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191.
Effects of petroleum contamination on soil microbial numbers, metabolic activity and urease activity 总被引:2,自引:0,他引:2
Guo H Yao J Cai M Qian Y Guo Y Richnow HH Blake RE Doni S Ceccanti B 《Chemosphere》2012,87(11):1273-1280
The influence of petroleum contamination on soil microbial activities was investigated in 13 soil samples from sites around an injection water well (Iw-1, 2, 3, 4) (total petroleum hydrocarbons (TPH): 7.5-78 mg kg−1), an oil production well (Op-1, 2, 3, 4, 5) (TPH: 149-1110 mg kg−1), and an oil spill accident well (Os-1, 2, 3, 4) (TPH: 4500-34 600 mg kg−1). The growth rate constant (μ) of glucose stimulated organisms, determined by microcalorimetry, was higher in Iw soil samples than in Op and Os samples. Total cultivable bacteria and fungi and urease activity also decreased with increasing concentration of TPH. Total heat produced demonstrated that TPH at concentrations less than about 1 g kg−1 soil stimulated anaerobic respiration. A positive correlation between TPH and soil organic matter (OM) and stimulation of fungi-bacteria-urease at low TPH doses suggested that TPH is bound to soil OM and slowly metabolized in Iw soils during OM consumption. These methods can be used to evaluate the potential of polluted soils to carry out self-bioremediation by metabolizing TPH. 相似文献
192.
The environmental fate of the worldwide used herbicide isoproturon was studied in four different, undisturbed lysimeters in the temperate zone of Middle Europe. To exclude climatic effects due to location, soils were collected at different regions in southern Germany and analyzed at a lysimeter station under identical environmental conditions. 14C-isoproturon mineralization varied between 2.59% and 57.95% in the different soils. Barley plants grown on these lysimeters accumulated 14C-pesticide residues from soil in partially high amounts and emitted 14CO2 in an extent between 2.01% and 13.65% of the applied 14C-pesticide. Plant uptake and 14CO2 emissions from plants were inversely linked to the mineralization of the pesticide in the various soils: High isoproturon mineralization in soil resulted in low plant uptake whereas low isoproturon mineralization in soil resulted in high uptake of isoproturon residues in crop plants and high 14CO2 emission from plant surfaces. The soil water regime was identified as an essential factor that regulates degradation and plant uptake of isoproturon whereby the intensity of the impact of this factor is strongly dependent on the soil type. 相似文献
193.
Loewy RM Monza LB Kirs VE Savini MC 《Journal of environmental science and health. Part. B》2011,46(8):662-670
An assessment of the off-site migration of pesticides from agricultural activity into the environment in the Neuquen River Valley was performed. The aim of this study was to evaluate the distribution of pesticides in several compartments of a small agricultural sub-catchment. Soil, surface water, shallow groundwater and drift deposition were analyzed for pesticide residues. Results showed the presence of some pesticide residues in soil, surface water and shallow groundwater compartments. The highest detection frequencies in water (surface and subsurface) were found for azinphos-methyl and chlorpyrifos (>70%). In terms of concentration, the highest levels were observed in shallow groundwater for azinphos methyl (22.5 μg/L) and carbaryl (45.7 μg/L). In the soil, even before the application period had started, accumulation of residues was present. These residues increased during the period studied. Spray drift during pesticide application was found to be a significant pathway for the migration of pesticide residues in surface water, while leaching and preferential flows were the main transport routes contributing to subsurface contamination. 相似文献
194.
Increasing water scarcity is increasing pressure on water management institutions, particularly in the area of water rights. A common response is to formalise water tenure, one of several options for securing access and resolving conflicts concerning water allocation. This article looks at four contexts where negotiation, self-governance and concepts of legal pluralism may help improve water resource management. Existing users and potential new users need to negotiate before water resources are developed. Users can participate in forums with authority to solve basin management problems through self-governance. Negotiated water transfers offer an alternative to water acquisition by expropriation. 相似文献
195.
Based on a “whole-life”-perspective and integrating theories of self-identity and resource management, the present longitudinal study examines the dynamic relationship between career involvement and conflicts between work and nonwork goals in a sample of 3095 German-speaking doctoral students and doctorate holders (37.0% women) from various STEM fields. We expected increases in goal conflicts to decrease career involvement, and simultaneously tested reciprocal relationships, that is, from involvement on conflicts. The random intercept cross-lagged panel model (RI-CLPM) was used to analyze within-person associations across eight measurement occasions (6-month time intervals) while controlling for between-person effects. At the between-person level, career involvement and goal conflicts were negatively correlated. At the within-person level, results showed negative cross-lagged effects from goal conflicts to career involvement as well as negative cross-lagged effects from career involvement to goal conflicts. This indicates that the interplay of goal conflicts and career involvement can result in either an upward or a downward spiral. Theoretical and practical implications are discussed. 相似文献
196.
