[1] 李琦,刘桂臻,蔡博峰,等.二氧化碳地质封存环境风险评估的空间范围确定方法研究[J].环境工程,2018,36(2):27-32. Li Q,Liu G Z,Cai B F,et al.Principle and methodology of determining the spactial range of envrionmental risk assessment of carbon dioxide geological storage[J]. Environmental Engineering,2018,36(2):27-32.(in Chinese) [2] 李琦,蔡博峰,陈帆,等.二氧化碳地质封存的环境风险评价方法研究综述[J].环境工程,2019,37(2):13-21. Li Q,Cai B F,Chen F,et al.Review of environmental risk assessment methods for carbon dioxide geological storage[J]. Environmental Engineering,2019,37(2):13-21.(in Chinese) [3] Bearbien S E,Ciotoli G,Commbs P,et al.The impact of a naturally occurring CO2 gas vent on the shallow ecosystem and soil chemistry of a Mediterranean pasture (Latera,Italy)[J]. Int.J.Greenh.Gas.Control,2008,l2:373-387. [4] Zhang X Y,Ma X,Zhao Z,et al.CO2 leakage-induced vegetation decline is primarily driven by decreased soil O2[J].Journal of Environmental Management,2016,171:225. [5] Dean M,Tucker O.A risk based framework for measurement, monitoring and verification(MRV) of the goldeneye storage complex for the Peterhead CCS project,UK[J].International Journal of Greenhouse Gas Control,2017,61(4):1-15. [6] Wu Y,Ma X,Li Y E,et al.The impacts of introduced CO2 flux on maize/alfalfa and soil[J].International Journal of Greenhouse Gas Control,2014,23(2):86-97. [7] Al-Traboulsi,Sjogersten M,Colls S,et al.Potential impact of CO2 leakage from carbon capture and storage(CCS) systems on growth and yield in spring field bean[J].Environ.Exp. Bot.,2012,80:43-53. [8] Ko D,Yoo G,Yun S,et al.Impacts of CO2 leakage on plants and microorganisms:a review of results from CO2 release experiments and storage sites[J].Greenhouse Gases Science & Technology,2016,6(3):319-338. [9] Al-Traboulsi M,Sofie Sjögersten, Colls J,et al.Potential impact of CO2 leakage from carbon capture and storage systems on field bean(Vicia faba)[J].Physiologia Plantarum, 2012,146(3):261-271. [10] Pfanz H,Vodnik D,Wittmann C,et al.Photosynthetic performance(CO2-compensation point, carboxylation efficiency, and net photosynthesis) of timothy grass(Phleum pratense L.) is affected by elevated carbon dioxide in post-volcanic mofette areas[J].Environmental & Experimental Botany, 2007,61(1):41-48. [11] Zhang X Y,Ma X,Wu Y,et al.Enhancement of farmland greenhouse gas emissions from leakage of stored CO2:simulation of leaked CO2 from CCS[J].Science of Total Environment,2015,518/519:78-85. [12] 纪翔,马欣,韩耀杰,等.箱体模拟地质封存CO2泄漏速度差异对植物的影响[J].农业工程学报,2018,34(2):242-247. Ji X,Ma X,Han Y J,et al.Effect of different leakage speeds on plants in carbon capture and storage by simulation in chamber[J].Transactions of the CSAE,2018,34(2):242-247. (in Chinese) [13] 李红英,程鸿燕,郭昱,等.谷子抗旱机制研究进展[J].山西农业大学学报(自然科学版),2018,38(1):6-10. Li H Y,Cheng H Y,Guo Y,et al.Progress in the mechanisms of drought tolerance in foxtail millet[J].J.Shangxi Agric, Univ.(Natural Science Edition),2018,38(1):6-10.(in Chinese) [14] Tsai K J,Lu M Y J,Yang K J,et al.Assembling the Setaria italica L.Beauv.genome into nine chromosomes and insights into regions affecting growth and drought tolerance[J]. Scientific Reports,2016,6(1):35076-35086. [15] 伍洋,马欣,李玉娥,等.地质封存CO2泄漏对农田生态系统的影响评估及耐受阈值[J].农业工程学报,2012,28(2): 196-205. Wu Y,Ma X,Li Y E,et al.Impact assessment and tolerable threshold value of CO2 leakage from geological storage on agro-ecosystem[J].Transactions of the CSAE,2012,28(2): 196-205.(in Chinese) [16] 谢晓金,申双和,李映雪,等.高温胁迫下水稻红边特征及SPAD和LAI的监测[J].农业工程学报,2010,26(3):183-190. Xie X J,Shen S H,Li Y X,et al.Red edge characteristics and monitoring SPAD and LAI for rice with high temperature stress[J].Transactions of the CSAE,2010,26(3):183-190.(in Chinese) [17] 马欣,张雪艳,田地,等.大刍草作为地质封存CO2泄漏指示植物的评估[J].农业工程学报,2017,33(18):224-229. Ma X,Zhang X Y,Tian D,et al.Assessment on Zea diploperennis L. as bio-indicator of CO2 leakage from geological storage[J].Transactions of the CSAE,2017,33(18): 224-229.(in Chinese) [18] Zhang X Y,Ma X,Wu Y,et al.A plant tolerance index to select soil leaking CO2 Bio-indicators for carbon capture and storage[J].Journal of Cleaner Production,2017,170(1): 735-741. [19] Li G,Du Y L,Zhao H B.Comparison of stress resistance in several ground covering plants[J].J.Inn.Mong. Agric. Univ.,2011,32:42-47. [20] 刘国一,谢永春,侯亚红,等.温度和二氧化碳浓度升高对青稞生长的影响[J].中国农业气象,2018,39(9):567-574. Liu G Y,Xie Y C,Hou Y H,et al.Effects of elevated temperature and carbon dioxide concentration on the growth of highland barley[J].Chinese Journal of Agrometeorology, 2018,39(9):567-574.(in Chinese) [21] 蔡威威,万运帆,艾天成,等.空气温度和CO2浓度升高对晚稻生长及产量的影响[J].中国农业气象,2015,36(6): 717-723. Cai W W,Wan Y F,Ai T C,et al.Impacts of elevated CO2 concentration and temperature increasing on growth and yield of late rice[J].Chinese Journal of Agrometeorology, 2015,36(6):717-723.(in Chinese) [22] 李天来,陈亚东,刘义玲,等.根际CO2浓度对网纹甜瓜根系生长和活力的影响[J].农业工程学报,2009,25(4):210-215. Li T L,Chen Y D,Liu Y L,et al.Effects of rhizosphere CO2 concentration on root growth and activity of netted muskmelon[J].Transactions of the CSAE,2009,25(4): 210-215.(in Chinese) [23] Stolwijk J A J,Thimann K V.On the uptake of carbon dioxide and bicarbonate by roots,and its influence on growth[J].Plant Physilolgy,1957,32:13-20. [24] 栾素荣,王占廷,李青松.谷子产量与主要农艺性状的灰色关联度分析[J].河北农业科学,2010,14(11):115-116,118. Luan S R,Wang Z T,Li Q S.Grey relational grade analysis on yield and main agronomic characters of foxtail millet[J]. Journal of Hebei Agricultural Sciences,2010,14(11):115-116, 118.(in Chinese) |