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1 under mild conditions (see scheme; CAN=ceric ammonium nitrate).
2 e (10(-12), pptv) for NO(2) and 148 pptv for ammonium nitrate.
3 noxy group is achieved with the use of ceric ammonium nitrate.
4 ing the explosives trinitrotoluene (TNT) and ammonium nitrate.
5 ate solution in the presence of concentrated ammonium nitrate.
6 lasmonic sensors with 2,4-dinitrotoluene and ammonium nitrate.
7 e presence of chemical oxidants, e.g., ceric ammonium nitrate.
8 nted by the high-voltage reduction of cerium ammonium nitrate.
9 re in the presence of the mild oxidant ceric ammonium nitrate.
10                                     However, ammonium nitrate additions triggered significant NO emis
11 articles were embedded within or coated with ammonium nitrate, ammonium sulfate, and glycerol.
12 tes made up of ethylene glycol dinitrate and ammonium nitrate, among other minor components, were ana
13                          The oxidizing salts ammonium nitrate (AN) and ammonium dinitramide (ADN) are
14                                              Ammonium nitrate (AN) and urea nitrate (UN) are commonly
15                       In this investigation, ammonium nitrate (AN) and urea nitrate (UN) in the prese
16 n reducing nitrogen oxide (NO(x)) emissions, ammonium nitrate (AN) remains the primary inorganic comp
17 repared by mixing 1 M ammonium sulfate (AS), ammonium nitrate (AN), sodium sulfate (SS), or sodium ni
18 s], poultry litter (PL; 3400 kg ha(-1)), and ammonium nitrate (AN; 67 kg N ha(-1)).
19 rogen during the beginning of the wildfires, ammonium nitrate and amines after an increase of relativ
20 RH); however, lab-generated soot coated with ammonium nitrate and held at 85% RH exhibited M.A.C. val
21  The selectivity between 2,4-dinitrotoluene, ammonium nitrate and nitrobenzene is on a par with other
22 ed from around the detonations of aluminized ammonium nitrate and RDX-based explosive charges were co
23 s that are often used in laboratory studies, ammonium nitrate and sodium chloride, were used for the
24 terned by the delivery of the oxidant cerric ammonium nitrate and were immersed in solutions of AF549
25 rtilizers (Di-ammonium phosphate and Calcium ammonium nitrate) and unfertilized soils at various grow
26 , 40-60% for total organic aerosol, 400% for ammonium nitrate, and 60% (typically 3 ug/m(3)) for the
27                     We provide evidence that ammonium, nitrate, and light regulate GS transcript accu
28  along anoxic flow paths in areas of varying ammonium, nitrate, and organic carbon abundances.
29 se of various available soil nitrogen forms (ammonium, nitrate, and organic nitrogen) is strongly con
30 Other species contributing to growth include ammonium, nitrate, and organics.
31                         Available indices of ammonium, nitrate, and phosphate levels for all groups w
32        The dataset contains observations for ammonium, nitrate, and phosphate uptake spanning 77 tree
33 ion every winter, with ammonium chloride and ammonium nitrate as the major inorganic fractions of fin
34 ic solvent mixture with 1 mol % 2h and ceric ammonium nitrate as the terminal oxidant and deliver oxi
35 lexes can catalyze C-H oxidation, with ceric ammonium nitrate as the terminal oxidant and water as th
36                                              Ammonium nitrate, as the mobile phase, and a suitable ri
37 produced for the process of gassification of ammonium nitrate at five different heating rates.
38 s of the sacrificial electron-acceptor ceric ammonium nitrate at pH 1, copious amounts of oxygen are
39 lly been studied in the context of exogenous ammonium/nitrate availability and uptake.
40 sive detection, ammonia (NH(3), derived from ammonium nitrate-based explosives) and 2-ethyl-1-hexanol
41 es and activity compared with plants not fed ammonium nitrate but without a corresponding increase in
42 zines was exploited by oxidation with cerium ammonium nitrate (CAN) affording highly functionalized d
43              This new methodology uses ceric ammonium nitrate (CAN) as a promoter at room temperature
44           This strategy relies on cerium(IV) ammonium nitrate (CAN) as an oxidation reagent and resul
45 N/ SCF(3)/ SO(2)Ar) in the presence of ceric ammonium nitrate (CAN) as the oxidant to furnish azaspir
46 ve ipso-cyclization in the presence of ceric ammonium nitrate (CAN) as the oxidant.
47                                        Ceric ammonium nitrate (CAN) is a single-electron-transfer rea
48                                        Ceric ammonium nitrate (CAN) or Ce(IV) (NH4 )2 (NO3 )6 is ofte
49 ns with the more commonly used oxidant ceric ammonium nitrate (CAN) was also conducted.
50 on catalysts (WOCs) in the presence of ceric ammonium nitrate (CAN).
51 ting [(dpaq)Mn(III) (OH)](+) (2) with cerium ammonium nitrate (CAN).
52                             With added ceric ammonium nitrate (Ce(IV), or CAN), both 1 and 2, [Ru(tpy
53 carbonyl compounds in the presence of Ce(IV) ammonium nitrate constitutes the first example of a mult
54 er nematophagous and entomopathogenic fungi, ammonium nitrate (e.g. from fertilizers) may enhance bio
55                                   Cerium(IV) ammonium nitrate efficiently promoted the formation of 2
56 rent components easily distinguished by eye (ammonium nitrate, ethylene glycol dinitrate, and sawdust
57 ctly from wheat cultivation, with the use of ammonium nitrate fertilizer alone accounting for around
58 ganic nitrogen forms (nitrate, ammonium, and ammonium nitrate), followed by nitrogen starvation.
