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Kyoung S. Ro Patrick G. Hunt Michael A. Jackson David L. Compton Scott R. Yates Keri Cantrell SeChin Chang 《Waste management (New York, N.Y.)》2014,34(8):1520-1528
Manure-derived biochar is the solid product resulting from pyrolysis of animal manures. It has considerable potential both to improve soil quality with high levels of nutrients and to reduce contaminants in water and soil. However, the combustible gas produced from manure pyrolysis generally does not provide enough energy to sustain the pyrolysis process. Supplementing this process may be achieved with spent agricultural plastic films; these feedstocks have large amounts of available energy. Plastic films are often used in soil fumigation. They are usually disposed in landfills, which is wasteful, expensive, and environmentally unsustainable. The objective of this work was to investigate both the energetics of co-pyrolyzing swine solids with spent plastic mulch films (SPM) and the characteristics of its gas, liquid, and solid byproducts. The heating value of the product gas from co-pyrolysis was found to be much higher than that of natural gas; furthermore, the gas had no detectable toxic fumigants. Energetically, sustaining pyrolysis of the swine solids through the energy of the product gas could be achieved by co-pyrolyzing dewatered swine solids (25% m/m) with just 10% SPM. If more than 10% SPM is used, the co-pyrolysis would generate surplus energy which could be used for power generation. Biochars produced from co-pyrolyzing SPM and swine solid were similar to swine solid alone based on the surface area and the 1H NMR spectra. The results of this study demonstrated the potential of using pyrolysis technology to manage two prominent agricultural waste streams (SPM and swine solids) while producing value-added biochar and a power source that could be used for local farm operations. 相似文献
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TiO_2 rutile/anatase heterostructure thin films with varying rutile thickness have been in-situ synthesized via DC magnetron sputtering with Ar gas at room temperature. The crystal texture, surface morphology, energy gap and optical properties of the films have been investigated by X-ray diffraction meter, grazing incidence X-ray diffraction meter, Raman spectroscopy, scanning electron microscopy, and UV–visible spectrophotometer, which indicates that the rutile/anatase heterostructure films are successfully fabricated. The further degradation experiments display that the photocatalytic activity can be dramatically affected by the thickness of the outmost rutile layer and the 100 nm thickness exhibits the best performance in all of the TiO_2 thin films. With the increase of the outmost rutile layer, the optical band gap of TiO_2 film displays a systematic decrease slightly. However,the change in photocatalytic activity does not coincide with that in the band gap. The photoresponse and electrochemical properties of the thin films have been characterized to understand the mechanism of the varied photocatalytic activity. 相似文献
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F. Khodabakhshi M. Abbaszadeh H. Eskandari S.R. Mohebpour 《Journal of Manufacturing Processes》2013,15(4):533-541
A modified method of severe plastic deformation (SPD) entitled constrained groove pressing-cross route (CGP-CR) was introduced for imposing a high magnitude of equivalent strain of about 2.32 per pass on the sheet form samples. The major benefit of this improved route compared to previous common route was the more homogeneity of strain in the rolling (RD) and transverse (TD) directions of sheets. In this study, low carbon steel samples were used for examination of evolutions in microstructure and mechanical properties during SPD via CGP-CR process. Mechanical properties improvement were measured by tensile and macro hardness tests. The results indicate that CGP-CR process can effectively improve tensile strength; and also, yield stress and hardness of as-received low carbon steel samples were improved up to about 100% after two deformation passes. Also, high magnitude of inhomogeneity can be observed in hardness distribution through first pass of the process which diminishes in the subsequent passes. Microstructural evolutions during process were monitored by optical microscopy observations and X-ray diffraction analysis. The results demonstrate that initial ferritic microstructure with grain size of about 30 μm was refined to a 225 nm cell structure after two passes of CGP-CR process. 相似文献
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船用燃气轮机的排气温度很高,为了降低排气管道和排气烟羽的红外辐射,在排气喷管上方安装排气引射装置,利用引射原理卷吸环境中的冷空气,降低排气温度,同时在壁面上形成冷却气膜,防止壁面温度升高。排气引射装置的扩压管为多级圆环结构组成,文中利用数值计算的方法模拟了扩压管圆环间狭缝结构对壁面温度的影响,得到了壁面上的温度分布,确定了冷却气膜的长度,为扩压管的设计提供了参考。 相似文献
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电催化氧化法处理阳离子染料废水的试验研究 总被引:2,自引:0,他引:2
以结晶紫作为阳离子染料,采用电催化氧化法对阳离子染料溶液进行了电解脱色处理试验,研究了电流密度、电解质种类、电解质浓度、pH值等对该溶液脱色率的影响,测定了电解时溶液中生成的余氯浓度和溶液的紫外-可见吸收光谱曲线,并对不同电解时间的溶液的吸光度进行了归一化计算。结果表明:随着电解时间的延长,水溶液中活性氯浓度不断上升,经一定时间后达到最大值;在电催化和活性氯的协同作用下,阳离子染料结晶紫分子中的大π共轭体系被破坏、苯环结构基本瓦解,溶液快速脱色;在电流密度为5.1mA/cm2、NaCl浓度为4g/L、pH值为9.41的条件下,初始浓度为100mg/L的结晶紫溶液经过20min的电解,其脱色率可高达98.31%。 相似文献
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目前,土壤重金属污染已成为全球各国共同面临的棘手问题。土壤重金属污染具有隐蔽性、滞后性、积累性、持久性等特点,已严重危害到人类的健康。本文在全面了解国内外重金属污染土壤修复研究动态的基础上,对纳米多孔磁性螯合材料用于农田重金属污染土壤修复的新技术进行展望与探索研究,为国内这一领域的工作开展提供借鉴参考。 相似文献
28.
开发了一种利用LB复合膜选择性地检测水中痕量镉离子的技术方法,研究了最佳LB复合膜检测器的制作条件.用表面活性剂十二烷基-(2-噻唑偶氮)间苯二酚(DTAR)作显色剂,对乙烯基硬脂酸盐(PVS)、十八烷基异丁烯酸盐(PMOA)、乙烯基-N-氨基甲酸十八烷基酯(PVOC)和顺丁烯二酸酐-1-十八烯(PMO)4种聚合物进行了强度实验,得出稳定的检测器结构,即偶数层DTAR上附着单层PVOC的LB复合膜.经过灵敏度实验,制作出最佳LB复合膜检测器DTAR6-PVOC1,在pH为7.5,温度40℃且搅拌的反应条件下,该检测器可以在10 min之内检出10-7mol/L镉,并可目视定性及半定量检测出水中痕量镉离子.水中可能共存的离子中只有CU2+和Zn2+会干扰镉离子的检测,需要抑制. 相似文献
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采用管式光催化反应器,在石英玻璃管壁上涂镀含碳纳米TiO2薄膜,研究含碳纳米TiO2对甲醇气体的光催化降解性能。实验结果表明:随气体流量增加,甲醇降解率呈线性降低;在气体流量为200mL/min、相对湿度为40%、甲醇初始质量浓度为90~170mg/m^3的较佳条件下,甲醇降解率维持在80%以上,最高达85%;在甲醇初始质量浓度为150mg/m^3、气体流餐为200mL/min、相对湿度为40%的条件下,德国Degusa—P25光催化剂对甲醇的平均降解率为89%,含碳纳米TiO2对甲醇的平均降解率为82%,最人降解率为85%。 相似文献