Moschet, Christoph’s team published research in Water Research in 2015-03-15 | CAS: 117-96-4

Water Research published new progress about Density. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, HPLC of Formula: 117-96-4.

Moschet, Christoph published the artcileEvaluation of in-situ calibration of Chemcatcher passive samplers for 322 micropollutants in agricultural and urban affected rivers, HPLC of Formula: 117-96-4, the main research area is agricultural urban river water micropollutant chemcatcher passive sampler caliberation; Liquid chromatography high resolution mass spectrometry; Monitoring; Pesticides; Pharmaceuticals; Styrenedivinylbenzene; Surface water.

In a large field study, the in-situ calibration of the Chemcatcher passive sampler – styrenedivinylbenzene (SDB) covered by a polyether sulfone (PES) membrane – was evaluated for 322 polar organic micropollutants. Five rivers with different agricultural and urban influences were monitored from March to July 2012 with two methods (i) two-week time-proportional composite water samples and (ii) two-week passive sampler deployment. All substances – from different substance classes with logKow -3 to 5, and neutral, anionic, cationic, and zwitterionic species – were analyzed by liquid-chromatog. high-resolution tandem mass spectrometry. This study showed that SDB passive samplers are well-suited for the qual. screening of polar micropollutants because the number of detected substances was similar (204 for SDB samples vs. 207 for composite water samples), limits of quantification were comparable (median: 1.3 ng/L vs. 1.6 ng/L), and the handling in the field and laboratory is fast and easy. The determination of in-situ calibrated sampling rates (field Rs) was possible for 88 compounds where the R2 from the regression (water concentration vs. sampled mass on SDB disk) was >0.75. Substances with moderately fluctuating river concentrations such as pharmaceuticals showed much better correlations than substances with highly fluctuating concentrations such as pesticides (R2 > 0.75 for 93% and 60% of the investigated substances, resp.). Flow velocity (0.05-0.8 m/s) and temperature (5-20 °C) did not have an evident effect on the field Rs. It was observed that ionic species had significantly lower field Rs than neutral species. Due to the complexity of the different transport processes, a correlation between determined field Rs and logDow could only predict Rs with large uncertainties. We conclude that only substances with relatively constant river concentrations can be quantified accurately in the field by passive sampling if substance-specific Rs are determined For that purpose, the proposed in-situ calibration is a very robust method and the substance specific Rs can be used in future monitoring studies in rivers with similar environmental conditions (i.e., flow velocity, temperature, pH).

Water Research published new progress about Density. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, HPLC of Formula: 117-96-4.

Referemce:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem

 

Neuwald, Isabelle’s team published research in Water Research in 2021-10-01 | CAS: 117-96-4

Water Research published new progress about Fillers. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Related Products of isoquinoline.

Neuwald, Isabelle published the artcileFilling the knowledge gap: A suspect screening study for 1310 potentially persistent and mobile chemicals with SFC- and HILIC-HRMS in two German river systems, Related Products of isoquinoline, the main research area is persistent mobile chem supercritical fluid chromatog surface water; Drinking water; Groundwater; LC-MS; PMT-substances; Wastewater; Water cycle.

Persistent and mobile chems. (PM chems.) were searched for in surface waters by hydrophilic interaction liquid chromatog. (HILIC) and supercritical fluid chromatog. (SFC), both coupled to high resolution mass spectrometry (HRMS). A suspect screening was performed using a newly compiled list of 1310 potential PM chems. to the data of 11 surface water samples from two river systems. In total, 64 compounds were identified by this approach. The overlap between HILIC- and SFC-HRMS was limited (31 compounds), confirming the complementarity of the two methods used. The identified PM candidates are characterized by a high polarity (median logD -0.4 at pH 7.5), a low mol. weight (median 187 g/mol), are mostly ionic (54 compounds) and contain a large number of heteroatoms (one per four carbons on average). Among the most frequently detected novel or yet scarcely investigated water contaminants were cyanoguanidine (11/11 samples), adamantan-1-amine (10/11), trifluoromethanesulfonate (9/11), 2-acrylamido-2-methylpropanesulfonate (10/11), and the inorganic anions hexafluorophosphate (11/11) and tetrafluoroborate (10/11). 31% of the identified suspects are mainly used in ionic liquids, a chem. diverse group of industrial chems. with numerous applications that is so far rarely studied for their occurrence in the environment. Prioritization of the findings of PM candidates is hampered by the apparent lack of toxicity data. Hence, precautionary principles and minimization approaches should be applied for the risk assessment and risk management of these substances. The large share of novel water contaminants among these findings of the suspect screening indicates that the universe of PM chems. present in the environment has so far only scarcely been explored. Dedicated anal. methods and screening lists appear essential to close the anal. gap for PM compounds

