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Patterns and driving factors of leaf C,N,and P stoichiometry in two forest types with different stand ages in a mid-subtropical zone 被引量:1
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作者 Yunni Chang Quanlin Zhong +3 位作者 Hong Yang Chaobin Xu Weiping Hua Baoyin Li 《Forest Ecosystems》 SCIE CSCD 2022年第1期47-56,共10页
Background:Carbon(C),nitrogen(N),and phosphorus(P)stoichiometry is a key indicator of nutrient utilization in plants,and C/N/P ratios are related to the life histories and adaptation strategies of tree species.However... Background:Carbon(C),nitrogen(N),and phosphorus(P)stoichiometry is a key indicator of nutrient utilization in plants,and C/N/P ratios are related to the life histories and adaptation strategies of tree species.However,no consensus has been reached on how leaf stoichiometric characteristics are affected by forest type and stand ages.The relationships between leaf stoichiometry and geographical,meteorological,and soil factors also remain poorly understood.Methods:Leaf and soil were sampled from forest stands of different age groups(young,middle-aged,near-mature,and mature)in two forest types(Chinese fir(Cunninghamia lanceolata)forests and evergreen broadleaved forests).The relationships between leaf C,N,and P stoichiometric parameters and geographical,meteorological,and soil factors were analysed by using redundancy analysis(RDA)and stepwise linear regression analysis.Results:Leaf C concentrations peaked in the near-mature stands with increasing age irrespective of forest type.Leaf N and P concentrations fluctuated with a rising trend in Chinese fir forests,while decreased first and increased later from young to mature phases in natural evergreen broadleaved forests.Chinese fir forests were primarily limited by N and P,while natural evergreen broadleaved forests were more susceptible to P limitation.Leaf C,N,and P stoichiometric characteristics in Chinese fir forests were mainly affected by the soil total P concentration(SP),longitude(LNG),growing season precipitation(GSP)and mean temperature in July(JUT).The leaf C concentration was mainly affected by GSP and JUT;leaf N and P concentrations were both positively correlated with LNG;and leaf P was positively correlated with SP.In evergreen broadleaved forests,however,leaf stoichiometric parameters displayed significant correlations with latitude(LAT)and mean annual precipitation(MAP).Conclusions:Leaf stoichiometry differed among forest stands of different age groups and forest types.Leaf C,N,and P stoichiometry was primarily explained by the combinations of SP,LNG,GSP and JUT in Chinese fir forests.LAT and MAP were the main controlling factors affecting the variations in the leaf C,N,and P status in natural evergreen broadleaved forests,which supports the temperature-plant physiological hypothesis.These findings improve the understanding of the distribution patterns and driving mechanisms of leaf stoichiometry linked with stand age and forest type. 展开更多
关键词 Leaf stoichiometry c/n/p ratios Environmental factors Stand age groups chinese fir forest natural evergreen broadleaved forest
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Atmospheric nitrogen deposition affects forest plant and soil system carbon:nitrogen:phosphorus stoichiometric flexibility:A meta-analysis 被引量:1
