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1.
为解决目前采用在尾矿坝坝体及滩面覆盖砂石进行防尘治理与闭库,但传统监测手段难以实现坝体整体监测的问题,采用时序InSAR技术对2014年10月至2018年7月的Sentinel-1A影像进行处理,提取了对应时间段内卡房尾矿坝的形变信息,并结合实地调查及尾矿坝建设资料,研究了卡房尾矿坝的时序形变演化规律。结果表明:SBAS InSAR监测到坝体出现第1次异常形变加速运动时间与坝体开始铺设砂石工程的施工时间节点完全吻合,体现SBAS InSAR技术在受人为工程影响的坝体形变监测方面具有极高的敏感性。坝体在施工结束后,坝体形变加剧趋势并未缓解,并且出现2次加速现象,分析认为是由于在坝体铺设约2 m厚的碎砂石极大地增加了坝体荷载,打破了坝体原有的应力平衡状态,且识别出雨季对坝体形变影响显著,表明铺设砂石会使得降雨在坝体中的停滞时间加长,进一步引发非雨季期间坝体形变加剧。研究结果不仅能还原坝体出现异常形变的时间与演化过程,而且还可以对引起异常形变的内在影响因素进行分析与论证,对指导尾矿坝灾害识别、分析与治理具有重要的指导意义。 相似文献
2.
依据废渣特性的理论分析,通过对废渣成分以及采用废渣配料前后生料、熟料的成分分析及性能测试,调整生料配比和改变水泥窑操作工艺,通过生产实践数据分析,说明了利用钢渣和粉煤灰作为铁质和铝质校正材料生产普通硅酸盐水泥熟料,不仅可以提高水泥熟料产量和质量,而且可以有效地降低熟料生产成本和产品综合能耗。促进了企业节能减排和资源综合利用的可持续发展。 相似文献
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Natural zeolite was modified by loading cetylpyridinium bromide (CPB) to create more e cient sites for humic acid (HA) adsorption.
The natural and CPB modified zeolites were characterized with X-ray di raction, field emission scanning electron microscopy, Fourier
transform infrared spectroscopy and elemental analysis. The e ects of various experimental parameters such as contact time, initial HA
concentration, solution pH and coexistent Ca2+, upon HA adsorption onto CPB modified zeolites were evaluated. The results showed
that natural zeolite had negligible a nity for HA in aqueous solutions, but CPB modified zeolites exhibited high adsorption e ciency
for HA. A higher CPB loading on natural zeolites exhibited a larger HA adsorption capacity. Acidic pH and coexistent Ca2+ were
proved to be favorable for HA adsorption onto CPB modified zeolite. The kinetic process was well described by pseudo second-order
model. The experimental isotherm data fitted well to Langmuir and Sips models. The maximum monolayer adsorption capacity of CPB
modified zeolite with surfactant bilayer coverage was found to be 92.0 mg/g. 相似文献
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Guangxue Wu Zhenhu Hu Mark G. Healy Xinmin Zhan 《Frontiers of Environmental Science & Engineering in China》2009,3(3):300-306
Since the solubilization of meat and bone meal (MBM) is a prerequisite in many MBM disposal approaches, enhancement of the
solubilization by means of thermochemical pretreatment was investigated in this study at two temperatures (55°C and 131°C)
and six sodium hydroxide (NaOH) concentrations (0, 1.25, 2.5, 5, 10 and 20 g/L). The MBM volatile solid (VS) reduction ratio
was up to 66% and 70% at 55°C and 131°C, respectively. At the same temperature, the VS reduction ratio increased with the
increase in the dosage of NaOH. The study on the methane (CH4) production potential of pretreated MBM shows that the addition of NaOH at 55°C did not cause the inhibition of the succeeding
CH4 production process. However, CH4 production was inhibited by the addition of NaOH at 131°C. The CH4 production potential was in the range of 389 to 503 mL CH4/g VS MBM and 464 to 555 mL CH4/g VS MBM at 55°C and 131°C, respectively. 相似文献
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文章报道了利用一种新型的环境矿物材料-羟基磷灰石处理实验室高浓度铅、镉污水的方法,该方法与《环境水质监测质量保证手册》中的消石灰处理法相比具有去除速度快、经济有效、无二次污染、安全环保等显著优点。本文还采用消石灰处理法对一次处理后的废水的上清液进行二次处理,这样能使实验室含高浓度的铅、镉废水,在处理后达到地表水三级质量标准。 相似文献
10.
Yanhui Zhan Jianwei Lin Yanling Qiu Naiyun Gao Zhiliang Zhu 《Frontiers of Environmental Science & Engineering in China》2011,5(1):65-75
Surfactant-modified natural zeolites (SMNZ) with different coverage types were prepared by loading hexadecyltrimethyl ammonium
bromide (HTAB) onto the surface of a natural zeolite. The adsorption behavior of humic acid (HA) on SMNZ was investigated.
Results indicate that the adsorbent SMNZ exhibited a higher affinity toward HA than the natural zeolite. HA removal efficiency
by SMNZ increased with HTAB loading. Coexisting Ca2+ in solution favored HA adsorption onto SMNZ. Adsorption capacity decreased with an increasing solution pH. For typical SMNZ
with bilayer HTAB coverage, HA adsorption process is well described by a pseudo-second-order kinetic model. The experimental
isotherm data fitted well with the Langmuir model. Calculated maximum HA adsorption capacities for SMNZ with bilayer HTAB
coverage at pH 5.5 and 7.5 were 63 and 41 mg·g−1, respectively. E2/E3 (absorbance at 250 nm to that at 365 nm) and E4/E6 (absorbance at 465 nm to that at 665 nm) ratios of
the residual HA in solution were lower than that of the original HA solution. This indicates that the HA fractions with high
polar functional groups, low molecular weight (MW), and aromaticity had a stronger tendency for adsorption onto SMNZ with
bilayer HTAB coverage. Results show that HTAB-modified natural zeolite is a promising adsorbent for removal of HA from aqueous
solution. 相似文献