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11.
王书  李攀 《环境工程学报》2018,12(11):3062-3068
采用水热法制备的铜铈复合氧化物能够直接催化降解甲基橙,探究了铜铈摩尔比、pH、投加量对催化降解效果的影响。研究发现,pH=3.5、Cu/Ce=1、投加量1.0 g·L-1时,甲基橙的降解效果最佳。在0.5~1.0 g·L-1之间时,随着投加量的增加,甲基橙的脱色速率加快,脱色率也有所增加。随着溶液中的pH逐渐下降,甲基橙脱色率有所增加,pH=3.5时,甲基橙脱色率最高;而进一步降低pH至3.0时,脱色率反而下降,可能是强酸腐蚀了金属氧化物表层,降低了甲基橙的降解效果。甲基橙主要因其被降解而脱色,促使甲基橙脱色的活性物质为·OH,且与体系中的分子氧有关,反应过程消耗一定的H+。  相似文献   
12.
Cyclic volatile methyl siloxanes (cVMS) are high volume production chemicals used in a wide range of industrial and consumer products. Three cVMS compounds (D4, D5, and D6) have and are undergoing environmental risk evaluations in several countries and have been proposed for legal regulation in Canada. As interest in monitoring concentrations of these chemicals in the environment increase, there is a need to evaluate the analytical procedures for cVMS in biological matrices in order to assess the quality of data produced. The purpose of this study was to determine laboratory testing performance for measuring residues of D4, D5, and D6 in a standard set of fish homogenate samples and to estimate limits of determination for each substance. The samples sent to each laboratory consisted of homogenized whole body tissues of hatchery raised rainbow trout which were fed food fortified with D4, D5, and D6 (dosed) and trout that were fed standard food rations (control). The participants analyzed each sample using their analytical method of choice using their own standards and procedures for quantification and quality control. With a few exceptions, participating laboratories generated comparable results for D4, D5, and D6 in both the dosed and control samples having z-scores between 2 and −2. Method detection limits for the whole fish matrix were on average 2.4 ng g−1 ww for D4, 2.3 ng g−1 ww for D5, and 1.8 ng g−1 ww for D6.  相似文献   
13.
Das S  Ghosh A  Adhya TK 《Chemosphere》2011,84(1):54-62
Combination of divergent active principles to achieve broad-spectrum control is gaining popularity to manage the weed menace in intensive agriculture. However, such application could have non-target impacts on the soil processes affecting soil ecology and environmental interactions. A field experiment was conducted to investigate the impact of separate and combined applications of herbicides bensulfuron methyl and pretilachlor on the emission of N2O and CH4, and related soil and microbial parameters in a flooded alluvial field planted to rice cv Lalat. Single application of the herbicide bensulfuron methyl or pretilachlor resulted in a significant reduction of N2O and CH4 emissions while the combination of these two herbicides distinctly increased N2O and CH4 emissions. Cumulative N2O emissions (kg N2O-N) followed the order of bensulfuron methyl (0.35 kg ha−1) < pretilachlor (0.36 kg ha−1) < control (0.45 kg ha−1) < bensulfuron methyl 0.6% + pretilachlor 6.0% single dose (0.49 kg ha−1) < bensulfuron methyl 0.6% + pretilachlor 6.0% double dose (0.54 kg ha−1). Cumulative CH4 emissions (kg CH4), on the other hand, followed the order of bensulfuron methyl (47.89 kg ha−1) < pretilachlor (73.17 kg ha−1) < bensulfuron methyl 0.6% + pretilachlor 6.0% single dose (93.50 kg ha−1) < control (106.54 kg ha−1) < bensulfuron methyl 0.6% + pretilachlor 6.0% double dose (124.67 kg ha−1). The inhibitory effect of separate application of herbicides bensulfuron methyl 0.6% and pretilachlor 6.0% on N2O emission was linked to lower mineral N, lower denitrifying and nitrifying activity and low denitrifier and nitrifier populations. Inhibitory effect on CH4 emission, on the contrary, was linked to prevention in the drop of redox potential, lower readily mineralizable carbon (RMC) and microbial biomass carbon (MBC) contents as well as lower methanogenic and higher methanotrophic bacterial population. Admittedly, stimulatory effect of combined application of herbicides bensulfuron methyl 0.6% and pretilachlor 6.0% at double dose on N2O and CH4 emission was related to reversal of the identified indicators of inhibition. Results indicate that while individual application of herbicides bensulfuron methyl 0.6% or pretilachlor 6.0% can reduce N2O and CH4 emission from flooded soil planted to rice, their combined application at normal dose can keep the emission at a comparatively lower level with significantly higher grain yield as compared to the herbicides applied alone.  相似文献   
14.
