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241.
孔凡博  张耀宗 《环境工程》2013,31(4):6-8,12
氧化沟工艺由于进水中含有大量的无机颗粒,无机颗粒的沉淀导致沟内积泥较厚。为了不影响正常生产,依据经验数据,依次对1号、2号氧化沟安装底推。对沟内积泥情况及影响因素进行分析比较,得出氧化沟的积泥主要由进水中密度较大的无机颗粒造成,且积泥规律与底推安装位置和运行情况相关。  相似文献   
242.
Surface sediments are closely related to lake black blooms. The dissolved oxygen (DO) distribution and its penetration depth in surface sediments as well as the migration and transformation of redox sensitive elements such as Fe and S at the sediment-water interface are important factors that could influence the formation of the black bloom. In this study, dredged and undredged sediment cores with different surface properties were used to simulate black blooms in the laboratory. The Micro Profiling System was employed to explore features of the DO and ∑H2S distribution at the sediment-water interface. Physical and chemical characteristics in sediments and pore waters were also analyzed. The results showed that sediment dredging effectively suppressed the black blooms. In the undredged treatment, DO penetration depth was only 50 μm. Fe^2+ concentrations, ∑H2S concentrations, and ∑H2S production rates were remarkably higher in surface sediments and pore waters compared to control and dredged treatments. Furthermore, depletion of DO and accumulation of Fe^2+ and ∑H2S in surface sediments and pore waters provided favorable redox environments and necessary material sources for the blooms. The study results proved that physical and chemical characteristics in surface sediments are important factors in the formation of the black bloom, and could provide scientific guidance for emergency treatment and long-term pre-control of black blooms.  相似文献   
243.
Dissolved organic matter (DOM) represents one of the most mobile and reactive organic compounds in ecosystem and plays an important role in the fate and transport of soil organic pollutants, nutrient cycling and more importantly global climate change. Electrochemical methods were first employed to evaluate DOM redox properties, and spectroscopic approaches were utilized to obtain information concerning its composition and structure. DOM was extracted from a forest soil profile with five horizons. Differential pulse voltammetry indicated that there were more redox-active moieties in the DOM from upper horizons than in that from lower horizons. Cyclic voltammetry further showed that these moieties were reversible in electron transfer. Chronoamperometry was employed to quantify the electron transfer capacity of DOM, including electron acceptor capacity and electron donor capacity, both of which decreased sharply with increasing depth. FT-IR, UV-Vis and fluorescence spectra results suggested that DOM from the upper horizons was enriched with aromatic and humic structures while that from the lower horizons was rich in aliphatic carbon, which supported the findings obtained by electrochemical approaches. Electrochemical approaches combined with spectroscopic methods were applied to evaluate the characteristics of DOM extracted along a forest soil profile. The electrochemical properties of DOM, which can be rapidly and simply obtained, provide insight into the migration and transformation of DOM along a soil profile and will aid in better understanding of the biogeochemical role of DOM in natural environments.  相似文献   
244.
Estuaries have been described as one of the most difficult environments on Earth. It is difficult to know how to treat the combined wastewater in tidal rivers at the estuary, where the situation is very different from ordinary fresh water rivers. Waste oyster shell was used as the active filler in this study in a bio-contact oxidation tank to treat the combined wastewater at the Fengtang Tidal River. With a middle-experimental scale of 360 ma/day, the average removal efficiency of COD, BOD, NH3-N, TP and TSS was 80.05%, 85.02%, 86.59%, 50.58% and 85.32%, respectively, in this bio-contact oxidation process. The living microbes in the biofilms on the waste oyster shell in this bio-contact oxidation tank, which were mainly composed of zoogloea, protozoa and micro-metazoa species, revealed that waste oyster shell as the filler was suitable material for combined wastewater degradation. This treatment method using waste oyster shell as active filler was then applied in a mangrove demonstration area for water quality improvement near the experiment area, with a treatment volume of 5 × 10^3 m^3/day. Another project was also successfully applied in a constructed wetland, with a wastewater treatment volume of 1 ×10^3 m^3/day. This technology is therefore feasible and can easily be applied on a larger scale,  相似文献   
245.
