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81.
以商业化的锁磷材料—镧改性膨润土(Phoslock®)为对象,研究了Phoslock®对磷的吸附动力学和等温线,同时研究了材料对上覆水体以及底泥内源磷释放的控制效果.结果表明,Phoslock®对磷的吸附可以用Langmuir模型拟合,相关性达到0.96,模型计算磷的最大吸附量为10.4mgP/g,且磷吸附符合拟一级和拟二级动力学模型.室内模拟培养结果表明,当锁磷剂投加剂量为1553g/m2时,70d(好氧17d和厌氧53d)内,对上覆水中的磷酸盐去除率达到90%以上,沉积物内源磷释放削减83.1%,但会引起上覆水体中总氮、氨氮以及硝氮的增加,磷形态分析结果表明,表层(0~2cm)底泥中有超过50%的Mobile-P和Al-P转化为稳定态的Ca-P和Res-P,且控磷效果随着投加量的增加而增加.研究表明,Phoslock®对底泥内源磷具有较好的控制效果,但长期效果需加强研究. 相似文献
82.
Zunhang Lv Kaihang Wang Yingying Si Zihan Li Tianpeng Yu Xin Liu Guixue Wang Guangwen Xie Luhua Jiang 《绿色能源与环境(英文)》2022,7(1):75-85
Judiciously engineering the electrocatalysts is attractive and challenging to exploit materials with high electrocatalytic performance for hydrogen evolution reaction. Herein, we successfully perform the interface engineering by alternately depositing Co–P and Ni–Fe–P films on nickel foam, via facile electroless plating and de-alloying process. This work shows that there is a significant effect of de-alloying process on alloy growth. The electronic structure of layered alloys is improved by interface engineering. The multilayer strategy significantly promotes the charge transfer. Importantly, the Co–P/Ni–Fe–P/NF electrode fabricated by interface engineering exhibits excellent electrocatalytic hydrogen evolution activity with an overpotential of 43.4 mV at 10 mA cm-2 and long-term durability for 72 h in alkaline medium (1 mol L-1 KOH). The innovative strategy of this work may aid further development of commercial electrocatalysts. 相似文献
83.
Ahmad R. Shouman 《Journal of Loss Prevention in the Process Industries》1998,11(6):383-390
A very simple solution to the thermal explosion problem for one-dimensional solids is presented. The solution produces analytical expressions for the criticality condition. Two different solutions are used. One solution gives higher answers than those known from exact solutions and the second solution gives lower answers. This allows bracketing the expected answer with a determined tolerance. The results obtained compare quite favorably with those obtained from known exact numerical solutions. This allows the utilization of the present method for many a practical problem with an acceptable tolerances. 相似文献
84.
Vincent T. Breslin Ufuk Senturk Christopher C. Berndt 《Resources, Conservation and Recycling》1998,23(4):243-258
Plastic lumber manufactured using post consumer waste plastic has been proposed as an acceptable material for use in the construction of docks, piers and bulkheads and is touted to outlast conventional wood products due to its strength, durability and resistance to rot. This study examines the long-term engineering properties of plastic lumber manufactured using post consumer waste plastic (TRIMAX, Ronkonkoma, NY). Plastic lumber profiles were used in the decking of a pier built in West Meadow Creek, Old Field, NY during December 1995. Samples of plastic lumber were removed from the deck of the pier periodically over a two-year period and returned to the laboratory for testing. Results of engineering tests showed the in-plane compression modulus (260±30 MPa), dimensional stability and the Shore D surface hardness (60±2) of plastic lumber removed from the pier remained similar to or greater than their pre-placement values. In contrast, significant changes in the modulus of elasticity of plastic lumber were measured with prolonged weathering. The modulus of elasticity of plastic lumber initially decreased from 1370 Pa to 750 Pa following 12 months weathering, a decrease equal to 45% of its pre-placement value and then increased during the second year to close to its initial value. The high variability in the modulus of elasticity should restrict the use of plastic lumber profiles to non-load bearing structural applications. 相似文献
85.
86.
采用粉煤灰、高岭土、泥渣(取电厂澄清池排泥作脱水干燥处理)作为吸附剂深度处理污水中的磷,对比分析了3种吸附剂的吸附速度、吸附性能及除磷效果。结果表明:粉煤灰和高岭土用时20 min完成对磷的有效吸附,沉降泥渣用时5 min即可实现同等吸附效果;沉降泥渣对污水中磷的吸附能力较好,投加量为0.2 g/L的泥渣对磷的去除率可达98.1%,而投加量为0.2 g/L粉煤灰或高岭土对磷的去除率仅达到77.2%。 相似文献
87.
