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1 droesterification catalyst makes the process corrosive.
2 rogen sulfide which is toxic, explosive, and corrosive.
3  of bimetallic oxide OER electrocatalysts in corrosive acidic environments.
4 e (relative humidity = 90% at 85 degrees C), corrosive agent exposure, and proton irradiation.
5 burns and of late sequels after ingestion of corrosive agents, but long-term outcome is unknown.
6 rred in patients injured by the ingestion of corrosive agents.
7                    Under these conditions, a corrosive ambient such as laboratory air exacerbates the
8   Activity and stability promoters are often corrosive and add to the complexity of the system, makin
9 e separators, active material crossover, and corrosive and hazardous electrolytes.
10  nitric acid/sulfuric acid mixtures, are too corrosive and oxidizing to preserve structural integrity
11 red crude oils and oil sands, and are toxic, corrosive and persistent.
12 fferent from previous CMP slurries, in which corrosive and toxic chemical reagents are usually employ
13          The modified surfaces are stable to corrosive aqueous solutions and common organic solvents.
14 mperature operation, and the minimization of corrosive attack through effective insulation.
15 982 zinc-based pennies developed radiolucent corrosive changes within 24 hours.
16 onvenient, inexpensive, does not require any corrosive chemicals and provides specific detection of s
17 s, which makes them ideal for the storage of corrosive chemicals such as ammonia.
18 methods involve high-pressure processing and corrosive chemicals.
19 its benign nature free from strong acids and corrosive components, zinc-polyiodide flow battery is a
20 ely recyclable and does not involve toxic or corrosive components.
21 gh ORR activity and stability under a highly corrosive condition of 10 M NaOH at 80 degrees C, demons
22  frequently experiences seasonal exposure to corrosive conditions (Omegaar < 1) along the US West Coa
23 ite could provide short-term amelioration of corrosive conditions at certain times of the year; howev
24 oxygen evolution reaction (OER) under highly corrosive conditions such as in acidic proton exchange m
25  tolerance related to history of exposure to corrosive conditions.
26 nt types of oil, organic solvents, toxic and corrosive contaminants.
27 n important property for processes involving corrosive effluents (e.g., radioactive waste), was also
28                          In the absence of a corrosive environment, brittle materials such as silicon
29        When metallic alloys are exposed to a corrosive environment, porous nanoscale morphologies spo
30 he simultaneous action of high temperatures, corrosive environments and radiation damage.
31 erials used for implant applications and the corrosive environments found in the human body, in combi
32 l compatibility of ceramics with many highly corrosive environments.
33 ocated) was directly linked to the switch to corrosive Flint River water from noncorrosive Detroit wa
34 e) the link between intergroup bias and more corrosive forms of social hostility.
35  separation of chemically challenging and/or corrosive gases, especially when designed to exhibit a h
36 the storage and capture of other noxious and corrosive gases.
37 al souring in oil reservoirs produces toxic, corrosive hydrogen sulfide through microbial sulfate red
38 July 2002 to December 2009, 36 patients with corrosive-induced upper gastrointestinal strictures in a
39 ded balloon dilations (EBD) in patients with corrosive-induced upper gastrointestinal strictures, eit
40                                              Corrosive injuries complicated with ES can be effectivel
41 he diagnoses of esophageal atresia (n = 26), corrosive injury (n = 8), leiomyomatosis (n = 5), and re
42 1,000 degrees C, and do not involve toxic or corrosive intermediates, are highly desirable because th
43 as possible alternatives to the volatile and corrosive iodide/triiodide redox couple commonly used as
44  of recycling and after suffering erosion by corrosive media.
45 e at the well-head using inexpensive and non-corrosive methods.
46 d is protected, and (3) reduced formation of corrosive microenvironments at lead surfaces in galvanic
47 unding electromagnetic field, and the highly corrosive molten salt electrolyte to deal with.
48 ery useful in investigating the structure of corrosive molten salts, such as the cryolite-based melts
49 n Mn, a reaction that, because of the highly corrosive nature of Mn, to our knowledge has never befor
50 nd volatile hydrazoic acid intermediate, the corrosive nature of triflic acid, and the exothermic que
51 orm analytical measurements because of their corrosive nature, significant thermal convection and the
52               Owing to its inertness and non-corrosive nature, the Mg(CB11H12)2/tetraglyme (MMC/G4) e
53 laced in culture and art museums, due to its corrosive nature.
54 cal abrasion resistance even towards various corrosive oil/water mixtures (such as strong acid, alkal
55 thium salts dissolved in solvents are toxic, corrosive, or flammable.
56 lysis, as typically it involves expensive or corrosive oxidants or reaction media that are not amenab
57 sh environments such as high temperature and corrosive reactants compared to the more conventional mu
58 se dioxygen directly in lieu of toxic and/or corrosive stoichiometric oxidants.
59 be grown without the production of toxic and corrosive sulphide, should aid biochemical investigation
60 treated Flint River water was 8.6 times more corrosive than Detroit water in short-term testing, rele
61  medium is a mild acid that is not only less corrosive than popularly utilized oxidation media, but a
62                 The raw bio-oil, however, is corrosive; therefore, employing it as fuel is challengin
63 high levels of which are toxic to humans and corrosive to equipment.
64             It is poisonous to catalysts and corrosive to metals and therefore needs to be removed.
65 ic stability of these electrolytes, they are corrosive toward metallic battery components, which redu
66                                          The corrosive water also led to 1.3-2.2 times more water mai
67 wing fresh mineral surfaces to interact with corrosive waters and biota from Earth's surface, while s

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