采用前掺杂法、沉积-沉淀法和浸渍法制备了氧化锰八面体分子筛(OMS-2)负载Pt催化剂(Pt/OMS-2),对所制催化剂进行了结构和织构表征。并研究了不同制备方法和沉积-沉淀法中不同制备(Pt负载量和溶液的pH值)对Pt/OMS-2催化氧化CO性能的影响。结果表明,沉积-沉淀法制备的Pt/OMS-2-DP催化剂活性最好(T100=100℃)。这与Pt/OMS-2-DP催化剂中Pt颗粒大小及OMS-2载体与Pt之间存在强相互作用有关。Pt负载量明显影响Pt/OMS-2-DP催化剂的催化活性,3Pt/OMS-2-DP催化剂(Pt=3.0 wt%)催化活性最高,这是由于适当Pt负载量,Pt颗粒较小,并与载体OMS-2的相互作用较强,能较好地活化OMS-2晶格氧。pH值对Pt/OMS-2-DP催化剂催化性能影响较大,这与OMS-2的等电点和Pt在不同溶液中存在不同Pt配位体形式有关。  相似文献   
246.
采用硝酸氧化对颗粒活性炭进行改性处理,研究了硝酸改性后活性炭结构和表面化学性质,及其对酸性大红3R的吸附能力和催化臭氧氧化去除效果的影响。结果表明,硝酸改性后,活性炭比表面积减小,微孔孔容减小,中孔孔容增大。活性炭表面以羧基为主的酸性含氧官能团随着硝酸改性浓度提高而显著增加,并对其吸附能力和催化臭氧氧化能力产生显著影响。硝酸改性活性炭吸附能力在碱性条件下由于表面酸性官能团和酸性大红3R之间的静电作用而有所降低;在酸性条件下由于二者的色散作用而增强。表面酸性官能团在碱性条件下参与臭氧分解,产生·OH,增强了硝酸改性活性炭对酸性大红3R的催化臭氧氧化去除效果。  相似文献   
247.
过氧化氢与过硫酸钠去除有机污染物的进展   总被引:1,自引:0,他引:1  
原位化学氧化在去除一些难以生物降解的污染物(如三氯乙烯)方面有着简单、快捷、彻底的优点,文章综述了2种环境友好的氧化剂过氧化氢和过硫酸钠在修复地下水污染的进展。主要从2方面进行文献的追溯跟踪,总结归纳:一方面是过氧化氢和过硫酸钠催化活化产生自由基的机理;另一方面是影响这2种氧化剂去除地下水氯代烃等有机污染的主要因素。最后提出了这2种氧化剂联合氧化的机理研究及应用上存在的问题和展望,为今后的研究工作提供了切入点和参考。  相似文献   
248.
为研究厌氧氨氧化工艺对高浓度含氮废水的脱氮性能,在以聚乙烯海绵作为填料的上流式厌氧固定床反应器中利用人工配置高浓度含氮废水进行了实验研究.实验中通过添加充足无机碳源,实现了厌氧氨氧化反应器在总氮浓度900~1 210 mg/L长期稳定的运行,脱氮效率在80%以上,最高氮负荷为5.9 kg/m3·d.结果表明:充足的无机碳源在一定程度上可有效地降低高浓度亚硝氮对厌氧氨氧化菌的抑制作用.通过对污泥性状的研究,明确寻找出污泥上浮的原因所在.通过Stover-Kincannon模型确定系统动力学参数KB和Umax分别为30.2 g/L·d和2L2g/L·d,这将有助于对该厌氧氨氧化系统各控制条件的有效调节和准确设定,也为日后应用于实际工程中提供重要的理论依据.  相似文献   
249.
Fenton氧化技术是高级氧化技术的一种,是处理难降解的废水是常用的技术之一。本文对Fenton氧化技术原理和影响因素进行分析,并对Fenton氧化技术在电镀废水、染料废水、造纸废水中的应用进行了研究。  相似文献   
250.
为了给超临界水氧化设备工业化应用提供指导思路,本文设计制作了一套连续化的超临界水氧化仿工业化装置(压力为24MPa,H2O2过氧量倍数为3倍),选取甲基红、靛红、苯磺酸、对氨基苯磺酸、对二甲氨基苯甲醛、2,4-二硝基苯肼6种芳香烃化合物进行了从亚临界过渡到超临界状态下的水氧化试验,并以总有机碳(TOC)为表征研究了6种化合物的去除效果,以幂指数方程描述了6种化合物从亚临界到超临界的反应动力学参数。结果表明:6种有机物在亚临界至超临界点时间段内,反应物TOC的浓度随时间的变化呈现良好的线性下降趋势,且在亚临界状态下,足够的反应停留时间就能取得较好的TOC去除效果,而在超临界状态下,反应过程十分迅速,在较短的反应时间内也会取得较好的TOC去除效果,但随着反应时间的增加,在几分钟之内,TOC的去除率随时间的变化还是较为明显;6种有机物的反应活化能介于26.2~54.341kJ/mol之间,表明不同结构化合物SCWO反应的温度升高效应不同。  相似文献   
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