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831.
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C. M. Oliveira M. F. Camões P. Bigus A. A. Fachado R. B. Silva 《Environmental monitoring and assessment》2015,187(6):380
In this work, particulate matter was collected using an active sampling system consisting of a PM10 (<10 μm) inlet coupled to a multifold device containing six channels, connected to a vacuum pump. Each channel was equipped with a filter holder fitted with adequately chosen filters. The system was fixed on a metallic structure, which was placed on the roof of the laboratory building, at the Faculty of Sciences, in Lisbon. Sampling took place under flow-controlled conditions. Aerosols were extracted from the filters with water, in defined conditions, and the water-soluble fraction was quantified by ion chromatography (IC) for the determination of inorganic anions (Cl?, NO3 ? and SO4 2?). Equivalent sampling through the various channels was validated. Validation was based on the metrological compatibility of the content results for the various filters. Ion masses are metrologically equivalent when their absolute difference is smaller than the respective expanded uncertainty. When this condition is verified, the studied multifold device produces equivalent samples. 相似文献
834.
5种磺胺类抗生素在土壤中的吸附和淋溶特性 总被引:16,自引:4,他引:16
分别利用振荡平衡法和柱淋溶法研究了5种磺胺类抗生素(磺胺嘧啶,磺胺甲嘧啶,磺胺二甲嘧啶,磺胺二甲氧嘧啶,磺胺甲恶唑)在5种不同土壤中的吸附和淋溶特性及其影响因素.结果表明,磺胺类抗生素在5种供试土壤上的吸附等温线较好地符合Freundlich方程,吸附常数Kd为 0.10~4.39 μg1-1/n (cm3)1/n g -1;5种磺胺类抗生素在供试土壤中吸附性大致排列顺序为:东北黑土≈无锡水稻土>江西红壤>南京黄棕壤≈陕西潮土.吸附的主要影响因素为土壤pH值和有机质含量:土壤pH值增高,磺胺类抗生素大量转变为阴离子态,吸附减弱;土壤有机质含量增加,吸附增强.5种磺胺抗生素在5种供试土壤中的吸附自由能为 -12.5~-5.3 kJ·mol-1,表明吸附机理主要是物理吸附.磺胺类抗生素在土壤中具有较强的淋溶性, 淋溶性能从大到小依次为:陕西潮土>南京黄棕壤>江西红壤>无锡水稻土>东北黑土,与吸附试验结果相一致.畜禽养殖使用磺胺类抗生素对地下水污染具有潜在风险,应该引起足够重视. 相似文献
835.
836.
不同磷源及浓度对利玛原甲藻生长和产毒的影响研究 总被引:5,自引:1,他引:5
探讨了不同磷源条件下利玛原甲藻的生长情况,分析了碱性磷酸酶在营养盐利用方面的作用,对不同营养盐条件下腹泻性贝毒(diarrhetic shellfish poison,DSP)的合成情况进行了比较和分析.结果显示,以NaH2 PO4、β-甘油磷酸钠和ATP分别作为唯一磷源时,NaH2PO4组和ATP组最大生长速率(βms)差异不大,β-甘油磷酸钠组稍低;ATP组最大生物量(X)明显高于NaH2PO4组和β-甘油磷酸钠组.实验浓度范围内,β-甘油磷酸钠组碱性磷酸酶活性均比较低,而ATP组活性较高.NaH2PO4组因其浓度的变化而有较大的差异.浓度>2μmol/L时,活性比较低,<2 μmol/L时,活性明显增高.μ-甘油磷酸钠组大田软海绵酸(okadaic acid,OA)总含量和单位藻细胞OA含量最高,NaH2O4组次之,ATP组最低.这些结果表明,利玛原甲藻町吸收利用无机磷NaH2PO4和有机磷β-甘油磷酸钠及ATP.其中,NaH2PO4和ATP的营养价值基本等效,而β-甘油磷酸钠的营养价值较低.ATP较NaH2PO4和β-甘油磷酸钠更有利于维持利玛原甲藻的生长.利玛原甲藻可以直接利用β-甘油磷酸钠;而ATP则需要碱性磷酸酶水解后才能利用.利玛原甲藻毒素的合成与营养盐的形态有关,不同营养盐条件下DSP的合成不同.β-甘油磷酸钠为磷源时,DSP合成量最多.磷盐对DSP合成的影响与该磷盐条件下利玛原甲藻的生理状态有关. 相似文献
837.