目的提高汇流环在湿热环境下的适应能力。方法实物解剖,观察汇流环绝缘材料损坏情况、碳粉堆积情况,在不同温度、湿度下测试绝缘材料绝缘度、抗电强度,碳粉堆积和导电情况,比对不同绝缘材料性能,并找出最适合的绝缘材料,比对滚动汇流环、碳刷组件、刷丝组件,找到解决碳粉堆积的方法。结果汇流环受湿热影响会从接缝处和电缆连接处进入湿气,温度、湿度的上升会使得原绝缘材料性能下降,长时间使用汇流环,碳粉会在汇流环内堆积并受到湿热的影响而导电,局部密封汇流环可以减少湿气进入。PPO材料性能优异,可以替换原绝缘材料从而减少湿热的影响,使用刷丝组件替代碳刷可以避免碳粉的产生。结论综合运用局部密封、绝缘材料改进、碳刷组件改进三种措施,可以有效提高汇流环在湿热环境下的适应能力。 相似文献
88.
通过化学合成法制备了磁性核壳CoFe2O4@SiO2@PIL-AO复合材料,采用傅立叶变换红外光谱(FTIR)、扫描电镜(SEM)和X射线光电子能谱(XPS)对其进行了表征,研究了溶液pH、吸附时间、U (VI)初始浓度和温度等参数对U (VI)吸附性能的影响.实验结果表明:在c0=0.2 mg·L-1、pH=6.00±0.05、T=298.15 K、m=0.02 g和t=8 h的条件下,CoFe2O4@SiO2@PIL-AO对U (VI)的吸附作用最强,吸附率达到了97.54%;CoFe2O4@SiO2@PIL-AO吸附U (VI)是一个自发进行的吸热反应,U (VI)吸附动力学符合准二级动力学模型,吸附等温线符合Freundlich模型;CoFe2O4@SiO2@PIL-AO复合材料具有良好的可循环使用性,循环使用5次后它对U (VI)的吸附容量没有明显下降,可重复使用. 相似文献
89.
Khamisah Awang Lukman Mohammad Saffree Jeffree Krishna Gopal Rampal 《International journal of occupational safety and ergonomics》2019,25(1):8-16
A cross-sectional study was undertaken to determine the prevalence of lower back pain (LBP) and its association with whole-body vibration (WBV) and manual materials handling (MMH). We studied 110 commercial vehicle drivers using a self-administered questionnaire and the VI-400Pro human vibration monitor. Prevalence of LBP was 66.4%. The percentage of drivers who had frequent manual handling of heavy loads was 45.5% and those who handled heavy loads in awkward postures accounted for 86.4%. Daily vibration A(8) averaged on the z axis was 0.25 (0.06) m·s?2 and at vector sum was 0.29 (0.07) m·s?2. Daily vibration exposures on the z axis, frequent manual handling of heavy loads and awkward posture during MMH were significantly associated with LBP. Drivers who are exposed to WBV and frequently handle heavy loads manually and with awkward postures probably have more LBP than drivers who are exposed to only one of these risk factors. 相似文献
90.
目的 研究伪装遮障材料在实用期的老化机理,获悉伪装遮障材料失效的主要环境因素。方法 通过分析伪装遮障材料在自然环境和实验室单因素环境中的性能变化,得出影响伪装遮障材料老化失效的主要因素。采用扫描电子显微镜、红外光谱仪、X射线光电子能谱仪表征材料的微观形貌、化学结构和化学成分变化,解释伪装遮障材料的老化机理。结果 获得了在不同自然环境、实验室单因素环境下,伪装遮障材料颜色外观和力学性能的变化规律,得到了伪装遮障材料在老化过程中发生的微观形貌、化学结构和化学成分变化。结论 伪装遮障材料在西双版纳自然环境下的老化程度最大,在济南自然环境下的老化程度最小。光照是导致伪装遮障材料颜色外观及力学性能降低的主要因素。老化过程中,主要是材料表面的聚氨酯发生老化、脱落,导致材料的力学性能下降。伪装遮障材料破坏时,纤维有2种失效形式,一种是纤维脱黏、直接断裂;另一种是纤维脱黏,拔出,或者拔出过程中断裂。 相似文献