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Combined effects of cadmium and fluoranthene on germination, growth and photosynthesis of soybean seedlings 被引量:8
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作者 Qiushuang Li Yonglong Lu +7 位作者 Yajuan Shi Tieyu Wang kun ni Li Xu Shijie Liu Lin Wang Qinli Xiong John.P Giesy 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2013年第9期1936-1946,共11页
The single and combinational effects of cadmium (Cd) and fluoranthene (FLT) on germination, growth and photosynthesis of soybean seedlings were investigated. Exposure to 5, 10, or 15 mg Cd/L or 1, 5, or 10 mg FLT/... The single and combinational effects of cadmium (Cd) and fluoranthene (FLT) on germination, growth and photosynthesis of soybean seedlings were investigated. Exposure to 5, 10, or 15 mg Cd/L or 1, 5, or 10 mg FLT/L individually or in combination significantly decreased germination vigor (3 days) and final germination rate of soybean seeds, except at 1 and 5 mg FLT/L. The results of two-way ANOVA analysis and the Bliss independence model showed that at lower concentrations of FLT (1 mg/L), the interaction between Cd and FLT on germination was antagonistic, whereas the interaction was synergistic when the concentration of FLT was 5 or 10 mg/L and the concentration of Cd was 15 mg/L. Growth, expressed as dry weight, length of shoot and root, leaf area, and photosynthesis, expressed as net photosynthetic rate, intercellular CO2 concentration, chlorophyll contents and fluorescence of soybean seedlings were also reduced by exposure to 5 or 10 mg Cd/L or 1 or 5 mg FLT/L, singly or jointly. Significant antagonistic effects of exposure to 5 or 10 mg Cd/L or 1 or 5 mg FLT/L on shoot growth and photosynthesis were observed, whereas synergy and antagonism of Cd and FLT were both observed for root growth. 展开更多
关键词 synergism antagonism metal PAH photosynthesis plant toxicity
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Factors influencing the contents of metals and As in soils around the watershed of Guanting Reservoir,China 被引量:4
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作者 Li Xu Tieyu Wang +5 位作者 Wei Luo kun ni Shijie Liu Lin Wang Qiushuang Li Yonglong Lu 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2013年第3期561-568,共8页
Topsoil samples from 61 sites around the Guanting Reservoir,China,were measured for Cu,Zn,Cr,Ni,Cd,Pb and As concentrations.The mean concentrations of Cu,Zn,Cr,Ni,Cd,Pb and As were 16.8,59.4,37.8,18.3,0.32,20.1 and 8.... Topsoil samples from 61 sites around the Guanting Reservoir,China,were measured for Cu,Zn,Cr,Ni,Cd,Pb and As concentrations.The mean concentrations of Cu,Zn,Cr,Ni,Cd,Pb and As were 16.8,59.4,37.8,18.3,0.32,20.1 and 8.67 mg/kg dry weight,respectively.Factors that influence the dynamics of these metals in soils around the watersheds of Beijing reservoirs were examined.The influence of atmospheric deposition,land use,soil texture,soil type and soil chemical parameters on metal contents in soils was investigated.Atmospheric deposition,land use and soil texture were the important factors affecting heavy metal residues.Soil type and soil chemical parameters were also involved in heavy metal retention in soils.The data provided in this study are considered crucial for reservoir remediation,especially since the Guanting Reservoir will serve as one of the main drinking water sources for Beijing in the foreseeable future. 展开更多