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作者 Xiyan Jiang Xiaojing Wang +7 位作者 Yaqi Qiao Yi Cao Yan Jiao An Yang Mengzhou Liu Lei Ma Mengya Song Shenglei Fu 《Forest Ecosystems》 SCIE CSCD 2024年第3期307-317,共11页
Background:Nitrogen(N)deposition affects forest stoichiometric flexibility through changing soil nutrient availability to influence plant uptake.However,the effect of N deposition on the flexibility of carbon(C),N,and... Background:Nitrogen(N)deposition affects forest stoichiometric flexibility through changing soil nutrient availability to influence plant uptake.However,the effect of N deposition on the flexibility of carbon(C),N,and phosphorus(P)in forest plant-soil-microbe systems remains unclear.Methods:We conducted a meta-analysis based on 751 pairs of observations to evaluate the responses of plant,soil and microbial biomass C,N and P nutrients and stoichiometry to N addition in different N intensity(050,50–100,>100 kg·ha^(-1)·year^(-1)of N),duration(0–5,>5 year),method(understory,canopy),and matter(ammonium N,nitrate N,organic N,mixed N).Results:N addition significantly increased plant N:P(leaf:14.98%,root:13.29%),plant C:P(leaf:6.8%,root:25.44%),soil N:P(13.94%),soil C:P(10.86%),microbial biomass N:P(23.58%),microbial biomass C:P(12.62%),but reduced plant C:N(leaf:6.49%,root:9.02%).Furthermore,plant C:N:P stoichiometry changed significantly under short-term N inputs,while soil and microorganisms changed drastically under high N addition.Canopy N addition primarily affected plant C:N:P stoichiometry through altering plant N content,while understory N inputs altered more by influencing soil C and P content.Organic N significantly influenced plant and soil C:N and C:P,while ammonia N changed plant N:P.Plant C:P and soil C:N were strongly correlated with mean annual precipitation(MAT),and the C:N:P stoichiometric flexibility in soil and plant under N addition connected with soil depth.Besides,N addition decoupled the correlations between soil microorganisms and the plant.Conclusions:N addition significantly increased the C:P and N:P in soil,plant,and microbial biomass,reducing plant C:N,and aggravated forest P limitations.Significantly,these impacts were contingent on climate types,soil layers,and N input forms.The findings enhance our comprehension of the plant-soil system nutrient cycling mechanisms in forest ecosystems and plant strategy responses to N deposition. 展开更多
关键词 c:n:p stoichiometry META-AnALYSIS Forest ecosystem nitrogen addition form nutrient cycles
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Effects of tree size and organ age on variations in carbon,nitrogen,and phosphorus stoichiometry in Pinus koraiensis
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作者 Yanjun Wang Guangze Jin Zhili Liu 《Journal of Forestry Research》 SCIE EI CAS CSCD 2024年第3期155-165,共11页