Herbivores affect plants through direct effects, such as tissue damage, and through indirect effects that alter species interactions. Interactions may be positive or negative, so indirect effects have the potential to enhance or lessen the net impacts of herbivores. Despite the ubiquity of these interactions, the indirect pathways are considerably less understood than the direct effects of herbivores, and multiple indirect pathways are rarely studied simultaneously. We placed herbivore effects in a comprehensive community context by studying how herbivory influences plant interactions with antagonists and mutualists both aboveground and belowground. We manipulated early-season aboveground herbivore damage to Cucumis sativus (cucumber, Cucurbitaceae) and measured interactions with subsequent aboveground herbivores, root-feeding herbivores, pollinators, and arbuscular mycorrhizal fungi (AMF). We quantified plant growth and reproduction and used an enhanced pollination treatment to determine if plants were pollen limited. Increased herbivory reduced interactions with both antagonists and mutualists. Plants with high levels of early herbivory were significantly less likely to suffer leaf damage later in the summer and tended to be less attacked by root herbivores. Herbivory also reduced pollinator visitation, likely due to fewer and smaller flowers, and reduced AMF colonization. The net effect of herbivory on plant growth and reproduction was strongly negative, but lower fruit and seed production were not due to reduced pollinator visits, because reproduction was not pollen limited. Although herbivores influenced interactions between plants and other organisms, these effects appear to be weaker than the direct negative effects of early-season tissue loss. 相似文献
197.
Zárate-Rueda Ruth Beltrán-Villamizar Yolima Ivonne Murallas-Sánchez Daniella 《Environment, Development and Sustainability》2021,23(11):16428-16453
Environment, Development and Sustainability - Social representations necessarily originate from the interaction between individuals and groups in a social setting through communication and shared... 相似文献
198.
Lee KC Shults RA Greenspan AI Haileyesus T Dellinger AM 《Journal of Safety Research》2008,39(1):25-31
INTRODUCTION: In 2004, more than 180,000 child passengers aged 相似文献
199.
Bernhard Ruth Sabine Grundmann Reiner Schroll 《Water, Air, & Soil Pollution: Focus》2008,8(2):243-250
Volatile substances and gases resulting e.g. from degradation processes of chemicals in soils emit into the atmosphere and
no chemical mass balance is complete without considering this path. Closed soil chambers allow the evaluation of this transfer
to the atmosphere. This study deals with the influence of soil chambers with a glass plate cover on physical soil conditions
in the chambers and the possibility to simulate the exterior conditions within the chambers. The water content immediately
at the soil surface is an important factor for the microbial activity and the transfer of gaseous compounds to the atmosphere
as well. It is monitored by specially designed water content sensors in 1 cm depth in the chamber and as control outside.
Funnels with a cross section equal to the soil surface area of the chamber collect the rain water and channel it into the
soil chamber. This results in soil water content in the chambers very similar to that outside. For the purpose of analysing
14CO2 and volatile 14C-compounds, air is permanently pumped through the chamber. In order to simulate natural conditions, the wind speed is measured
1 cm above the soil surface outside the chambers. A control circuit adjusts the air flow through the chamber to a value corresponding
to the wind speed outside. Temperature measurements in 1 cm depth verify that there is no significant difference between the
soil chamber and the control outside. 相似文献
200.
为研究对硝基苯酚降解菌Arthrobacter sp.CN2在实际生产中的应用潜力,本文分别分析了p H、盐浓度和额外添加碳源对降解效率的影响,同时对降解的动力学方程进行拟合分析.菌株CN2在p H 7.0~8.0,Na Cl浓度60 g·L-1之间能够高效降解对硝基苯酚,72 h内对50 mg·L-1对硝基苯酚的降解率均大于90%.同时发现适量添加葡萄糖(0.5%)可显著促进CN2降解对硝基苯酚,与不添加葡萄糖条件下相比,达到90%降解率所需时间缩短了16 h.当对硝基苯酚浓度低于300 mg·L-1时,菌株CN2对对硝基苯酚的降解符合一级动力学方程,降解速率常数在0.021 7~0.025 0之间.在生物反应器中应用菌株CN2模拟处理工业废水,3 L含对硝基苯酚废水(100 mg·L-1)在72h的降解率大于90%.研究表明,菌株Arthrobacter sp.CN2能够高效地降解对硝基苯酚,对于环境有良好适应能力,具有良好的应用前景. 相似文献