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1.
In the present study, a soil monitoring program was undertaken in Greek cotton cultivated areas in 2012. Twenty-seven soil samples were collected from the entire Thessaly plain in early summer of 2012, corresponding to approximately three months (current use of pendimethalin), up to one year (for the banned ethalfluralin), and three years (for the also banned trifluralin), after the last dinitroaniline application. Low but not negligible levels of dinitroanilines were detected, ranging from 0.01 to 0.21 μg g?1 d.w. for trifluralin and 0.01–0.048 μg g?1 d.w. for pendimethalin, respectively. Trifluralin was the herbicide most frequently detected (44.4%). The high historic application of trifluralin and its high persistence and accumulation potential is in line with the abundance of the detected residues. The present data indicate that soil samples contain extractable residues of banned trifluralin, but based on the comparison of the theoretical PECplateau for trifluralin (0.277 µg g?1) and the maximum Measured Environmental Concentration, it was concluded that the detected residues should be attributed to previous years’ application. The latter suggested the need for continual monitoring of the dinitroaniline family of pesticides, including the banned substances, aiming thus to an improved environmental profile for agricultural areas.  相似文献   
2.
二甲戊乐灵降解细菌的分离及降解特性   总被引:7,自引:1,他引:6  
分离鉴定了二甲戊乐灵降解细菌 ,并研究了培养条件对二甲戊乐灵降解和细菌生长的影响 .结果表明 ,所分离的29株细菌中有3株在3d内对100mg·L-1二甲戊乐灵的降解率在80%以上 ,选择HB-1、WB-12株细菌进一步研究 ,此2株细菌经鉴定分别属于假单胞菌(Pseudomonas)和玫瑰色微球菌(Mirococcusluteus) .结果表明 2株细菌在中性培养液中外加碳源浓度为0.2%、二甲戊乐灵浓度不大于100mg·L-1、30~40℃培养的条件下 ,细菌生长量和二甲戊乐灵的降解率都达到最大.  相似文献   
3.
Dissolved organic matter (DOM) in soil solution is considered to interact with herbicides enhancing their mobility and promoting subsequent leaching. Batch experiments were conducted to test if free and DOM-bound herbicides can be separated by a DOM-flocculation technique with Cu as a coagulant. DOM was extracted from the H and A horizons of two soils (Terric Histosol, Cumuli-Calcaric Cambisol) and from the O horizon of a forest soil (Humic Cambisol). DOM-solutions (100 mL) were fortified with the herbicides terbuthylazine and pendimethalin (100 μg active ingredient each) and equilibrated for 14 hours. After DOM-flocculation with Cu (addition of 0,5 mM CuCl2) herbicide recovery was determined in the supernatant solutions and in the precipitate of Humic Cambisol-DOM, respectively. Recovery of the herbicides from pure water was 85–99% and was not influenced by the addition of Cu. At low pH (4,8–5,3) DOM-flocculation of different DOM-extracts was insufficient and varied in a range of 18 – 90%. Herbicide recovery from DOM-solutions decreased moderately for terbuthylazine (60–90%) and strongly for pendimethalin (5 – 30%). In general, the addition of Cu caused no further reduction of herbicide recovery from supernatant solutions, except for Humic Cambisol-DOM. The effects of Cu-addition were most evident for pendimethalin (strongly reduced concentration in the supernatant solutions) and were considered to be caused by a flocculation of DOM-bound moieties. Flocculation of Humic Cambisol-DOM increased from 18 – 24% at pH 5 to > 95% at pH 8. However, at this pH the formation of Cu(OH)2 as a sorbing subcomponent of the flocculated matter lead to an overestimation of DOM-bound pendimethalin. Calculating this side effect 6% of pendimethalin added was DOM-bound. Only traces of terbuthylazine (< 1%) were found in the solid matter of flocculated Humic Cambisol-DOM. To sum up, the new approach to separate freely dissolved herbicides from DOM-bound moieties not fully corresponded to our expectations. DOM-flocculation was found to depend strongly on pH-environment influencing not only DOM-herbicide interactions but also the clear separation of DOM-bound herbicides from herbicides in solutions.  相似文献   
4.
