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1  (1) determination of the consistency of the asphalt aerosol composition within the generation system
2  applied a coal tar sealcoat to conventional asphalt and collected runoff from simulated rainfall eve
3 riod and that concrete pavements compared to asphalt and composite pavements offer advantages in rega
4 and from 4 h to 36 days after application of asphalt-based sealcoat containing about 7% CT sealcoat (
5 that the bitumen-containing surfaces such as asphalt blocks and bitumen sheets conserve VX and slow-r
6  construct and maintain representative Swiss asphalt, concrete, and composite pavements (including su
7 ulf of Mexico, lava-like flows of solidified asphalt cover more than 1 square kilometer of the rim of
8 highway workers with and without exposure to asphalt emissions (range 0.346-13.9 ng BPDE-HSA/mg HSA)
9 uantification of total organic matter of the asphalt fume by electron impact ionization of isotope di
10 y polycyclic aromatic hydrocarbons (PAHs) in asphalt fume by selected ion monitoring.
11               These results demonstrate that asphalt fume composition could be characterized and spec
12              Generated at 150 degrees C, the asphalt fume concentration in the animal exposure chambe
13     As a step to study the health effects of asphalt fume exposure, an analytical method was develope
14 eloped and validated for characterization of asphalt fume generated under simulated road paving condi
15                                    A dynamic asphalt fume generation system was modified to provide c
16 2 B6C3F1 mice were exposed daily (4h/day) to asphalt fume in a whole-body inhalation chamber for 10 d
17                      Characterization of the asphalt fume test atmospheres included the following: (1
18                                          The asphalt fume was generated at 180 degrees C and the conc
19                  Total organic matter of the asphalt fume was quantified over the 5 exposure days.
20 icantly elevated (p < 0.001) in the urine of asphalt fume-exposed rats relative to controls.
21                          In the urine of the asphalt fume-exposed rats, benzo[a]pyrene and its metabo
22  and its hydroxy metabolites in the urine of asphalt fume-exposed rats.
23 tidylinositol 3-kinase activation eliminated asphalt fume-stimulated AP-1 activation and formation of
24 y elevated (p < 0.001) in the lung tissue of asphalt-fume-exposed mice relative to tissue from contro
25  vitro models indicate that condensates from asphalt fumes are genotoxic and can promote skin tumorig
26          In addition, topical application of asphalt fumes by painting the tail skin of mice increase
27 is the first report showing that exposure to asphalt fumes can activate AP-1 and intracellular signal
28                   With the developed method, asphalt fumes could be characterized into three fraction
29 riment, with 8 as controls and 16 exposed to asphalt fumes in a whole-body inhalation chamber for 10
30  on the potential involvement of exposure to asphalt fumes in skin carcinogenesis.
31                     Occupational exposure to asphalt fumes may pose a health risk.
32 study investigated the effect of exposure to asphalt fumes on AP-1 activation in mouse JB6 P+ epiderm
33                                  Exposure to asphalt fumes promoted basal as well as epidermal growth
34                                  Exposure to asphalt fumes significantly increased AP-1 activity in J
35                                              Asphalt fumes transiently activated c-Jun NH2-terminal k
36                                              Asphalt fumes were generated from a dynamic generation s
37  components present in simulated road paving asphalt fumes.
38 ies using simulated occupational exposure to asphalt fumes.
39 ected on various surfaces, such as concrete, asphalt, human skin, currency, airline boarding passes,
40 ke, Trinidad and Tobago--the world's largest asphalt lake--we found that microorganisms are metabolic
41 perature difference of temperature-adjusting asphalt mixture reaches about 7.0 degrees C in laborator
42                        Temperature-adjusting asphalt mixture was prepared by substituting the fine ag
43                                   In two hot asphalt occupational settings, silicone personal sampler
44 impacts of stormwater runoff from sealcoated asphalt on juvenile coho salmon (Oncorhynchus kisutch) a
45 g exposure to undiluted runoff from unsealed asphalt pavement and UVR was </=10% in all treatments.
46  is commonly seen in dehydrated paintings or asphalt pavements and even in graphene or other two-dime
47 the global warming potential of concrete and asphalt pavements equilibrates over the analysis period
48 repared to choose the most suitable CPCMs in asphalt pavements for the problems of asphalt pavements
49 CMs in asphalt pavements for the problems of asphalt pavements rutting diseases and urban heat island
50 OR) = 1.35), petroleum refinery (OR = 1.44), asphalt plant (OR = 1.23), or power plant (OR = 1.28) (a
51 erae mussels and poecilosclerid sponges from asphalt-rich, deep-sea oil seeps at Campeche Knolls in t
52 ide consistent test atmospheres at simulated asphalt road paving conditions.
53 esonance (FTICR) mass analysis of a volcanic asphalt sample by acquiring data for 20 Da wide mass seg
54                Coal tar sealcoats applied to asphalt surfaces in North America, east of the Continent
55 mped to a large kettle, which maintained the asphalt temperature between 150 and 170 degrees C, and t
56                                              Asphalt volcanism creates a habitat for chemosynthetic l
57 fter the Deepwater Horizon oil spill) and an asphalt volcano sample collected off the coast of Santa
58                     The two tar ball and one asphalt volcano samples contain three distinct paramagne
59           In the process of fume generation, asphalt was initially preheated in an oven to 170 degree
60 and bivalves colonize the sea floor near the asphalt, which chilled and contracted after discharge.

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