Carbon(C),nitrogen(N),and phosphorus(P)are of fundamental importance for growth and nutrient dynamics within plant organs and deserve more attention at regional to global scales.However,our knowledge of how these nutr... Carbon(C),nitrogen(N),and phosphorus(P)are of fundamental importance for growth and nutrient dynamics within plant organs and deserve more attention at regional to global scales.However,our knowledge of how these nutrients vary with tree size,organ age,or root order at the individual level remains limited.We determined C,N,and P contents and their stoichiometric ratios(i.e.,nutrient traits)in needles,branches,and fine roots at different organ ages(0-3-year-old needles and branches)and root orders(1st-4th order roots)from 64 Pinus koraiensis of varying size(Diameter at breast height ranged from 0.3 to 100 cm)in northeast China.Soil factors were also measured.The results show that nutrient traits were regulated by tree size,organ age,or root order rather than soil factors.At a whole-plant level,nutrient traits decreased in needles and fine roots but increased in branches with tree size.At the organ level,age or root order had a negative effect on C,N,and P and a positive effect on stoichiometric ratios.Our results demonstrate that nutrient variations are closely related to organ-specific functions and ecophysiological processes at an individual level.It is suggested that the nutrient acquisition strategy by younger trees and organ fractions with higher nutrient content is for survival.Conversely,nutrient storage strategy in older trees and organ fractions are mainly for steady growth.Our results clarified the nutrient utilization strategies during tree and organ ontogeny and suggest that tree size and organ age or root order should be simultaneously considered to understand the complexities of nutrient variations. 展开更多
关键词 Tree size Organ age(or root order) carbon(c) nitrogen(n) phosphorus(p) pinus koraiensis
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Effects of drought on non-structural carbohydrates and C,N,and P stoichiometric characteristics of Pinus yunnanensis seedlings 被引量:1
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作者 Zhijuan Zhao Lina Wang +7 位作者 Yuanxi Liu Jianli Sun Jiandong Xiao Qiong Dong Lianfang Li Wanjie Zhang Chao Wang Junwen Wu 《Journal of Forestry Research》 SCIE EI CAS CSCD 2024年第1期90-102,共13页
To study non-structural carbohydrate character-istics and nutrient utilization strategies of Pinus yunnanen-sis under continuous drought conditions,2-year-old seed-lings were planted in pots with appropriate water,lig... To study non-structural carbohydrate character-istics and nutrient utilization strategies of Pinus yunnanen-sis under continuous drought conditions,2-year-old seed-lings were planted in pots with appropriate water,light and moderate and severe drought treatments[(80±5),(65±5),(50±5),and(35±5)%of field water-holding capacity].Non-structural carbohydrates,carbon(C),nitrogen(N),and phosphorus(P)concentrations were measured in each plant component.The results show that:(1)With increasing drought,non-structural carbohydrates gradually increased in leaves,stems,and coarse roots,while gradually decreased in fine roots;(2)C concentrations of all were relatively stable under different stress levels.Phosphorous utilization of each component increased under light and moderate drought conditions,while N and P utilization efficiency of each plant component decreased under severe drought.Growth was mainly restricted by N,first decreasing and then increasing with increased drought;(3)There was a correlation between the levels of non-structural carbohydrates and C,N,and P in each component.Changes in N concentration affected the interconversion