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11.
农药杀虫单的稻田流失规律研究   总被引:2,自引:0,他引:2  
通过测坑、人工降雨等手段,对水溶性农药杀虫单的稻田消解动态、渗漏流失和径流流失等进行了研究。结果表明,(1)无水稻时,杀虫单在稻田水中消解的半衰期为0.76d;分蘖初期,杀虫单在稻田水中降解的半衰期为1.02d;平均为0.89d。(2)杀虫单的渗漏流失量在用药后8d内可达总用药量的7%—10%,平均为8.48%。(3)极端情况下,用药当天如果遇暴雨(50mm雨量),杀虫单的径流流失量将达到用药量的30%左右。杀虫单的渗漏损失不可避免,故其流失控制应从径流损失着手,尽量避免在可能有暴雨的当天或雨前1—2d用药。  相似文献   
12.
Ornamental horticulture has been identified as an important threat to plant biodiversity and is a major pathway for plant invasions worldwide. In this context, the family Cactaceae is particularly challenging because it is considered the fifth most threatened large taxonomic group in the world; several species are among the most widespread and damaging invasive species; and Cactaceae is one of the most popular horticultural plant groups. Based on the Convention on International Trade in Endangered Species of Wild Flora and Fauna and the 11 largest online auction sites selling cacti, we documented the international cactus trade. To provide an in‐depth look at the dynamics of the industry, we surveyed the businesses involved in the cactus trade in South Africa (a hotspot of cactus trade and invasions). We purchased seeds of every available species and used DNA barcoding to identify species to the genus level. Although <20% of this trade involved threatened species and <3% involved known invasive species, many species were identified by a common name. However, only 0.02% of the globally traded cacti were collected from wild populations. Despite a large commercial network, all South African imports (of which 15% and 1.5% were of species listed as threatened and invasive, respectively) came from the same source. With DNA barcoding, we identified 24% of the species to genus level. Based on our results, we believe that if trade restrictions are placed on the small proportion of cacti that are invasive and there is no major increase in harvesting of native populations, then the commercial trade in cactus poses a negligible environmental threat. However, there are currently no effective methods for easily identifying which cacti are traded, and both the illicit harvesting of cacti from the wild and the informal trade in invasive taxa pose on‐going conservation challenges.  相似文献   
13.
不同国家基于健康风险的土壤环境基准比较研究与启示   总被引:15,自引:7,他引:8  
20世纪90年代以来,许多发达国家颁布了基于健康风险的土壤环境标准及基准背景技术文件,为发展中国家启动标准制订和开展基准研究提供了重要的方法学参考.然而,由于各国在环境立法框架、基准推导过程、环境气候特征、土壤类型、人群生活方式与习惯等方面的不同,导致其基准名称、基准功能、保护受体以及基准取值等存在较大的差异.本文在综述基于健康风险的土壤环境基准科学内涵与基本特征的基础上,对不同国家场地土壤环境基准的名称、功能及基准值的差异进行了比较研究,从土地利用类型划分、暴露情景和暴露途径设定、致癌物可接受风险水平选择以及人体暴露参数确定等4个方面,对不同国家制定场地土壤环境基准的关键技术和影响因素进行了总结分析,探讨了借鉴国外经验考虑区域差异制定我国土壤环境基准的对策与方略,并指出了当前我国制定场地土壤环境基准和标准面临的困难和挑战.  相似文献   
14.
对不同pH下Chlortoluron氯化后生成的非挥发性中间产物和挥发性产物进行了研究。对Chlortoluron氯化后的非挥发性中间产物的UPLC-ESI-MS鉴定发现了m/z为213、229、263、281、和247的离子,分析表明它们分别是Chlortoluron及其一羟基、一氯羟基、二氯和一氯衍生物。对Chlortoluron氯化后的挥发性产物采用吹扫补集-GC-MS进行分析鉴定发现了三氯甲烷(CF)、二氯硝基甲烷(DCNM)、二氯乙腈(DCAN)、1,1-2-二氯丙酮(1,1-DCP)、三氯硝基甲烷(TCNM)和1,1,1-2-三氯丙酮(1,1,1-TCP)六种消毒副产物。根据本研究中的实验结果分析和推测,在Chlortoluron的氯化过程中,苯环上和脲基链上都经历了羟基化、氧化和取代反应,接着苯环被打破,随后生成了更为有害的副产物,基于此,本文推断了Chlortoluron的氯化降解途径。  相似文献   
15.
金属矿山废弃地类型划分与生态退化特征   总被引:3,自引:0,他引:3  
王超  毕君 《环境保护科学》2012,38(1):41-44,49
由于矿山开采中地表结构扰动、环境污染等因素导致矿山废弃地生态系统极度退化。通过对其产生原因和占地现状、特征的分析,将金属矿山废弃地划分为5大类15个类型,对其生态退化特征进行了评价;其中地表结构的不稳定性、土壤和植被的缺失及重金属离子污染是生态退化的主要限制性特征,也是生态恢复的难点和重点,并对不同类型金属矿山废弃地的生态治理措施进行了探讨。  相似文献   
16.
