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利谷隆在土壤中的吸附过程与机理   总被引:10,自引:0,他引:10  
利谷隆是一种广泛应用的除草剂。本文研究了它在4种不同理化特性土壤中的吸附过程(平衡吸附所需的时间,土壤pH的影响及吸附等温线)和在单离子饱和粘土矿物上的吸附机理,结果表明:利谷隆在土壤的吸附强度大(Kt值在3.88-93.84);达到吸附平衡的短(5h);pH值降低,有利于吸附,pH在4-6范围内变化较明显;另外,利谷隆在土壤中形成氢键、配位键及离子键是可能的。  相似文献   
2.
The persistence of atrazine, linuron and fenitrothion in soil samples from an estuarine area (Ebro delta, Tarragona, Spain) has been studied. Soil samples from the top surface (10 cm) were collected during 1989–91, freeze‐dried, sieved through 200 μm, Soxhlet extracted with methanol, cleaned‐up with Florisil and analysed either by gas chromatography‐nitrogen phosphorus detection (GC‐NPD), in the case of atrazine and fenitrothion, or by liquid chromatography with diode array detection (LC‐DAD), for linuron. Confirmation of the samples analysed by GC‐NPD was carried out using GC‐mass spectrometric detection (MS) in the electron impact mode. The soil half lives obtained under the real environmental conditions have been calculated and the values obtained have been correlated with the physicochemical properties of each pesticide and the soil type. Degradation was affected by volatilization since temperatures in the area of study are relatively high, ca. 30°C, in the summer period. In the case of atrazine it has been shown that deethylatrazine is formed in all the samples studied..  相似文献   
3.
Biochar is increasingly been used as a soil amendment to improve water-holding capacity, reduce nutrient leaching, increase soil pH, and also as a means to reduce contamination through sorption of heavy metals or organic pollutants. The sorption behavior of three phenylurea herbicides (monuron, diuron and linuron) on five biochars (Enhanced Biochar, Hog Waste, Turkey Litter, Walnut Shell and Wood Feedstock) and an agricultural soil (Yolo silt loam) was investigated using a batch equilibration method. Sorption isotherms of herbicides to biochars were well described by the Freundlich model (R2 = 0.93–0.97). The adsorption KF values ranged from 6.94 to 1306.95 mg kg?1 and indicated the sorption of herbicides in the biochars and Yolo soil was in the sequence of linuron > diuron > monuron and walnut shell biochar > wood feedstock biochar > turkey litter biochar > enhanced biochar > hog waste biochar > Yolo soil. These data show that sorption of herbicides to biochar can have both positive (reduced off-site transport) and negative (reduced herbicide efficacy) implications and specific biochar properties, such as H/C ratio and surface area, should be considered together with soil type, agriculture chemical and climate condition in biochar application to agricultural soil to optimize the system for both agricultural and environmental benefits.  相似文献   
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水中利谷隆氯化降解动力学和消毒副产物生成特性   总被引:1,自引:1,他引:0  
凌晓  胡晨燕  程明  谷建 《环境科学》2015,36(5):1668-1673
采用常用消毒剂次氯酸钠对含氮除草剂利谷隆开展了氯化降解实验研究,系统考察了加氯量、p H值、加Br-量以及温度对降解效果的影响,分析了氯化反应过程中消毒副产物生成特性.结果表明,次氯酸钠对利谷隆的氧化降解过程符合二级反应动力学;p H值对该降解反应影响较大,当p H值为7时反应速率最快,其中HOCl、OCl-与利谷隆的基元反应速率常数分别为4.84×102L·(mol·h)-1和3.80×102L·(mol·h)-1.在添加溴离子时,反应速率随着溴离子的加入逐渐减小.改变温度时,反应速率随着温度的增加而逐渐增大.利谷隆在氯化降解过程中可产生三氯甲烷、二氯乙腈、三氯硝基甲烷、卤代丙酮等多类型消毒副产物.在不同p H值和添加溴离子条件下,消毒副产物种类与浓度会出现显著差异.  相似文献   
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