Runoff and sediment losses from 27 upland catchments in Southeast Asia: Impact of rapid land use changes and conservation practices 总被引:5,自引:0,他引:5
C. Valentin F. Agus R. Alamban A. Boosaner J.P. Bricquet V. Chaplot T. de Guzman A. de Rouw J.L. Janeau D. Orange K. Phachomphonh Do Duy Phai P. Podwojewski O. Ribolzi N. Silvera K. Subagyono J.P. Thibaux Tran Duc Toan T. Vadari 《Agriculture, ecosystems & environment》2008,128(4):225-238
Rapid changes in upland farming systems in Southeast Asia generated predominantly by increased population pressure and ‘market forces’ have resulted in widespread land degradation that has been well documented at the plot scale. Yet, the links between agricultural activities in the uplands and downstream off-site effects remain largely unknown because of the difficulties in transferring results from plots to a larger scale. Many authors have thus pointed out the need for long-term catchment studies. The objective of this paper is to summarize the results obtained by the Management of Soil Erosion Consortium (MSEC) over the last 5 years from 27 catchments in five countries (Indonesia, Laos, Philippines, Thailand, and Vietnam). The purpose of the study was to assess the impacts of cultivation practices on annual runoff and erosion rates. Initial surveys in each catchment included topography, soils and land use. Monitoring included climatic, hydrologic and erosion (total sediment yield including bed load and suspended sediment load) data, land use and crop yields, and farmers’ income. In addition, new land management options were introduced through consultations with farmers and evaluated in terms of runoff and erosion. These included tree plantations, fruit trees, improved fallow with legumes, maize intercropped with legumes, planted fodder, native grass strips and agro-ecological practices (direct sowing and mulch-based conservation agriculture). Regressions analyses showed that runoff during the rainy season, and normalized runoff flow coefficient based on erosive rainfall during the rainy season (rainfall with intensity exceeding 25 mm h−1) increase with the percentage of the catchment covered by maize. Both variables decrease with increasing soil depth, standard deviation of catchment slope (that reflects terrain roughness), and the percentages of the catchment covered by fallow (regular and improved), tree plantations and planted fodder. The best predictors of sediment yield were the surface percentages of maize, Job's tears, cassava and footpaths. The main conclusions generated from this study were: (i) soil erosion is predominantly influenced by land use rather than environmental characteristics not only at the plot scale but also at the catchment scale; (ii) slash-and-burn shifting cultivation with sufficiently long rotations (1 year of cultivation, 8 years of fallow) is too often unjustly blamed for degradation; (iii) in its place, continuous cropping of maize and cassava promotes high rates of soil erosion at the catchment scale; (iv) conservation technologies are efficient in reducing runoff and total sediment yield at the catchment scale; (v) the adoption of improved soil management technologies by upland farmers is not a function of the degree of intensification of their farming system and/or of their incomes. The results suggest that if expansion of maize and cassava into already degraded upland systems were to occur due to increased demand for biofuels, there is a risk of higher runoff and sediment generation. A failure to adopt appropriate land use management strategies will result in further rapid resource degradation with negative impacts to downstream communities. 相似文献
838.
839.
镉诱导长江华溪蟹肝胰腺细胞凋亡研究 总被引:5,自引:2,他引:5
应用显微与亚显微技术和琼脂糖凝胶电泳方法,研究了不同浓度Cd2+(0、7.25、14.50、29.00、58.00和116.00mg·L-1)处理不同时间(24、48、72和96h)对长江华溪蟹(Sinopotamon yangtsekiense)肝胰腺细胞凋亡的影响.结果显示,29.00mg·L-1Cd2+处理48h,光镜下肝胰腺细胞凋亡主要表现为染色质不规则凝聚、固缩和边集;58.00mg·L-1Cd2+处理72h,细胞核碎裂,形成凋亡小体;116mg·L-1Cd2+处理96h,出现坏死细胞;电镜下48h和72h处理组肝胰腺细胞呈现典型的细胞凋亡特征,与光镜检测结果一致,具体表现为核边集、核膜折叠、核裂解形成凋亡小体.琼脂糖凝胶电泳图谱中48和72h处理组出现凋亡细胞所特有的DNA梯状条带,58.00mg·L-1Cd2+处理72h后条带尤为清晰.随着Cd2+浓度的增加和处理时间的延长,肝胰腺中凋亡细胞所占比例呈现先升后降的趋势,凋亡指数的变化表现出显著的剂量和时间效应关系.研究表明,镉能够诱导长江华溪蟹肝胰腺出现细胞凋亡.细胞凋亡的检测及凋亡指数的变化能够灵敏地反映出镉对水生动物的胁迫程度及毒性大小,可作为水生态环境镉污染的生物评估指标. 相似文献
840.