Manure amendment in agricultural practice can have a large effect on herbicide dissipation because the period of manure plowing is close to the period of herbicide application. In addition, manure amendment is among the frequently encountered options in ameliorating pesticide pollution. In this research, the dissipation of the herbicide pendimethalin was examined after amendment with two common green manures, Lupinus luteus (L) or Cosmos bipinnatus (C), for 110 days in pH 5.2 and 7.7 soils (Sankengtzu [Sk] and Erhlin [Eh] soil, respectively). The microbial activity and ecology changes were examined by using Biolog EcoPlate and denaturing gradient gel electrophoresis (DGGE). In Sk soil, the half-lives of pendimethalin with L, C, and blank treatment were 49.0, 54.9, and 62.2 days, respectively, whereas that in Eh soil they were 46.3, 52.6, and 34.8 days, respectively. Pendimethalin dissipated quickly in more neutral soil (Eh soil), but the addition of manure can only increase the dissipation rate in acidic soil (Sk soil), indicating that the amendment of manures exerted different effect in pendimethalin dissipation rates in different pH soils. The application of pendimethalin and/or manure altered the microbial community activity after 24 h of incubation. After 110 days, the microbial community activities in green manure–amended soil were more similar to that with blank than pendimethalin treatment in both types of soils. In comparison with treatment C, microbial communities were more similar between treatment L and blank, indicating the superior effect over pendimethalin on microbial communities when applying Lupinus luteus. The research showed that the application of herbicide pendimethalin changed soil microbial community, and the amendment of manures exerted different effect in pendimethalin dissipation rates in different pH soils. It is assumed that the change in dissipation rates was originated from the microbial community change after different manure amendment.  相似文献   
5.
Abstract

Pendimethalin herbicide (PROWL®480 EC) spray drift was determined from ground applications representing the highest rate applied to corn in eastern Canada. A novel drift collector pattern was laid out on the ground immediately before herbicide application. Most of the drift collectors were located downwind of the application target area. The maximum labelled rate of 1.68 kg ai/Ha was applied on 2 occasions on separate sites. In both applications, drift collector cards indicated that concentrations of pendimethalin were not detectable outside the target zone (<0.01 μg/cm2) at or beyond the 10 metre drift collector stations. Risk assessment calculations indicated that non‐target organisms would not be at significant risk from off‐site movement of pendimethalin.  相似文献   
6.
人工底泥对除草剂生物有效性的影响   总被引:1,自引:0,他引:1  
以StompSC(有效成分为二甲戊灵)和Hora FloSC(有效成分为异丙隆)2种除草剂为供试药剂,以栅藻(Sencedesmus subspicatus)为非目标生物,建立了一种在水/底泥系统内检测农药生物有效性的方法.除草剂在该系统内的吸附程度比预测的低.除草剂的生物有效性主要取决于其极性,亲脂性的二甲戊灵被人工底泥强烈吸附,因而对水藻的生物有效性低.此外生物有效性还可能与水中是否存在可溶性有机碳(DOC)有关.  相似文献   
7.
Abstract

Behaviour of the herbicide pendimethalin [N‐(l‐ethylpropyl)‐3,4‐dimethyl‐2,6‐dinitrobenzenamine] was evaluated in plain field under wet tropical conditions (Martinique, FWI) and in the Mediterranean area (Languedoc, South of France). Simultaneously, adsorption parameters were discussed with Freundlich equation, and desorption evaluated using a model with two compartments corresponding to two different energy levels. Pendimethalin showed a strong adsorption in all three soils and was very difficult to desorb. Higher clay content in tropical vertisol and ferrisol involved adsorption parameters (Kfa) higher than the one found in the Mediterranean fluvisol. Although heavy rainfalls in the tropics intervene on migration, pendimethalin propensity to leaching is levelled by its strong adsorption potential and appears very limited under the conditions chosen during this work. Half‐life of the compound (in the 0–25 cm soil layer) varied from 13 to 17 days. Pendimethalin was also classified as a “non‐leacher” compound using the “Gustafson model”.  相似文献   
8.