为了寻找甲基汞神经毒性检测和评价效应指标以及探讨甲基汞神经毒性分子机制,对大鼠进行氯化甲基汞(MMC)急性暴露(对照组为0.9%生理盐水、暴露组浓度为0.05mg/kg),20min后对大鼠进行生理生化指标和即早基因的检测,大鼠大脑中枢神经系统的神经递质一氧化氮合酶活力采用一氧化氮合酶(NOS)测定试剂盒检测;自由基脂质过氧化产物丙二醛含量采用硫代巴比妥酸(TBA)比色法检测;即刻早期基因c-fos表达的变化采用免疫组化方法检测。结果表明,在暴露氯化甲基汞(MMC)20min后,大鼠大脑中枢神经系统的一氧化氮合酶活力、自由基脂质过氧化产物丙二醛含量以及即刻早期基因(IEG)c-fos蛋白阳性表达数量都有提高。但其中一氧化氮合酶活力及自由基脂质过氧化产物丙二醛含量同对照组相比没有显著性差异;而即刻早期基因c-fos的阳性表达同对照组相比有极显著性差异(P<0.01)。据此可以推测,即刻早期基因能作为甲基汞神经毒性检测和评价效应指标,一氧化氮合酶、丙二醛和即刻早期基因在甲基汞神经毒性过程中具有重要作用。  相似文献   
15.
研究了表面活性剂羧甲基纤维素钠(carboxyl methyl cellulose,CMC)对土壤中石油污染物的增溶作用。通过批实验,对比研究了CMC和十二烷基苯磺酸钠SDBS 2种表面活性剂的增溶效果,探究了CMC浓度、pH、盐度及回用次数对土壤中石油烃增溶效果的影响。研究结果表明,当CMC浓度为0.5%,增溶时间为24 h时,对TPHs浓度为17 695 mg·kg-1的污染土样,TPHs洗脱率高达60%以上。碱性环境有利于石油烃的洗脱,酸性体系会抑制石油烃的洗脱;增溶作用随盐度的增大而显著增大。在利用CMC对污染土壤进行增溶洗脱时,对于TPHs高浓度污染土壤,可以选择将其洗脱液回用1次或者2次;对于TPHs较低浓度污染土壤,可以选择将其洗脱液回用于较高浓度的污染土壤。  相似文献   
16.
以粉煤灰(FA)为原料,采用水热晶化一步法制备了NaP1型沸石(ZFA),对合成产物的结构进行了表征,并采用阳离子表面活性剂十六烷基三甲基溴化铵(CTAB)对其进行改性。通过静态吸附实验,研究了改性后NaP1型沸石(MZFA)对水溶液中甲基橙的吸附特性,从动力学角度探讨了吸附机理。结果表明,在所研究的浓度条件下,改性NaP1型沸石对甲基橙的吸附符合Langmuir等温吸附方程,在25℃时,静态饱和吸附量(Qm)为64.76 mg/g。动力学分析表明,改性NaP1型沸石对溶液中甲基橙的吸附符合准二级动力学模型。  相似文献   
17.
