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921.
Arbuscular mycorrhizal fungi (AMF) have great potential for assisting heavy metal hyperaccumulators in the remediation of contaminated soils. However, little information is available about the community composition of AMF under natural conditions in soils contaminated by antimony (Sb). The objective of this study was to investigate the characteristics of AMF molecular diversity, and to explore the effects of Sb content and soil properties on the AMF community structure in an Sb mining area. Four Sb mine spoils and one adjacent reference area were selected from around the Xikuangshan mine in southern China. The association of AMF molecular diversity and community composition with the rhizosphere soils of the dominant plant species was studied by Polymerase Chain Reaction-Denaturing Gradient Gel Electrophoresis (PCR-DGGE). Results from all five studied sites showed that the diversity of AMF decreased with increasing Sb concentration. Principal component analysis (PCA) indicated that the AMF community structure was markedly different among these groups. Further redundancy analysis (RDA) showed that Sb contaminationwas the dominating factor influencing the AMF community structure in the Sb mine area. However, the multivariate analysis showed that, apart from the soil Sb content, extractable nitrogen content and organic matter content also attributed to AMF sequence distribution type. Some AMF sequences were only found in the highly contaminated area and these might be ideal candidates for improving phytoremediation efficiency in Sb mining regions. Gene sequencing analysis revealed that most species were affiliated with Glomus, suggesting that Glomus was the dominant AMF genus in the studied Sb mining area.  相似文献   
922.
ZnBiYO4 was synthesized by a solid-state reaction method for the first time. The structural and photocatalytic properties of ZnBiYO4 were characterized by X-ray diffraction, scanning electron microscopy, X-ray photoelectron spectroscopy and UV-Vis diffuse reflectance. ZnBiYO4 crystallized with a tetragonal spinel structure with space group I41/A. The lattice parameters for ZnBiYO4 were a = b = 11.176479 Å and c= 10.014323 Å. The band gap of ZnBiYO4 was estimated to be 1.58 eV. The photocatalytic activity of ZnBiYO4 was assessed by photodegradation of methyl orange under visible light irradiation. The results showed that ZnBiYO4 had higher catalytic activity compared with N-doped TiO2 under the same experimental conditions using visible light irradiation. The photocatalytic degradation of methyl orange with ZnBiYO4 or N-doped TiO2 as catalyst followed first-order reaction kinetics, and the first-order rate constant was 0.01575 and 0.00416 min-1 for ZnBiYO4 and N-doped TiO2, respectively. After visible light irradiation for 220 min with ZnBiYO4 as catalyst, complete removal and mineralization of methyl orange were observed. The reduction of total organic carbon, formation of inorganic products, SO42- and NO3-, and evolution of CO2 revealed the continuous mineralization of methyl orange during the photocatalytic process. The intermediate products were identified using liquid chromatography- mass spectrometry. The ZnBiYO4/(visible light) photocatalysis system was found to be suitable for textile industry wastewater treatment and could be used to solve other environmental chemical pollution problems.  相似文献   
923.
Surface water methane (CH4) and nitrous oxide (N2O) concentrations and fluxes were investigated in two subtropical coastal embayments (Bramble Bay and Deception Bay, which are part of the greater Moreton Bay, Australia). Measurements were done at 23 stations in seven campaigns covering different seasons during 2010-2012. Water-air fluxes were estimated using the Thin Boundary Layer approach with a combination of wind and currents-based models for the estimation of the gas transfer velocities. The two bays were strong sources of both CH4 and N2O with no significant differences in the degree of saturation of both gases between them during all measurement campaigns. Both CH4 and N2O concentrations had strong temporal but minimal spatial variability in both bays. During the seven seasons, CH4 varied between 500% and 4000% saturation while N2O varied between 128 and 255% in the two bays. Average seasonal CH4 fluxes for the two bays varied between 0.5 ± 0.2 and 6.0 ± 1.5 mg CH4/(m2·day) while N2O varied between 0.4 ± 0.1 and 1.6 ± 0.6 mg N2O/(m2·day). Weighted emissions (t CO2-e) were 63%-90% N2O dominated implying that a reduction in N2O inputs and/or nitrogen availability in the bays may significantly reduce the bays' greenhouse gas (GHG) budget. Emissions data for tropical and subtropical systems is still scarce. This work found subtropical bays to be significant aquatic sources of both CH4 and N2O and puts the estimated fluxes into the global context with measurements done from other climatic regions.  相似文献   
924.
