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Green catalyst destroys pesticides and munitions toxins
August 29, 2005
A chemical catalyst developed at Carnegie Mellon University completely destroys dangerous nitrophenols in laboratory tests, according to Arani Chanda, a doctoral student who is presenting his findings on Sunday, Aug. 28, at the 230th meeting of the American Chemical Society (ACS) in Washington, D.C. (Division of Industrial and Engineering Chemistry, Convention Center Hall A). "We found an efficient, rapid and environmentally friendly means of completely destroying these compounds," said Chanda, who works in the laboratory of Terrence Collins, the Thomas Lord Professor of Chemistry and director of the Institute for Green Oxidation Chemistry at the Mellon College of Science (MCS) at Carnegie Mellon.
Nitrophenols are man-made pollutants that mostly originate from wastewater discharges from the dye, pesticide and ammunition industries as well as from various chemical-manufacturing plants. They are also found in diesel exhaust particles. Thousands of tons of these agents are produced yearly by countries around the world. Registered as priority pollutants by the EPA, they are toxic to aquatic life. They produce immediate toxic effects to the nervous system, and some reports have implicated them as possible endocrine disruptors. Many of these compounds cannot be destroyed by existing means.
The catalyst, one of a family of catalysts called Fe-TAML®s (TAML stands for tetra-amido macrocyclic ligand), works with hydrogen peroxide. Its "green" design is based on elements used naturally in biochemistry. Fe-TAMLs were discovered by Collins, whose group has developed an extensive suite of these catalysts to provide clean, safe alternatives to existing industrial practices, as well as ways to remediate other pressing problems that currently lack solutions.
"Fe-TAMLs are much easier to use in destroying nitrophenols because they work at ambient temperatures and neutral pH," said Collins. "Existing detoxification methods are inefficient and work only under acidic conductions. Our method can be used over a much broader pH range, including wastewater pH conditions."
Fe-TAMLs already have shown promise in killing a simulant of a biological warfare agent (anthrax), reducing fuel pollutants, treating pulp and paper processing byproducts, and detoxifying pesticides. A major goal is to develop Fe-TAMLs as a safe, cost-effective means of global water decontamination.
Collins and other members of his laboratory are presenting additional findings about Fe-TAMLs during these sessions at the 230th ACS meeting:
"TAML green oxidation catalysis for safely destroying pollutants and microbes in water," oral presentation by Terrence Collins, INOR 265, Strategies and Molecular Mechanisms of Contaminant Degradation Chemistry, 2 p.m. Monday, Aug. 29, Convention Center 147B;
"Micellar regulation of the activity of Fe-TAML® activators of peroxides in aqueous solutions," poster presentation by Deboshri Banerjee, I&EC 11, 8 p.m. Sunday, Aug. 28, Convention Center, Hall A.
Carnegie Mellon University
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Catalysts for Fine Chemical Synthesis, Catalysts for Carbon-Carbon Bond Formation (Catalysts For Fine Chemicals Synthesis) (Volume 3)
by Stanley M. Roberts (Editor), Jianliang Xiao (Editor), John Whittall (Editor), Tom E. Pickett (Editor)
The chemist has a vast range of high-tech catalysts to use when working in fine chemical synthesis but the catalysts are generally hard to use and require both time, skill and experience to handle properly. The Catalysts for Fine Chemical Synthesis series contains tested and validated procedures which provide a unique range resources for chemists who work in organic chemistry. "... of great value to synthetic organic chemists..." (The Chemists, Summer 2003) Volume 3 in the series focuses on catalysts for carbon-carbon bond formation and presents practical and detailed protocols on how to use sophisticated catalysts by the "inventors" and "developers" who created them. The combination of protocols and review commentaries helps the reader to easily and...
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Enlightenment Through A Chemical Catalyst
Mentallo & The Fixer (Primary Contributor)
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Enlightenment Through A Chemical Catalyst (Ltd)
by Mentallo & The Fixer
After a chasm of almost four years, one of the most influential American Electro/Industrial bands of the last 15 years, Mentallo & The Fixer broke the silence earlier this year with the mind-boggling EP Commandments For The Molecular Age, forecasting the band's second phase of electronic anger. Having always been projecting himself into the future throughout his impressive career and discography, Gary Dassing once again carries us away from the beaten path, bringing us this time closer to the darkest side of the Moon than to the core of the Earth... Avant-garde per definition and dense and powerful per nature, Mentallo & The Fixer's new album offering is challenging the listener with its ultra-complex synth arrangements layered on devastating upbeat sequencer rhythms and...
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Blaster Chemical Co. 16-PB Penetrating Catalyst
by Blaster Chemical Co.
The PB B'laster acts as a powerful, concentrated catalyst to release the surface tension of frozen parts. Then it converts into a nonevaporating lubricant to protect against further rust and corrosion. Penetrates fast into hard to reach cavities to free s
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Chemistry: Reaction Rates and Equilibrium (Home Use)
Viewers learn that certain fundamental factors influence the rates at which chemical reactions take place. Catalysts and their alternate reaction paths, and the role of equilibrium, are also included in the study of influential factors on chemical reactions. Part of "The Chemistry Series," a set of informative programs about key aspects of chemistry that provide a valuable supplement to high-school or college science curriculums. A Coronet release. (For Home Use Only) This product is manufactured on demand using DVD-R recordable media. Amazon.com's standard return policy will apply.
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LaMotte 60ml Acidified Catalyst
LaMotte 60ml Acidified Catalyst
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Advances in Fischer-Tropsch Synthesis, Catalysts, and Catalysis (Chemical Industries)
by B. H. Davis (Author), Mario L. Occelli (Author)
Rising oil costs have stimulated significant interest in the Fischer-Tropsch synthesis (FTS) as a method for producing a synthetic petroleum substitute. Drawn from the proceedings at a symposium held during the 236th meeting of the American Chemical Society in Philadelphia in August 2008, Advances in Fischer-Tropsch Synthesis, Catalysts, and Catalysis explores the recent developments in Fischer-Tropsch technology, which holds great promise in the area of renewable resources.
Expert contributors explore a range of issues
The book focuses on three main themes: catalyst preparation and activation, reaction mechanism, and process-related topics. A panel of expert contributors discusses synthesis of catalysts, carbon nanomaterials, nitric oxide calcinations,...
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CATALYST 3000 PURIFY MOD
by JACK S MAGIC
mfr: JACK S MAGIC KEYWORDS FST451011,FSTMOD,FST,FST-45,451011,FSTCAT,FSTPUR,JCK,JCK-45,45835,JCKCAT,JCKPUR,JCKMOD,JCK45835,7625904,90312,3001,42-399-3001,423993001,JMCAT3001
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Catalyst Design: Optimal Distribution of Catalyst in Pellets, Reactors, and Membranes (Cambridge Series in Chemical Engineering)
by Massimo Morbidelli (Author), Asterios Gavriilidis (Author), Arvind Varma (Author)
Since heterogeneous catalysis is widely used in chemical, refinery, and pollution-control processes, achieving optimal catalytic performance is a significant issue for chemical engineers and chemists. This book addresses the question of how catalytic material should be distributed inside a porous support to obtain optimal performance. It treats single and multiple reaction systems, isothermal and nonisothermal conditions, pellets, monoliths, fixed-bed reactors, and membrane reactors. The effects of physicochemical and operating parameters are analyzed to gain insight into the underlying phenomena governing the performance of optimally designed catalysts. Throughout, the authors offer a balanced treatment of theory and experiment and stress problems of commercial importance.
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Enlightenment Through A Chemical Catalyst - Limited
Mentallo & The Fixer (Primary Contributor)
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