between soluble sugar and starch,which play a regulatory role in the fluctuation of the concentration of non-structural carbohydrates;and,(4)Plasticity analysis showed that P.yunnanensis seedlings responded to drought mainly by altering starch concentration,the ratio of soluble sugar to starch in leaves and stems,and further by alter-ing N and P utilization efficiencies.Overall,these results suggest that the physiological activities of all organs of P.yunnanensis seedlings are restricted under drought and that trade-offs exist between different physiological indicators and organs.Our findings are helpful in understanding non-structural carbohydrate and nutrient adaptation mechanisms under drought in P.yunnanensis seedlings. 展开更多
关键词 pinus yunnanensis seedlings DROUGHT non-structural carbohydrates c n p stoichiometric characteristics
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Effects of three coniferous plantation species on plant-soil feedbacks and soil physical and chemical properties in semiarid mountain ecosystems 被引量:6
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作者 Chun Han Yongjing Liu +5 位作者 Cankun Zhang Yage Li Tairan Zhou Salman Khan Ning Chen Changming Zhao 《Forest Ecosystems》 SCIE CSCD 2021年第1期22-34,共13页
Background:Large-scale afforestation can significantly change the ground cover and soil physicochemical properties,especially the soil fertility maintenance and water conservation functions of artificial forests,which... Background:Large-scale afforestation can significantly change the ground cover and soil physicochemical properties,especially the soil fertility maintenance and water conservation functions of artificial forests,which are very important in semi-arid mountain ecosystems.However,how different tree species affect soil nutrients and soil physicochemical properties after afforestation,and which is the best plantation species for improving soil fertility and water conservation functions remain largely unknown.Methods:This study investigated the soil nutrient contents of three different plantations(Larix principis-rupprechtii,Picea crassifolia,Pinus tabuliformis),soils and plant-soil feedbacks,as well as the interactions between soil physicochemical properties.Results:The results revealed that the leaves and litter layers strongly influenced soil nutrient availability through biogeochemical processes:P.tabuliformis had higher organic carbon,ratio of organic carbon to total nitrogen(C:N)and organic carbon to total phosphorus(C:P)in the leaves and litter layers than L.principis-rupprechtii or P.crassifolia,suggesting that higher C:N and C:P hindered litter decomposition.As a result,the L.principis-rupprechtii and P.crassifolia plantation forests significantly improved soil nutrients and clay components,compared with the P.tabuliformis plantation forest.Furthermore,the L.principis-rupprechtii and P.crassifolia plantation forests significantly improved the soil capacity,soil total porosity,and capillary porosity,decreased soil bulk density,and enhanced water storage capacity,compared with the P.tabuliformis plantation forest.The results of this study showed that,the strong link between plants and soil was tightly coupled to C:N and C:P,and there was a close correlation between soil particle size distribution and soil physicochemical properties.Conclusions:Therefore,our results recommend planting the L.principis-rupprechtii and P.crassifolia as the preferred tree species to enhance the soil fertility and water conservation functions,especially in semi-arid regions mountain forest ecosystems. 展开更多
