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排序方式: 共有139条查询结果,搜索用时 15 毫秒
81.
磁处理净化污水应用实例分析研究 总被引:10,自引:0,他引:10
介绍将磁处理作为强化措施引入南医人工生态系统处理污不的应用及实验研究,实际工程效果表明,该技术有效地强化了南医人工生态系统处理有机污水的能力,糸补了实际工程中由于地理位置、气侯条件等影响因素所造成的不足。同时本文还对其强化机理进行了综合实验和分析。 相似文献
82.
83.
Yanlin Li Bo Wang Lei Zhu Yixing Yuan Lujun Chen Jun Ma 《Frontiers of Environmental Science & Engineering》2022,16(6):68
84.
When released after clock-shift, homing pigeons fail to orient towards the home direction but display a consistent deflection of their initial orientation due to the difference between the real sun azimuth and the computed azimuth according to the subjective time of each single bird. It has been reported that the size of the observed deflection is frequently smaller than expected and a discussion on the possible factors affecting the size of deflection has emerged. Some authors have proposed that the major factor in reducing the deflection after clock-shift is the simultaneous use of both the magnetic and the sun compasses, giving true and erroneous information, respectively, about the home direction. Therefore, a magnetic disturbance, by impeding the use of the geomagnetic information in determining the home direction, is presumed to increase the size of the deflection up to the levels of the expectation. To test this hypothesis, we released three groups of clock-shifted birds from unfamiliar locations (unmanipulated pigeons, pigeons bearing magnets on their head, and pigeons bearing magnets on their back) together with a group of unshifted control birds. As no difference in the orientation of the three groups emerged, we were not able to confirm the hypothesis of the role of the magnetic compass in reducing the expected deflection after clock-shift.Communicated by W. Wiltschko 相似文献
85.
磁性分散固相萃取-气相色谱法测定水中氯苯类化合物 总被引:1,自引:0,他引:1
采用磁性分散固相萃取技术富集水中氯苯类化合物,用气相色谱法测定,并对萃取剂的用量、萃取时间、解吸溶剂、氯化钠加入量等条件进行优化。试验表明,方法在0.001 mg/L~2.50 mg/L 范围内,氯苯类化合物各组分线性良好,方法检出限在0.600μg/L~5.00μg/L范围内。地表水实际水样的加标回收率为83.1%~93.4%,RSD为4.8%~7.3%。 相似文献
86.
Yongjiao Xiong Baoqiang Wu Xiangfeng Huang Chenlu Li Bin Lu Jia Liu Lijun Lu Shiyang Li Kaiming Peng 《环境科学学报(英文版)》2021,33(7):173-183
Magnetic particles were coupled with a flocculant to enhance the demulsification and separation of waste cutting emulsions. The optimal magnetic particle size and critical magnetic field conditions were investigated to achieve large-scale engineering application of magnetic demulsification separation for waste cutting emulsion treatment. The micro-scale magnetic particles were found to show comparable effects to nano-scale magnetic particles on enhancing the demulsification and separation of cutting emulsions, which are beneficial for broadening the selectivity of low-cost magnetic particles. The critical magnetic separation region was determined to be an area 40 mm from the magnetic field source. Compared to the flocculant demulsification, the magnetic demulsification separation exhibited a significant advantage in accelerating flocs–water separation by decreasing the separation time of flocs from 180–240 min to less than 15 min, compressing the flocs by reducing the floc volume ratio from 60%–90% to lower than 20%, and showing excellent adaptability to the variable properties of waste cutting emulsions. Coupled with the design of the magnetic disk separator, continuous demulsification separation of the waste cutting emulsion was achieved at 1.0 t/hr for at least 10 hr to obtain clear effluent with 81% chemical oxygen demand removal and 89% turbidity reduction. This study demonstrates the feasibility of applying magnetic demulsification separation to large-scale continuous treatment of waste emulsion. Moreover, it addresses the flocs–water separation problems that occur in practical flocculant demulsification engineering applications. 相似文献
87.
Zhendong Li Yanmei Sun Wenli Huang Cheng Xue Yan Zhu Qianwen Wang Dongfang Liu 《环境科学学报(英文版)》2020,32(2):46-58
Magnetic CuO nanosheet(Mag-CuO), as a cheap, stable, efficient and easily separated peroxymonosulfate(PMS) activator, was prepared by a simple one-step precipitation method for the removal of organic compounds from salt-containing wastewater.The experiments showed that the removal efficiencies of various organic pollutants including Acid Orange 7, Methylene Blue, Rhodamine B and atrazine in a high-salinity system(0.2 mol/L Na_2SO_4) with the Mag-CuO/PMS process were 95.81%, 74.57%, 100% and 100%,respectively.Meanwhile, Mag-CuO still maintained excellent catalytic activity in other salt systems including one or more salt components(NaCl, NaNO_3, Na_2HPO_4, NaHCO_3).A radical-quenching study and electron paramagnetic resonance analysis confirmed that singlet oxygen(~1O_2) was the dominant reactive oxygen species for the oxidation of organic pollutants in high-salinity systems, which is less susceptible to hindrance by background constituents in wastewater than radicals(~·OH or SO_4~(·-)).The surface hydroxylation of the catalyst and catalytic redox cycle including Cu and Fe are responsible for the generation of~1O_2.The developed Mag-CuO catalyst shows good application prospects for the removal of organic pollutants from saline wastewater. 相似文献
88.
环境磁学在城市污染研究中的应用 总被引:16,自引:0,他引:16
环境磁学是一门介于地学、磁学和环境科学之间的新兴边缘学科。在简要阐述环境磁学原理的基础上,集中介绍其在城市污染研究中的主要应用,包括环境污染指示、重金属污染监测、大气污染颗粒物来源及污染历史研究等。 相似文献
89.
90.
This is the first study seasonally applying Sphagnum papillosum moss bags and vertical snow samples for monitoring atmospheric pollution.Moss bags,exposed in January,were collected together with snow samples by early March 2012 near the Harjavalta Industrial Park in southwest Finland.Magnetic,chemical,scanning electron microscopy-energy dispersive X-ray spectroscopy(SEM-EDX),K-means clustering,and Tomlinson pollution load index(PLI)data showed parallel spatial trends of pollution dispersal for both materials.Results strengthen previous findings that concentrate and slag handling activities were important(dust)emission sources while the impact from Cu–Ni smelter's pipe remained secondary at closer distances.Statistically significant correlations existed between the variables of snow and moss bags.As a summary,both methods work well for sampling and are efficient pollutant accumulators.Moss bags can be used also in winter conditions and they provide more homogeneous and better controlled sampling method than snow samples. 相似文献