Photocatalytic degradation of the herbicide, pendimethalin (PM) was investigated with BaTiO3/TiO2 UV light system in the presence of peroxide and persulphate species in aqueous medium. The nanoparticles of BaTiO3 and TiO2 were obtained by gel to crystallite conversion method. These photo catalysts are characterized by energy dispersive x-ray analysis (EDX), scanning electron microscope (SEM), x-ray diffraction (XRD), and Brunauer-Emmett-Teller (BET) adsorption isotherm and reflectance spectral studies. The quantum yields for TiO2 and BaTiO3 for the degradation reactions are 3.166 Einstein m?2 s?1 and 2.729 Einstein m?2 s?1 and catalytic efficiencies are 6.0444 × 10?7 mg?2h?1L2 and 5.403 × 10?7 mg?2h?1L2, respectively as calculated from experimental results. BaTiO3 exhibited comparable photocatalytic efficiency in the degradation of pendimethalin as the most widely used TiO2 photocatalyst. The persulphate played an important role in enhancing the rate of degradation of pendimethalin when compared to hydrogen peroxide. The degradation process of pendimethalin followed the first-order kinetics and it is in agreement with Langmuir-Hinshelwood model of surface mechanism. The reason for high stability of pendimethalin for UV-degradation even in the presence of catalyst and oxidizing agents were explored. The higher rate of degradation was observed in alkaline medium at pH 11. The degradation process was monitored by spectroscopic techniques such as ultra violet-visible (UV-Vis), infrared (IR) and gas chromatography mass spectroscopy (GC-MS). The major intermediate products identified were: N-propyl-2-nitro-6-amino-3, 4-xylidine, (2, 3-dimethyl-5-nitro-6-hydroxy amine) phenol and N-Propyl-3, 4-dimethyl-2, 6-dinitroaniline by GC-MS analysis and the probable reaction mechanism has been proposed based on these products.  相似文献   
9.
二甲戊乐灵降解细菌HB-7的分离及降解特性研究   总被引:4,自引:0,他引:4  
利用富集培养方法 ,从环境中获得菌株HB 7,初步鉴定属于芽孢杆菌属 (Bacillus) .实验结果表明 ,培养条件会影响HB 7的生长和降解二甲戊乐灵的效率 ,少量的蔗糖能促进菌体生长和降解 ;在pH为 6~ 9的范围内菌体生长量大、降解率高 ;二甲戊乐灵浓度的提高抑制了菌株的生长和降解 ,但在一定浓度范围内提高农药去除量 ;HB 7降解二甲戊乐灵的最佳培养温度是 30℃左右 .研究结果还表明菌株HB 7含有一个质粒 ,该质粒能产生降解二甲戊乐灵的酶系统 .  相似文献   
10.
二甲戊乐灵的土壤微生物生态效应   总被引:14,自引:0,他引:14  
研究了二甲戊乐灵对土壤微生物活性的影响.结果表明:二甲戊乐灵1、5、10μg·g-113个浓度处理所释放的CO2与对照无明显差异;该药对纤维素在土壤中的降解表现出促进作用,纤维素在5和10μg·g-12处理中的半衰期分别比CK提高1.32和2.14倍;二甲戊乐灵对脱氢酶的活性有一定的激活作用,其激活强度和作用时间随处理浓度升高而加剧和延长;二甲戊乐灵对土壤脲酶的影响表现出先抑制后激活的现象,抑制和激活的程度及持续的时间与处理浓度成正比.  相似文献   
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