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Chemosphere, ISSN 0045-6535, 04/2019, Volume 220, pp. 1200 - 1207
Washing water containing poorly degradable heavy metal-EDTA complexes is produced by ethylenediaminetetraacetic acid (EDTA) washing of heavy metal-contaminated... 
Dechelation | Orthogonal experiments | Trisodium EDTA (HNa3EDTA) | Cd removal efficiency | Recovery | Trisodium EDTA (HNa | EDTA | BIODEGRADATION | NUCLEAR-MAGNETIC-RESONANCE | NAEDTA | ENVIRONMENTAL SCIENCES | EXTRACTION | Trisodium EDTA (HNaEDTA) | METAL COMPLEXATION | REMOVAL | CADMIUM | PHOSPHORIC-ACID | OPTIMIZATION | Sulfides | Precipitation (Meteorology) | Chromatography | Heavy metals
Journal Article
Journal of Magnetic Resonance, ISSN 1090-7807, 2007, Volume 184, Issue 2, pp. 185 - 195
The use of H transverse paramagnetic relaxation enhancement (PRE) has seen a resurgence in recent years as method for providing long-range distance information... 
1H- T2 | Paramagnetic relaxation enhancement | EDTA-Mn 2 | Spin-label | H-T | EDTA-Mn | EDTA-Mn2 | 1H-T2
Journal Article
American Journal of Hematology, ISSN 0361-8609, 08/2018, Volume 93, Issue 8, pp. 1113 - 1114
Journal Article
Journal of Colloid And Interface Science, ISSN 0021-9797, 2003, Volume 260, Issue 2, pp. 280 - 290
The adsorption of free and divalent heavy metal (copper, cadmium, and lead) complex-bound EDTA from metal-EDTA mixture solutions on a composite adsorbent... 
Surface complexation model | EDTA | Metal–EDTA adsorption | Copper–EDTA | Lead–EDTA | Cadmium–EDTA | Metal-EDTA adsorption | Lead-EDTA | Cadmium-EDTA | Copper-EDTA | cadmium-EDTA | OXIDE | LEAD(II) ADSORPTION | COPPER(II) | SEDIMENTS | SORPTION | CHEMISTRY, PHYSICAL | TRACE-METAL | lead-EDTA | metal-EDTA adsorption | surface complexation model | CADMIUM | copper-EDTA | GOETHITE | MIXTURE SOLUTIONS | COBALT
Journal Article
Microchemical Journal, ISSN 0026-265X, 03/2017, Volume 131, pp. 51 - 56
In this study, a new and high efficient superparamagnetic nanosorbent, EDTA functionalized Fe O nanoparticles was synthesized and used for the adsorption and... 
Fe3O4@EDTA nanoparticles | Environmental samples | Experimental design | Superparamagnetic nanoadsorbents | Heavy metals | @EDTA nanoparticles | Fe | O | HEAVY-METAL IONS | GRAPHENE OXIDE | CHEMISTRY, ANALYTICAL | AQUEOUS-SOLUTIONS | MANAGEMENT | EDTA | ADSORPTION | NANOFILTRATION | WASTE-WATER | OPTIMIZATION | MERCURY REMOVAL
Journal Article
JOURNAL OF HAZARDOUS MATERIALS, ISSN 0304-3894, 12/2015, Volume 300, pp. 688 - 694
The feasibility of EDTA-chelated Cu-II (Cu-II-EDTA) removal by zero-valent iron (Fe-0) in the presence of a weak magnetic field (WMF) and the involved... 
EDTA-CU(II) | AQUEOUS-SOLUTIONS | PHOTOCATALYTIC OXIDATION | ADSORPTION | Magnetic propeller agitator | Fe-0/WMF | RECOVERY | ENVIRONMENTAL SCIENCES | Decomplexation | Reduction | ENGINEERING, CIVIL | ENGINEERING, ENVIRONMENTAL | Cu-II-EDTA | DEGRADATION | WASTEWATERS | CU(II)-EDTA | ILLUMINATED TIO2 | WATER
Journal Article
Sensors and Actuators, B: Chemical, ISSN 0925-4005, 06/2014, Volume 196, pp. 388 - 397
We report the design and synthesis of a novel rhodamine-pyridine derivative-based indicator for Hg ion determination. The indicator exhibited highly selective... 
Cysteine | Fluorescent chemosensor | EDTA | Rhodamine-pyridine | Mercury
Journal Article
Hydrometallurgy, ISSN 0304-386X, 06/2018, Volume 178, pp. 256 - 263
A novel process for the recovery of manganese by EDTA/EDTA–2Na leaching and the recovery of silver by thiosulfate leaching with resultant EDTA–Mn as the... 
