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A number of microorganisms were isolated from sewage. Biochemical Oxygen Demand (BOD-5 day) analysis was carried out by individual pure cultures. The cultures giving higher or equal BOD values as compared to reference GGA solution were selected for the formulation of a defined mixed microbial consortium. This microbial consortium was co-immobilized on calcium-alginate beads. Four synthetic and six industrial samples were tested for BOD by using immobilized beads as well as sewage as source of seeding materials. BOD values obtained with beads for all the synthetic as well as industrial samples were fairly comparable with those obtained with sewage. Reusability of prepared microbial beads was also checked with different synthetic and industrial samples and was compared with reference GGA solution. The same microbial beads can be reused three times for different BOD-5 day estimations. It is recommended that immobilized microbial beads can be used as a ready-to-use seeding material for BOD analysis.  相似文献   
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介绍了可重复使用航天器及其应用需求,分析了其在太空遭遇的空间辐射环境及效应,探讨了可重复使用航天器的空间辐射效应评价在元器件退火效应研究及工程化、地面模拟试验设施及评价技术、地面检测维护及评价、抗辐射设计规范等方面存在的问题,提出了深入开展元器件空间环境效应及退火效应机理研究,给出适合可重复使用航天器的指标和评价体系;搭建多功能的综合环境效应地面模拟试验装置,加强多因素环境协同效应机理研究,建立空间多因素环境协同效应试验方法;开展空间环境多因素协同效应仿真,加强可重复使用航天器辐射效应预示方法的深入研究等解决途径。  相似文献   
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Advanced oxidation processes are widely applied to removal of persistent toxic substances from wastewater by hydroxyl radicals(·OH),which is generated from hydrogen peroxide(H_2O_2) decomposition.However,their practical applications have been hampered by many strict conditions,such as iron sludge,rigid pH condition,large doses of hydrogen peroxide and Fe~(2+),etc.Herein,a magnetically recyclable Fe_3O_4@polydopamine(Fe_3O_4@PDA) coreshell nanocomposite was fabricated.As an excellent reducing agent,it can convert Fe~(3+)to Fe~(2+).Combined with the coordination of polydopamine and ferric ions,the production of iron sludge is inhibited.The minimum concentration of hydrogen peroxide(0.2 mmol/L and Fe~(2+)(0.18 mmol/L)) is 150-fold and 100-fold lower than that of previous reports,respectively.It also exhibits excellent degradation performance over a wide pH range from 3.0 to 9.0.Even after the tenth recycling,it still achieves over 99% degradation efficiency with the total organic carbon degradation rate of 80%,which is environmentally benign and has a large economic advantage.This discovery paves a way for extensive practical application of advanced oxidation processes,especially in environmental remediation.  相似文献   
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目的研究可重复使用运载器的静电防护方案。方法针对可重复使用运载器特点,以及飞行期间遭遇的空间静电放电环境,基于空间静电带电数学模型,计算出运载器表面材料带电离子的静电充电电位。在此基础上,分析复合材料静电特性,提出静电防护层与电气设备等电位共地方案。结果该方案采用碳纤维复合材料作为静电防护层,与大截面积的接地母线相连,为运载器电气设备提供低阻抗、大电荷容量的等电位地。结论该方案能够有效抵御静电产生的干扰,为运载器电子设备提供可靠、安全、抗干扰的电磁环境。另外,该方案工艺实现简单,大大减轻了运载器的设计质量。  相似文献   
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目的 实现可重复使用钛合金热防护结构的导波健康监测。方法 针对钛合金热防护结构,提出热–力–电多物理场耦合导波传播建模仿真分析方法,研究温度梯度下钛合金热防护结构中导波的传播特性,以及在温度梯度和裂纹损伤耦合作用下导波的传播特性。结果 20~500 ℃的温度梯度会导致钛合金结构中导波的群速度降低、幅值衰减降低,裂纹损伤使得钛合金结构中导波的群速度、幅值降低,且损伤越大,影响越明显。裂纹扩展至20 mm时,S0模式群速度降低了1.5%,A0模式群速度降低了2%。结论 此模型可为大范围的温度梯度条件下,钛合金热防护结构上传感器优化布置以及导波监测方法的研究提供指导。  相似文献   
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