期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Larger floods reduce soil CO_(2)efflux during the post-flooding phase in seasonally flooded forests of Western Amazonia 被引量:1
1
作者 Emma M.DOCHERTY Andrew D.THOMAS 《Pedosphere》 SCIE CAS CSCD 2021年第2期342-352,共11页
Seasonally flooded várzea forests of Western Amazonia are one of the most productive and biodiverse wetland forests in the world.However,data on their soil CO_(2)emissions,soil organic matter decomposition rates,... Seasonally flooded várzea forests of Western Amazonia are one of the most productive and biodiverse wetland forests in the world.However,data on their soil CO_(2)emissions,soil organic matter decomposition rates,and soil C stocks are scarce.This is a concern because hydrological changes are predicted to lead to increases in the height,extent,and duration of seasonal floods,which are likely to have a significant effect on soil C stocks and fluxes.However,with no empirical data,the impact of altered flood regimes on várzea soil C cycles remains uncertain.This study quantified the effects of maximum annual flood height and soil moisture on soil CO_(2)efflux rate(R_(s))and soil organic matter decomposition rate(k)in the várzea forests of Pacaya Samiria National Reserve,Peru.The study was conducted between May and August 2017.The results showed that R_(s)(10.6–182.7 mg C m^(-2)h^(-1))and k(0.016–0.078)varied between and within sites,and were considerably lower than the values reported for other tropical forests.In addition,R_(s)was negatively affected by flood height(P<0.01)and soil moisture(P<0.001),and it decreased with decreasing river levels post flooding(P<0.001).In contrast,k was not affected by any of the above-mentioned factors.Soil moisture was the dominant factor influencing R_(s),and it was significantly affected by maximum flood height,even after the floods had subsided(P<0.001).Consequently,we concluded that larger floods will likely lead to reduced R_(s),whilst k could remain unchanged but with decomposition processes becoming more anaerobic. 展开更多
关键词 C cycle climate change greenhouse gas soil CO_(2)emissions soil moisture soil organic matter decomposition rate tropical forest
原文传递
低温克劳斯硫磺回收装置停产除硫方式探讨 被引量:5
2
作者 陈世明 万义秀 +2 位作者 蓝家文 周潮光 刘春燕 《石油与天然气化工》 CAS 北大核心 2018年第4期29-33,共5页
对低温克劳斯(主要指CBA和CPS)工艺硫磺回收装置目前常用的停产除硫方式进行了介绍。在中国石油西南油气田公司重庆天然气净化总厂某天然气净化厂对低温克劳斯硫磺回收装置的停产除硫方式进行了优化操作试验。试验结果表明,在惰性气体... 对低温克劳斯(主要指CBA和CPS)工艺硫磺回收装置目前常用的停产除硫方式进行了介绍。在中国石油西南油气田公司重庆天然气净化总厂某天然气净化厂对低温克劳斯硫磺回收装置的停产除硫方式进行了优化操作试验。试验结果表明,在惰性气体除硫阶段采用逐渐加入过剩氧的方式操作,能够使反应器床层温度升高,在保证催化剂床层除硫彻底和控制尾气中SO2排放速率的前提下缩短除硫时间。 展开更多
关键词 低温克劳斯 硫磺回收装置 除硫 尾气中so2排放速率
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部