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111.
One hundred forty seven samples of bovine milk were collected from 14 districts of Haryana, India during December 1998–February 1999 and analysed for the presence of organochlorine pesticide (OCPs) residues. ∑HCH, ∑DDT, ∑endosulfan and aldrin were detected in 100%, 97%, 43% and 12% samples and with mean values of 0.0292, 0.0367, 0.0022 and 0.0036 μg/ml, respectively. Eight percent samples exceeded the maximum residue limit (MRL) of 0.10 mg/kg as recommended by WHO for ∑HCH, 4% samples of 0.05 mg/kg for α-HCH, 5% samples of 0.01 mg/kg for γ-HCH, 26% samples of 0.02 mg/kg for β-HCH as recommended by PFAA and 24% samples of 0.05 mg/kg as recommended by FAO for ∑DDT. Concentrations of β-HCH and p,p′-DDE were more as compared to other isomers and metabolites of HCH and DDT.  相似文献   
112.
研究了湖北省潜江市农村6类食品中农药的残留情况,采样测定结果表明,在被检食品中有机氯农药污染普遍存在,但残留量均低于最大残留限量(MRL),以植物油残留量为最大;有机磷农药残留只在蔬菜中检出,检出率以根菜类为最大,叶菜类次之,果菜类和花菜类最小;菊酯类农药残留较少;杀菌剂多菌灵残留未检出。  相似文献   
113.
研究在小区试验条件下,施用耐氨固氮型的催娩克氏菌和阴沟肠杆菌混合菌剂对蔬菜生长和产量的影响。结果表明,施用耐氨固氮菌可促进蔬菜生长,提高产量并改善品质,供试蔬菜的平均增产率达20%,增产效果明显。  相似文献   
114.
蔬菜地土壤有效态重金属提取方法的比较   总被引:7,自引:0,他引:7  
实地采集土壤进行盆栽试验,研究用5种提取剂提取的土壤有效态重金属含量与大白菜吸收量间的关系。结果表明,采用化学提取方法测得的可提取态重金属含量比重金属总量更能有效预测大白菜吸收的重金属量,并以CaC l2和NH4OAc 2种提取剂最为有效。将土壤重金属总量与pH值2项指标结合起来考虑可较好地预测大白菜对土壤重金属的吸收。  相似文献   
115.
放射性碳同位素加速器质谱(ASM14C)测年法是湖泊沉积物定年的主要方法,并且是全新世年代学研究的热点。随着对全新世古气候与环境变化研究的深入,选取不同介质定年可能对年代模型的准确性造成误差,进而影响到气候指标的解译。本文选取贵州东北部梵净山九龙池沉积物中树枝、树叶、树皮、种子等植物残体和全样有机质作为测年介质,利用ASM14C进行定年。结果表明,相比全样有机质,使用植物残体定年可以在一定程度上避免碳库效应的影响。但相比于原位沉积且生长年限较短的叶片,树枝的定年结果偏老,不是一种理想的定年介质。另外,根据定年结果及总有机碳含量重建了全新世九龙池的碳累积速率,发现碳累积速率可以指示该地区亚洲夏季风强度的变化历史。  相似文献   
116.
菜园土壤的理化性质和微生物生态特征与种植年限的关系   总被引:9,自引:2,他引:9  
为了研究菜园土壤生态系统的演化,在广州白云区采集共计64个不同种植年限的菜园土壤样本。对土壤丰要物理化学性质和土壤微生物生态特征进行分析,结果表明:土壤粘粒和微网粒含量、土壤全磷、全钾的含量随菜园土的种植年限而增加;呼吸商则随年限升高,土壤细菌/真菌、放线菌/真菌亦有升高的趋势,而微生物碳氮比、土壤微生物商、微生物氮/全氮随年限降低;种植10a左右菜园土壤的Shannon多样性指数和AWCD值最低,40a土壤最高,80a以上土壤的微生物多样性指标有所降低,表明种植80a后的老菜园土壤微生物生态系统有退化的迹象。  相似文献   
117.
成都城区蔬菜地土壤中农药残留及其分布特征   总被引:1,自引:0,他引:1  
采用GC-ECD检测、GC/MS-MS确证的方法对成都城区14个区县蔬菜地土壤中23种有机氯农药(OCPs)进行分析,以揭示OCPs的残留现状及其分布特征。结果表明,OCPs残留水平在不同区县间差异很大,变化范围20.18~104.33μg.kg-1之间,近郊区县(双流、龙泉驿、郫县、新都、温江)远低于边缘区县。被检出的18种OCPs中,DDTs、HCHs检出率最高(100%),残留水平为16.11~99.51、1.31~9.34μg.kg-1,分别占OCPs残留总量质量分数的87.68%、8.15%;六氯苯(HCB)次之(90%);灭蚁灵、环氧七氯、硫丹Ⅰ和γ-氯丹也有不同程度的检出(44.29%~47.14%),主要分布在近郊区县;艾氏剂、狄氏剂、异狄氏剂、毒杀芬的检出率较低(32.86%~37.14%),多分布于彭州、都江堰、大邑、崇州等地。土壤中OCPs的各种异构体、代谢物变化规律显示,DDTs、HCHs残留主要源于早期的使用或大气输入,但不排除金堂、青白江、新津地区近期可能有新的DDTs输入,崇州、彭州、都江堰、大邑地区可能有HCHs输入。  相似文献   
118.