Water Research published new progress about Fillers. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Related Products of isoquinoline.

Referemce:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem

 

Velo-Gala, Inmaculada’s team published research in Chemical Engineering Journal (Amsterdam, Netherlands) in 2012 | CAS: 117-96-4

Chemical Engineering Journal (Amsterdam, Netherlands) published new progress about Gamma ray. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Application of Diatrizoic Acid.

Velo-Gala, Inmaculada published the artcileIonic X-ray contrast media degradation in aqueous solution induced by gamma radiation, Application of Diatrizoic Acid, the main research area is ionic x ray contrast media degradation gamma radiation.

The objective of this study was to analyze the effectiveness of gamma irradiation to transform diatrizoate, DTZ, (contrast medium) in aqueous solution determining the role of oxidizing and reducting species on DTZ degradation The mechanisms involved in DTZ degradation have also been studied. Removal of 91.9% of the diatrizoate was achieved at a dose of 1000 Gy at initial concentration of 25 mg/L. The degradation rate depends on the initial concentration The dose constant is independent of the dose rate in the studied range of 3.83-1.06 Gy/min and slightly depends on solution pH in the interval pH 2.0-10.0. Results obtained show that low H2O2 concentrations increase the efficacy of the process, and high concentrations markedly decrease the dose constant The reaction constant of diatrizoate with the hydrogen radical was determined, obtaining a kH[rad] (DTZ) value of (2.2 ± 0.5) × 109 M-1 s-1. DTZ irradiation byproducts have been determined by HPLC-MS and an oxidation/reduction mechanism has been proposed. Three possible degradation pathways based on the major byproducts found at different doses have been proposed. Moreover, the results obtained indicated a further possible compound degradation pathway, which is based on decarboxylation by hydrogen radical or HO· radical with a subsequent attack by hydroxyl radicals against the ketone group.

Chemical Engineering Journal (Amsterdam, Netherlands) published new progress about Gamma ray. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Application of Diatrizoic Acid.

Referemce:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem

 

Forrez, Ilse’s team published research in Water Research in 2011-02-28 | CAS: 117-96-4

Water Research published new progress about Oxidation. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Name: Diatrizoic Acid.

Forrez, Ilse published the artcileBiogenic metals for the oxidative and reductive removal of pharmaceuticals, biocides and iodinated contrast media in a polishing membrane bioreactor, Name: Diatrizoic Acid, the main research area is biogenic metal oxidation reduction pharmaceutical biocide polishing membrane bioreactor; biocide iodinated contrast media.

