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1 finished beer, which were extracted through cation exchange resin.
2 etal ions on Dowex Marathon C, a strong acid cation exchange resin.
3 nd to sorption onto a commercially available cation exchange resin.
4 extraction using silica gel C-18 and DSC-SCX cation-exchange resin.
5 tion of the detergent extract onto anion and cation exchange resins.
6 n of cationic polypeptides using a selective cation exchange resin ablated most of the intrinsic acti
7 The removal of cationic polypeptides using a cation-exchange resin ablated the activity of nasal flui
9 The (99m)Tc solution was passed through a cation exchange resin and an alumina cartridge, followed
11 The (63)Cu-(63)Zn mixture was trapped on a cation-exchange resin and rinsed with water, and the (63
12 Prairie Pothole Region (PPR) using XAD-8, a cation exchange resin, and PPL, a styrene-divinylbenzene
13 ipitation, water washing, purification using cation-exchange resin, and stabilization with a monolaye
14 ew grams of low-cost, commercially available cation exchange resin can be repurposed to extract heavy
15 the separation of trehalulose from SBH using cation exchange resin (CEA) in batch adsorption mode.
16 significant adsorption of PFASs compared to cation-exchange resins (CERs), nonionic resins (NIRs), a
17 orption mechanism of organic contaminants on cation exchange resins (CXRs) will enable application of
18 bromide (DODAB) has been immobilized onto a cation exchange resin, Dowex 50WX2, and its thermotropic
19 removal capacity of the HSBS and that of the cation exchange resin for the three metals demonstrates
25 d to monitor heavy metal pollution that uses cation-exchange resin sachets and the micro-XRF core-sca
26 h renal failure is frequently treated with a cation exchange resin (sodium polystyrene sulfonate, her
27 hore-complexed Th interacted strongly with a cation-exchange resin suggesting that, even when complex
28 performing traditional solid acid catalysts (cation-exchange resins, sulfated oxides, and acidic zeol
29 plished using a combination of a strong-acid cation exchange resin to separate barium and radium from
30 umn followed by a second column using a weak cation-exchange resin to elute the lead isotope as [(203
32 Both magnetically enhanced and nonmagnetic cation exchange resins were converted to Na, Mg, Ca, Sr,
33 from decommissioned modules by weakly acidic cation exchange resin, which could be released as solubl
34 reconcentration and passage through Ag+-form cation-exchange resin, which removes divalent sulfur gas
35 thereal diazomethane over peptides on strong cation exchange resin within a microfluidic device, pept