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121.
Wang X  Liu X  Wang H  Dong Q 《Chemosphere》2007,67(11):2156-2162
A species of bacteria that is capable of utilizing imazaquin as the sole carbon source was isolated from soil with repeated imazaquin applications, and was identified as Arthrobacter crystallopoietes (designated as strain “WWX-1”). This isolate degrades imazaquin as high as 200 μg ml−1, and the estimated dissipation half-lives increased from 1.51 d for the treatment at 50 μg ml−1 to 4.75 d for 200 μg ml−1. Optimal growth of WWX-1 in mineral salt medium with 50 μg ml−1 imazaquin was obtained at 35 °C and a pH of 5.0. Growth of WWX-1 was also observed in mineral salt medium with the addition of other imidazolinone herbicides such as imazethapyr and imazapyr, but not with different classes of herbicides such as metsulfuron-methyl. Two imazaquin metabolites were detected, and spectral analysis with HPLC–MS, 1H NMR, and IR revealed one metabolite with a molecular weight (MW) of 199 as quinoline-2,3-dicarboxylic anhydride. We propose that A. crystallopoietes (WWX-1) could serve as an efficient biodegradation system for remediation of water and soils that are heavily contaminated with imazaquin or other structurally similar chemicals.  相似文献   
122.
Huang L  Dong W  Zhang R  Hou H 《Chemosphere》2007,66(5):833-840
In this paper, we addressed the utilization of photochemical method as an innovative technology for the destruction and removal of two potent greenhouse gases, SF(6) and SF(5)CF(3). The destruction and removal efficiency (DRE) of the process was determined as a function of excitation wavelength, irradiation time, initial ratio of acetone to SF(5)X (X represented F or CF(3)), initial SF(5)X concentration, additive oxygen and water vapor concentration. A complete removal was achieved by a radiation period of 55min and 120min for SF(6)-CH(3)COCH(3) system and SF(5)CF(3)-CH(3)COCH(3) system respectively under 184.9nm irradiation. Extra addition of water vapor can enhance DRE by approximately 6% points in both systems. Further studies with GC/MS and FT-IR proved that no hazardous products such as S(2)F(10), SO(2)F(2), SOF(2), SOF(4) were generated in this process.  相似文献   
123.
苯酚类化合物对日本长腿蛙蝌蚪的急性毒性与构效关系研究   总被引:14,自引:0,他引:14  
利用半静态法测定了21种取代苯酚类化合物对日本长腿蛙蝌蚪的24h 急性致死毒性(24h-LC50),并进行了定量结构活性相关研究.研究表明:大部分酚类化合物的毒性表现为极性麻醉作用.影响毒性的因素有化合物的疏水性、电性及离解行为等.  相似文献   
124.
文章对我国污染预防现状进行了评估,并对如何进一步实施污染预提出初步建议,形成污染预防框架行动计划,试图人们从行为和观念转向污染预防提供方向。框架行计划着重从政策和法律,组织和人力资源,研究和开发,污染预防活动和实践到评估、推广等方面进行了建议。  相似文献   
125.
中国煤电和核电的环境影响与健康风险比较   总被引:1,自引:0,他引:1  
将煤电与核电的环境影响和健康风险从全燃料链角度进行比较 ,结果表明 ,煤电燃料链的环境影响和健康风险比核电燃料链大。  相似文献   
126.
提出了以GM(1,1)模型拟合发展的趋势、傅里叶变换撮周期分量AR(p)模型模拟随机过程的集成预报模型,并用于黄河三角洲人工草场群落土壤盐分的定量研究中,经理论和应用检验证明:该模型能以较高的精度模拟或预报土壤盐分在较长时期内的动态变化过程,方法简单,计算工作量小,并优于传统的单一预报模型。  相似文献   
127.