Adsorption and degradation of levonorgestrel (LNG) by two hydrophytes, Cyperus alternfolius (CA) and Eichhornia crassipes (EC), were investigated under light-shielding conditions in the water column. Variations of LNG concentrations in water, plant root epidermis, root, stem and leaf of the plants were analyzed. The results indicated that the removal efficiency of LNG by hydrophytes over the period of 50 days was significantly greater than the blank control (p 〈 0.05), with the removal rates of 79.80%± 3.10% and 78.86% ± 2.55% for CA and EC, respectively. Compared with bio-adsorption, bio-conversion of LNG was found to be the dominant elimination pathway, evidenced by relatively high conversion rates (77.31% ±2.68% for CA and 77.82% ± 2.95% for EC), while the adsorption rates were lower (1.77% ± 0.90% for CA and 1.05% ± 0.40% for EC). The bio-adsorption and conversion of LNG showed no significant differences between the two hydrophytes. Additionally, the mineralization on root epidermis played an important role in the reduction of LNG in water.  相似文献   
17.
采用富集培养技术从磺酰脲类除草剂污染土壤中筛选得到1株降解噻吩磺隆的细菌,命名为ZWS13.经形态特征和16S rRNA基因序列分析,初步鉴定为葡萄球菌属(Staphylococcus sp.).采用HPLC研究了初始底物浓度、温度、接种量、pH等因素对菌株ZWS13降解噻吩磺隆的影响.结果表明,菌株ZWS13对噻吩磺隆的降解具有较广的底物浓度范围,在7 d内对初始浓度5.0~100.0 mg·L~(-1)噻吩磺隆的降解率达到60%以上;菌株ZWS13降解噻吩磺隆的较适pH为8.0,较适温度为40℃,较适接种量为1%;其中,菌株培养温度为40℃时,菌株在10 d内对50.0mg·L~(-1)噻吩磺隆的降解率达到99%以上.降解谱测定结果表明,菌株对烟嘧磺隆、吡嘧磺隆和甲磺隆亦具有良好的降解效果.采用HPLC-MS分析确定了菌株对噻吩磺隆的5个降解产物,推测菌株对噻吩磺隆的降解途径主要为磺酰脲桥C—N键的断裂、脱甲基作用或脱酯作用的甲基丢失及三嗪环的开裂.研究表明,菌株ZWS13能够有效地降解噻吩磺隆,具有生物修复噻吩磺隆污染的潜力.  相似文献   
18.
从处理甲硫醚(DMS)和丙硫醇(PT)混合废气的生物滴滤塔中富集出一组能够有效降解甲硫醇(MT)的混合菌群,并对其特性进行了系列研究.结果表明,该混合菌群能有效降解MT,菌群较为适宜的生长和降解条件为30℃、p H=7.0,在该条件下能将初始浓度为20 mg·L~(-1)的MT在70 h内降解完全.添加酵母膏(YE)后,MT降解速率进一步提高,降解所需时间缩短10 h.利用高通量测序技术分析混合菌群的群落结构,发现其中优势菌属为Pseudomonas sp.、Thiobacillus sp.和Acinetobacter sp.,所占比例分别为33.78%、21.91%和17.01%.中间产物检测结果表明,混合菌群降解MT的过程中产生了甲醛、H_2S、二甲基二硫醚(DMDS)等物质,推断MT的降解途径可能有如下2条:(1)MT在MT氧化酶作用下形成甲醛和H2S,随后氧化为SO_4~(2-);(2)MT依次转化为DMDS、DMS、二甲基亚砜(DMSO)和二甲基砜(DMSO_2),最后经甲基磺酸(MSA)可生成SO_4~(2-).  相似文献   
19.
The benzonitriles dichlobenil, bromoxynil and ioxynil are important broad-spectrum or selective herbicides used in agriculture, orchards and public areas worldwide. The dichlobenil metabolite 2,6-dichlorobenzamide is the most frequently encountered groundwater contaminant in Denmark, which suggests that the environmental fate of these three structurally related benzonitrile herbicides should be addressed in detail. This review summarises the current knowledge on microbial degradation of dichlobenil, bromoxynil and ioxynil with particular focus on common features of degradation rates and pathways, accumulation of persistent metabolites and diversity of the involved degrader organisms.  相似文献   
20.
Nonylphenol polyethoxylates (NPEOs) are surfactants found ubiquitously in the environment due to widespread industrial and domestic use. Biodegradation of NPEOs produces nonylphenol (NP), an endocrine disruptor. Sewage sludge application introduces NPEOs and NP into soils, potentially leading to accumulation in soils and crops. We examined degradation of NP and nonylphenol-12-ethoxylate (NP12EO) in four soils. NP12EO degraded rapidly (initial half time 0.3-5 days). Concentrations became undetectable within 70-90 days, with a small increase in NP concentrations after 30 days. NP initially degraded quickly (mean half time 11.5 days), but in three soils a recalcitrant fraction of 26-35% remained: the non-degrading fraction may consist of branched isomers, resistant to biodegradation. Uptake of NP by bean plants was also examined. Mean bioconcentration factors for shoots and seeds were 0.71 and 0.58, respectively. Removal of NP from the soil by plant uptake was negligible (0.01-0.02% of initial NP). Root concentrations were substantially higher than shoot and seed concentrations.  相似文献   
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