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51.
臭氧(O3)与甲烷(CH4)均是大气中重要的微量气体,对全球气候变化有着重要的影响.为提高全球范围的臭氧、甲烷在气候模式中的预报效果,使用集合平方根滤波(En SRF)同化方法及地球系统模式(CESM)构建了CESM-En SRF卫星资料同化预报系统,并通过设计试验,将大气红外探测器(AIRS)的臭氧与甲烷观测资料同化到气候模式中,对模式的同化再预报效果进行系统的测试与评估.结果显示,臭氧、甲烷分析集合均值的偏差及均方根误差皆低于背景集合均值的偏差及均方根误差.臭氧、甲烷的同化再预报偏差及均方根误差较控制实验都得到改善,但对5 h Pa以上高度臭氧预报准确性的改进效果很小.随循环同化的进行,平流层臭氧与甲烷的平均同化改进率呈增加趋势,并逐渐趋于稳定;对流层平均同化改进率随时间变化不明显.试验表明,该系统可有效利用臭氧与甲烷的观测资料对模式场进行合理的改善,从而有效地提高臭氧、甲烷在气候模式中的再预报效果,但对于平流层顶-中间层高度(5 h Pa以上)臭氧预报准确度的提高,模式中臭氧光化学过程的准确模拟较同化观测资料具有更重要的作用.此外,循环同化对提高5~150 h Pa高度臭氧及1~200 h Pa高度甲烷在CESM模式中的预报效果最有效.  相似文献   
52.
在前期筛选出油青60天菜心和特青60天菜心分别为PAEs高/低吸收累积基因型菜心的基础上,进行邻苯二甲酸二(2-乙基己基)酯(DEHP)不同污染水平的溶液培养试验,对比研究两种基因型菜心的根系形态和生理特性的差异,初步探讨其与菜心吸收累积DEHP的关系.结果表明,随着培养液中DEHP浓度的增加,在根系形态方面,两种基因型菜心根系生物量、总根长和根表面积均下降,油青60天菜心根直径变粗,而特青60天菜心根直径变细;在根系生理特性方面,油青60天菜心除了根系活力下降外,总吸收面积、活跃吸收面积、比表面积和根系脂肪含量均增加,而特青60天菜心除了根系活跃吸收面积增加外,其余指标均下降.因此,两种基因型菜心的根系形态和生理特性对DEHP胁迫响应存在差异.除根直径外,油青60天菜心根系形态和生理指标总体上均高于特青60天菜心,更有利于其根系对DEHP的捕获和吸收.  相似文献   
53.
Accumulation of copper (Cu) and cadmium (Cd) in six rice cultivars (94D-22, 94D-54, 94D-64, Gui630, YY-1 and KY1360) was evaluated through exposure to heavy metal contamination (100 mg/kg Cu, 1.0 mg/kg Cd, and 100 mg/kg Cu + 1.0 mg/kg Cd) in a greenhouse. The dry weight of shoot and root, concentrations of Cu and Cd in plant tissues and the Cu, Cd, P, Fe concentrations in the root surface iron plaques were analyzed eight weeks later after treatment. The results indicated that the plant biomass was mainly determined by rice genotypes, not Cu and Cd content in soil. Separated treatment with Cu/Cd increased each metal level in shoot, root and iron plaques. Soil Cu enhanced Cd accumulation in tissues. In contrast, Cu concentrations in shoot and root was unaffected by soil Cd. Compared to single metal contamination, combined treatment increased Cd content by 110.6%, 77.0% and 45.2% in shoot, and by 112.7%, 51.2% and 18.4% in root for Gui630, YY-1 and KY1360, respectively. The content level of Cu or Cd in root surface iron plaques was not affected by their soil content. Cu promoted Fe accumulation in iron plaques, while Cd has no effect on P and Fe accumulation in it. The translocation of Cu and Cd from iron plaques to root and shoot was also discussed. These results might be beneficial in selecting cultivars with low heavy metal accumulation and designing strategies for soil bioremediation.  相似文献   
54.