关键词 pLAnTATIOn c:n:p stoichiometry plant-soil feedbacks Soil physicochemical properties Mountain ecosystems
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Probing into Surface Sites of Fresh Mo_2N/Al_2O_3,Mo_2C/Al_2O_3 and MoP/Al_2O_3 Catalysts by CO Adsorption and In Situ FT-IR Spectroscopy 被引量:1
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作者 Zhang Jing Wu Weicheng +1 位作者 Yan Song Zhang Dan 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2010年第4期43-45,共3页
The surface nature of fresh Mo2N/Al2O3, Mo2C/Al2O3 and/MoP/Al2O3 catalysts, which were synthesized directly in the IR cell to avoid passivation, were characterized by in situ IR spectroscopy with CO as a probe molecul... The surface nature of fresh Mo2N/Al2O3, Mo2C/Al2O3 and/MoP/Al2O3 catalysts, which were synthesized directly in the IR cell to avoid passivation, were characterized by in situ IR spectroscopy with CO as a probe molecule. CO adsorbed on fresh catalysts showed characteristic IR bands at 2045 cm-1 for Mo2N/Al2O3 catalyst, 2054 cm-1 for MozC/Al2O3 catalyst and 2037 cm-1 for MoP/Al2O3 catalyst, respectively. A strong band at 2200 cm-1 for Mo2N/Al2O3 catalyst, which could be ascribed to NCO species formed when CO reacted upon surface active nitrogen atoms, and a weak band at 2196 cm-1 for Mo2C/Al2O3 catalyst, which could be attributed to CCO species, were also detected. CO adsorbed on fresh Mo2N/Al2O3 catalyst, Mo2C/Al2O3 catalyst and MoP/Al2O3 catalyst, showed strong molecular adsorption, just like noble metals. Our experimental results are bolstered by direct IR evidence demonstrating the similarity in surface electronic property between the fresh Mo2N/Al2O3, Mo2C/Al2O3 and MoP/Al2O3 catalysts and noble metals. 展开更多
关键词 Mo2c/Al2O3 catalyst Mo2n/Al2O3 catalyst Mo2p/Al2O3 catalyst FT-IR cO
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Yield ratio of neutrons to protons in 12C(d,n)13N and 12C(d,p)13C from 0.6 to 3 MeV
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作者 Wu-Jie Li Yu-Gang Ma +8 位作者 Guo-Qiang Zhang Xian-Gai Deng Mei-Rong Huang Aldo Bonasera De-Qing Fang Jian-Qing Cao Qi Deng Yong-Qi Wang Qian-Tao Lei 《Nuclear Science and Techniques》 SCIE CAS CSCD 2019年第12期65-71,共7页
The neutron yield in the12C(d,n)13N reaction and the proton yield in the12C(d,p)13C reaction have been measured using deuteron beams of energies 0.6-3 MeV.The deuteron beam is delivered from a 4-MeV electrostatic acce... The neutron yield in the12C(d,n)13N reaction and the proton yield in the12C(d,p)13C reaction have been measured using deuteron beams of energies 0.6-3 MeV.The deuteron beam is delivered from a 4-MeV electrostatic accelerator and bombarded on a thick carbon target.The neutrons are detected at 0°,24°,and 48°and the protons at135°in the laboratory frame.Further,the ratio of the neutron yield to the proton yield was calculated.This can be used to effectively recognize the resonances.The resonances are found at 1.4 MeV,1.7 MeV,and 2.5 MeV in the12C(d,p)13C reaction,and at 1.6 MeV and 2.7 MeV in the12C(d,n)13N reaction.The proposed method provides a way to reduce systematic uncertainty and helps confirm more resonances in compound nuclei. 展开更多
