Monitoring of the blend 1-Methylpiperazine (cas 109-01-3)/piperazine/water for post-combustion CO2 capture. Part 1: Identification and quantification of degradation products
-
Add time:08/20/2019 Source:sciencedirect.com
Post-combustion CO2 capture process using amine solvents is limited by the high energy penalty and the irreversible degradation of amines. The present work aimed at studying the degradation of the innovative blend 1-methylpiperazine/piperazine (1MPZ/PZ: 30/10%wt.) in a lab-scale pilot plant, LEMEDES-CO2, with conditions representative of post-combustion CO2 capture for power generation. Degradation of the solvent was realized twice during 800 and 955 h. Addition of acidic impurities (H2SO3 and HNO3) in the second campaign was performed in order to study their impact on the solvents degradation. CO2 loadings were determined and showed an average value of 0.28 for the lean solvent and 0.63 for the rich solvent. In order to identify and quantify degradation products, complementary analytical strategies were developed involving LC–MS, ionic chromatography and GC–MS. In order to monitor the gaseous effluents, a sampling on solid sorbents (Tenax® TA) was performed followed by thermodesorption and GC–MS analysis. This study permitted the identification of 23 degradation products in the liquid phase of the solvent, and 16 emitted with the treated flue gas. Among them were found piperazine derivatives, alkylpyrazines and organic acids. Quantification was performed on both liquid and gaseous phases on 10 selected compounds.
We also recommend Trading Suppliers and Manufacturers of 1-Methylpiperazine (cas 109-01-3). Pls Click Website Link as below: cas 109-01-3 suppliers
Prev:Process Simulation for CO2 Capture with the Aqueous Solution of 1-Methylpiperazine (cas 109-01-3) and its Mixture with Piperazine☆
Next:An Original Strategy for the Analysis of Degradation Products in CO2 Capture Emissions: Monitoring of an Innovative Blend 1-Methylpiperazine (cas 109-01-3)/piperazine/water in Pilot Conditions☆) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Spectroscopic characterization and thermal structural analysis of the charge-transfer complexes formed in the reaction of 1-Methylpiperazine (cas 109-01-3) with σ- and π-acceptors08/28/2019
- 1-Alkyl-1-Methylpiperazine (cas 109-01-3)-1,4-diium salts: Synthetic, acid–base, XRD-analytical, FT-IR, FT-Raman spectral and quantum chemical study08/27/2019
- Determination of the polyamines in human toenails as 1-(5-fluoro-2,4-dinitrophenyl)-4-methylpiperazine derivatives using high-performance liquid chromatography08/26/2019
- Synthesis, characterization, Hirshfeld surface analysis and antioxidant activity of a novel organic-inorganic hybrid material 1-Methylpiperazine (cas 109-01-3)-1,4-diium bis(nitrate)08/25/2019
- A sensitive and accurate LC-MS/MS assay with the derivatization of 1-Amino-4-methylpiperazine applied to serum allopregnanolone, pregnenolone and androsterone in pre- and postmenopausal women08/24/2019
- NBO, HOMO, LUMO analysis and vibrational spectra (FTIR and FT Raman) of 1-Amino 4-methylpiperazine using ab initio HF and DFT methods08/23/2019
- CO2 solubility measurement and thermodynamic modeling for 1-Methylpiperazine (cas 109-01-3)/water/CO208/22/2019
- An Original Strategy for the Analysis of Degradation Products in CO2 Capture Emissions: Monitoring of an Innovative Blend 1-Methylpiperazine (cas 109-01-3)/piperazine/water in Pilot Conditions☆08/21/2019
- Process Simulation for CO2 Capture with the Aqueous Solution of 1-Methylpiperazine (cas 109-01-3) and its Mixture with Piperazine☆08/19/2019
-
Health and Chemical more >
-
Related Products