Pharmaceutical and personal care products, biocides and iodinated contrast media (ICM) are persistent compounds, which appear in ng to μg L-1 in secondary effluents of sewage treatment plants (STPs). In this work, biogenic metals manganese oxides (BioMnOx) and bio-palladium (Bio-Pd) were applied in lab-scale membrane bioreactors (MBR) as oxidative and reductive technologies, resp., to remove micropollutants from STP-effluent. From the 29 substances detected in the STP-effluent, 14 were eliminated in the BioMnOx-MBR: ibuprofen (>95%), naproxen (>95%), diuron (>94%), codeine (>93%), N-acetyl-sulfamethoxazole (92%), chlorophene (>89%), diclofenac (86%), mecoprop (81%), triclosan (>78%), clarithromycin, (75%), iohexol (72%), iopromide (68%), iomeprol (63%) and sulfamethoxazole (52%). The putative removal mechanisms were the chem. oxidation by BioMnOx and/or the biol. removal by Pseudomonas putida and associated bacteria in the enriched biofilm. Yet, the removal rates (highest value: 2.6 μg diclofenac L-1 d-1) need to improve by a factor 10 in order to be competitive with ozonation. ICM, persistent towards oxidative techniques, were successfully dehalogenated with a novel reductive technique using Bio-Pd as a nanosized catalyst in an MBR. Iomeprol, iopromide and iohexol were removed for >97% and the more recalcitrant diatrizoate for 90%. The conditions favorable for microbial H2-production enabling the charging of the Pd catalyst, were shown to be important for the removal of ICM. Overall, the results indicate that Mn oxide and Pd coupled to microbial catalysis offer novel potential for advanced water treatment.

Water Research published new progress about Oxidation. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Name: Diatrizoic Acid.

Referemce:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem

 

Howard, Philip H.’s team published research in Environmental Science & Technology in 2011-08-15 | CAS: 117-96-4

Environmental Science & Technology published new progress about Antacids. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Formula: C11H9I3N2O4.

Howard, Philip H. published the artcileIdentifying New Persistent and Bioaccumulative Organics Among Chemicals in Commerce II: Pharmaceuticals, Formula: C11H9I3N2O4, the main research area is identifying persistent bioaccumulative organic chem commerce pharmaceutical.

The goal was to identify com. pharmaceuticals that might be persistent and bioaccumulative (P&B) and that were not being considered in current wastewater and aquatic environmental measurement programs. We developed a database of 3193 pharmaceuticals from 2 US Food and Drug Administration (FDA) databases and some lists of top ranked or selling drugs. Of the 3193 pharmaceuticals, 275 pharmaceuticals have been found in the environment and 399 pharmaceuticals were, based on production volumes, designated as high production volume (HPV) pharmaceuticals. All pharmaceuticals that had reported chem. structures were evaluated for potential bioaccumulation (B) or persistence (P) using quant. structure property relationships (QSPR) or scientific judgment. Of the 275 drugs detected in the environment, 92 were rated as potentially bioaccumulative, 121 were rated as potentially persistent, and 99 were HPV pharmaceuticals. After removing the 275 pharmaceuticals previously detected in the environment, 58 HPV compounds were identified that were both P&B and 48 were identified as P only. Of the non-HPV compounds, 364 pharmaceuticals were identified that were P&B. This study has yielded some interesting and probable P&B pharmaceuticals that should be considered for further study.

Environmental Science & Technology published new progress about Antacids. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Formula: C11H9I3N2O4.

Referemce:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem

 

Li, Cheng-Hung’s team published research in Scientific Reports in 2015 | CAS: 117-96-4

Scientific Reports published new progress about Aptamers. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Recommanded Product: Diatrizoic Acid.

Li, Cheng-Hung published the artcileFluorescence-Guided Probes of Aptamer-Targeted Gold Nanoparticles with Computed Tomography Imaging Accesses for in Vivo Tumor Resection, Recommanded Product: Diatrizoic Acid, the main research area is tumor resection aptamer gold nanoparticles computed tomog imaging.

Recent development of mol. imaging probes for fluorescence-guided surgery has shown great progresses for determining tumor margin to execute the tissue resection. Here we synthesize the fluorescent gold nanoparticles conjugated with diatrizoic acid and nucleolin-targeted AS1411 aptamer. The nanoparticle conjugates exhibit high water-solubility, good biocompatibility, visible fluorescence and strong X-ray attenuation for computed tomog. (CT) contrast enhancement. The fluorescent nanoparticle conjugates are applied as a mol. contrast agent to reveal the tumor location in CL1-5 tumor-bearing mice by CT imaging. Furthermore, the orange-red fluorescence emitting from the conjugates in the CL1-5 tumor can be easily visualized by the naked eyes. After the resection, the IVIS measurements show that the fluorescence signal of the nanoparticle conjugates in the tumor is greatly enhanced in comparison to that in the controlled experiment Our work has shown potential application of functionalized nanoparticles as a dual-function imaging agent in clin. fluorescence-guided surgery.