关键词 proton neutron ratio 12c(d n) p) TROJAn HORSE method(THM)
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黑河中游荒漠绿洲过渡带典型固沙植物根区土壤C、N、P化学计量特征
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作者 刘鹏 胡广录 +1 位作者 陶虎 周成乾 《甘肃农业大学学报》 CSCD 北大核心 2024年第6期175-185,共11页
【目的】土壤C、N、P化学计量特征可表征土壤养分供应能力和储量变化,是反映土壤养分循环及其肥力水平的关键指标。固沙植物以灌木和半灌木为主,在抑制荒漠化和维持绿洲生态安全方面扮演着重要的角色。分析固沙植物根区的土壤C、N、P化... 【目的】土壤C、N、P化学计量特征可表征土壤养分供应能力和储量变化,是反映土壤养分循环及其肥力水平的关键指标。固沙植物以灌木和半灌木为主,在抑制荒漠化和维持绿洲生态安全方面扮演着重要的角色。分析固沙植物根区的土壤C、N、P化学计量特征,探究其养分含量变化规律,可为维持荒漠绿洲过渡带的稳定性和今后的防风固沙工程实践提供科学方案和必要参考。【方法】以黑河中游荒漠绿洲过渡带3种典型固沙植物梭梭、泡泡刺和沙拐枣为研究对象,测定固沙植物根区不同土层深度土壤中的有机碳(SOC)、全氮(STN)和全磷(STP)指标,分析3种固沙植物根区土壤C、N、P化学计量特征及影响因素。【结果】3种典型固沙植物根区SOC含量均在60~80cm土层出现峰值,STN、STP含量的峰值均出现在表层土壤;SOC含量随土层深度的增加先增大后减小,STN和STP随土层深度的增大而减小;在研究区特定的环境条件下,植物类型对土壤C、N、P含量及其化学计量特征有显著影响,梭梭根区的土壤养分含量较其他两种植物更高;3种典型固沙植物根区各理化性质指标之间的相关系数总体表现为梭梭>泡泡刺>沙拐枣。【结论】黑河中游荒漠绿洲过渡带梭梭、泡泡刺和沙拐枣根区土壤C、N、P含量具有显著差异(P<0.05),梭梭的保肥能力及其环境适应性较其他两种植物更强。 展开更多
关键词 荒漠绿洲过渡带 固沙植物 cnp含量 土壤保肥能力
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p-CuSCN/n-Si异质结的光电特性研究
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作者 熊超 朱锡芳 +3 位作者 陈磊 袁洪春 潘雪涛 周祥才 《半导体技术》 CAS CSCD 北大核心 2013年第6期464-468,共5页
采用成本廉价的连续离子层沉积法在n型Si衬底上沉积β相的六方晶体结构的CuSCN薄膜制备了p-CuSCN/n-Si异质结。并通过测试其光照下的I-V和C-V特性对其光电特性以及载流子输运特性与导电机理进行了研究。研究表明,CuSCN/n-Si异质结存在... 采用成本廉价的连续离子层沉积法在n型Si衬底上沉积β相的六方晶体结构的CuSCN薄膜制备了p-CuSCN/n-Si异质结。并通过测试其光照下的I-V和C-V特性对其光电特性以及载流子输运特性与导电机理进行了研究。研究表明,CuSCN/n-Si异质结存在良好的整流特性;由于在p-CuSCN/n-Si异质结界面处的导带补偿与价带补偿相差较大的缘故,在正向电压,无光照下,导电机理为空间电荷限制电流导电,此时空穴电流主导;在光照下,异质结表现出良好的光电响应,因此可以广泛应用在光电探测和太阳电池等领域。 展开更多
关键词 p-cuScn n-Si异质结 I-V特性 c-V特性 内建电势 界面态
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开放式空气CO_2浓度升高对水稻土壤可溶性C、N和P的影响 被引量:41
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作者 马红亮 朱建国 +3 位作者 谢祖彬 张雅丽 刘刚 曾青 《土壤》 CAS CSCD 北大核心 2004年第4期392-397,共6页
采用FACE(Free air carbon dioxide enrichment)技术,研究了不同N施肥水平下,大气CO2浓度升高对水稻/小麦轮作中水稻土壤可溶性C、N、P的影响.结果表明,CO2浓度升高使土壤表层可溶性C含量增加,土壤5~15 cm的可溶性C含量倾向于降低,增加... 采用FACE(Free air carbon dioxide enrichment)技术,研究了不同N施肥水平下,大气CO2浓度升高对水稻/小麦轮作中水稻土壤可溶性C、N、P的影响.结果表明,CO2浓度升高使土壤表层可溶性C含量增加,土壤5~15 cm的可溶性C含量倾向于降低,增加N肥施用(常规N处理)更易于使土壤可溶性C含量降低.CO2浓度升高使水稻土壤中的可溶性N含量降低,在低N处理和土壤表层降低幅度较大,N肥施用仍有提高的余地.CO2浓度升高使水稻成熟期土壤可溶性P含量增加,但是常规N处理下会降低水稻生长前期和土壤表层的可溶性P,增加N肥施用有利于水稻对P的吸收. 展开更多
关键词 cO2浓度升高 水稻土 可溶性cnp
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不同氮水平下CO_2浓度升高对小麦土壤可溶性C、N和P的影响 被引量:9
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作者 马红亮 朱建国 +3 位作者 谢祖彬 张雅丽 曾青 刘钢 《土壤》 CAS CSCD 北大核心 2005年第3期284-289,共6页
采用FACE(Free air carbon dioxide enrichment)技术,研究了不同N施肥水平下,大气CO2浓度升高对稻/麦轮作小麦季土壤可溶性C、N、P的影响.结果表明,高CO2使土壤可溶性C在小麦前期和0~5 cm土层降低,成熟期增加,对水稻和小麦不同轮作季... 采用FACE(Free air carbon dioxide enrichment)技术,研究了不同N施肥水平下,大气CO2浓度升高对稻/麦轮作小麦季土壤可溶性C、N、P的影响.结果表明,高CO2使土壤可溶性C在小麦前期和0~5 cm土层降低,成熟期增加,对水稻和小麦不同轮作季土壤可溶性C的影响不同.在低N和常规N处理下,高CO2使小麦分蘖期土壤可溶性N含量分别增加17.2%和18.9%,在其他生长期,土壤可溶性N含量降低9.8%~63.0%,拔节期降低幅度最大分别为63.0%和50.4%,土层0~5 cm降低幅度>5~15 cm土层;小麦季和水稻季一样需要增加N肥施用量.CO2浓度升高增加了土壤可溶性P的含量,其中低N处理增加幅度高于常规N处理,研究表明小麦生长不会受到P养分的限制. 展开更多
关键词 cO2浓度升高 麦季 土壤可溶性cnp
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开放式空气CO_2浓度升高对冬小麦P、K吸收和C:N,C:P比的影响 被引量:11
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作者 马红亮 朱建国 +3 位作者 谢祖彬 刘钢 曾青 韩勇 《农业环境科学学报》 CAS CSCD 北大核心 2005年第6期1192-1198,共7页
