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针对危险化学品的使用量与存放量不断增大,传统人工巡检的仓储管理效率日渐低下的问题,设计了一种基于无线射频识别(RFID)技术的危险化学品库智能仓储管理监控系统.该系统结合无线传感网络技术和超级电容的无线充电技术,以LabVIEW编写上位机虚拟仪器(Ⅵ)程序,并操控整个系统;采用步进电机精确定位技术将RFID读写模块精确地运送到目标位置,再通过RFID模块读取镶嵌于化学品包装的RFID电子标签信息,或将新数据写入系统;最后将化学品的存储状态发送至上位机中.测试结果表明,该系统在稳定性和能耗等方面能满足预期的指标要求,可应用于危险化学品仓库的日常监管中. 相似文献
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为了研究爆炸冲击波对结构的影响,基于一维爆炸波轴向传播方程,结合流固耦合的方法,借助 ANSYS/ LS?DYNA 有限元软件建立三维单层单跨框架模型。考虑高温软化效应和应变率对屈服强度的影响,分析连接方式为固定端时爆炸波的传播,研究爆炸与火灾联合作用下爆炸波在钢结构构件中的传播规律及其破坏原因。研究结果表明:垂直爆炸波方向的竖向构件内力的分布具有弱传递性,沿爆炸波方向的杆件动力响应显著;700 ℃爆炸冲击波在杆端往复传播导致在钢结构杆件中传播速度明显比常温下慢,但截面轴向速度的峰值变大,约为 200 ℃的 3 倍,并且沿爆炸波方向杆件的轴向速度比垂直方向杆件的轴向速度大得多;常温下,垂直爆炸波的梁因受剪单元提前发生失效;高温下,构件损伤严重,垂直爆炸波方向的梁最先发生弯剪破坏,其次为柱剪切破坏,最后沿爆炸波方向的梁产生受压破坏。 相似文献
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Hui Xu Qin Li Lifeng Shen Mengqun Zhang Jianping Zhai 《Waste management (New York, N.Y.)》2010,30(1):57-62
In this contribution, low-reactive circulating fluidized bed combustion (CFBC) fly ashes (CFAs) have firstly been utilized as a source material for geopolymer synthesis. An alkali fusion process was employed to promote the dissolution of Si and Al species from the CFAs, and thus to enhance the reactivity of the ashes. A high-reactive metakaolin (MK) was also used to consume the excess alkali needed for the fusion. Reactivities of the CFAs and MK were examined by a series of dissolution tests in sodium hydroxide solutions. Geopolymer samples were prepared by alkali activation of the source materials using a sodium silicate solution as the activator. The synthesized products were characterized by mechanical testing, scanning electron microscopy (SEM), X-ray diffractography (XRD), as well as Fourier transform infrared spectroscopy (FTIR). The results of this study indicate that, via enhancing the reactivity by alkali fusion and balancing the Na/Al ratio by additional aluminosilicate source, low-reactive CFAs could also be recycled as an alternative source material for geopolymer production. 相似文献
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Jianling Xu Jiaqi Yang Nan Zhao Lianxi Sheng Yuanhui Zhao Zhanhui Tang 《Environmental monitoring and assessment》2013,185(7):6063-6070
Evaluation of the efficiency of aircraft liquid waste treatment has previously been conducted to prevent pollution of the environment. The current study aimed to provide a set of practical methods for efficient airport sanitary supervision. Aircraft liquid waste was collected at Longjia International Airport, Changchun from multiple flights. The efficiency of liquid waste treatment as well as the water quality of the wastewater processed via a second-stage wastewater facility were examined by measuring a number of physical, chemical, and biological indices. Our results indicated that treatment solely via resolvable sanitizing liquid was not sufficient. Although the contents of first-class pollutants all met the requirements of the standard criteria, the contents of a number of second-class pollutants did not satisfy these criteria. However, after further treatment via a second-stage wastewater facility installed at the airport, all indices reached second-grade requirements of the discharge standard. We suggest that daily inspection and quarantine indices at airports should include the suspension content, biological oxygen demands after 5 days, chemical oxygen demand total organic carbon content, amino nitrogen content, total phosphorous content, and the level of fecal coliforms. 相似文献
68.
