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41.
The off-gas handling system is a vital component of a smelter and it is essential that it operates in accordance with environmental regulations. A key feature of the off-gas management system is maintaining a slightly negative system pressure to prevent gas leakage, such as SO2, out into the work and external environments. To enhance sustainable development, there is also growing interest in capturing and reusing the significant amount of heat and CO2 contained within off-gas. The potential incorporation of heat and CO2 recovery systems places importance on enhancing control to minimize the risk of both gas leakage and disturbance of the smelting process. With these requirements in mind, an easily implementable feedforward control enhancement to existing control schemes is proposed to help provide improved performance. 相似文献
42.
R. AndrewsAuthor VitaeJ.M. PearceAuthor Vitae 《Journal of Cleaner Production》2011,19(13):1446-1454
As the economic costs of energy and the negative externalities associated with the combustion of fossil fuels threaten the economic viability of greenhouses in northern climates there is a renewed interest in the use of waste heat. This paper presents a technical and economic methodology to determine the viability of establishing waste heat greenhouses using the waste heat from industrial processes in northern climates. A case study is presented of an exchange between a tomato greenhouse and a flat glass manufacturing plant, which found the waste heat system is significantly more economic to operate than a purely natural gas system. 相似文献
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《Journal of Manufacturing Processes》2014,16(1):144-148
The 2205 duplex stainless steel (DSS) is of both good properties austenitic steel and ferritic steel, which applies to the shipbuilding industry usually. In this paper, the OM, XRD and microhardness test methods are used to analyze the variation of submerged arc welded (SAW) joints with and without post weld heat treatment (PWHT). The research results show that the σ phase disappear in the fusion edge zone near heat affect zone (HAZ) and an increase in the welded center zone during the follow-up PWHT, while the amount of γ phase is decreased in the welded center zone with PWHT. A segregation distribution of some second phases is also found in the welded center zone after PWHT. There have two pick values of microhardness arise in the fusion edge zone and the welded center zone separately without PWHT. However, a maximum value of microhardness at the fusion edge zone near HAZ is disappeared and the other is still held at the welded center zone during PWHT. It can be attributed to the changes of second phases, element diffusions and particle segregation during PWHT. A developing mechanism is issued to demonstrate the second phases transferring of the 2205 DSS SAW joints by PWHT. 相似文献
46.
《Journal of Manufacturing Processes》2014,16(4):485-493
Tungsten inert gas-metal inert gas (TIG-MIG) hybrid welding process is an effective way to improve welding productivity and quality due to advantages of the two processes. Mathematical analysis is crucial to fundamentally understand this synergetic welding process. In this study, based on experimental visualization of arc behaviors, some assumptions are proposed to deduce adaptive plane and volumetric heat source models separately for each involved welding method first. The influence of torch angles on distribution of temperature and geometry of weld bead are calculated and compared with experimental results. It shows that this developed algorithm of heat source can be employed to accurately predict welding process whether the electrode gun is slanted backward or forward to the direction of welding. Then TIG-MIG hybrid welding process is simulated and analyzed without considering the attractive or repulsive force of two arcs. The characteristic of TIG-MIG welding process is discussed compared to single MIG. It lays the foundation for the further research on the interaction of the two arcs during TIG-MIG hybrid welding. 相似文献
47.
应用Tripod Beta事故模型对某厂触电事故进行了深入分析,得到了事故原因,并提出预防类似事故的建议措施。 相似文献
48.
目的掌握海洋环境水下电场主要能量来源和衰减规律。方法结合理论研究环境电场幅值随时间的变化规律,重点分析水下环境电场不同频带的频谱分布,最后计算得到海洋环境水下电场不同频点的幅值在整个频带所占比重。结果海洋环境水下电场随海水电导率和海水运动强度的减弱,幅值降低,能量主要集中在0.01~1 Hz的低频以及工频处,在一定的空间范围内海洋环境水下电场的一致性较强。结论实验结果与理论分析结果具有一定的吻合度。 相似文献
49.
应用铅锶同位素示踪研究泉州某林地垂直剖面土壤中重金属污染及来源解析 总被引:8,自引:4,他引:4
分别用原子吸收光谱仪(AAS)和电感耦合等离子体质谱仪(ICP-MS)分析了泉州市某林地垂直剖面土壤中8种重金属元素(Sr、Ni、Fe、Cr、Cu、Mn、Pb、Zn)的含量及垂直剖面土壤的铅锶同位素组成,并采用BCR四步提取法对重金属形态进行了分析.重金属总量及形态分析结果表明,泉州市林地土壤重金属污染较轻,主要污染因子为Sr.Pb的非残渣态含量最高,活性最大.内梅罗综合污染指数的评价结果表明,Sr在0~60 cm深度处达到重度污染.次生相与原生相比值法评价结果表明,Pb活性最强,对土壤的潜在危害最大;富集因子计算结果表明,Pb、Sr、Mn、Zn受到外源的影响;因子分析结果表明,重金属主要受到交通源、自然源和农业生产的影响.根据垂直剖面土壤样品与泉州市潜在污染源在~(206)Pb/~(207)Pb-~(207)Pb/~(204)Pb图中的分布特征,Pb主要来源于汽车尾气尘和土壤母质层,利用铅同位素二元混合模型计算出土壤母质层对垂直剖面土壤中铅的贡献率为85.14%(62.53%~98.36%),汽车尾气尘的贡献率平均值为14.86%(1.640%~37.47%).锶同位素示踪结果表明,锶主要来源于汽车尾气尘和土壤母质.铅锶同位素联合示踪结果与前述研究一致. 相似文献
50.
为证明采用秸秆压块燃料替代煤炭进行供热的可持续性,对秸秆压块和燃煤供热系统的生命周期环境排放进行了对比分析.基于我国2012年投入产出表,构建了投入产出生命周期评价(IO-LCA)和过程生命周期评价(PLCA)相结合的混合生命周期评价(Hybrid-LCA)模型,核算了玉米秸秆压块和燃煤供热系统供应1 GJ热的生命周期CO2、SO2、NOx和PM2.5排放.结果显示,秸秆压块供热系统的生命周期CO2排放量为7 kg·GJ-1热,比燃煤供热排放减少121 kg.此外,秸秆压块供热系统比燃煤供热系统可以分别减少SO2排放98%、NOx排放76%和PM2.5排放58%.控制原料水分,通过减少原料收集和能源转化过程中的耗损,减少能源转化过程的电力消耗以及控制原料收集半径等可以有效改进秸秆压块供热系统环境表现. 相似文献