利用FACE(Freeaircarbondioxideenrichment)技术平台,在两种氮肥施用水平上,研究了CO2浓度升高对冬小麦整个生长期P、K吸收和C∶N,C∶P比的影响。实验设常规CO2(AmbientCO2)和设计CO2(elevatedCO2,Ambient+200μmol·mol-1)两种CO2... 利用FACE(Freeaircarbondioxideenrichment)技术平台,在两种氮肥施用水平上,研究了CO2浓度升高对冬小麦整个生长期P、K吸收和C∶N,C∶P比的影响。实验设常规CO2(AmbientCO2)和设计CO2(elevatedCO2,Ambient+200μmol·mol-1)两种CO2水平和常规氮(NN,250kgN·hm-2)和低氮(LN,150kgN·hm-2)两个N水平。结果表明,相对于对照处理,高CO2浓度条件下,小麦叶的P浓度分别在分蘖期显著降低,LN处理降低幅度相对较大,叶、茎和穗的P浓度主要在成熟期增加,NN处理增加幅度相对较大;小麦不同部位的K浓度降低幅度在LN处理较大。但是小麦对P、K的吸收增加,并且在拔节期和成熟期达到显著水平,LN处理下对P的吸收增加幅度较大,NN处理对K的吸收增加幅度较大。由于CO2浓度升高,拔节期以前,小麦对P和K的相对吸收速率(RAR)分别增加33%(LN>NN)和37%(LN<NN),拔节期以后分别降低45%(LN>NN)和101%(LN>NN)。CO2浓度升高后主要显著增加了LN处理的C∶N比,但是C∶P比仅仅在分蘖期显著增加。 展开更多
关键词 cO2浓度升高 冬小麦 养分吸收 c :n c :p
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温度、C/N、C/P和DO质量浓度对SBBR工艺的影响 被引量:4
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作者 许秀红 王丹 李秀 《沈阳建筑大学学报(自然科学版)》 CAS 北大核心 2015年第6期1136-1143,共8页
目的研究不同温度、C/N(质量比)、C/P(质量比)、DO质量浓度对附着生长稳定床及序批式生物膜反应器(SBBR工艺)的影响,考察不同运行条件净化效果,并得出最佳反应工况条件.方法试验采用人工配水,通过在SBBR反应器中投加聚丙烯悬浮填... 目的研究不同温度、C/N(质量比)、C/P(质量比)、DO质量浓度对附着生长稳定床及序批式生物膜反应器(SBBR工艺)的影响,考察不同运行条件净化效果,并得出最佳反应工况条件.方法试验采用人工配水,通过在SBBR反应器中投加聚丙烯悬浮填料,分别考察在温度为10℃、15℃、20℃、25℃、30℃、35℃,C/N(质量比)为3、3.5、4、4.7、5.6、6.5、7、8.5、10、12、12.7、13.7、15.5、20,C/P(质量比)为25.2、31.5、37.6、42.3、45、50.8、55.4、62.5、67.3、74.2和DO质量浓度为1 mg/L、2 mg/L、2.5 mg/L、3 mg/L、3.5 mg/L、4 mg/L、4.5 mg/L、5 mg/L、6 mg/L、7 mg/L、8mg/L下SBBR工艺对COD、TN、TP的处理效果.结果 SBBR反应器在温度范围在20~30℃,C/N(质量比)在4.7~13.7,C/P(质量比)〉42,DO质量浓度在3.5 mg/L左右时的运行效果良好,COD平均去除率为94.44%,TN的平均去除率为64.49%,TP平均去除率为89.99%.结论在最佳反应工况条件下,采用SBBR工艺,出水水质可达到国家《城市污水处理厂污染物排放标准》(GB18918—2002)中一级A标准. 展开更多
关键词 SBBR工艺 温度 c/n(质量比) c/p(质量比) DO
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降水量及N添加对宁夏荒漠草原土壤C∶N∶P生态化学计量特征和植被群落组成的影响 被引量:17
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作者 朱湾湾 王攀 +3 位作者 樊瑾 牛玉斌 余海龙 黄菊莹 《草业学报》 CSCD 北大核心 2019年第9期33-44,共12页
为了解降水格局改变和大气氮(N)沉降增加背景下土壤碳(C)∶N∶磷(P)平衡关系的改变是否会影响到荒漠草原植被群落组成,基于2017年在宁夏荒漠草原设立的降水量(降水量减少50%、降水量减少30%、自然降水量、降水量增加30%和降水量增加50%)... 为了解降水格局改变和大气氮(N)沉降增加背景下土壤碳(C)∶N∶磷(P)平衡关系的改变是否会影响到荒漠草原植被群落组成,基于2017年在宁夏荒漠草原设立的降水量(降水量减少50%、降水量减少30%、自然降水量、降水量增加30%和降水量增加50%)、N添加(0和5 g·m^-2·yr^-1)及其交互作用的野外试验,初步分析了土壤C∶N∶P生态化学计量特征和植物群落组成的变化趋势以及二者的关系。结果表明,增加降水量降低了土壤有机C、全N和N∶P。N添加及其与降水量的交互作用对土壤C∶N∶P生态化学计量特征的影响较小;适量增加降水量刺激了多数植物生长,提高了群落多样性。过量增加降水量导致猪毛蒿种群生物量急增,且N添加对降水量效应有促进作用,从而降低了群落多样性;土壤含水量、全N、有机C和N∶P与种群生物量关系较为密切,土壤含水量、有机C、C∶P和C∶N与多样性指数存在较强的相关关系。以上结果意味着降水量会通过调控土壤水分有效性,改变土壤与植物之间N和P的满足程度,从而对植物生长策略和群落多样性产生影响;短期N添加对土壤养分有效性影响较小。因此,还需通过长期的原位试验,对N添加及其与降水量交互作用下土壤C∶N∶P计量平衡与植物群落组成的关系进行深入探讨。 展开更多
关键词 干旱半干旱区 降水格局改变 大气n沉降增加 植物群落多样性 土壤cnp
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虎伯寮南亚热带季雨林林下植被C、N、P含量及化学计量特征 被引量:4
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作者 黄雍容 黄石德 +1 位作者 高伟 林捷 《防护林科技》 2021年第3期1-3,共3页
以虎伯寮南亚热带季雨林林下植被为研究对象,对其灌木层和草本层优势植物各器官C、N和P含量进行了测定,对其生态化学计量特征及养分利用策略进行了研究。结果表明:灌木层优势植物C含量显著高于草本层,草本层植被N和P含显著大于灌木层。... 以虎伯寮南亚热带季雨林林下植被为研究对象,对其灌木层和草本层优势植物各器官C、N和P含量进行了测定,对其生态化学计量特征及养分利用策略进行了研究。结果表明:灌木层优势植物C含量显著高于草本层,草本层植被N和P含显著大于灌木层。灌木层优势植物各器官C含量差异不显著,叶的N含量显著高于其他器官,叶的P含量显著高于干和根。草本层优势植物地上部分的C、N和P含量均高于地下部分,仅N含量差异达显著水平。该群落灌木层优势植物的N、P利用效率较草本层优势植物高,灌木层和草本层植物生长受P元素限制。灌木层优势植物的干及草本层地下部分N、P利用效率较高。 展开更多
关键词 虎伯寮南亚热带季雨林 林下植被 c含量 n含量 p含量 化学计量
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C-V法测量pn结杂质浓度分布的基本原理及应用 被引量:14
