Kim Tak-Soo, Kim Jung-Kon, Choi Kyungho, Stenstrom Michael K, Zoh Kyung-Duk
Institute of Health and Environment, School of Public Health, Seoul National University, Seoul 110-799, Republic of Korea.
Chemosphere. 2006 Feb;62(6):926-33. doi: 10.1016/j.chemosphere.2005.05.038. Epub 2005 Jul 26.
The photocatalytic degradation of methyl parathion was carried out using a circulating TiO2/UV reactor. The experimental results showed that parathion was more effectively degraded in the photocatalytic condition than the photolysis and TiO2-only condition. With photocatalysis, 10mg/l parathion was completely degraded within 60 min with a TOC decrease exceeding 90% after 150 min. The main ionic byproducts during photocatalysis were measured. The nitrogen from parathion was recovered mainly as NO3-, NO2- and NH4+, 80% of the sulfur as SO4(2-), and less than 5% of the phosphorus as PO4(3-). The organic intermediates 4-nitrophenol and paraoxon were also identified, and these were further degraded. Two different bioassays (Vibrio fischeri and Daphnia magna) were used to test the acute toxicity of solutions treated by photocatalysis and photolysis. A Microtox test using V. fischeri showed that the toxicity, expressed as the relative toxicity (%), was reduced almost completely after 90 min under photocatalysis, whereas only an 83% reduction was achieved with photolysis alone. Another toxicity test using D. magna also showed that the relative toxicity disappeared after 90 min under photocatalysis, whereas there was a 65% reduction in relative toxicity with photolysis alone. The pattern of toxicity reduction parallels the decrease in parathion and TOC concentrations.
使用循环式TiO₂/UV反应器对甲基对硫磷进行光催化降解。实验结果表明,与光解和仅使用TiO₂的条件相比,对硫磷在光催化条件下降解更有效。通过光催化,10mg/l的对硫磷在60分钟内完全降解,150分钟后总有机碳(TOC)降低超过90%。测定了光催化过程中的主要离子副产物。对硫磷中的氮主要以NO₃⁻、NO₂⁻和NH₄⁺的形式回收;80%的硫以SO₄²⁻的形式回收;不到5%的磷以PO₄³⁻的形式回收。还鉴定出了有机中间体4-硝基苯酚和对氧磷,并且它们进一步降解。使用两种不同的生物测定法(费氏弧菌和大型溞)来测试经光催化和光解处理的溶液的急性毒性。使用费氏弧菌进行的Microtox测试表明,以相对毒性(%)表示的毒性在光催化作用下90分钟后几乎完全降低,而仅光解时仅降低83%。使用大型溞进行的另一项毒性测试也表明,在光催化作用下90分钟后相对毒性消失,而仅光解时相对毒性降低65%。毒性降低模式与对硫磷和TOC浓度的降低情况平行。