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671.
U及伴生重金属Mn、Pb对土壤酶活性的影响   总被引:1,自引:0,他引:1  
通过盆栽实验,研究不同浓度条件下U、Mn、Pb对土壤酶(脲酶、酸性磷酸酶、蔗糖酶和过氧化物酶)活性的影响。结果表明:U对四种酶均有抑制作用,其中脲酶、磷酸酶、蔗糖酶活性随着U浓度的增加而降低;Mn对脲酶、磷酸酶有抑制作用,对过氧化物酶则有促进作用,Mn浓度较低时促进蔗糖酶活性,高浓度时则抑制。Pb对脲酶、磷酸酶、蔗糖酶活性均有抑制作用,其中对磷酸酶抑制作用最强烈,然而低浓度Pb促进过氧化物酶活性。脲酶、磷酸酶对U、Mn、Pb污染反应更敏感。通过相关性分析、回归分析及生态抑制效应研究,结果表明土壤脲酶和磷酸酶适于作为监测评价土壤U污染的生物指标。脲酶、磷酸酶比蔗糖酶和过氧化物酶更适于表征土壤Mn、Pb污染程度。  相似文献   
672.
以罗布泊"大耳朵"地区为研究区域,利用石墨炉原子吸收分光光度计(GF-990)和火焰原子吸收分光光度计(AAS-990)分析测试了沉积物中Pb、Cu、Ni和Mn元素的总量,并测定了沉积物中有机质的含量,运用SPSS软件分析了各重金属总量与有机质之间的相互关系。结果表明:罗布泊"大耳朵"地区盐壳层沉积物中Pb含量的变化范围在2.57~58.63 mg/kg,Cu含量的变化范围在6.33~39.65 mg/kg,Ni含量的变化范围在5.55~46.33 mg/kg,Mn含量的变化范围在46.33~1474.60 mg/kg;除Pb的垂直分布随着深度的增加其含量减少并趋于稳定外,重金属Cu、Ni和Mn的总量在各剖面垂直方向上大部分呈波折多峰行分布,分布趋势差异较大;重金属Pb、Cu、Ni和Mn与有机质都存在显著相关性。  相似文献   
673.
介绍了河南油田GIS设备漏气故障的处理方法,分析了漏气的原因,提出了相应的防范措施.  相似文献   
674.
This article describes the development and implementations of a novel software platform that supports real-time, science-based policy making on air quality through a user-friendly interface. The software, RSM-VAT, uses a response surface modeling (RSM) methodology and serves as a visualization and analysis tool (VAT) for three-dimensional air quality data obtained by atmospheric models. The software features a number of powerful and intuitive data visualization functions for illustrating the complex nonlinear relationship between emission reductions and air quality benefits. The case study of contiguous U.S. demonstrates that the enhanced RSM-VAT is capable of reproducing the air quality model results with Normalized Mean Bias < 2% and assisting in air quality policy making in near real time.  相似文献   
675.
黑龙江省大气污染防治思路研究   总被引:2,自引:0,他引:2  
近年来,全国各地出现不同程度的雾霾天气,大气污染严重,黑龙江省部分城市大气也出现不同程度污染,本文通过分析导致大气污染的三个主要成因,即:气候条件不利于污染物扩散;煤炭消耗处于主导地位;机动车迅速发展.提出黑龙江省未来十年的大气污染防治思路和地区产业发展方向的几点建议,通过采取综合、系统的措施,完善大气污染治理制度和政策保障体系、建立分区管理、加强污染基础研究、发展绿色经济等多方面入手,冀希能够改善本省的空气质量.  相似文献   
676.
A system combining granular activated carbon and powdered activated carbon technologies along with shortcut biological nitrogen removal (GAC-PACT-SBNR) was developed to enhance total nitrogen (TN) removal for anaerobically treated coal gasification wastewater with less need for external carbon resources. The TN removal efficiency in SBNR was significantly improved by introducing the effluent from the GAC process into SBNR during the anoxic stage, with removal percentage increasing from 43.8%49.6% to 68.8%-75.8%. However, the TN removal rate decreased with the progressive deterioration of GAC adsorption. After adding activated sludge to the GAG compartment, the granular carbon had a longer service-life and the demand for external carbon resources became lower. Eventually, the TN removal rate in SBNR was almost constant at approx. 43.3%, as compared to approx. 20.0% before seeding with sludge. In addition, the production of some alkalinity during the denitrification resulted in a net savings in alkalinity requirements for the nitrification reaction and refractory chemical oxygen demand (COD) degradation by autotrophic bacteria in SBNR under oxic conditions. PACT showed excellent resilience to increasing organic loadings. The microbial community analysis revealed that the PACT had a greater variety of bacterial taxons and the dominant species associated with the three compartments were in good agreement with the removal of typical pollutants. The study demonstrated that pre-adsorption by the GAC-sludge process could be a technically and economically feasible method to enhance TN removal in coal gasification wastewater (CGW).  相似文献   
677.