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作者 何波 史衍丽 徐静 《红外》 CAS 2006年第10期5-10,共6页
全面地介绍了pn结C-V测量法的基本原理、测试设备及条件。利用pn结反向偏压时的电容特性推导了有效杂质浓度随深度分布的计算公式及突变结和线性缓变结的1/(C2)-V和1/(C3)-V关系图。应用该原理计算、分析了IN5401整流二极管pn结的特性... 全面地介绍了pn结C-V测量法的基本原理、测试设备及条件。利用pn结反向偏压时的电容特性推导了有效杂质浓度随深度分布的计算公式及突变结和线性缓变结的1/(C2)-V和1/(C3)-V关系图。应用该原理计算、分析了IN5401整流二极管pn结的特性及杂质浓度的纵向分布。 展开更多
关键词 c—V测量法 杂质浓度分布 pn 势垒电容 离子注入
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农田面源流失C、N、P元素的生态化学计量与生态拦截沟渠工程 被引量:3
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作者 郭匿春 马友华 张震 《现代农业科技》 2015年第17期234-236,241,共4页
综合生态拦截沟渠内土壤、水体、微生物、浮游植物、浮游动物、水生高等植物中C、N、P元素的生态化学计量研究进行分析,阐明生态拦截沟渠建设对改变农田排水的化学计量学属性、消减农业面源污染、降低水体富营养化程度以及控制藻类水华... 综合生态拦截沟渠内土壤、水体、微生物、浮游植物、浮游动物、水生高等植物中C、N、P元素的生态化学计量研究进行分析,阐明生态拦截沟渠建设对改变农田排水的化学计量学属性、消减农业面源污染、降低水体富营养化程度以及控制藻类水华等方面的影响,以期为生态拦截技术的开发提供理论依据。 展开更多
关键词 生态拦截沟渠cnp元素 生态化学计量 富营养化 藻类水华
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我国近五年C、N、P生态化学计量学研究进展 被引量:3
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作者 魏希杰 王伟 《青海畜牧兽医杂志》 2018年第4期60-65,36,共7页
为了弄清近五年我国C、N、P生态化学计量学研究的热点问题以及未来的研究趋势,采用文献分析方法,对C、N、P生态化学计量学领域64篇高被引论文为研究对象,统计了高被引论文的作者和机构分布状况,以及对高被引论文的研究对象和内容进行了... 为了弄清近五年我国C、N、P生态化学计量学研究的热点问题以及未来的研究趋势,采用文献分析方法,对C、N、P生态化学计量学领域64篇高被引论文为研究对象,统计了高被引论文的作者和机构分布状况,以及对高被引论文的研究对象和内容进行了统计分析。揭示了我国近五年来C、N、P生态化学计量学研究在作者、机构分布的特点,以及该领域的研究对象、研究内容上的热点变化及未来趋势。该研究结果能了解我国近五年C、N、P生态化学计量学的研究热点以及研究趋势,为同行进行相关研究提供借鉴和参考。 展开更多
关键词 近五年 cnp 生态化学计量学 研究热点
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青海东部农区引进燕麦品种各器官C、N、P生态化学计量学特征变化研究 被引量:6
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作者 吴浩 张燕 +3 位作者 贾志锋 何克燕 王佳豪 魏小星 《干旱地区农业研究》 CSCD 北大核心 2023年第1期160-168,共9页
以4个引种燕麦(Avena sativa)为典型代表,对其不同生育时期根、茎、叶中的C、N、P含量及其化学计量学特征进行测定,探讨不同生育时期燕麦C、N、P元素含量及其化学计量比的变化规律,为燕麦饲草的科学收获提供理论依据。结果表明:燕麦全株... 以4个引种燕麦(Avena sativa)为典型代表,对其不同生育时期根、茎、叶中的C、N、P含量及其化学计量学特征进行测定,探讨不同生育时期燕麦C、N、P元素含量及其化学计量比的变化规律,为燕麦饲草的科学收获提供理论依据。结果表明:燕麦全株C、N、P含量分别为322.30~333.97、17.42~75.62、2.74~5.42 mg·g^(-1),燕麦根C、N、P含量分别为298.42~317.92、11.47~73.71、2.82~3.42 mg·g^(-1),燕麦茎C、N、P含量分别为311.25~338.86、10.15~75.16、2.44~5.06 mg·g^(-1),燕麦叶C、N、P含量分别为330.80~372.47、30.64~113.80、2.59~8.65 mg·g^(-1);各器官间C、N、P含量表现为叶>茎>根。此外,燕麦各器官C、N、P含量的积累过程具有一定季节特征,C含量积累过程受生育时期影响较小,表现出较强的稳定性;而N和P含量的积累过程受生育时期影响较大,其在拔节期~抽穗期均高于开花期~乳熟期。燕麦各器官C∶N、C∶P和N∶P分别为4.42~24.44、70.72~124.56和6.56~17.28,其中C∶N、C∶P在开花期~乳熟期均高于拔节期~抽穗期;N∶P则规律相反。 展开更多
关键词 燕麦 c n p含量 生态化学计量学 生育时期 分配规律
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摩天岭北坡常绿阔叶林带主要优势种叶片C、N、P特征分析 被引量:2
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作者 何桂萍 田青 +3 位作者 李宗杰 宋玲玲 张守昊 曹雪萍 《甘肃农业大学学报》 CAS CSCD 北大核心 2019年第1期129-136,143,共9页
【目的】研究植物叶片的C、N、P元素含量特征,揭示植物的养分利用策略及对环境的适应方式.【方法】以摩天岭北坡常绿阔叶林带23种主要优势种的叶片为研究对象,分析木本植物叶片中C、N、P计量特征以及相关性.【结果】23种植物叶片C、N、... 【目的】研究植物叶片的C、N、P元素含量特征,揭示植物的养分利用策略及对环境的适应方式.【方法】以摩天岭北坡常绿阔叶林带23种主要优势种的叶片为研究对象,分析木本植物叶片中C、N、P计量特征以及相关性.【结果】23种植物叶片C、N、P含量范围分别为383.68~628.29、10.87~41.91、0.83~3.23 mg/g,C/N、C/P、N/P范围为10.48~41.09、143.50~538.72、5.34~22.76,其中C的变异系数最小,为9.46%,C/N的变异系数最大,为37.15%.乔灌植物叶片元素含量特征表现为乔木的C/N>灌木,而其他几个指标均小于灌木.相关性分析表明,23种植物叶片中C、N、P计量参数间有7对呈显著或极显著相关,其中乔木植物有5对,灌木有6对,说明木本植物元素含量间相关性是普遍存在的.其中,N-C/N、P-C/P在两个尺度上相关性一致,都呈极显著负相关,表明这两组相关性是较为稳定的.【结论】研究区木本植物叶片C含量较低且最稳定,N、P含量较高,变异较大,但养分利用效率较低(C/N和C/P较低).乔灌植物叶片养分含量特征虽有所不同,但差异不明显.两个不同尺度的相关性分析表明,木本植物元素含量间相关性是普遍存在的,且N-C/N、P-C/P较为稳定的. 展开更多
关键词 常绿阔叶林带 乔灌植物 cnp含量 化学计量
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