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LCZO -- Soil Biogeochemistry -- landscape-scale soil biogeochemistry and enzymes -- Northeastern Puerto Rico -- (2012-2012)

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Metadata: See Hall and Silver 2015, Biogeochemistry for details on soil analyses and sites; See Hall et al. 2014 Ecology for details on enzyme analyses and phenolic substances Hall, S., Treffkorn, J., & Silver, W. (2014). Breaking the enzymatic latch: Impacts of reducing conditions on hydrolytic enzyme activity in tropical forest soils. Ecology, 95(10), 2964-2973. Retrieved July 24, 2020, from www.jstor.org/stable/43493922 Hall, S., & Silver, W. (2015). Reducing conditions, reactive metals, and their interactions can explain spatial patterns of surface soil carbon in a humid tropical forest. Biogeochemistry, 125(2), 149–165. https://doi-org.unh.idm.oclc.org/10.1007/s10533-015-0120-5

元数据:有关土壤分析的细节及采样地点,请参阅 Hall 和 Silver (2015) 的《生物地球化学》一书;有关酶分析和酚类物质的细节,请参阅 Hall 等人 (2014) 的《生态学》一书。 Hall, S., Treffkorn, J., & Silver, W. (2014). 打破酶的锁:还原条件对热带森林土壤中水解酶活性的影响。Ecology,95(10),2964-2973。检索日期:2020年7月24日,来源:www.jstor.org/stable/43493922。 Hall, S., & Silver, W. (2015). 还原条件、活性金属及其相互作用可以解释湿润热带森林表层土壤碳的空间分布模式。Biogeochemistry,125(2),149–165。https://doi-org.unh.idm.oclc.org/10.1007/s10533-015-0120-5
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