2019
DOI: 10.1016/j.foreco.2019.03.046
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Stand density and carbon storage in cypress-tupelo wetland forests of the Mississippi River delta

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Cited by 8 publications
(2 citation statements)
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“…In addition, we also calculated the Reineke's Stand Density Index (SDI) for each plot (using our own empirical exponent 1.536, instead of Reineke's 1.605). The SDI has been used as a measure of density for predicting forest productivity [30]: Figure 1. Spatial distributions of field plots by group in the state of Durango.…”
Section: Maximum Forest Densitymentioning
confidence: 99%
“…In addition, we also calculated the Reineke's Stand Density Index (SDI) for each plot (using our own empirical exponent 1.536, instead of Reineke's 1.605). The SDI has been used as a measure of density for predicting forest productivity [30]: Figure 1. Spatial distributions of field plots by group in the state of Durango.…”
Section: Maximum Forest Densitymentioning
confidence: 99%
“…Discussions of blue carbon habitats have traditionally been limited to saline habitats such as mangrove forests, seagrass beds, and salt marshes. However, Louisiana's extensive bottomland hardwood and the fresh deep‐water cypress/tupelo swamps (Edwards et al, 2019; Hupp et al, 2019; Krauss et al, 2018; McLeod et al, 2011), and fresh and intermediate (i.e., oligohaline) herbaceous and woody shrub marshes, including floating marshes, (Sasser & Gosselink, 1984) also warrant consideration as carbon‐relevant habitats in addition to the brackish (mesohaline) and salt marsh/black mangrove (polyhaline) complex (Osland et al, 2013). There are also tidal flats without emergent vegetation (Schulz & Leberg, 2019) and submerged aquatic vegetation (SAV) beds located across all salinity types (Handley & Lockwood, 2020; Hillmann et al, 2020).…”
Section: Introductionmentioning
confidence: 99%