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1 r can be cleaved in one pot following NCL or desulfurization.
2 n the MoS2 basal plane using electrochemical desulfurization.
3 o the complex through activation of cysteine desulfurization.
4 which would lead to 2'-deoxynucleotides upon desulfurization.
5 n of the Cys residues to Ala by Raney nickel desulfurization.
6 of the acidic alpha-hydrogens and subsequent desulfurization.
7  production of value-added byproducts during desulfurization.
8         An enzyme having the same L-cysteine desulfurization activity previously described for the Ni
9                                     However, desulfurization alters the properties of diesel fuel in
10                                    Following desulfurization and concomitant debenzylation with Raney
11  diene 43 and methacrolein (36), which after desulfurization and further functionalization yielded sy
12                                  Advances in desulfurization and modification of the thiol-containing
13 as-purification processes including flue-gas desulfurization and natural-gas purification, but the de
14                                    Selective desulfurization and oxidation of 2a provided access to 2
15  Pummerer rearrangement of 28 and subsequent desulfurization and reduction to form an hydroxymethyl-s
16 ied desulfurization potential, the extent of desulfurization and the resulting activity can be varied
17 flavin reductase, DszD, in the enzymology of desulfurization, and to the use of new tools that enable
18  the glycopeptide domain 18, and a selective desulfurization at the ligation site to reveal the natur
19  biosynthesis through activation of cysteine desulfurization by NifS-like proteins.
20 acylbilane to oxidation, metal complexation, desulfurization, carbonyl reduction, and acid-catalyzed
21 so relevant to C-X cleavage (X = S, N, O) in desulfurization, denitrogenation, and deoxygenation reac
22 lting active sites are stable under extended desulfurization durations and show consistent HER activi
23                        After six cycles, the desulfurization efficiency remains higher than 98%, and
24  increase for facilities to install flue-gas desulfurization (FGD) and carbon capture and sequestrati
25 erent gypsum qualities, and iron in flue gas desulfurization (FGD) scrubber suspensions.
26 rostatic precipitator (ESP) and wet flue gas desulfurization (FGD) scrubber.
27 ired power plants equipped with wet flue gas desulfurization (FGD) systems have been implicated in in
28  benefits and costs of treating wet flue gas desulfurization (FGD) wastewater at US CFPPs using the t
29 ater and coal-fired power plant wet flue gas desulfurization (FGD) wastewater bromide discharges.
30 n this work, 13 selenium species in flue gas desulfurization (FGD) waters from coal-fired power plant
31 hway of photodecomposition involving initial desulfurization followed by loss of dinitrogen via the i
32 is then rendered traceless by hydrogenolytic desulfurization, generating a native histone protein seq
33 e or wet slurries commonly used for flue gas desulfurization in coal-burning power plants.
34            The uncleaved substrate undergoes desulfurization in the presence of Hg(2+).
35         Native chemical ligation followed by desulfurization is a powerful strategy for the assembly
36  in a reversible sorbent indicates that fuel desulfurization may be an important application for MCPs
37                                         Fuel desulfurization might predispose ULSD to biodeterioratio
38 modification or significant phosphorothioate desulfurization occurs, the 3-(N-tert-butylcarboxamido)-
39                                              Desulfurization of 1,2,4-triazole-3-thiones is assisted
40                                              Desulfurization of 15 and 24 with Raney Ni furnished 5,6
41                                    Microbial desulfurization of crude oil may be an important metabol
42  report a computational study revealing that desulfurization of ETPs should occur universally with re
43 hat allow for high-temperature, regenerative desulfurization of fuel gas streams for the anode of a s
44 ne, biomass processing, biodiesel synthesis, desulfurization of gasoline/diesel, metal processing, an
45 ngle-turnover reactions in which sacrificial desulfurization of LarE converts its conserved Cys176 in
46 ing proteins that function in the uptake and desulfurization of organic sulfur compounds.
47              The development of biocatalytic desulfurization of petroleum fractions may allow its use
48  detailed analysis of the rate and extent of desulfurization of real target molecules in a diesel mat
49                Following ligation, selective desulfurization of the resulting unprotected polypeptide
50  cysteine residues by carrying out selective desulfurization of the sulfhydryl-modified sugar moiety
51 d reassigned cases fit this model, until now desulfurization of the synthetic gliotoxin analogue show
52            The key step in the synthesis was desulfurization of the tetrabenzyl-6,6-bis(methylthio)-5
53                                    Reductive desulfurization of these cycloadducts takes place under
54 ts current assignment in the literature, the desulfurization of this synthetic ETP also proceeds with
55                                         Deep desulfurization of transportation fuels (gasoline, diese
56  involved either carbonyl reduction/thiation-desulfurization or carbonyl reduction/acyliminium ion re
57  the outgoing gaseous stream of the flue gas desulfurization (OUT-FGD) system was revealed at two Spa
58                    In spite of the very poor desulfurization performance of TiC(001) or Au(111), a Au
59                      By changing the applied desulfurization potential, the extent of desulfurization
60 ially viable alternative to the argon plasma desulfurization process is needed.
61 trolyte, we reveal a high-throughput electro-desulfurization process that directly converts semicondu
62         In order to optimize and verify this desulfurization process, a gas-phase sulfur analyzer is
63 tants since sulfite is a waste from flue gas desulfurization process.
64 d to 4,5-disubstituted 1,2,4-triazoles via a desulfurization process.
65 zation and the development of a biocatalytic desulfurization process.
66 zymes being developed for use in a petroleum desulfurization process.
67                   The stereochemistry of the desulfurization products of chiral natural and synthetic
68 lopment of a high-yielding, one-pot ligation-desulfurization protocol that uses trifluoroethanethiol
69    Moreover, by employing an Hg(2+)-promoted desulfurization reaction as recognition unit, the probe
70                  We report a novel reductive desulfurization reaction involving pi-acidic naphthalene
71 reactions (including a free-radical-mediated desulfurization reaction) were carried out on a peptide
72  with respect to Raney-nickel-induced (hydro)desulfurization reactions was probed, forming a bis-phen
73 enicidin A were solved using a novel partial desulfurization/reduction strategy in combination with t
74 fide and sulfone-aldehyde coupling/reductive desulfurization sequence to combine the major subunits.
75 t with conventional native chemical ligation-desulfurization strategies.
76 tive chemical ligation combined with a novel desulfurization strategy.
77  to Fe(III)-IL to construct a new nonaqueous desulfurization system (Fe(III/II)-IL/DMF).
78 s that are difficult to remove using current desulfurization techniques, in a reversible sorbent indi
79         Increased implementation of flue gas desulfurization technologies at coal-fired facilities an
80                                    Following desulfurization, the system can be regenerated using the
81  aspects in the sulfone alkylation/oxidative desulfurization to join the major subunits, including th
82  of o-iodoxybenzoic acid (IBX) for oxidative desulfurization to trigger domino reactions leading to n
83 ation of 7 with native chemical ligation and desulfurization to yield an entirely native isopeptide b
84  found in petroleum that are recalcitrant to desulfurization via HDS.
85                                 Pentathiepin desulfurization via S3-unit transfer is supported by a t
86  influence mercury retention in wet flue gas desulfurization (WFGD) plants, focusing on oxy-coal comb
87 lvents probed the mechanism of the reductive desulfurization, which is crucial for the preparation of

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