果皮、菜叶混合垃圾的蚯蚓堆制处理   总被引:8,自引:0,他引:8  
在果皮、菜叶混合垃圾中,加入不同比例木屑调节C/N比值和含水量后,接种赤子爱胜蚓(Eisenia foetida)进行室内堆制处理,研究适宜含水量、接种密度和温度条件下蚯蚓的生长和繁殖特性以及堆制产物的化学性状。结果表明:蚯蚓堆制处理明显加速有机质矿化,促进有机物料降解,提高堆制产物全N量,降低堆制产物有机C含量和C/N比值。加入木屑虽然在一定程度上抑制了蚯蚓的生长和繁殖,但是,0~30d时25%和40%木屑堆制处理中赤子爱胜蚓生长良好,繁殖较旺盛。相关分析表明,接种蚯蚓并加入25%~40%木屑对促进果皮、菜叶垃圾降解以及提高和改善其化学性状是有效可行的,有利于废弃物的减量化、无害化和资源化。  相似文献   
119.
The aim of the research is to evaluate pesticide residue contamination of fresh and frozen fruits and vegetables, agricultural raw material, purchased from Polish farmers for production of frozen fruits and vegetables, and the estimation of the multiresidue method effectiveness expressed as the proportion of pesticides detected in food samples to the total number of pesticides analyzed by multiresidue methods. A total of 144 samples (of black currants, red currants, raspberries, cherries, strawberries, blackberries, cauliflowers and broccoli) were analyzed using LC-MS/MS method for the determination of 60 pesticides. QuEChERS extraction, matrix-matched calibration and dynamic multiple reaction monitoring method were used. Residues of 15 compounds, mainly fungicides and insecticides, were detected in 46 samples. The percentage of samples with residues above the maximum residue levels (MRL) was 15%, whereas samples with residues below MRL were 17%. A total of 13 samples contained more than one pesticide residue. Pesticide residues were detected most often in samples of black currants (50%), broccoli (36.4%), raspberries (29%) and red currants (21.8%). The most frequently detected pesticides were carbendazim and acetamiprid. The proportion of pesticides detected during our study to the total number of analyzed pesticides amounted to 25%. It was compared to literature findings. For three fourth of multiresidue methods, the proportion was below 50% for methods developed for the analysis of less than 100 pesticides, and below 30% for methods developed for the analysis of more than 100 pesticides. It appears that a lot of efforts and means is lost on pesticides never or rarely detected in examined samples. The workload and cost effectiveness of the development and application of multiresidue methods along with the range of pesticides covered by the method should be carefully and thoroughly considered anytime when a new method or workflow is developed. Including non-targeted screenings in pesticide residue control seems to be an alternative worth considering.  相似文献   
120.
Phytoremediation of polyaromatic hydrocarbons, anilines and phenols   总被引:12,自引:0,他引:12  
Phytoremediation technologies based on the combined action of plants and the microbial communities that they support within the rhizosphere hold promise in the remediation of land and waterways contaminated with hydrocarbons but they have not yet been adopted in large-scale remediation strategies. In this review plant and microbial degradative capacities, viewed as a continuum, have been dissected in order to identify where bottle-necks and limitations exist. Phenols, anilines and polyaromatic hydrocarbons (PAHs) were selected as the target classes of molecule for consideration, in part because of their common patterns of distribution, but also because of the urgent need to develop techniques to overcome their toxicity to human health. Depending on the chemical and physical properties of the pollutant, the emerging picture suggests that plants will draw pollutants including PAHs into the plant rhizosphere to varying extents via the transpiration stream. Mycorrhizosphere-bacteria and -fungi may play a crucial role in establishing plants in degraded ecosystems. Within the rhizosphere, microbial degradative activities prevail in order to extract energy and carbon skeletons from the pollutants for microbial cell growth. There has been little systematic analysis of the changing dynamics of pollutant degradation within the rhizosphere; however, the importance of plants in supplying oxygen and nutrients to the rhizosphere via fine roots, and of the beneficial effect of microorganisms on plant root growth is stressed. In addition to their role in supporting rhizospheric degradative activities, plants may possess a limited capacity to transport some of the more mobile pollutants into roots and shoots via fine roots. In those situations where uptake does occur (i.e. only limited microbial activity in the rhizosphere) there is good evidence that the pollutant may be metabolised. However, plant uptake is frequently associated with the inhibition of plant growth and an increasing tendency to oxidant stress. Pollutant tolerance seems to correlate with the ability to deposit large quantities of pollutant metabolites in the 'bound' residue fraction of plant cell walls compared to the vacuole. In this regard, particular attention is paid to the activities of peroxidases, laccases, cytochromes P450, glucosyltransferases and ABC transporters. However, despite the seemingly large diversity of these proteins, direct proof of their participation in the metabolism of industrial aromatic pollutants is surprisingly scarce and little is known about their control in the overall metabolic scheme. Little is known about the bioavailability of bound metabolites; however, there may be a need to prevent their movement into wildlife food chains. In this regard, the application to harvested plants of composting techniques based on the degradative capacity of white-rot fungi merits attention.  相似文献   
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