EDTA/EDTA–2Na | Thiosulfate | Leaching | Manganese–silver ore | METALLURGY & METALLURGICAL ENGINEERING | COMPLEXES | Manganese-silver ore | EDTA | SULFIDE | EXTRACTION | ETHYLENEDIAMINETETRAACETIC ACID | PRETREATMENT | DISSOLUTION | REDUCTANT | EDTA/EDTA-2Na | CYANIDATION | AU-AG ORE | Copper compounds | Silver | Ammonia | Copper | Silver ores
Journal Article
2008, Volume 2, 1
Reference
Chinese Chemical Letters, ISSN 1001-8417, 05/2013, Volume 24, Issue 5, pp. 383 - 385
More than 85% of the equilibrium adsorption amount of EDTA–Cu(II) and EDTA–Ni(II) occurred within the initial 30 min. The monolayer saturation adsorption... 
Removal | EDTA–Ni(II) | EDTA–Cu(II) | Spongy adsorbent | Preparation | EDTA-Ni(II) | EDTA-Cu(II) | ADSORPTION | EDTA | CHEMISTRY, MULTIDISCIPLINARY
Journal Article
Solid State Ionics, ISSN 0167-2738, 01/2015, Volume 269, pp. 62 - 66
In this paper, the Cu SnS hollow microspheres (CTS-HMSs) have been successfully synthesized via a hydrothermal route, in which ethylenediaminetetraacetic acid... 
Lithium ion batteries | Hydrothermal method | Cu2SnS3 hollow microspheres | EDTA-Na2 | EDTA-Na | SnS | hollow microspheres
Journal Article
ANALYST, ISSN 0003-2654, 2013, Volume 138, Issue 1, pp. 278 - 283
A novel fluorescent probe (Zr(CDs-COO)(2)EDTA) has been designed for fluoride ion (F-) content detection based on the competitive ligand reactions carried out... 
CHEMISTRY, ANALYTICAL | ZR(IV)-EDTA COMPLEX | ION
Journal Article
Separation and Purification Technology, ISSN 1383-5866, 09/2013, Volume 117, pp. 118 - 123
The preparation and application of tri-ammonium-functionalized mesoporous silica SBA-15 (NNN-SBA-15) for sequestering Cu(II)–EDTA chelates from aqueous... 
Cu(II)–EDTA chelates | Adsorption | Low concentration | Mesoporous silica | Tri-ammonium-functionalized | Cu(II)-EDTA chelates | OXIDATION | COPPER | MECHANISMS | MONOLAYERS | ENGINEERING, CHEMICAL | RECOVERY | REMOVAL | COAGULATION | ADSORBENT | ELECTRODEPOSITION | EDTA COMPLEXES | Silica | Chelates
Journal Article
Chemical Engineering Journal, ISSN 1385-8947, 08/2007, Volume 132, Issue 1-3, pp. 227 - 232
The simultaneous absorption of NO and SO by Fe EDTA combined with Na SO solution was studied by cyclic voltammetry and Raman spectroscopy for the purpose of... 
Absorption | EDTA | Nitric oxide | Mechanism
Journal Article
Journal of Power Sources, ISSN 0378-7753, 08/2013, Volume 236, pp. 118 - 125
Journal Article
by Liu, Q and Yu, KY and Yi, P and Cao, WM and Chen, XP and Zhang, XL
ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, ISSN 0944-1344, 07/2019, Volume 26, Issue 19, pp. 19540 - 19548
Ferrous chelates (Fe(II)EDTA) can effectively absorb NO, but the regeneration of them usually consumes large amounts of organic matter or energy. In this... 
SYSTEM PERFORMANCE | Fe(II)EDTA-NO | DENITRIFICATION | MFC | MODEL | NO absorption | Fe(III)EDTA | ENVIRONMENTAL SCIENCES | Reduction | REMOVAL | COMMUNITY | FE(II)EDTA-NO REDUCTION | WASTE-WATER | DEGRADATION | GENERATION | FLUE-GAS | Electricity generation
Journal Article
Zeitschrift für Kristallographie - New Crystal Structures, ISSN 1433-7266, 11/2017, Volume 232, Issue 6, pp. 941 - 942
ClN Sn, triclinic, 1 (no. 1), = 6.6666(3) Å, = 6.6892(4) Å, = 8.8779(6) Å, = 101.340(5)°, = 99.624(5)°, = 91.279(4)°, = 382.08(4) Å , = 1, ) = 0.0318, ) =... 
1533079 | EDTA | CRYSTALLOGRAPHY
Journal Article
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