不同条件下皂苷对污染塿土中Cu、Pb的淋洗修复   总被引:6,自引:1,他引:6  
为了探讨环境友好型生物表面活性剂皂苷(saponin)对污染塿土中重金属Cu、Pb的淋洗修复效果,采用批次试验方法,研究了皂苷在不同的淋洗时间、质量浓度、p H、淋洗次数及背景电解质强度下对Cu、Pb单一污染塿土和复合污染塿土中Cu、Pb的淋洗效果.结果表明,当皂苷质量浓度为50 g·L-1、p H值为5.0、淋洗时间为240 min、无背景电解质离子共存时,重金属离子通过与皂苷胶团络合,对污染塿土中Cu、Pb的淋洗去除效果达到最大;在单一污染塿土和复合污染塿土中,50g·L-1的皂苷在最佳淋洗条件下对Cu的单次淋洗百分率分别为29.02%和25.09%,对Pb的单次淋洗百分率分别为31.56%和28.03%,同时也显示皂苷对Pb的去除效果比Cu更显著.经过4次淋洗后,在单一污染塿土和复合污染塿土中皂苷对Cu的累积淋洗百分率分别为58.92%和53.11%,对Pb的累积淋洗百分率分别为77.69%和65.32%.单次淋洗前后污染塿土中重金属形态分级结果表明:污染塿土中吸附态、交换态Cu、Pb的质量分数有所增加;碳酸盐结合态、有机结合态和硫化物残渣态的Cu、Pb可得到有效去除.  相似文献   
925.
对陕西北部某化工企业污灌区土壤-作物系统的重金属积累状况及空间分布进行了深入研究.结果表明,污水排放导致了周围农田土壤中Cd和Cu的聚集,其中Cd的积累量超过国家土壤环境二级标准;土壤Cu、Zn和Pb的单因子污染指数均小于1,Cd的单因子污染指数为1.21,属轻度污染,4种重金属综合污染指数为0.74,属警戒线等级.在剖面上,所有重金属元素均表现出明显的表聚现象,主要聚集在土壤表层0~10 cm范围内,在空间分布上,污水排放企业污灌区土壤和作物重金属Cu、Zn和Cd的强烈聚集区出现在企业排污口附近100 m范围内,而Pb集中在200 m范围内,并随着距企业距离的增加重金属含量呈降低趋势.在企业污水灌溉的影响下,玉米籽粒中Cu、Pb和Cd的平均含量分别为4.74、0.129和0.036 mg·kg-1,明显高于对照区,其中Pb达到5.7%的超标率.玉米籽粒中重金属单因子污染指数均小于1,大小为PbCuZnCd,综合污染指数为0.53,属安全清洁等级;4种重金属元素中,除Cd在作物中与土壤中有效态和全量之间均呈现极显著的正相关关系外,其余元素作物中和土壤中含量相关性均未达到显著水平.因此,该化工企业周围,尽管由于污灌引起重金属在土壤中的累积,但由于在农作物中的积累有限,暂时未对人体健康造成威胁,但由于交通及烟尘引起的Pb的超标应引起重视.  相似文献   
926.
为研究昌黎生态监控区夏季浮游植物群落结构特征及其与环境因子关系,采用2005~2013年夏季(8月)昌黎生态监控区海域浮游植物及环境因子的监测资料,基于Arc GIS 10.0和Canoco软件平台,运用典范对应分析方法,对浮游植物群落结构进行分析.结果表明,近9 a共鉴定出浮游植物3门23科39属105种,其中,硅藻门16科32属90种,占浮游植物总数的85.7%;甲藻门共6科6属14种,占总种类数的13.3%;金藻门1种.各年的优势种存在很大差异,按照优势度Y值的大小包括辐射圆筛藻(Coscinodiscus radiatus)、柔弱角毛藻(Coscinodiscus debilis)、笔尖根管藻(Rhizosolenia styliformis)、柏氏角管藻(Cerataulina bergoni)、威氏圆筛藻(Coscinodiscus wailesii)、海链藻(Thalassiosira sp.)、三角角藻(Ceratium tripos)、洛氏角毛藻(Coscinodiscus wailesii)、中肋骨条藻(Ceratium tripos)等.夏季细胞丰度年际变化较大,呈现逐渐降低的趋势.浮游植物的多样性指数H'值介于0.015~3.889,均匀度指数J值介于0.009~1,年际变化幅度较小;各站位间物种分布不均匀,优势种较少且优势度较大.对浮游植物群落与环境因子进行典范对应分析(CCA),结果表明影响夏季浮游植物群落结构变化的环境因子包括水温、营养盐(磷酸盐、硝酸氮、氨氮)、盐度等,且是各个环境因子相互作用的结果.  相似文献   
927.