59 .4 g/mile), leading to substantial secondary ammonium nitrate formation (ranging from 8.5 to 98.8 mg/
60 le the other showed essentially no secondary ammonium nitrate formation.
61 ection of positive ions: sodium chloride and ammonium nitrate have higher ablation efficiencies than
62 prisingly high concentrations of ammonia and ammonium nitrate have recently been observed in the uppe
63 3-dichloro-5,6-dicyanobenzoquinone, or ceric ammonium nitrate in methanol, a significant enhancement
64              The FTIR spectra collected from ammonium nitrate in the matrix indicated the greatest ch
65 psis seedlings were transiently treated with ammonium nitrate in the presence or absence of MSX, an i
66 tetrazine(HMX), 2,4,6-TNT, nitromethane, and ammonium nitrate in various commercial explosive samples
67                                 In contrast, ammonium nitrate increases the rate of phenol loss by ma
68 n was able to transform ammonium sulfate and ammonium nitrate into (MEA)2SO4 and (MEA)NO3.
69 d on the back side of photovoltaic cell, and ammonium nitrate is dispersed as a layer to form a thin
70                           Among these pairs, ammonium nitrate is suited for refrigeration, and potass
71 s combined in unbuffered solution with ceric ammonium nitrate, its turnover frequency exceeds 1.3 s(-
72 e alkalinity and DIC to decline, while using ammonium nitrate left the DIC nearly unchanged.
73                         In particular, using ammonium nitrate makes it possible to control DIC and pH
74  trace amounts of a heavy metal, lead, in an ammonium nitrate matrix was also investigated.
75 organic nitrate (pON) (at 350 degrees C) and ammonium nitrate (NH(4)NO(3)) aerosol (at 540 degrees C)
76 )](-) and NaOCl/acetic acid (AcOH) or cerium ammonium nitrate ((NH4)2[Ce(IV)(NO3)6], CAN), yielded [N
77    In our tests (eight instruments, n = 29), ammonium nitrate (NH4NO3) causes a median CO2(+) interfe
78 ate [(NH4)2SO4], sodium chloride (NaCl), and ammonium nitrate (NH4NO3), with efflorescence being obse
79 l the enzymes for assimilating nitrogen from ammonium, nitrate, nitrite, urea, formamide/acetamide, p
80 For the diesel vehicles, one had a secondary ammonium nitrate of 18.5 mg/mile, while the other showed
81    Photo-oxidation also produced substantial ammonium nitrate, often exceeding the mass of SOA.
82 pared with non-nodulated roots supplied with ammonium nitrate or allantoin.
83   DIC assimilation rates are not enhanced by ammonium, nitrate, or phosphate addition.
84 .5 constituents (including elemental carbon, ammonium, nitrate, organic carbon [OC], sulfate [SO42-],
85 ons of PM2.5 components (black carbon, dust, ammonium, nitrate, organic matter, sulfate, sea salt) an
86        Conditions for a site-selective ceric ammonium nitrate oxidation have been developed.
87 eptor-2 (VEGFR-2) has been prepared by ceric ammonium nitrate oxidation of substituted (2,5-dimethoxy
88  synthesis of 2-thiocarbohydrates via cerium ammonium nitrate oxidation of the thiocyanate ion is des
89 20, while similar coatings on oleic acid and ammonium nitrate particles do not significantly alter th
90 an acid-base stabilization mechanism to form ammonium nitrate particles.
91 while solid coatings of ammonium sulfate and ammonium nitrate produced increases of 1.10 and 1.06, re
92  nitrogen ratio method and the thermodynamic ammonium nitrate regime method.
93                      The roots of plants fed ammonium nitrate showed a 3-fold increase in the level o
94 e high growth rates require the gas-particle ammonium nitrate system to be out of equilibrium in orde
95                 In this study, tetra-n-butyl ammonium nitrate (TBANO3) is evaluated as a promoter for
96 us-obtained Ru(IV)=O sample with CAN (cerium ammonium nitrate), the inner-sphere adduct [Ru(IV)(=O)(t
97 f suspended submicron particulate sodium and ammonium nitrate through controlled laboratory photolysi
98  particles, suggesting a significant loss of ammonium nitrate, thus enhancing the mobility of these s
99 idyl-2-methyl)amine) by adding aqueous ceric ammonium nitrate to an acetonitrile solution of the [(TP
100  zeolite 13X (latent cooling), and dissolves ammonium nitrate to induce endothermic reaction cooling.
101 N were identified as those whose response to ammonium nitrate treatment was blocked in the presence o
102               A field experiment on urea and ammonium nitrate (UAN) treated with efficiency enhancers
103              Nitrates and chlorates, such as ammonium nitrate, urea nitrate, or potassium chlorate, a
104  of BrC in the reaction of 4-OPA with AS and ammonium nitrate was greatly accelerated by evaporation
105 tion of a 3 degrees alcohol caused by cerium ammonium nitrate was observed.
106 roper representation of the impact of NH3 on ammonium nitrate, which reflects the interplay between a

 
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