Two industrial sites were investigated based on years of available hydrogeologic information and monitoring data for soil and groundwater. Collected data were forensically evaluated using age-dating and fingerprinting methods. The previous business uses of the project sites were as a gas station, laundry/dry-cleaning service, and car wash with petroleum underground storage tanks (USTs). As a result, these sites were exposed to a number of toxic contaminants at relatively high concentrations. Source control was necessary for successful remediation and the ultimate removal of the remaining compounds from these industrial sites. Although contaminated soil around the source was excavated during the remedial action and the high concentrations of contaminants were reduced, typical groundwater contaminants such as petroleum hydrocarbons as gasoline (TPH-G), benzene, toluene, ethylbenzene, xylenes (BTEX), and oxygenates including methyl tert-butyl ether (MTBE), diisopropyl ether (DIPE), ethyl tert-butyl ether (ETBE), tert-amyl methyl ether (TAME), and tert-butyl alcohol (TBA) were persistently found at the studied sites around the source points. The plume and concentration of contaminants had changed their shapes and strength for all monitoring periods. Thus, additional source control seems to be a requirement for the complete removal of source contamination, which must be ascertained with groundwater and soil monitoring on a regular time base. For the study sites, monitored natural attenuation was relatively feasible for the long-term plan; however, it did not offer a perfect remediation solution for an ultimate goal because of residual toxic compounds that might have affected the surrounding residential areas at higher concentrations than their health limits. Therefore, as a remediation strategy, the combination of clean-up technology and natural attenuation with monitoring activities are more highly recommended than either clean-up or natural attenuation used separately.  相似文献   
18.
通过对水样、沉积物和背角无齿蚌中汞含量的测定,研究杭埠-丰乐河汞的污染特征,并利用单项污染指数法、地累积指数法评估了汞的生态风险.结果表明:水样总汞的浓度为0.04~0.20μg/L(均值为0.10μg/L),H5、H9、F2、S4和S5处水样中汞含量超过地表水Ⅲ类限值.沉积物中汞、甲基汞含量分别为29.13~251.49μg/kg(均值为65.42μg/kg)和0.22~3.31μg/kg(均值为0.68μg/kg),H5、H9和F2处沉积物中汞为轻度污染,S4、S5为偏中度污染,工业排污是主要污染来源.背角无齿蚌中汞、甲基汞含量分别为101.34~171.15μg/kg(干重)和54.22~89.63μg/kg(干重),均符合GB18406.4-2001中汞的限量要求.背角无齿蚌对汞和甲基汞均有明显的富集,其组织对汞的积累也具有明显选择性(浓度高低依次为:外套膜 > 内脏 > 腮和肌肉).背角无齿蚌中汞含量与水和沉积物中汞含量相关性良好,表明背角无齿蚌作为指示生物其生物监测结果可进一步验证水和沉积物中的汞污染水平.  相似文献   
19.
交联壳聚糖-CdS颗粒可见光催化脱色甲基橙研究   总被引:1,自引:0,他引:1  
利用壳聚糖对金属离子的配位络合作用和吸附性能,模拟生物矿化仿生制备交联壳聚糖/CdS复合粒子。以甲基橙为处理对象,氙灯模拟可见光,研究了该复合材料对甲基橙的降解脱色性能。用Langmuir-Hinshelwood方程从动力学的角度,考察了不同催化剂浓度、甲基橙的初始浓度、反应体系的pH值、外加无机阴离子等对甲基橙降解脱色的影响。结果表明,该复合材料的吸附性能和光催化活性产生的协同作用能较有效促进甲基橙染料的脱色,在低质量浓度条件下可见光催化过程为假一级反应。光催化剂的最佳用量为1.5g/L,甲基橙降解的最佳pH为4.0。Cl-和Br-均对MO的光催化脱色起抑制作用,而NO3-的添加明显促进MO的光催化速率。  相似文献   
20.
纤维素胺基树脂的制备及脱色性能评价   总被引:1,自引:0,他引:1  
用氯化亚砜改性微晶纤维素,利用二乙烯三胺对氯化纤维素进行胺基取代制得纤维素胺基树脂。通过正交试验确定纤维素胺基树脂的最佳制备条件;红外分析以及X-衍射可知:氯化纤维素改性取代胺基得到纤维素胺基树脂。纤维素胺基树脂有较好的脱色功能。对甲基橙脱色条件为:吸附时间6 h,吸附温度为30℃,甲基橙初始浓度取为20 mg/L,树脂投加量为0.02 g。  相似文献   
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