Scientific Reports published new progress about Aptamers. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Recommanded Product: Diatrizoic Acid.

Referemce:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem

 

Shuai, Danmeng’s team published research in Environmental Science & Technology in 2010-03-01 | CAS: 117-96-4

Environmental Science & Technology published new progress about Azo dyes. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Recommanded Product: Diatrizoic Acid.

Shuai, Danmeng published the artcileEnhancement of Oxyanion and Diatrizoate Reduction Kinetics Using Selected Azo Dyes on Pd-Based Catalysts, Recommanded Product: Diatrizoic Acid, the main research area is oxyanion diatrizoate reduction kinetic azo dye palladium catalyst wastewater.

Azo dyes are widespread pollutants and potential cocontaminants for nitrate; we evaluated their effect on catalytic reduction of a suite of oxyanions, diatrizoate, and N-nitrosodimethylamine (NDMA). The azo dye Methyl orange significantly enhanced (a factor of �.24) the catalytic reduction kinetics of nitrate, nitrite, bromate, perchlorate, chlorate, and diatrizoate with several different Pd-based catalysts; NDMA reduction was not enhanced. Nitrate was selected as a probe contaminant, and a variety of azo dyes (Methyl orange, Methyl red, Fast Yellow Ab, Metanil Yellow, Acid Orange 7, Congo Red, Eriochrome Black T, Acid Red 27, Acid Yellow 11, and Acid Yellow 17) were evaluated for their ability to enhance reduction Hydrogenation energies of azo dyes were calculated using d. functional theory and a volcano relation between hydrogenation energies and reduction rate enhancement was observed A kinetic model based on Bronsted-Evans-Polanyi (BEP) theory matched the volcano relation and suggests sorbed azo dyes enhance reduction kinetics through H atom shuttling between reduced azo dyes (i.e., hydrazo dyes) and oxyanions or diatrizoate. This is the 1st research that has identified this synergetic effect, and it has implications for designing more efficient catalysts and reducing Pd costs in water treatment systems.

Environmental Science & Technology published new progress about Azo dyes. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Recommanded Product: Diatrizoic Acid.

Referemce:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem

 

Brunner, Andrea M.’s team published research in Science of the Total Environment in 2020-02-25 | CAS: 117-96-4

Science of the Total Environment published new progress about Bioassay. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, SDS of cas: 117-96-4.

Brunner, Andrea M. published the artcileIntegration of target analyses, non-target screening and effect-based monitoring to assess OMP related water quality changes in drinking water treatment, SDS of cas: 117-96-4, the main research area is drinking water treatment monitoring organic micro pollutant; Bioassays; Drinking water treatment; HRMS-based non-target screening; Organic micro-pollutants; Target analyses; Water quality.

The ever-increasing production and use of chems. lead to the occurrence of organic micro-pollutants (OMPs) in drinking water sources, and consequently the need for their removal during drinking water treatment. Due to the sheer number of OMPs, monitoring using targeted chem. analyses alone is not sufficient to assess drinking water quality as well as changes thereof during treatment. High-resolution mass spectrometry (HRMS) based non-target screening (NTS) as well as effect-based monitoring using bioassays are promising monitoring tools for a more complete assessment of water quality and treatment performance. Here, we developed a strategy that integrates data from chem. target analyses, NTS and bioassays. We applied it to the assessment of OMP related water quality changes at three drinking water treatment pilot installations. These installations included advanced oxidation processes, ultrafiltration in combination with reverse osmosis, and granular activated carbon filtration. OMPs relevant for the drinking water sector were spiked into the water treated in these installations. Target analyses, NTS and bioassays were performed on samples from all three installations. The NTS data was screened for predicted and known transformation products of the spike-in compounds In parallel, trend profiles of NTS features were evaluated using multivariate anal. methods. Through integration of the chem. data with the biol. effect-based results potential toxicity was accounted for during prioritization. Together, the synergy of the three anal. methods allowed the monitoring of OMPs and transformation products, as well as the integrative biol. effects of the mixture of chems. Through efficient anal., visualization and interpretation of complex data, the developed strategy enabled to assess water quality and the impact of water treatment from multiple perspectives. Such information could not be obtained by any of the three methods alone. The developed strategy thereby provides drinking water companies with an integrative tool for comprehensive water quality assessment.

