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1.
Chemosphere ; 152: 345-52, 2016 Jun.
Article in English | MEDLINE | ID: mdl-26994428

ABSTRACT

Palladium nanoparticles stabilized in microcellular high-density polyethylene prepared through supercritical foaming, supercritical impregnation, and H2 reduction are used for the hydrodechlorination of lindane and hexachlorobenzene in supercritical carbon dioxide below 100 °C. Both lindane and hexachlorobenzene can be almost 100% transformed to cyclohexane in 1 h. Reaction intermediates, such as lower chlorinated products or benzene, are not observed or exist in trace amount indicating that most of them may undergo reactions without leaving the metal surface.


Subject(s)
Hexachlorobenzene/chemistry , Hexachlorocyclohexane/chemistry , Metal Nanoparticles/chemistry , Palladium/chemistry , Carbon Dioxide/chemistry , Catalysis , Polyethylene/chemistry
2.
Environ Sci Pollut Res Int ; 19(2): 303-12, 2012 Feb.
Article in English | MEDLINE | ID: mdl-21739180

ABSTRACT

INTRODUCTION: This study presents bihourly, seasonal, and yearly concentration changes in volatile organic compounds (VOCs) in the inlet and effluent water of the wastewater treatment plant (WWTP) of a high-technology science park (HTIP) in Taiwan, with the VOC amounts at different sites correlated geologically. MATERIALS AND METHODS: This research adopted a combination of two systems, solid-phase microextraction with a gas chromatography/flame ionization detector and an assembly of purge and trap coupled with gas chromatography/mass spectrometry, to monitor polar and nonpolar VOCs in wastewater. This paper investigated the total VOCs, acetone, isopropyl alcohol (IPA), and dimethylsulfide (DMS) concentrations in real water samples collected in the ambient area of the HTIP. RESULTS AND DISCUSSION: The major contents of VOCs measured in the effluent of the WWTP in the HTIP and the surrounding river region were DMS (14-176 ppb), acetone (5-95 ppb), and IPA (15-316 ppb). In comparison with the total VOCs in the inlet wastewater of the WWTP, no corresponding relationship for total VOC concentration in the wastewater was observed between the inlet water and effluent water of the WWTP. CONCLUSIONS: The peak VOC concentrations appeared in the third season, and the correlation of different VOC amounts reflects the production situation of the factories. In addition, VOC concentrations at different sites indicate that the Ke-Ya River is seemingly an effective channel for transporting wastewater to its final destination. The data are good indications for the management of environmental pollution near the HTIP.


Subject(s)
Bays , Environmental Monitoring/methods , Volatile Organic Compounds/analysis , Water Pollutants/analysis , 2-Propanol/analysis , Acetone/analysis , Flame Ionization/methods , Gas Chromatography-Mass Spectrometry , Industry , Rivers , Seasons , Taiwan , Time Factors , Waste Disposal, Fluid
3.
Talanta ; 80(2): 903-8, 2009 Dec 15.
Article in English | MEDLINE | ID: mdl-19836571

ABSTRACT

An automatic sampling device, i.e., process sampling module (PSM), connected with a purge and trap-GC-FID system has been developed for real-time monitoring of VOCs in wastewater. The system was designed to simultaneously monitor 17 compounds, including one polar compound, i.e., acetone, and 16 non-polar compounds. The trapping tube is packed with two adsorbents, Carbopack B and Carbosieve III, to trap target compounds. For the purpose of in situ monitoring, the flush valve of the sampling tube is composed of two two-way valves and a time controller to prevent absorption interference of the residue. The optimal conditions for the analytical system include a 12 min purge time at a temperature of 60 degrees C, and 4 min of desorption time with a desorption temperature of 260 degrees C. Good chromatograms have been obtained with the analytical system even if a cryogenic device and de-misting were not used. The relative standards deviation (RSD) of the system is between 2% and 13.4%, and accuracies between 0.3 and 23.5% have been achieved. The detection limits of the method range from 0.32 to 2.39 ppb. In this system, the four parts, i.e., PSM, P&T, GC, and FID, were simple, reliable and rugged. Also, the interface of these four parts was simple and dependable.


Subject(s)
Chromatography, Gas/methods , Environmental Monitoring/methods , Volatile Organic Compounds/analysis , Water Pollutants, Chemical/analysis , Acetone/analysis , Adsorption , Chloroform/analysis , Chromatography, Gas/instrumentation , Reproducibility of Results , Toluene/analysis
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