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131.
Geophysical surveys were carried out on different waste dumps to evaluate key geometric and physical parameters. Depending on the dump dimensions and physical characteristics different geophysical techniques were used. Vertical electrical sounding, electrical resistivity tomography, induced polarization and seismic refraction techniques were integrated to eliminate the non-uniqueness of solutions and for a better understanding of the results. Physical parameters inside and outside the dumps were compared. The change of physical parameters such as resistivity, chargeability, and P-wave velocity allowed evaluation of waste dump geometry, leachate saturation levels, and thickness of waste. Furthermore, in illegal dumps, the size and waste type disposed could be evaluated. Calculated results were compared with plans and book-keeping from the dumps investigated. 相似文献
132.
Giuseppe Vaccari Giulio Sgualdino Elena Tamburini Giorgio Pezzi Piercarlo Citterio Roberto Verardi Krzysztof Urbaniec 《Journal of Cleaner Production》2005,13(15):1447-1460
In the past years we evaluated different strategies with the aim of eliminating completely from the beet sugar factory, the traditional calco-carbonic purification process taking into account the well-known problems related to the utilization of lime and the production of carbonation sludge.To complete the picture of the possible solutions to be adopted for the elimination of the traditional purification process, we tested and evaluated in laboratory and in pilot plants a new eco-friendly proposal.The results obtained, as well as the proposed flow-sheet and some economic evaluations, are presented and discussed. 相似文献
133.
The presence of glass-like contaminants inside waste glass products, usually resulting from both industrial and differentiated urban waste collection, has greatly increased in recent years, due to the introduction to the market of a large amount of goods manufactured from ceramic glass. The presence of contaminants in the glass recycling streams reduces product quality and increases production costs. The detection of ceramic glass detection is an unresolved problem, as such material looks like normal glass and can only be detected by trained personnel. In this study an innovative approach to ceramic glass recognition, based on the spectral signature in the mid-infrared (MIR) field, was proposed and investigated. The study specifically addressed the spectral characterization of glass and ceramic glass fragments collected in a real recycling plant from two different production lines: coloured container glass and white container glass. To define suitable inspection strategies to separate the useful (glass) from the polluting (ceramic glass) materials at the recycling plants, fragments presenting different colour, thickness, size, shape and manufacturing were selected. Both dirty and clean cullet was considered. The analyses, carried out in the MIR spectral field (2280-4480 nm), show that ceramic glass and glass fragments can be recognized according to their different spectral signature. In particular, by selecting a specific wavelength ratio the two classes of materials can be rapidly recognized, suggesting the possibility of developing an integrated hardware and software sorting system for 'on-line' ceramic glass separation. 相似文献
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Ultrafine particle emission characteristics of diesel engine by on-board and test bench measurement 总被引:1,自引:0,他引:1
Cheng Huang Diming Lou Zhiyuan Hu Piqiang Tan Di Yao Wei Hu Peng Li Jin Ren Changhong Chen 《环境科学学报(英文版)》2012,24(11):1972-1978
This study investigated the emission characteristics of ultrafine particles based on test bench and on-board measurements. The bench test results showed the ultrafine particle number concentration of the diesel engine to be in the range of (0.56-8.35) × 108 cm-3. The on-board measurement results illustrated that the ultrafine particles were strongly correlated with changes in real-world driving cycles. The particle number concentration was down to 2.0 × 106 cm-3 and 2.7 × 107 cm-3 under decelerating and idling operations and as high as 5.0 × 108 cm-3 under accelerating operation. It was also indicated that the particle number measured by the two methods increased with the growth of engine load at each engine speed in both cases. The particle number presented a "U" shaped distribution with changing speed at high engine load conditions, which implies that the particle number will reach its lowest level at medium engine speeds. The particle sizes of both measurements showed single mode distributions. The peak of particle size was located at about 50-80 nm in the accumulation mode particle range. Nucleation mode particles will significantly increase at low engine load operations like idling and decelerating caused by the high concentration of unburned organic compounds. 相似文献
137.
河水-地下水交互作用对河流水质净化、流域水生态健康和河岸土地合理规划具有重要意义.本文以广州市流溪河为研究对象,实时监测河水和河岸带地下水基本理化指标并采集水样和土样进行水体主离子、氮形态、金属离子浓度、氘(δD)氧(δ~(18)O)同位素和土壤渗透系数(K)测试分析.结果表明:监测期间以河水侧向补给地下水为主,对地下水水位的影响范围在距河岸10 m内;距河岸1 m处地下水溶解氧(DO)浓度、电导率(EC)和氧化还原电位(ORP)变化明显,变异系数(n=7)分别为30.9%、42.0%和44.4%.河水和河岸带地下水水化学类型均为HCO_3-Ca型,受碳酸盐岩风化控制.河水入渗补给地下水初期,河岸带含水层向还原环境转化(ORP平均下降92.25 mV),非饱和带Mn氧化物发生还原性溶解,地下水中Mn~(2+)浓度逐渐增加并达最大值(0.52 mg·L~(-1));基于δD、δ~(18)O和Cl~-浓度的混合模型估算的河水对距河岸5 m处地下水的贡献率分别为10.4%、11.6%和11.5%,表明监测断面河水-地下水交互边界约在距河岸5 m处. 相似文献
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黄土丘陵沟壑区生态风险时空动态及其风险分区—以陕西省米脂县为例 总被引:1,自引:0,他引:1
目前,黄土丘陵沟壑区等生态脆弱区生态风险评估已成为地理学与生态学应对生态系统管理的研究热点之一。以黄土丘陵沟壑区米脂县为研究区,构建“风险概率—敏感性—损失度”(PSI)的三维评价框架,并以子流域为评价单元进行数据整合,分析了米脂县2009-2015年准则层与综合生态风险的时空分异及其重心转移,并基于风险主导因子给出米脂县风险防范分区及降险对策。结果如下:(1)2009-2015年风险概率分别为49.93%、52.92%,有上升趋势;生境敏感性分别为0.61、0.60,下降了1.6%,生境质量趋好;损失度分别为0.42、0.46,损失度增加。(2)生态风险呈现中间高南北低的空间分布;研究期间生态风险值分别为0.14、0.15,风险有所升高;风险重心向西南转移跃入银州川道且风险演化主体方向为西北—东南走向。(3)风险预警区、生态恢复区、预警恢复兼顾区、自然调控区面积占比分别为7.53%、6.57%、23.86%、62.04%。基于风险主导因子的风险防范分区可有效进行风险消解,促进区域生境的可持续。 相似文献
140.
生物合成施氏矿物作为类芬顿反应催化剂降解甲基橙的研究 总被引:2,自引:2,他引:0
应用生物合成施氏矿物作为光助类芬顿反应催化剂促进甲基橙的降解.施氏矿物通过A.f-LX5细胞悬浮液在初始p H值2.5和28℃时氧化Fe SO43d生成,并进行X射线衍射和扫描电子显微镜表征.本研究分析了不同初始p H、H2O2浓度及催化剂装载量对在光助类芬顿反应中甲基橙氧化降解效率的影响.结果表明,生物合成施氏矿物具有较高的催化活性,并且通过羟基自由基机制使甲基橙降解.在近中性、较高Cl-、SO2-4及NO-3浓度条件下,施氏矿物仍然能保持较高催化甲基橙降解的效率.本研究验证了以生物合成施氏矿物作为催化剂的异相光助类芬顿反应是一种处理含甲基橙废水有应用前景的高级氧化技术. 相似文献