1. 西北大学城市与环境学院,陕西,西安,710127
2. 中国地质调查局西安地质调查中心,陕西,西安,710054
纸质出版:2015
移动端阅览
陈妮, 马俊杰, 华雯, 等. 土壤无机离子对CO2封存泄漏的响应[J]. 水土保持通报, 2015,35(1):37-41.
CHEN Ni, MA Junjie, HUA Wen, et al. Response of Soil Inorganic Ions to Carbon Dioxide Leakage[J]. Bulletin of Soiland Water Conservation, 2015, 35(1): 37-41.
陈妮, 马俊杰, 华雯, 等. 土壤无机离子对CO2封存泄漏的响应[J]. 水土保持通报, 2015,35(1):37-41. DOI: 10.13961/j.cnki.stbctb.2015.01.008.
CHEN Ni, MA Junjie, HUA Wen, et al. Response of Soil Inorganic Ions to Carbon Dioxide Leakage[J]. Bulletin of Soiland Water Conservation, 2015, 35(1): 37-41. DOI: 10.13961/j.cnki.stbctb.2015.01.008.
[目的
]
旨在研究土壤中无机离子含量对CO
2
封存泄漏的响应。[方法
]
在CO
2
人工气候箱中分别种植绿豆、荞麦两种作物
模拟10000
20000
40000和80000μl/L这4个浓度梯度
外加一个空白浓度对照组
观测土壤无机离子含量变化及作物生长情况。[结果
]
随着大气中CO
2
浓度升高
土壤中的Cl
-
K
+
Ca
2+
含量基本先降后升
SO
4
2-
呈现先升后降再升再降的M型变化趋势
Na
+
Mg
2+
HCO
3
-
变化不显著
而CO
3
2-
始终未检出。绿豆、荞麦的光合速率及生物量均在CO
2
浓度10000μl/L时达到最大。[结论
]
大气中CO
2
浓度升高一方面会直接影响土壤溶液酸碱度、碳平衡
发生离子沉淀;另一方面还会影响作物和微生物生长
改变其对土壤离子的吸收和代谢。
[Objective] This research focuses on the response of soil inorganic ions to CO2 leakage.[Methods] We grew two crops including buckwheat (Fagopyrum esculentum) and mung beans (Vigna radiate)in the artificial climate box with five simulated CO2 concentration gradients of 0 (control group)
10 000
20 000
40 000
80 000 μl/L
to observe the variations of soil inorganic icons and plant growth.[Results] With the increase of CO2 concentrations
Cl-
K+
Ca2+ decreased firstly and then increased. The trend of SO42- exhibited as an "M" shape pattern
while variations in Na+
Mg2+ and HCO3- were not significant. No carbonate (CO32-) was found during the testing. Photosynthetic rate and biomass of buckwheat and mung beans were the maximum when the concentration of CO2 reached 10 000 μl/L.[Conclusion] Increases in the concentration of CO2
can influence the pH value and carbon balance of the soil
and result in the precipitation of ions. In addition
the rise in CO2 concentration affects the growth of crops and microbial activity
and changes the absorption and metabolism to soil ions.
高程达.温带干旱地区近地层CO
2
浓度和土壤CO
2
通量[D].北京:北京林业大学,2008.
王修兰,徐师华,梁红.CO
2
浓度增加对C
3
,C
4
作物生育和产量影响的试验研究[J].中国农业科学,1998,31(1):1-7.
王春乙,郭建平,王修兰,等.CO
2
浓度增加对C
3
,C
4
作物生理特性影响的试验研究[J].作物学报,2000,26(6):813-817.
陈平平.大气二氧化碳浓度升高对植物的影响[J].生物学通报,2002,37(3):20-22.
Rogers H H, Runion G B, Krupa S V. Plant responses to atmospheric CO
2
enrichment with emphasis on roots and the rhizosphere[J]. Environment Pollut., 2004,83(1/2):155-189.
李萍,郝兴宇,杨宏斌,等.大气CO
2
浓度升高对绿豆生长发育与产量的影响[J].核农学报,2011,25(2):0358-0362.
郭建平,高素华.高温、高CO
2
对农作物影响的试验研究[J].中国生态农业学报,2002,10(1):17-20.
Diao Yiwei, Zheng Xunhua, Wang Yuesi, et al. Measurement of CO
2
profiles in non-waterlogged soil in a FACE study[J]. Chinese Journal of Aplied Ecology, 2002,13(10):1249-1252.
许乃政,刘红樱,魏峰.土壤碳库及其变化研究进展[J].江苏农业科学,2011,39(2):1-4.
孙慧敏,王益权,刘军.氯离子在土壤水分与作物生长关系研究中的指示作用[J].西北植物学报,2006,6(11)2302-2306.
王月.CO
2
浓度升高对不同供磷番茄根系生长和根系分泌物的影响[D].南京:浙江大学,2008.
Schotemeyer M, Hartwig U A, Hendrey G R. Microbial community changes in the rhizospheres of white clover and grass exposed to free air carbon dioxide enrichment(FACE)[J]. Soil Bio.(l):Biochem., 2006,28(16):1717-1724.
0
浏览量
1325
下载量
3
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621