期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Carbon concentrations and carbon storage capacity of three old-growth forests in the Sila National Park,Southern Italy 被引量:2
1
作者 Giovanni Di Matteo Giuseppe Luzzi +6 位作者 Antonio Basile Angelo Sposato Giada Bertini Ulderico Neri Bruno Pennelli rosario napoli Pierfrancesco Nardi 《Journal of Forestry Research》 SCIE CAS CSCD 2023年第1期233-242,共10页
Old-growth forests play a key-role in reducing atmospheric carbon dioxide(CO_(2)) concentrations by storing large CO_(2)amounts in biomass and soil over time.This quantifies the carbon pool into different forest compa... Old-growth forests play a key-role in reducing atmospheric carbon dioxide(CO_(2)) concentrations by storing large CO_(2)amounts in biomass and soil over time.This quantifies the carbon pool into different forest compartments in three Mediterranean old-growth forests of Southern Italy populated by Pinus laricio,Fagus sylvatica and Abies alba.Ecosystem carbon pools have been assessed per compartment,i.e.,living trees,dead wood,litterfall(foliar and woody),roots and 0-20 cm topsoil,combining the whole old-growth forest mass,(i.e.,using tree allometric relationships,deadwood factor conversions,root-to-shoot ratios,litterfall and soil samplings) by the respective organic carbon concentrations.The results show the considerable capacity of these forest ecosystems in storing CO_(2)in biomass and soil,with carbon pool values ranging from 532.2to 596.5 Mg C ha-1.Living trees and 0-20 cm topsoil had larger carbon pool,contributing 53.0 and 22.1%,respectively.In most cases,organic carbon concentration was higher(more than 60%) than the average carbon conversion rate of 50%,especially in living trees,deadwood,and woody litterfall.This study contributes further scientific evidence of the capacity of old-growth forests in storing CO_(2)in their different compartments,with special evidence on tree biomass,litterfall and mineral soil,thereby highlighting the key role of old-growth forests within the challenge of climate change mitigation. 展开更多
关键词 Ecosystem carbon pool Organic carbon concentration Ecosystem compartment Climate change mitigation Carbon forestry
下载PDF
Nitrogen Release from Slow-Release Fertilizers in Soils with Different Microbial Activities 被引量:4
2
作者 Pierfrancesco NARDI Ulderico NERI +5 位作者 Giovanni DI MATTEO Alessandra TRINCHERA rosario napoli Roberta FARINA Guntur V. SUBBARAO Anna BENEDETTI 《Pedosphere》 SCIE CAS CSCD 2018年第2期332-340,共9页
Soil microbial activity is recognized as an important factor affecting nitrogen (N) release from slow-release fertilizers. However,studies on the effect of size and activity of soil microflora on fertilizer degradatio... Soil microbial activity is recognized as an important factor affecting nitrogen (N) release from slow-release fertilizers. However,studies on the effect of size and activity of soil microflora on fertilizer degradation have provided contrasting results. To date, no clear relationships exist between soil microbial activity and the release of N from slow-release fertilizers. Hence, the aim of this study was to better understand such relationships by determining the release of N from three slow-release fertilizers in soils with different microbial activities. Soils were amended with urea-formaldehyde (UF), isobutylidene diurea (IBDU), and crotonylidene diurea (CDU). Urea, a soluble fertilizer, was used as the control. Fertilized soil samples were placed in a leaching system, and the release of N was determined by measuring ammonium-N and nitrate-N concentrations in leachates during 90 d of incubation. Non-linear regression was used to fit N leaching rate to a first-order model. In all the treated soils, N was released in the order: urea (89%–100%) > IBDU (59%–94%) >UF (46%–73%) > CDU (44%–56%). At the end of incubation, N released from CDU did not differ (P > 0.05) among soils. On the contrary, UF and IBDU released significantly lower (P < 0.05) amounts of N in the soil with higher microbial activity and lower pH.The rate constant (K_0) for UF was lower (P < 0.05) in the soil with lower pH. Taken together, our results indicated that soil microbial size and microbial activity had a marginal effect on fertilizer mineralization. 展开更多
关键词 ammonium-N crotonylidene diurea isobutylidene diurea NITRATE-N NON-LINEAR regression UREA-FORMALDEHYDE
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部