关键词 heavy metals atmospheric deposition land use soil texture watershed
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Factors influencing polychlorinated dibenzo-p-dioxin and polychlorinated dibenzofuran (PCDD/F) emissions and control in major industrial sectors: Case evidence from Shandong Province, China 被引量:2
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作者 Lin Wang Yonglong Lu +4 位作者 Guizhen He Arthur P.J.Mol Tieyu Wang Jorrit Gosens kun ni 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2014年第7期1513-1522,共10页
Analyzing determinants that influence polychlorinated dibenzo-p-dioxin and polychlorinated dibenzofuran(PCDD/F) emissions is helpful for decision-makers to find effective and efficient ways to mitigate PCDD/F emissi... Analyzing determinants that influence polychlorinated dibenzo-p-dioxin and polychlorinated dibenzofuran(PCDD/F) emissions is helpful for decision-makers to find effective and efficient ways to mitigate PCDD/F emissions. The PCDD/F emissions and the contributions of the scale effect, structure effect and technology effect to emissions from eight main industrial sectors in2006, 2008 and 2010 in Shandong Province, were calculated in this article. Total PCDD/F emissions in Shandong increased by 52.8% in 2008(614.1 g I-TEQ) and 49.7% in 2010(601.8 g I-TEQ) based on 2006(401.9 g I-TEQ). According to the decomposition method, the largest influencing factor on PCDD/F emission changes was the composition effect(contributed 43.4%in 2008 and 120.6% in 2010 based on 2006), which was also an emission-increasing factor.In this case, the present industrial restructuring policy should be adjusted to control the proportion of production capacities with high emission factors, such as iron ore sintering and steelmaking and the secondary non-ferrous metal sector. The scale effect increased the emissions in 2008(contributed 21.9%) and decreased the emissions in 2010(contributed-28.0%). However, as a source control measure, the excess capacity control policy indeed had a significant role in emission reduction. The main reason for the technology effect(contributed 34.7% in 2008 and 7.4% in 2010 based on 2006) having an emission-increasing role was the weakness in implementing policies for restricting industries with outdated facilities. Some specific suggestions were proposed on PCDD/F reduction for local administrators at the end. 展开更多
关键词 JPCDD/F emissions Decomposition analysis Industrial structure Environmental policy
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基于π-π/H-键协同作用制备含芘小分子增强高韧性石墨烯纸
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作者 袁宏 葛良兵 +11 位作者 倪堃 阚秀凯 陈思铭 高梦婷 潘飞 叶江林 许方 束娜 李婕云 索涛 俞书宏 朱彦武 《Science China Materials》 SCIE EI CAS CSCD 2021年第5期1206-1218,共13页
轻质高强且具备高韧性的石墨烯组装材料在抗冲击防护领域有着潜在的应用价值.在这项工作中,我们通过在还原氧化石墨烯层间界面交联1-氨基芘AP和1-芘丁酸PB共轭小分子,可以获得具有高导电、高韧性的超强复合石墨烯纸(AP/PB-GPs).结果表明... 轻质高强且具备高韧性的石墨烯组装材料在抗冲击防护领域有着潜在的应用价值.在这项工作中,我们通过在还原氧化石墨烯层间界面交联1-氨基芘AP和1-芘丁酸PB共轭小分子,可以获得具有高导电、高韧性的超强复合石墨烯纸(AP/PB-GPs).结果表明,超过10μm厚度的复合石墨烯纸具有超高的平均韧性(~69.67±15.3 MJ m^(-3)),同时抗拉伸强度接近1 GPa;尤其在抗冲击性能方面,在高速弹道冲击速度下,仍然可以获得优异的比穿透能量吸收值(~0.17 MJ kg^(-1)).详细的界面和结构分析表明,界面增强是由相邻石墨烯层间与共轭分子之间的π-π相互作用和氢键连接共同决定的.尤其是石墨烯纳米片内的孔洞及边缘缺陷更有利于共轭小分子充分的吸附,这必然会使界面结合最大化,在连续高的加载应力下能够有效促进裂纹的偏转和塑性变形.密度泛函理论(DFT)模拟表明,石墨烯纳米片边缘的–COOH极性官能团与AP/PB分子表面的–NH_(2)、–COOH之间的耦合对氢键网络的形成起着关键作用. 展开更多
关键词 石墨烯纳米片 还原氧化石墨烯 界面增强 层间界面 弹道冲击 石墨烯纸 共轭分子 氢键网络
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