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11.
为了解决废旧印刷电路板资源化过程中的粗碎问题,提出差速破碎方法;根据差速机理分析,利用自主研制双齿辊粗碎机对废旧印刷电路板基板进行差速破碎实验;最后利用Ansys APDL模块对粗碎机辊齿进行校核模拟。实验结果证明,利用差速破碎可以充分利用材料的抗拉、抗剪强度小于抗压强度的特性,能够取得良好的破碎效果,差速破碎结果呈拱形分布形式;模拟结果证明,在差速破碎过程中设备能够保持良好工作状态,可以交换2个齿辊的运转速度减小疲劳破坏。差速破碎为废旧印刷电路板资源化过程中的破碎理论提供支持,并且为废旧印刷电路板粗碎的设备选择提供参考。 相似文献
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Effects of EDTA on solubility of cadmium, zinc, and lead and their uptake by rainbow pink and vetiver grass 总被引:8,自引:0,他引:8
Rainbow pink (Dianthus chinensis), a potential phytoextraction plant, can accumulate high concentrations of Cd from contaminated soils. Vetiver grass (Vetiver zizanioides) has strong and long root tissues and is a potential phytostabilization plant since it can tolerate and grow well in soils contaminated with multiple heavy metals. Soil was moderately artificially contaminated by cadmium (20 mg/kg), zinc (500 mg/kg), and lead (1000 mg/kg) in pot experiments. Three concentrations of Na2-EDTA solution (0, 5, and 10 mmol/kg soil) were added to the contaminated soils to study the influence of EDTA solution on phytoextraction by rainbow pink or phytostabilization by vetiver grass. The results showed that the concentrations of Cd, Zn, and Pb in a soil solution of rainbow pink significantly increased following the addition of EDTA (p < 0.05). The concentrations of Cd and Pb in the shoots of rainbow pink also significantly increased after EDTA solution was applied (p < 0.05), but the increase for Zn was insignificant. EDTA treatment significantly increased the total uptake of Pb in the shoot, over that obtained with the control treatment (p < 0.001), but it did not significantly increase the total uptake of Cd and Zn. The concentrations of Zn and Pb in the shoots of rainbow pink are significantly correlated with those in the soil solution, but no relationship exists with concentrations in vetiver grass. The toxicity of highly contaminating metals did not affect the growth of vetiver grass, which was found to grow very well in this study. Results of this study indicate that rainbow pink can be considered to be a potential phytoextraction plant for removing Cd or Zn from metal-contaminated soils, and that vetiver grass can be regarded as a potential phytostabilization plant that can be grown in a site contaminated with multiple heavy metals. 相似文献
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Song Qiulai Zhu Jie Gong Zhenping Feng Yanjiang Wang Qi Sun Yu Zeng Xiannan Lai Yongcai 《Environmental science and pollution research international》2021,28(39):54792-54801
Environmental Science and Pollution Research - Inappropriate farm management practices can lead to increased agricultural inputs and changes in atmospheric greenhouse gas (GHG) emissions, impacting... 相似文献
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此文介绍尺寸为φ1547×L900×δ30的大直径TA2卷焊坯的制备工艺。主要包括卷焊坯设计、展开下料的计算、卷圆工艺、焊接工艺等,可供同类材质圆筒件卷圆时参考。 相似文献
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AsayofsomevolatilecompoundsinhumanexhalationQinTao,XuXiaobaiResearchCenterforEcoEnvironmentalSciences,ChineseAcademyofScie... 相似文献
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InterfacialefectsofsuspendedparticlesonbiodegradationofN(2,4dimethylphenyl)N’methylformamidinehydrochlorideanddibutylphth... 相似文献
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Characterizing the optimal operation of photocatalytic degradation of BDE-209 by nano-sized TiO2 总被引:1,自引:0,他引:1
Ka Lai Chow Yu Bon Man Jin Shu Zheng Yan Liang Nora Fung Yee Tam Ming Hung Wong 《环境科学学报(英文版)》2012,24(9):1670-1678
Brominated flame retardants have been widely used in industry. There is a rapid growing public concern for their availabilities in the environment. Advanced oxidation process (AOP) is a promising and efficient technology which may be used to remove emerging chemicals such as brominated flame retardants. This project aims at investigating optimal operational conditions for the removal of BDE-209 using nano-scaled titanium(IV) oxide. The residual PBDE congeners after photocatalytical degradation of BDE-209 by TiO2 were analysed by gas chromatography-mass spectrometry (GC-MS). It was found that the degradability of BDE-209 by TiO2 was attributed to its photocatalytic activity but not the small size of the particles. The half-life of removing BDE-209 by TiO2 was 3.05 days under visible light. Tetra- and penta-BDEs were the major degraded products of BDE-209. Optimum conditions for photocatalytical degradation of BDE-209 was found to be at pH 12 (93% ± 1%), 5, 10, 20 mg/L (93.0% ± 1.70%, 91.6% ± 3.21%, 91.9% ± 0.952%, respectively), respectively of humic acid and in the form of anatase/rutile TiO2 (82% ± 3%). Hence, the efficiency of removing BDE-209 can be maximized while being cost effective at the said operating conditions. 相似文献