Sesbania rostrata is renowned for its stem nodulation, but the role of stem nodulation in the root nodulation and adaptation of S.rostrata to Pb/Zn-enriched tailings environment has been poorly understood.We investigated the effects of inoculating (with stem nodule treatment) and non-inoculating (without stem nodule treatment) Azorhizobium caulinodans on the growth, root nodulation, and N fixation of S.rostrata grown on three different types of soil substrata: Pb/Zn tailings, garden soil amended tailings, and garden soil.The results showed that plant height, stem basal diameter, biomass, chlorophyll content, nitrogen content and N-accumulation per plant were 2.3%-4.9%, 2.2%-7.7%, 27.8%-72.2%, 17.1%-23.5%, 12.3%-34.2%, and 43.1%-131.2% higher in treatments with stem nodule than those without stem nodule for the same soil substrate, respectively.With respect to soil substrata, all the measurements had consistently higher values in tailings than in amended tailings and garden soil, indicating that the poorer the soil condition, the greater the contribution of stem nodule.In contrast, the number and fresh weight of root nodules on plants without stem nodule were 6.9-11.6 times and 5.8-29.0 times higher than those with stem nodule, respectively, especially with respect to the plants grew on Pb/Zn tailings.In general, stem nodulation favored plant growth and nitrogen fixation of S.rostrata, but suppressed root nodulation.With the ability of stem and root nodulation, S.rostrata can be used as a pioneer plant species for remediation of Pb/Zn tailings.  相似文献   
55.
This study investigated the influence of Indian mustard (Brassica juncea) root exudation on soil solution properties (pH, dissolved organic carbon (DOC), metal solubility) in the rhizosphere using a rhizobox. Measurement was conducted following the cultivation of Indian mustard in the rhizobox filled four di erent types of heavy metal contaminated soils (two alkaline soils and two acidic soils). The growth of Indian mustard resulted in a significant increase (by 0.6 pH units) in rhizosphere soil solution pH of acidic soils and only a slight increase (< 0.1 pH units) in alkaline soils. Furthermore, the DOC concentration increased by 17–156 mg/L in the rhizosphere regardless of soil type and the extent of contamination, demonstrating the exudation of DOC from root. Ion chromatographic determination showed a marked increase in the total dissolved organic acids (OAs) in rhizosphere. While root exudates were observed in all soils, the amount of DOC and OAs in soil solution varied considerably amongst di erent soils, resulting in significant changes to soil solution metals in the rhizosphere. For example, the soil solution Cd, Cu, Pb, and Zn concentrations increased in the rhizosphere of alkaline soils compared to bulk soil following plant cultivation. In contrast, the soluble concentrations of Cd, Pb, and Zn in acidic soils decreased in rhizosphere soil when compared to bulk soils. Besides the influence of pH and DOC on metal solubility, the increase of heavy metal concentration having high stability constant such as Cu and Pb resulted in a release of Cd and Zn from solid phase to liquid phase.  相似文献   
56.
A controlled hydroponic experiment was undertaken to investigate Cd uptake in relation to the activity of Cd species in solution other than the free ion (Cd2+) by maintaining a constant Cd2+ activity under variable SO42 and Cl concentrations exposed to maize (Zea mays var. Cameron) plants. The objectives of these experiments were: (1) to distinguish and quantify the different uptake rates of free and inorganic-complexed Cd from nutrient solution, and (2) to model the uptake of Cd by maize with a Biotic Ligand Model (BLM) in a system which facilitates the close examination of root characteristics. Results of the current experiments suggest that, in addition to the free ion, CdSO40 complexes are important factors in determining Cd uptake in nutrient solution by maize plants. Higher nominal SO42 concentrations in solution generally resulted in a greater Cd accumulation by maize plants than predicted by the Cd2+ activity. A better integration of the complete dataset for the 3 harvest times (6, 9 and 11 days after treatment) was achieved by including consideration of both the duration of Cd exposure and especially the root surface area to express Cd uptake. Similarly, the fit of the BLM was also improved when taking into account exposure time and expressing uptake in terms of root morphological parameters.  相似文献   
57.
