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81.
根据某城市土壤表层中的8种重金属Cu、Pb、Cd、Hg、As、Cr、Ni、Zn的浓度数据,利用地统计学原理方法,研究了不同功能区土壤重金属的污染特征。结果表明Cd、Cu、Hg、Pb和Zn在工业区和主干道路区浓度超标,并且这几种元素的富集系数偏高,说明污染来源主要是工业生产、汽车尾气排放及汽车轮胎磨损等。此研究对城市土壤重金属污染治理及修复、重金属污染重点行业污染控制等提供参考。  相似文献   
82.
微波消解ICP-AES法测定土壤中的金属元素研究   总被引:1,自引:0,他引:1  
采用硝酸-盐酸-氢氟酸-双氧水作溶剂,通过微波消解技术、电感耦合等离子发射光谱法测定土壤中的锑、砷、铍、镉、铬、铜、铅、镍、硒、银、铊、锌,优化了微波消解仪和等离子发射光谱仪的工作参数,研究了共存离子的干扰和消除方法。优化后的微波消解酸体系及用量比例为HNO3∶HCl∶HF∶H2O2=5∶2∶3∶1,方法线性良好,各元素的检出限在0.000 2 mg/L~0.010 1 mg/L之间,土壤样品测定的标准偏差在0.001~0.051之间,加标回收率在85.5%~108.5%之间。该方法检出限低、精密度高、准确度好,测定结果令人满意。  相似文献   
83.
以吉林农业大学长期定位试验田土壤为研究对象,采用室内模拟冻融环境和振荡平衡的方法,探讨冻融作用对NH+4在酸化土壤中吸附特性的影响。结果表明,随着冻融周期的增加,酸化土壤对NH+4的吸附量逐渐减小;冻结时间对酸化土壤吸附NH+4的影响不明显;随着冻前含水量的增加,酸化土壤对NH+4的吸附量逐渐减小,对NH+4的吸附量由大到小排列为:15%25%35%。酸化土壤对NH+4的吸附过程能很好地利用Langmuir方程拟合,冻融作用促进酸化土壤中NH+4的释放,增加了NH+4流失风险。  相似文献   
84.
选取武汉市为研究对象,均匀采集土壤样品,分析了6种土壤重金属含量。结果显示,As,Cr,Cu,Ni,Pb,Zn的平均含量超过武汉市土壤重金属背景值。根据克里金空间插值分析,As和Zn主要由人为因素污染造成。  相似文献   
85.
为了解Fe2O3纳米粒子对土壤有机碳分解矿化能力的影响,本研究采用室内培养实验,探讨了Fe2O3纳米粒子对土壤呼吸作用的影响。结果表明,在土壤中添加Fe2O3纳米粒子能够增强土壤呼吸作用,当Fe2O3纳米粒子加入量为10 g·kg-1时,土壤呼吸作用最强。本研究表明Fe2O3纳米粒子具有增强土壤有机碳分解矿化的作用。  相似文献   
86.
近年来,土壤中的镉污染事件频发,对土壤中镉测定的研究也越来越受到关注,本文以磷酸二氢铵-硝酸镁体系为基体改进剂,通过微波消解-石墨炉原子吸收光谱法分析测定土壤中镉,结果表明,该方法镉的检出限为1.96×10-13g。加标回收率为95.9%101.4%,相对标准偏差为0.57%,标样的测定结果在不确定度范围内。该方法具有快速、准确、灵敏度高的优点,能满足日常环境监测。  相似文献   
87.
以湖南省长沙县的脱甲流域(高水稻种植面积比例)和涧山流域(低水稻种植面积比例)为研究对象,对比研究红壤丘陵地区典型农业流域水稻种植对河流水体氮磷浓度和输出强度的影响.连续16个月的监测结果表明,脱甲和涧山流域河流水体均存在比较严重的养分污染,尤其是氮污染;对比两个流域,脱甲流域河流水体的氮磷浓度水平和水质恶化程度均高于涧山流域.从养分组成来看,脱甲流域河流水体中氮以铵态氮为主(占总氮的58.5%),而涧山流域主要是硝态氮(占总氮的76.1%).脱甲流域中可溶性磷占总磷比例为47.1%,高于涧山流域的37.5%.从养分浓度变化的时间动态而言,两个流域河流中各形态氮素水平在1~2月和7月较高,而可溶性磷和总磷在5~6月和10~12月出现两个峰值.由于两个流域河道径流主要集中在水稻种植期间的4~10月,脱甲流域河流中较高的氮磷养分浓度意味着潜在的氮磷流失风险.脱甲流域月平均总氮输出通量为1.67 kg·(hm2·月)-1,总磷为0.06 kg·(hm2·月)-1,均高于涧山流域的0.44 kg·(hm2·月)-1和0.02kg·(hm2·月)-1.考虑到两个流域的气候、地形地貌、土壤类型、农田耕作方式相似而只是水稻种植面积比例不同,因此,在该地区传统的水稻栽培管理模式下,较高面积比例的水稻种植对流域河流水体环境存在潜在威胁.  相似文献   
88.