Yuan Ma Shan Zhai Shi Yun Mao Shi Lei Sun Ying Wang Zhong Hua Liu 《Journal of environmental science and health. Part. B》2013,48(9):661-670
A new imidacloprid (IMI) degrading bacterium Z-9 (deposited number CGMCC 6648) was isolated and identified as Pseudoxanthomonas indica by 16S rRNA gene analysis. Two metabolites were identified as olefin and 5-hydroxy IMI by liquid chromatography-mass spectrometry and nuclear magnetic resonance analysis. P. indica CGMCC 6648 degraded 70.1% of IMI (1.22 mmol L?1) and formed 0.93 mmol L?1 5-hydroxy IMI and 0.05 mmol L?1 olefin IMI in 6 days and in the presence of 100 mmol L?1 glucose. The half-life of IMI degradation was 3.6 days. P. indica CGMCC 6648 transforms IMI via a co-metabolism mechanism and different carbohydrates have significant effects on 5-hydroxy IMI formation, whereas different organic acids have substantial effects on olefin IMI production. Lactose is the best co-substrate for IMI degradation and 5-hydroxy IMI formation with 0.77 mmol L?1 degraded and 0.67 mmol L?1 formed in 48 h, respectively. Pyruvate is the best co-substrate for olefin IMI formation with 0.17 mmol L?1 produced in 96 h for all carbon sources tested. Pyruvate significantly stimulates the conversion of 5-hydroxy IMI to olefin IMI, whereas glucose slightly inhibits this reaction. P. indica CGMCC 6648 rapidly degrades IMI and forms olefin IMI, which may enhance its potential for biodegradation of IMI and increase its insecticidal activity, which can decrease the IMI dosage required. 相似文献
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以铬污染地下水为研究对象,用零价铁作为反应介质设计了可渗透反应墙(PRB),对零价铁处理铬污染地下水的处理效果和长期稳定性进行了研究。对不同粒径的铁粉处理效果进行对比,发现铁粉粒径越小,处理效果越好。用铁粉作为PRB反应介质,对PRB处理铬污染地下水的长期稳定性进行了研究。试验结果表明,采用Fe0-PRB原位技术处理铬污染地下水,铁粉粒径越小处理废水的水质越好,但介质粒径越小,反应器渗透系数越小,处理水量显著减少;且铁粉在处理含铬废水时生成了大量的难溶化合物,容易造成填料堵塞,导致铁粉利用效率不高。因此有必要研制铁粉复合填料,增大填料的渗透性,提高填料处理含铬废水时铁粉的利用效率。 相似文献
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为研究施用餐厨垃圾调理剂对土壤有机碳组分的影响,以果园土壤为研究对象,从时间、空间维度解析长期施用餐厨垃圾调理剂对土壤有机碳积累、组成及其分布规律的影响,结合CPMI(碳库管理指数)和相关性分析,揭示施用餐厨垃圾调理剂对土壤碳汇的影响机制.结果表明,施用餐厨垃圾调理剂可显著提高土壤中w(TOC)(TOC为总有机碳),并随施用时间的增加逐渐向深层土壤迁移,改善TOC分布状况.随着施用餐厨垃圾调理剂时间的增加,0~20 cm土壤层中w(NOC)(NOC为非活性有机碳)和30~40 cm土壤层中w(AOC)(AOC为活性有机碳)呈增加趋势,AOC分配比例低于NOC分配比例.随着施用时间的增长,0~30 cm土壤层中w(POC)(POC为颗粒有机碳)显著提高,最大值为42.94 mg/g,MOC(矿质结合态有机碳)分配比例与POC分配比例呈相反变化趋势,有利于提高土壤碳稳定性.各土壤层中CPMI均大于空白对照组,最大值为154.437,表明施用餐厨垃圾调理剂有利于提升土壤肥力.相关性分析表明,w(POC)与pH呈负相关,与含水率、EC(电导率)、w(OM)(OM为有机质)呈正相关,其中与含水率相关性最高(R=0.91).可见,长期施用餐厨垃圾调理剂对提高果园土壤碳汇、改善土壤肥力具有重要意义,研究结果有助于进一步提升土壤碳汇的新型土壤调理剂的研发与应用. 相似文献