MnxCe1- xO2(x: 0.3–0.9) prepared by Pechini method was used as a catalyst for the thermal catalytic oxidation of formaldehyde(HCHO). At x = 0.3 and 0.5, most of the manganese was incorporated in the fluorite structure of Ce O2 to form a solid solution. The catalytic activity was best at x = 0.5, at which the temperature of 100% removal rate is the lowest(270°C). The temperature for 100% removal of HCHO oxidation is reduced by approximately 40°C by loading 5 wt.% Cu Oxinto Mn0.5Ce0.5O2. With ozone catalytic oxidation, HCHO(61 ppm) in gas stream was completely oxidized by adding 506 ppm O3 over Mn0.5Ce0.5O2 catalyst with a GHSV(gas hourly space velocity) of 10,000 hr-1at 25°C. The effect of the molar ratio of O3 to HCHO was also investigated. As O3/HCHO ratio was increased from 3 to 8, the removal efficiency of HCHO was increased from 83.3% to 100%. With O3/HCHO ratio of 8, the mineralization efficiency of HCHO to CO2 was 86.1%. At 25°C, the p-type oxide semiconductor(Mn0.5Ce0.5O2) exhibited an excellent ozone decomposition efficiency of 99.2%,which significantly exceeded that of n-type oxide semiconductors such as Ti O2, which had a low ozone decomposition efficiency(9.81%). At a GHSV of 10,000 hr-1, [O3]/[HCHO] = 3 and temperature of 25°C, a high HCHO removal efficiency(≥ 81.2%) was maintained throughout the durability test of 80 hr, indicating the long-term stability of the catalyst for HCHO removal.  相似文献   
678.
Estuarine wetland, where freshwater mixes with salt water, comprises different regions(rivers and marine ecosystems) with significantly varying tidal salinities. Two sampling areas, ZXS and JS, were selected to investigate the effect of tidal salinity on soil respiration(SR). ZXS and JS were located in Zhongxia Shoal and Jiangyanan Shoal of Jiuduansha Wetland respectively, with similar elevation and plant species, but significantly different in salinity. The results showed that with almost identical plant biomass, the SR and soil microbial respiration(SMR) of the tidal wetland with lower salinity(JS) were significantly higher than those of the tidal wetland with higher salinity(ZXS)(p 〈 0.05). However, unlike SMR and SR, the difference in the soil microbial biomass(SMB) was not significant(p 〉 0.05)with the SMB of ZXS a little higher than that of JS. The higher SMR and SR of JS may be closely connected to the soil microbial community structures and amount of dominant bacteria. Abundant β- and γ-Proteobacteria and Actinobacteria in JS soil, which have strong heterotrophic metabolic capabilities, could be the main reason for higher SMR and SR,whereas a high number of ε-Proteobacteria in ZXS, some of which have carbon fixation ability, could be responsible for relatively lower carbon output. Path analysis indicated that soil salinity had the maximum negative total influencing coefficient with SMR among the various soil physical and chemical factors, suggesting that higher soil salinity, restricting highly heterotrophic bacteria, is the principle reason for lower SMR and SR in the ZXS.  相似文献   
679.
中国木质林产品碳足迹的产业链分布特征分析   总被引:1,自引:0,他引:1  
中国是木质林产品的生产、消费和出口大国,分析其产品碳足迹的分布特征对于林产行业的国际贸易和节能减排工作具有重要意义。文章采用投入产出生命周期模型计算中国木质林产品的碳足迹,并对不同种类木质林产品产业链上的碳足迹分布进行分析。研究结果表明,产品碳足迹总量最大的木质林产品是木家具(占总量的36%),而单位产品碳足迹强度最大的木质林产品是纸制品(占整体的16%);针对林产品行业内部的产业链角度,碳足迹的主要流量发生在从用材林的种植和养护业到最终产品的制造;林产品产业行业外部,碳足迹的贡献则主要来自于金属冶炼及压延加工业、化石燃料开采业等行业,这2个行业碳足迹贡献分别占21%和18%;整体上,中国木质林产品生产中温室气体的排放以燃料燃烧产生的二氧化碳为主,这与产业链外其他行业的碳贡献密不可分。研究表明,通过碳足迹在产业链上的分布可以有助于分析林产品碳排放的工作重心。  相似文献   
680.
以斑马鱼(Danio rerio)为受试动物,研究了四种环境雌激素-17β-雌二醇(E2)和三种增塑剂(DMP、DBP、DOP)对其内脏团的氧化损伤及应激效应。经急性毒性实验,得到E2、DMP、DBP、DOP对成体斑马鱼96 h的半数致死浓度(LC50)分别为2.51、12.33、9.67、9.89 mg·L-1。在此基础上分别设置5个浓度梯度,研究E2(暴露2 d,4 d)、DMP、DBP、DOP(暴露4 d)对斑马鱼内脏团的超氧化物歧化酶(SOD)、过氧化氢酶(CAT)、谷胱甘肽硫转移酶(GST)活性以及丙二醛(MDA)含量的影响。结果表明,SOD、CAT、GST、MDA对这四种环境激素都非常敏感,其中SOD、CAT、GST活性的影响均呈现先诱导后抑制的趋势,而MDA含量则随着污染物浓度的升高而增加。高浓度暴露条件下,E2(0.4 mg·L-1)和DMP、DBP、DOP(0.8 mg·L-1)对SOD、CAT、GST活性均有显著抑制(p0.05),MDA的含量有显著升高(p0.05)。可见,E2、DMP、DBP、DOP会导致斑马鱼内脏团氧化损伤,并且在同等浓度下E2的毒性明显高于三种增塑剂。  相似文献   
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