences, and current forest management plans. Here I discuss current evidence on the limits of tree growth and longevity and present a new conceptual framework to understand how and why they are closely interconnected.
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Faster tree growth is no panacea
Science, 2017Climate Change Climate warming, nitrogen deposition, and (in fertile ecosystems) elevated carbon dioxide may cause plants to grow faster. Can this growth stimulation lead to higher carbon storage in existing forests and help to mitigate climate change?
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Abstract This chapter discusses various requirements for tree growth. Trees obtain energy from photosynthesis and have two basic ways of using it. They need energy to maintain a given size. Processes within their tissues take in energy, resulting in autotrophic respiration, but they additionally require energy to regularly replace ...
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Urban tree inventories as a tool to assess tree growth and failure: The case for Australian cities
Landscape and Urban Planning, 2023Paul Rymer, Manuel Esperón-RodrÃguez
exaly