Science of the Total Environment published new progress about Bioassay. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, SDS of cas: 117-96-4.

Referemce:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem

 

El-Taliawy, H.’s team published research in Chemical Engineering Journal (Amsterdam, Netherlands) in 2017-10-01 | CAS: 117-96-4

Chemical Engineering Journal (Amsterdam, Netherlands) published new progress about Biocides. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Recommanded Product: Diatrizoic Acid.

El-Taliawy, H. published the artcileOzonation efficiency in removing organic micro pollutants from wastewater with respect to hydraulic loading rates and different wastewaters, Recommanded Product: Diatrizoic Acid, the main research area is ozonization micro pollutant wastewater treatment hydraulic loading.

Organic micro pollutants can be removed from water by ozonization. In this article we studied the performance of ozonization under real life conditions and compared results of the same ozonization pilot plant installed at different wastewater treatment plants (WWTPs) thus operating with different waters. The comparability of the removal and reaction rate constants from one waste water treatment plant were low in respect to reaction rate, removal as well as to response to the specific ozone dose. Neither pH-value nor residual nitrite concentrations were the driving force considering these differences. Further tests with different loadings were conducted at the same WWTP under different weather conditions. For the different hydraulic loading of the biol. plant, the ozonization was running with rather similar removal rates concerning the same specific (TOC normalized) ozone dose. The compounds that were removed quant. under dry weather were still removed well with three times dry weather flow. Using a dataset from one WWTP to optimize operation in another one is thus questionable.

Chemical Engineering Journal (Amsterdam, Netherlands) published new progress about Biocides. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Recommanded Product: Diatrizoic Acid.

Referemce:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem

 

Baptista-Pires, Luis’s team published research in Water Research in 2021-09-15 | CAS: 117-96-4

Water Research published new progress about Cathodes. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Quality Control of 117-96-4.

Baptista-Pires, Luis published the artcileGraphene-based sponges for electrochemical degradation of persistent organic contaminants, Quality Control of 117-96-4, the main research area is persistent organic contaminant graphene sponge electrochem degradation water pollution; Atomic-doped graphene; Chlorine-free electrochemical system; Electrochemical water treatment; Organic pollutants; Reduced graphene oxide-coated sponge.

Graphene-based sponges doped with at. nitrogen and boron were applied for the electrochem. degradation of persistent organic contaminants in one-pass, flow-through mode, and in a low-conductivity supporting electrolyte. The B-doped anode and N-doped cathode was capable of >90% contaminant removal at the geometric anodic c.d. of 173 A m-2. The electrochem. degradation of contaminants was achieved via the direct electron transfer, the anodically formed O3, and by the OHâ€?radicals formed by the decomposition of H2O2 produced at the cathode. The identified transformation products of iopromide show that the anodic cleavage of all three C-I bonds at the aromatic ring was preferential over scissions at the alkyl side chains, suggesting a determining role of the π- π interactions with the graphene surface. In the presence of 20 mM sodium chloride (NaCl), the current efficiency for chlorine production was <0.04%, and there was no chlorate and perchlorate formation, demonstrating a very low electrocatalytic activity of the graphene-based sponge anode towards chloride. Graphene-based sponges were produced using a low-cost, bottom-up method that allows easy introduction of dopants and functionalization of the reduced graphene oxide coating, and thus tailoring of the material for the removal of specific contaminants. Water Research published new progress about Cathodes. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Quality Control of 117-96-4.

Referemce:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem