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211.
In situ aeration by means of the Airflow technology was proposed for landfill conditioning before landfill mining in the framework of a reclamation project in Northern Italy. A 1-year aeration project was carried out on part of the landfill with the objective of evaluating the effectiveness of the Airflow technology for landfill aerobization, the evolution of waste biological stability during aeration and the effects on leachate and biogas quality and emissions.The main outcomes of the 1-year aeration project are presented in the paper.The beneficial effect of the aeration on waste biological stability was clear (63% reduction of the respiration index); however, the effectiveness of aeration on the lower part of the landfill is questionable, due to the limited potential for air migration into the leachate saturated layers.During the 1-year in situ aeration project approx. 275 MgC were discharged from the landfill body with the extracted gas, corresponding to 4.6 gC/kgDM. However, due to the presence of anaerobic niches in the aerated landfill, approx. 46% of this amount was extracted as CH4, which is higher than reported in other aeration projects. The O2 conversion quota was lower than reported in other similar projects, mainly due to the higher air flow rates applied.The results obtained enabled valuable recommendations to be made for the subsequent application of the Airflow technology to the whole landfill.  相似文献   
212.
Abstract

A process on crystallized precipitation of ammonium by adding magnesium salt and phosphate was carried out to improve C/N ratio in swine wastewater. After completion of crystallized precipitation of ammonium, an intermittent aeration process with aeration and non‐aeration periods alternated at interval of 1:1 hr day‐1 is used for the improved swine wastewater (T‐N/BOD=0.14: BOD=8200 mg/liter and T‐N=1166 mg/liter). The results obtained from the experiment show that the removal ratios of T‐N and NH4‐N are 91% and 99%, respectively. T‐P is not removed, while the removal ratio of PO4‐P is 60% as 3% of CaCl2 liquid is added. The results also indicate that dilution with water is effective to improve the removal of phosphorus even if raw swine wastewater contains high concentrations of T‐N, T‐P, BOD, and TOC.  相似文献   
213.
通过静态和动态连续降解实验,揭示了壬基酚聚氧乙烯醚(NPEO,Nonylphenol ethoxylates,浓度6.25~12.5 mg·L-1)在碱性牛仔布印染废水中的去除规律.批式活性污泥实验表明,厌氧环境下,随着p H值的增加,壬基酚(NP,Nonylphenol)产生受到抑制,短链NPEO(环氧乙烯加成数1~3,NP(1~3)EO)总浓度水平虽然只有500~900μg·L-1,却呈现增加趋势;好氧环境下,尽管NPEO总量降解率超过85%,但产生的各种短链NP(1~3)EO和短链壬基酚聚氧乙烯醚酸酯(NPEC,Nonylphenol polyethoxycarboxylate)浓度区间为10~110μg·L-1,碱性环境下两类物质总量最低,不足100μg·L-1.耦合厌氧水解和好氧曝气的连续实验表明,增设填料的厌氧折板水解池出水中短链NP(1~3)EO的总浓度增至4000~5000μg·L-1,这与厌氧环境下一部分NPEO附着在废水杂质和厌氧污泥上,在污泥龄较长的附着型污泥作用下,生成了大量的NP(1~3)EO有关;好氧段出水中NP(1~3)EO浓度降至230~610μg·L-1,短链NPEC(NP(1~3)EC)总量上升到800~1000μg·L-1,NP(1~3)EC由NP(1~3)EO转化来的可能最大.印染出水中NP及NP(1~3)EO受厌氧段出水中NP及NP(1~3)EO浓度影响明显.  相似文献   
214.
针对传统的水库破坏分层技术的低效率、高能耗等普遍问题,研制了能模拟基于自然对流而形成水温分层的中试模型水库,研究了曝气诱导形成内波混合破坏水温分层的可行性,过程和效果.扬水曝气产生的周期性出流能作为扰动源,在分层水环境中诱导形成内波.内波频率及波幅与曝气量有关.在曝气量0.07~0.28m3/(m2·h),跃温层温度梯度0.29~0.48℃/m的中试条件下,内波破坏分层过程主要以减小表层和底层水温差别、驱使跃温层下潜、等温层变薄为特征,破坏分层的速度与曝气量正相关、与温度梯度负相关.内波通过垂向振荡和横向传播,促进不同温度的水层之间的热交换.相对传统的循环水流混合,在温度梯度约0.32℃/m和0.46℃/m的条件下,当曝气量从0.07m3/(m2·h)逐渐增加到0.28m3/(m2·h)时,内波混合可分别将破坏分层效率提高25.0%~40.0%和41.2%~60.0%.  相似文献   
215.
微孔曝气国内外研究进展及趋势分析   总被引:1,自引:0,他引:1  
胡鹏  刘玲花  吴雷祥  方媛瑗 《环境工程》2015,33(2):58-61,121
分析比较了国内外微孔曝气研究和应用实例,指出了目前微孔曝气技术的研究重点。同时,综合国内外研究人员的研究成果,分别叙述了曝气量、安装水深、安装面积、孔径、水质和气孔堵塞状况对微孔曝气充氧性能的影响,对不同影响因素的作用效果做了总结,并指出目前研究存在的问题。以期对污水处理厂曝气系统的优化提供借鉴,对拟采用微孔曝气法进行生态修复的研究提供参考。  相似文献   
216.
航空结构材料环境适应性研究进展及发展方向   总被引:4,自引:3,他引:1       下载免费PDF全文
对航空结构材料环境适应性研究进展进行了综述,其中包括新型航空材料的环境适应性研究和环境-力学因素耦合作用对航空结构材料环境适应性的影响,最后阐述了环境适应性研究的结构化趋势,并指出了航空结构材料环境适应性研究未来将重点关注户内加速试验技术、环境适应性评价技术以及环境适应性数据的深度开发与应用,将各种科学技术和工程实践用于减缓环境对结构材料的损伤,提高装备的耐环境能力。  相似文献   
217.
底泥磷释放是导致水体富营养化的主要原因之一,本文通过在样泥中分别投加0、0.01和0.02 mol·L-1Ca(OH)2溶液,同时进行微臭氧曝气(0.6 g·min-1),研究了曝气加氢氧化钙复合技术抑制底泥磷释放的效果及对底泥微生物多样性的影响.结果显示,投加0.02 mol·L-1Ca(OH)2组上覆水中总磷(TP)浓度的最终值与对照组相比,抑制率达到34%;从各形态磷的角度进一步分析发现,与对照组相比,该组底泥中可溶性磷和铁磷含量分别降低了92%和60%,其最终转化为钙磷是该技术的关键.通过聚合酶链式反应-变性梯度凝胶电泳技术(PCRDGGE)研究发现,各试验组微生物相似性在65%~85%之间;Berger-Parker优势度指数、Margalef丰富度指数、Shannon多样性指数变化不明显,表明该技术不会影响底泥微生物多样性.  相似文献   
218.
The PEMMC-Biobarrel (packed-bed of entrapped mixed microbial cells with Bio-barrel) process and MEMMC-Biobarrel (moving EMMC-Biobarrel) process were investigated for enhancing concurrent organic and nitrogen removal with applied intermittent aeration. For the PEMMC-Biobarrel process, the EMMC-Biobarrel carriers were employed at a packing ratio of 20%. In the MEMMC-Biobarrel process, the EMMC-Biobarrel carriers with a packing ratio of 10% were added along with the activated sludge (AS) in the bioreactor. Three different hydraulic retention times (HRTs) of 9, 6 and 4 h were applied. Aeration was provided intermittently at time schedules of 1 h air on/1 h air off, 1 h on/1.5 h off and 1 h on/2 h off. Nitrogen removal in the PEMMC-Biobarrel system was not improved by increasing the intermittent non-aeration time period. On the other hand, the MEMMC-Biobarrel process enhanced nitrogen removal with increasing non-aeration time even though the SCOD/N(TIN) ratio decreased from 6 to 4. Significant denitrification during the aeration cycle was observed in the MEMMC-Biobarrel process. The MEMMC-Biobarrel process demonstrated the most efficient organic and nitrogen removal at an HRT of 6 h with an intermittent aeration time schedule of 1 h on/2 h off. Nitrogen removal of 80% was achieved, which was about 15% higher compared to the AS system. TCOD and SCOD removal efficiencies were 80% and 75%, respectively.  相似文献   
219.
由于硫酸盐还原的影响,普通高温UASB反应器处理亚硫酸盐纸浆厂排出的高硫酸盐难降解废水过程中甲烷菌活性受到了严重抑制.考虑到空气对硫化氢的吹脱和对硫化物的氧化作用可能减轻硫化物对甲烷菌的抑制,本研究在厌氧反应器中引入限量曝气措施.试验结果表明,反应器的运行稳定性和处理能力均得到大幅提高.在有机负荷提高到原来2倍的情况下,曝气后COD去除率仍有提高,从40%~50%提高到60%~70%.试验证明部分甲烷菌可以耐氧,而某些种类的水解酸化细菌则对不完全厌氧环境比较敏感.  相似文献   
220.
The proof is rapidly mounting that instream aeration is a technically and economically feasible supplement to secondary treatment of wastes, an alternative to tertiary waste treatment. Some phenomena remain unexplained; and competing technologies, especially those employing molecular oxygen, are being explored vigorously. However, there are convincing arguments in favor of aeration on theoretical grounds, proved technology is available; and the first installations have already been made. While remaining questions are being further investigated, it is time to consider in more detail the broader aspects, as to the institutional, legal, and political hurdles to be overcome before advantage can be taken of the new technology. This paper first summarizes the state-of-the-art as far as technology is concerned; and then outlines the institutional problem.  相似文献   
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