近些年来,围堰、跨区域调水、清淤等人类活动导致太湖中的岛屿面积的变化及其边界的迁移。基于Landsat遥感影像探究太湖内岛屿面积的变化趋势及边界的迁移方向,一定程度上反映人为因素对岛屿动态变化的的影响,进而指导太湖治理工作。通过波段分析、非监督分类以及分类后处理的方法从Landsat影像中提取岛屿信息,获得1984~2017年不同时期的岛屿面积和边界数据,并对岛屿面积和边界数据进行动态变化趋势的分析,最终结合从文献、年鉴和其他与太湖相关资料中总结的与太湖岛屿相关的人为活动信息分析引起太湖主要岛屿动态变化的原因。研究表明:小贡山、漫山岛和三山岛屿总面积均呈下降趋势,但下降程度与年际间波动幅度不同,岛屿面积变化的人为驱动因素可归纳为清淤和旅游开发,自然驱动因子为流水侵蚀;岛屿边界的迁移与"禁止围网养殖"、"湿地公园建设"等政策实施呈现显著相关性,且具体变化与政策颁布之间存在时间上的滞后性。  相似文献   
128.
浅谈我国推行排污许可制度难点及对策   总被引:2,自引:2,他引:0  
我国排污许可制度推行已有二十余年,但由于在政策设计层面、技术支撑层面及配套保障层面尚有不足之处,排污许可制度在推行过程中遇到很多阻碍,排污许可制度的应用范围、实施效果和改革举措实际落地都还不尽如人意,依然处于难以推广的境地。本文基于对以上各层面存在问题的深入分析,进而指出目前阻碍排污许可制度推行的难点问题及具体成因,其中难点问题主要包括专项法律法规缺失、管理要求落地难、各方权责落实难、多套数据并行、排放标准滞后、部分行业标准缺失、与环境目标未建立响应关系、管理方式落后、数据支撑和人员配备不足等方面。根据前述问题的论证,本文相应提出了推进排污许可制度改革的各项对策措施,并建议排污许可制度应形成上下联动的工作格局,进一步夯实技术支撑基础和完善配套保障措施,以期助力排污许可制度各项改革举措的实际落地,更好地推进排污许可制度的有效实施,建立系统完整、权责清晰、监管有效的管理格局,最终实现排污许可"一证式"管理模式。  相似文献   
129.
Biochars’ properties will change after application in soil due to the interactions with soil constituents, which would then impact the performance of biochars as soil amendment. For a better understanding on these interactions, two woody biochars of different surface areas (SA) were physically treated with aluminum oxide (Al-oxide) to investigate its potential influence on biochars’ sorption property. Both the micropore area and mesopore (17~500 Å in diameter) area of the low-SA biochar were enhanced by at least 1.5 times after treatment with Al-oxide, whereas the same treatment did not change the surface characteristics of the high-SA biochar due partly to its well-developed porosity. The enhanced sorption of the pesticide isoproturon to the Al-oxide-treated low-SA biochar was observed and is positively related to the increased mesopore area. The desorption hysteresis of pesticide from the low-SA biochar was strengthened because of more pesticide molecules entrapped in the expanded pores by Al-oxide. However, no obvious change of pesticide sorption to the high-SA biochar after Al-oxide treatment was observed, corresponding to its unchanged porosity. The results suggest that the influence of Al-oxide on the biochars’ sorption property is dependent on their porosity. This study will provide valuable information on the use of biochars for reducing the bioavailability of pesticides.  相似文献   
130.
Odor pollution is a big environmental problem caused by large-scale livestock production in China, and developing a practical way to reduce these odors is pressing. In this study, a combination of 0.2–1.0 U/mL lignin peroxidase (LiP) and one of three peroxides (H2O2, CaO2, 2Na3CO3·3H2O2) was examined for its efficiency in reducing the release of eight chemicals (propionic acid, isobutyric acid, isocaproic acid, isovaleric acid, phenol, p-cresol, indole, and skatole), NH3, H2S, and odor intensity from pig manure. The results showed an approximately 90% reduction in p-cresol, 40–60% reduction in odor intensity, 16.5–40% reduction in indolic compounds, and 25–40% reduction in volatile fatty acids. Being the electron acceptors of LiP, 2Na3CO3·3H2O2 and CaO2 performed better than H2O2 in reducing the concentration of eight chemicals, NH3, H2S, and odor intensity from pig manure. The effect of deodorization can last for up to 72 hr.

Implications: In China, one of the major environmental problems caused by confined feeding is odor pollution, which brings a major threat to the sustainability, profitability, and growth of the livestock industry. To couple the LiP with the electron acceptors, a low–cost, simple, and feasible method for odor removal was established in this study. Based on the study results, a practical treatment method was provided for odor pollution and supply the farm operators a more flexible time to dispose treated manure.  相似文献   

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