春季生物作用对山地岩溶池水地球化学特征的影响   总被引:2,自引:1,他引:2  
岩溶水文系统对外界环境变化敏感,使得岩溶区水质存在昼夜、小时甚至分钟等尺度的变化.许多地表水体都会经历p H值、溶解性气体、微量元素以及其他水化学指标的昼夜变化.重庆金佛山水房泉及受其补给的水池地处海拔2 050 m的山地岩溶区,具有温带气候特征.通过对水房泉泉水(以下简称泉水)及水池进行为期3 d的昼夜监测,以期探究春季生物作用对岩溶池水地球化学的影响.研究发现,在昼夜时间尺度上,泉水地球化学指标基本稳定,未表现出昼夜变化,池水地球化学指标化学表现出了昼夜波动,但水温、溶解氧、p H值、电导率等物理化学指标昼夜变化幅度较小.在不同的天气条件下,水温、溶解氧、Cl-等昼夜变化幅度存在差别;池水二氧化碳分压(p CO2)、Ca2+、DIC白天降低、晚上升高,方解石饱和指数(SIc)相反;这些指标的变化受控于温度、碳酸盐岩矿物的溶解与沉淀、水生植物光合作用与呼吸作用;通过亨利常数的计算,发现水温变化对p CO2变化的影响仅占0.79%~10.01%,水温、碳酸盐岩沉淀等物理因素对DIC损失量的贡献率为39%,水生植物光合作用的贡献率为61%.  相似文献   
928.
2013年1月北京市一次空气重污染成因分析   总被引:10,自引:17,他引:10  
采用数值模式与观测资料相结合的方式,对北京市2013年1月9日至15日一次空气重污染过程的大气环境背景、气象条件和形成原因进行了初步分析.结果表明,重污染过程期间10日至14日PM2.5平均值为323μg·m-3;重污染过程与当地气象条件密切相关,稳定的大气环流形势为污染的持续提供了大气环流背景,风速较小、湿度较大、边界层较低、持续逆温是造成重污染的主要原因;重污染过程中区域输送对北京PM2.5贡献率在53%~69%之间且存在明显的二次转化,区域输送起着更为重要的作用;气象条件对持续性重污染的形成和破坏起到了关键性的作用,因此需要加强对重污染预警预报研究,以有效预防和控制空气重污染.  相似文献   
929.
为了有效识别民用机场多任务保障作业所带来的交叉、死锁、互斥等作业风险,并解决民用机场风险管理过程中辨识方法标准不统一等问题,提出了基于面向对象的安全风险识别模型,从功能的分解、抽象、模块化、封装四个基本方面对民用机场多任务保障中的风险识别环节展开研究,完成了民用机场危险源基类模板的绘制;结合组合数学知识,通过对对象间的作用分析,来识别民用机场多任务保障作业中的交叉、死锁、互斥等运行风险;结合应用示例,通过理论分析与实例应用,验证了该风险分析模型的可行性。  相似文献   
930.
Removal kinetics of phosphorus through use of basic oxygen furnace slag(BOF-slag)was investigated through batch experiments. Effects of several parameters such as initial phosphorus concentration, temperature, BOF-slag size, initial p H, and BOF-slag dosage on phosphorus removal kinetics were measured in detail. It was demonstrated that the removal process of phosphorus through BOF-slag followed pseudo-first-order reaction kinetics. The apparent rate constant(kobs) significantly decreased with increasing initial phosphorus concentration, BOF-slag size, and initial p H, whereas it exhibited an opposite trend with increasing reaction temperature and BOF-slag dosage.A linear dependence of kobson total removed phosphorus(TRP) was established with kobs=(3.51 ± 0.11) × 10- 4× TRP. Finally, it was suggested that the Langmuir–Rideal(L–R)or Langmuir–Hinshelwood(L–H) mechanism may be used to describe the removal process of phosphorus using BOF-slag.  相似文献   
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