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301.
电化学法烟气脱硫制取浓硫酸 总被引:1,自引:0,他引:1
利用电化学脱硫生产硫酸是一种自然资源再利用的新型大气环保技术 ,它通过电解I- /I2 体系生成I2 来吸收氧化烟气中的SO2 ,其脱硫率可达 95%~ 99% ,并生成 85%以上的高浓度硫酸和纯氢。以期获得废渣废液的零排放。 相似文献
302.
我国水产养殖业对环境的影响及对策 总被引:7,自引:0,他引:7
综述了我国水产养殖业的自身污染、对水环境和生态系统的影响及其对景观环境质量的影响等,提出应在健全的法律法规指导下,建立完善的水产养殖环境管理系统,加强营养与饲料学研究,提高水产养殖饲料质量和投饵水平,同时强化环境工程技术在集约化水产养殖中的应用,以减少污染排放,使水产养殖走可持续发展的道路。 相似文献
303.
本文采用维多利亚蓝简易试剂管法,直接在水相中显色快速测定环境水质中的洗涤剂.此法操作简便、结果准确可靠.t检验结果,P>0.05,简易法与标准方法之间无显著性差异,适合于现场及野外条件下使用. 相似文献
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Peter R. Brown Neil I. Huth Peter B. Banks Grant R. Singleton 《Agriculture, ecosystems & environment》2007,120(2-4):405-415
Developing a relationship between pest abundance and damage to crops is essential for the calculation of economic injury levels (EIL) leading to informed management decisions. The crop modelling framework, APSIM, was used to simulate the impact of mouse damage on yield loss on wheat where a long-term dataset on the density of mice was available (1983–2003). The model was calibrated using results from field trials where wheat plants were hand clipped to imitate mouse damage. The grazing effect of mice was estimated using the population density, daily intake per mouse and the proportion of wheat grain and plant tissue in the diet to determine yield loss. The mean yield loss caused by mice was 12.4% (±5.4S.E.; range −0.5 to 96%). There were 7/21 years when yield loss was >5%. A damage/abundance relationship was constructed and a sigmoidal curve explained 97% of variation when accounting for different trajectories of mouse densities from sowing to harvest. The majority of damage occurred around emergence of the crop when mouse densities were >100 mice ha−1. This is the first time that field data on mouse density and a crop simulation model have been combined to estimate yield loss. The model examines the efficacy of baiting and how to estimate EILs. Because the broadscale application of zinc phosphide is cheap and effective, the EIL is very low (<1% yield loss). The APSIM model is highly flexible and could be used for other vertebrate pests in a range of crops or pastures to develop density/damage relationships and to assist with management. 相似文献
309.
In angiosperms, archesporial cells in the anther primordium undergo meiosis to form haploid pollen, the sole occupants of anther sacs. Anther sacs are held together by a matrix of parenchyma cells, the connective tissue. Cells of the connective tissue are not known to differentiate. We report the differentiation of parenchyma cells in the connective tissue of two Gordonia species into pollen-like structures (described as pseudopollen), which migrate into the anther sacs before dehiscence. Pollen and pseudopollen were distinguishable by morphology and staining. Pollen were tricolpate to spherical while pseudopollen were less rigid and transparent with a ribbed surface. Both types were different in size, shape, staining and surface architecture. The ratio of the number of pseudopollen to pollen was 1:3. During ontogeny in the connective tissue, neither cell division nor tetrad formation was observed and hence pseudopollen were presumed to be diploid. Only normal pollen germinated on a germination medium. Fixed preparations in time seemed to indicate that pseudopollen migrate from the connective tissue into the anther sac. 相似文献
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