库布齐沙漠油蒿灌丛土壤呼吸速率时空变异特征研究   总被引:4,自引:0,他引:4  
孟祥利  陈世苹  魏龙  林光辉 《环境科学》2009,30(4):1152-1158
利用Li-840红外气体分析仪和Li-6400-09土壤呼吸气室组装而成的动态密闭土壤呼吸测定系统,于2006年生长季对内蒙古库布齐沙漠油蒿(Artemisia ordosica)生态系统2种不同类型土壤的土壤呼吸速率进行了野外测定,分析了日动态、季节动态及其对环境因子的响应,并阐述了油蒿灌丛空间异质性的特征.结果表明,油蒿灌丛的土壤呼吸速率日动态呈单峰曲线,在12:00左右有最大值.在适宜的水分和温度条件下,生长季里土壤呼吸速率在7~8月份出现最大值.土壤呼吸速率的季节动态与土壤含水量有显著的相关关系,表明水分是限制生长季干旱区灌丛土壤呼吸的最重要因子,分别可以解释油蒿冠幅下土壤和裸地的土壤呼吸速率2006年主要生长季节(5~9月)变化的75%和77%.油蒿灌丛土壤呼吸速率在空间尺度上存在着显著的异质性.油蒿冠幅覆盖下的土壤呼吸速率季节平均值为(155.58±15.20) mg·(m2·h)-1,要显著地大于灌丛间裸地的数值(110.50±6.77) mg·(m2·h)-1.2种不同类型土壤的土壤呼吸速率是由于根生物量的差异引起的,根生物量可以解释2006年生长季库布齐油蒿灌丛土壤呼吸速率空间异质性的43%.结果表明,在植被覆盖度异质性较大的灌丛生态系统中,要准确定量生态系统碳的释放时,必须充分考虑小尺度上土壤呼吸的空间异质性.  相似文献   
58.
通过在所构建的3组垂直流人工湿地(CW1、CW2、CW3)中添加不同ρ(DOC)(0、14、28 mg/L,DOC为溶解性有机碳)的美人蕉根系浸出液来模拟根系分泌物浓度变化,考察其对2种SEs(steroidal estrogens,类固醇雌激素)去除效果的影响. 结果表明:①虽然根系浸出液和根系分泌物中的ρ(DOC)存在差异,但二者成分比例类似,均含有多种小分子化合物(如氨基酸、多糖、有机酸、脂肪酸、醇、烷等),并且甘油含量均为最高. ②各组湿地对SEs的去除率表现为CW2>CW3≈CW1,CW2对E1(Estrone,雌酮)、EE2(17α-Ethinylestradiol,17α-乙炔基雌二醇)的去除率最高可分别达到86.9%、72.7%. ③各组湿地全细菌和AOB(ammonia oxidizing bacteria, 氨氧化细菌)平均密度大小表现为CW3>CW2>CW1,NOB(nitrite oxidation bacteria, 亚硝酸氧化细菌)平均密度大小表现为CW2>CW3>CW1,DNB(denitrifying bacteria, 反硝化细菌)平均密度大小表现为CW3>CW1≈CW2,各组湿地基质上生物膜的脱氢酶活性表现为CW2>CW1>CW3.研究显示,适量添加根系浸出液有利于SEs的去除,但根系浸出液中ρ(DOC)过高,可能会对植物根系和特定根系微生物(如NOB)的生长造成毒害作用,并抑制微生物活性,从而影响SEs的去除效果.   相似文献   
59.
UV-B辐射对大豆和黄瓜幼苗某些生理特性的影响   总被引:19,自引:2,他引:17  
在植物生长室中,UV- B辐射明显降低黄瓜幼苗的根系活力,抑制程度随辐射时间的延长而增强.黄瓜和大豆幼苗的叶绿素和可溶性蛋白含量减少与UVB辐射时间长短呈正相关,但是类胡萝卜素减少幅度不大.UVB对Chlb 的破坏较Chla 严重,导致Chlab 比值增大.UVB虽增加大豆幼苗的SOD活性,但降低大豆幼苗的NR活性及其对温度变化的敏感性.分析认为,Chlab 比值和SOD 活性升高,有助于植物对UVB的适应  相似文献   
60.
水溶性有机物对土壤中菲的生态毒性影响   总被引:11,自引:3,他引:8  
采用生物培养和物理化学试验,研究了水溶性有机物(DOM)对土壤中phe生态毒性的影响.结果表明,本研究所用DOM均具有表面活性;小麦根phe毒害的敏感区间为0~200mg/kg,200mg/kg是土壤中phe的50%小麦根伸长抑制率浓度.DOM的存在会降低phe的生态毒性,但是降低程度与其疏水性馏分含量和表面活性有关,且phe生态毒性的降低程度随DOM浓度的增大而增大.本研究的结果说明DOM能减轻土壤中phe的生态毒性.  相似文献   
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