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91.
X. Wei S. C. Wu X. P. Nie A. Yediler M. H. Wong 《Journal of environmental science and health. Part. B》2013,48(5):461-471
A pot trial was carried out to investigate the adverse effects of tetracycline (TC) on soil microbial communities, microbial activities, and the growth of ryegrass (Lolium perenne L). The results showed that the presence of TC significantly disturbed the structure of microbial communities and inhibited soil microbial activities in terms of urease, acid phosphatase and dehydrogenase (p < 0.05). Plant biomass was adversely influenced by TC, especially the roots with a reduction of 40% when compared with the control. Furthermore, TC decreased the assimilation of phosphorus by the plant although the concentration of phosphorus was increased by 20% due to decreased plant biomass. TC seemed to increase the concentration of dissolved organic carbon (by 20%) in soil. The findings implied that the agricultural use of animal manure or fishpond sediment containing considerable amounts of antibiotics may give rise to ecological risks. 相似文献
92.
The feed additive ractopamine hydrochloride was fortified at four concentrations into batch vials containing soils that differed in both biological activity and organic matter(OM).Sampling of the liquid layer for 14 days demonstrated that ractopamine rapidly dissipated from the liquid layer. Less than 20% of the fortified dose remained in the liquid layer after 4 hr,and recoveries of dosed ractopamine ranged from 8 to 18% in the liquid layer at 336 hr. Sorption to soil was the major fate for ractopamine in soil:water systems, i.e., 42%–51% of the dose at14 days. The major portion of the sorbed fraction was comprised of non-extractables; a smaller fraction of the sorbed dose was extracted into water and acetone, portions which would be potentially mobile in the environment. Partitioning coefficients for all soils suggested strong sorption of ractopamine to soil which is governed by hydrophobic interactions and cation exchange complexes within the soil OM. Ractopamine degradation was observed, but to mostly non-polar compounds which had a higher potential than ractopamine to sorb to soil. The formation of volatiles was also suggested. Therefore, despite rapid and extensive soil sorption,these studies indicated a portion of ractopamine, present in manures used to fertilize soils,may be mobile in the environment via water-borne events. 相似文献
93.
对黑水团水体光学特性进行研究,是利用遥感技术监测和评估黑水团事件的前提.针对2015年7月在太湖发生的黑水团现象,采集了太湖黑水团区(区域一)、蓝藻水华区(区域二)、清水区(区域三)共36个水样,对这3个区域的水体遥感反射率以及吸收特性进行对比分析.结果表明:1区域一水体的总颗粒物、色素颗粒物和非色素颗粒物吸收系数比区域二、区域三高出1~2倍,在400~500 nm之间,区域一CDOM吸收系数相比另外两个区域的水体高出2倍左右.导致黑水团区域水体具有很低的遥感反射率,被人眼感知时呈现为黑色;2黑水团区域水体M值低于滇池、巢湖和太湖的M值变化范围,说明黑水团中CDOM的腐殖酸含量较高.此外,叶绿素a浓度与CDOM在350 nm处吸收系数之间具有很好的相关性,表明蓝藻的降解可能是黑水团中CDOM的一个主要来源;3在380 nm之后,黑水团区域的水体总吸收以色素颗粒物占主导,但在短波350~380 nm处,CDOM对总吸收的贡献率高于色素颗粒物和非色素颗粒物. 相似文献
94.
海(咸)水混入是河口河水重要的地质过程,深刻地影响河水地球化学过程。本文系统采集夹河河口水样,分析海淡水混合过程的地球化学特征。结果表明,远离河口段(J10~J14)为淡水性质,主要受水-岩作用及人类活动等影响;近河口段(J1~J8)海水混入严重,F~-、Cl~-、Br~-、SO~(2-)_4、Na~+、K~+、Mg~(2+)、Ca~(2+)、盐度等明显较高,主要受海水混入影响。近河口段存在Na-Ca离子交换过程,约占Na~+总量的0.9%~1.5%,离子交换量随海水混入比例增加而增加,Na~+离子交换量与K~+,Ca~(2+)、Mg~(2+)、Br~-、F~-、SO~(2-)_4离子交换量相关,且河水离子含量与盐度回归系数略低于与盐度、Na~+交换量回归系数,表明河口段河水离子交换影响河水地球化学特征。 相似文献
95.
96.
高校足球教学中学生兴趣的培养 总被引:2,自引:0,他引:2
在高校足球课教学中,正确的引导学生,合理选择安排教材与教学进度,培养学生的学习兴趣是掌握足球技、战术的有效方法.发挥学生的主体作用,并开发利用体育课程资源,逐步培养高校学生的体育兴趣,以及参与体育运动的积极性,目的性,从而让学生学会学习,培养学生终身体育的意识与目的,这既是高校对培养人才的基本要求,也是我国现行社会发展的需要.体育课教学应以学生为中心,根据高校学生的生理、心理特点,采用组合措施,培养学生对体育课的兴趣. 相似文献
97.
通过对Baltur燃烧器温度控制器和电气控制原理的分析,提出智能数字温控器的设计方案,以便对电加热桶内油品进行数字温度调节和自动控制,提高Baltur燃烧器的安全可靠性. 相似文献
98.
99.
黄河拉西瓦水电站建设对区域景观格局的影响 总被引:6,自引:1,他引:6
本根据水利水电工程对景观格局的影响特征,从拼块类型尺度和景观尺度选出优势度、多样性、均匀度、分离度等8个能全面反映景观格局变化的数量化指数,完善了水利水电工程环境影响评价内容。以黄河拉西瓦水电站为例,对该区域LandsatTM7图像解译和GIS处理,结合工程设计规划,绘制建设前后区域景观格局图,建立空间信息数据库,计算各景观指数,分析其变化趋势。结果表明,黄河拉西瓦水电站区域有16种景观类型,分别属于6种生态系统,拼块类型多样,景观格局复杂,其中草地景观优势度最高,接近80%;建成后拼块类型的景观比例、密度、优势度、分离度等都有一定变化;景观均匀度、多样性指数和人为干扰强度都相应增加。总体上,景观格局没有发生大的变化,区域生态系统的功能和性质也不会改变。 相似文献
100.
In landfill, high temperature levels come from aerobic reactions inside the waste surface layer. They are known to make anaerobic processes more reliable, by partial removal of easily biodegradable substrates. Aerobic biodegradation of the main components of biodegradable matter (paper and cardboard waste, food and yard waste) is considered. In this paper, two models which take into account the effect of moisture on aerobic biodegradation kinetics are discussed. The first one (Model A) is a simple, first order, substrate-related model, which assumes that substrate hydrolysis is the limiting step of the process. The second one (Model B) is a biomass-dependant model, considering biological growth processes. Respirometric experiments were performed in order to evaluate the efficiency of each model. The biological oxygen demands of shredded paper and cardboard samples and of food and yard waste samples prepared at various initial water contents were measured. These experimental data were used to identify model parameters. Model A, which includes moisture dependency on the maximum amount of biodegraded matter, is relevant for paper and cardboard biodegradation. On the other hand, Model B, including moisture effect on the growth rate of biomass is suitable to describe food and yard waste biodegradation. 相似文献