Acidobacteria is one of the most dominant and abundant phyla in soil,and was believed to have a wide range of metabolic and genetic functions. Relatively little is known about its community structure and elevational diversity patterns. We selected four elevation gradients from 1000 to 2800 m with typical vegetation types of the northern slope of Shennongjia Mountain in central China. The vegetation types were evergreen broadleaved forest,deciduous broadleaved forest,coniferous forest and sub-alpine shrubs. We analyzed the soil acidobacterial community composition,elevational patterns and the relationship between Acidobacteria subdivisions and soil enzyme activities by using the 16 S rRNA meta-sequencing technique and multivariate statistical analysis. The result found that 19 known subdivisions as well as an unclassified phylotype were presented in these forest sites,and Subdivision 6 has the highest number of detectable operational taxonomic units(OTUs). A significant single peak distribution pattern(P 0.05) between the OTU number and the elevation was observed. The Jaccard and Bray–Curtis index analysis showed that the soil Acidobacteria compositional similarity significantly decreased(P 0.01) with the increase in elevation distance. Mantel test analysis showed the most of the soil Acidobacteria subdivisions had the significant relationship(P 0.01) with different soil enzymes. Therefore,soil Acidobacteria may be involved in different ecosystem functions in global elemental cycles. Partial Mantel tests and CCA analysis showed that soil pH,soil temperature and plant diversity may be the key factors in shaping the soil Acidobacterial community structure.  相似文献   
89.
Mechanisms of soil Pb immobilization by Bacillus subtilis DBM, a bacterial strain isolated from a heavy-metal-contaminated soil, were investigated. Adsorption and desorption experiments with living bacterial cells as well as dead cells revealed that both extracellular adsorption and intracellular accumulation were involved in the Pb2+removal from the liquid phase. Of the sequestered Pb(II), 8.5% was held by physical entrapment within the cell wall, 43.3% was held by ion-exchange, 9.7% was complexed with cell surface functional groups or precipitated on the cell surface, and 38.5% was intracellularly accumulated.Complexation of Pb2+with carboxyl, hydroxyl, carbonyl, amido, and phosphate groups was demonstrated by Fourier transform infrared spectroscopic analysis. Precipitates of Pb5(PO4)3OH, Pb5(PO4)3Cl and Pb10(PO4)6(OH)2that formed on the cell surface during the biosorption process were identified by X-ray diffraction analysis. Transmission electron microscopy–energy dispersive spectroscopic analysis confirmed the presence of the Pb(II)precipitates and that Pb(II) could be sequestered both extracellularly and intracellularly.Incubation with B. subtilis DBM significantly decreased the amount of the weak-acid-soluble Pb fraction in a heavy-metal-contaminated soil, resulting in a reduction in Pb bioavailability, but increased the amount of its organic-matter-bound fraction by 71%. The ability of B.subtilis DBM to reduce the bioavailability of soil Pb makes it potentially useful for bacteria-assisted phytostabilization of multi-heavy-metal-contaminated soil.  相似文献   
90.
The use of filamentous fungi in bioremediation of heavy metal contamination has been developed recently. This research aims to observe the capability of filamentous fungi isolated from forest soil for bioremediation of mercury contamination in a substrate. Six fungal strains were selected based on their capability to grow in 25 mg/L Hg2+-contaminated potato dextrose agar plates. Fungal strain KRP1 showed the highest ratio of growth diameter, 0.831, thus was chosen for further observation.Identification based on colony and cell morphology carried out by 18S rRNA analysis gave a 98%match to Aspergillus flavus strain KRP1. The fungal characteristics in mercury(Ⅱ) contamination such as range of optimum pH, optimum temperature and tolerance level were 5.5–7 and 25–35℃ and 100 mg/L respectively. The concentration of mercury in the media affected fungal growth during lag phases. The capability of the fungal strain to remove the mercury(Ⅱ) contaminant was evaluated in 100 mL sterile 10 mg/L Hg2+-contaminated potato dextrose broth media in 250 mL Erlenmeyer flasks inoculated with 108spore/mL fungal spore suspension and incubation at 30℃ for 7 days. The mercury(Ⅱ) utilization was observed for flasks shaken in a 130 r/min orbital shaker(shaken) and nonshaken flasks(static) treatments. Flasks containing contaminated media with no fungal spores were also provided as control. All treatments were done in triplicate. The strain was able to remove 97.50%and 98.73% mercury from shaken and static systems respectively. A. flavus strain KRP1 seems to have potential use in bioremediation of aqueous substrates containing mercury(Ⅱ) through a biosorption mechanism.  相似文献   
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