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可持续发展背景下不同土地利用类型的土壤固碳能力 被引量:2
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作者 严丽萍 刘睿 杨利伟 《长江大学学报(自然科学版)》 2023年第4期133-142,共10页
在可持续发展大背景下,由于温室效应日益显著,降碳增汇已成为全世界关注的热点问题,土壤强大的CO 2吸收能力逐渐引起各专家学者的重视。近年来,学术界在土壤碳汇方面的研究已经取得一定进展,但目前还没有对不同土地利用类型的土壤固碳... 在可持续发展大背景下,由于温室效应日益显著,降碳增汇已成为全世界关注的热点问题,土壤强大的CO 2吸收能力逐渐引起各专家学者的重视。近年来,学术界在土壤碳汇方面的研究已经取得一定进展,但目前还没有对不同土地利用类型的土壤固碳能力做出系统梳理。综述森林、草地、农田和旱地土壤的固碳特点和影响因素的研究进展,并就不同土地利用类型的土壤固碳未来研究方向进行了展望。研究表明:①由于丰富的植被和发达的根系,森林土壤固碳能力较高,森林火灾、树木砍伐是影响森林土壤固碳能力的重要因素;②草地生态系统地下部分比地上部分存储了更多的有机碳,放牧、施肥是影响草地土壤固碳能力的重要因素;③农田也可以在地上生物量中储存大量的碳,秸秆还田、生物炭和农作物产量是较为有效的固碳改善方式;④旱地储存了全球大部分土壤无机碳,土壤无机碳含量受母质等多种因素影响,且旱地土壤有机碳和无机碳关系复杂。 展开更多
关键词 土壤能力 土壤生态系统循环 森林土壤固碳 草地土壤 农田土壤 旱地土壤
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Effects of long-term elevated CO_2 on N_2-fixing,denitrifying and nitrifying enzyme activities in forest soils under Pinus sylvestriformis in Changbai Mountain 被引量:3
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作者 郑俊强 韩士杰 +2 位作者 任飞荣 周玉梅 张岩 《Journal of Forestry Research》 SCIE CAS CSCD 2008年第4期283-287,共5页
A study was conducted to determine the effects of elevated CO2 on soil N process at Changbai Mountain in Jilin Province, northeastern China (42°24"N, 128°06"E, and 738 m elevation). A randomized complete... A study was conducted to determine the effects of elevated CO2 on soil N process at Changbai Mountain in Jilin Province, northeastern China (42°24"N, 128°06"E, and 738 m elevation). A randomized complete block design of ambient and elevated CO2 was established in an open-top chamber facility in the spring of 1999. Changpai Scotch pine (Pinus sylvestris var. sylvestriformis seeds were sowed in May, 1999 and CO2 fumigation treatments began after seeds germination. In each year, the exposure started at the end of April and stopped at the end of October. Soil samples were collected in June and August 2006 and in June 2007, and soil nitrifying, denitrifying and N2-fixing enzyme activities were measured. Results show that soil nitrifying enzyme activities (NEA) in the 5-10 cm soil layer were significantly increased at elevated CO2 by 30.3% in June 2006, by 30.9% in August 2006 and by 11.3% in June 2007. Soil denitrifying enzyme activities (DEA) were significantly decreased by elevated CO2 treatment in June 2006 (P 〈 0.012) and August 2006 (P 〈 0.005) samplings in our study; no significant difference was detected in June 2007, and no significant changes in N2-fixing enzyme activity were found. This study suggests that elevated CO2 can alter soil nitrifying enzyme and denitrifying enzyme activities. 展开更多
关键词 elevated CO2 forest soil nitrifying enzyme denitrifying enzyme N2-fixing enzyme
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