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351.
防空干道地下水质YD390-400mg/l,TDS750 mg,/l,经强化纤维过滤-OR低压反渗透装置处理后水质达到钛白粉生产工艺用水标准。YD〈200mg/l,TDS〈450mg/l。工艺条件:处理量7000M^3/d,净水荆加入量1501/h,反渗透设计压力2.5Mpa,工作压力1.3Mpa,工作温度10℃-30℃,采用芳香族聚酰胺反渗透膜,设计压力4.0Mpa,工作压力1.5Mpa,工作温度10℃-40℃。同时,该处理系统占地面积小,工艺成熟,简洁、高效,在确保出水达标的同时降低了运行成本。在强化纤维过滤中采用GM多功能净水剂,具有絮凝快,分离速度快,分界清楚,浊度去除高。反渗透工序分离过程不需加热,没有相的变化,具有耗能较少,设备体积小、操作简单、适应性强,应用广泛。  相似文献   
352.
HDTMA改性粉煤灰沸石对水中铬酸盐的吸附   总被引:2,自引:1,他引:1  
以自制HDTMA-粉煤灰沸石为吸附剂,对铬酸盐的吸附进行了实验研究。讨论了吸附剂的投入量、废水pH值、吸附温度和吸附时间等各因素对Cr(VI)去除率的影响。研究表明:pH值对Cr(VI)的吸附效率无显著影响,且在HDTMA-粉煤灰沸石的投加量为20 g/L、吸附温度为30℃、吸附时间为60 min的条件下,Cr(VI)的去除率可达90%左右。  相似文献   
353.
文章采用陶粒滤料为载体,研究了在冬季低温条件下化学混凝-曝气生物滤池工艺对模拟灰水的中试研究。实验结果表明,在冬季水温为3℃-15℃的条件下,初沉处理大大减轻了后续曝气生物滤池的运行负荷的同时也提高了整个工艺的搞冲击能力。当曝气生物滤池水力负荷为3.8m/h时,COD、LAS的去除效率分别在70%、80%以上。NH4-N去除效率受LAS、COD、温度影响较大,整个工况去除效率在15%~75%。NH4-N的去除效率随着COD负荷的增加,其去除效率受到严重的影响。COD的去除负荷率为2.85kg/(m^3滤料·d)升高到5.04kg/(m^3滤料·d)时,NH4-N的去除率则由61%-77%,下降到26%~41%,说明了异养微生物的生长严重抑制了硝化亚硝化细菌的生长。  相似文献   
354.
概述了蚯蚓生态滤池的研究进展,介绍了蚯蚓生态滤池化学除磷的工艺流程和设备参数;由试验得出氯化铁(FeCl3·6H2O)是蚯蚓生态滤池化学除磷的合适药剂,并确定最经济投加量为50mg/L;在此条件下,研究了化学除磷小试滤池产生的污泥性质,包括污泥产率的变化、重金属含量、污泥的脱水性能、污泥的稳定化程度以及污泥的最终处置方法。  相似文献   
355.
灰场评价是电厂环境影响评价中非常重要的部分,粉煤灰的性质,决定了空气环境影响评价在贮灰场的评价中具有重要的地位和作用。而贮灰场源强的计算,则是贮灰场空气评价的关键。本文结合实际工作,从贮灰场空气污染源产生环节分析入手,结合已有资料,分别讨论了干式贮灰场空气污染源中表层起尘量和自卸汽车卸料起尘量的影响因素及源强计算,并根据其影响因素,总结了贮灰场空气污染防治措施的一些要点,希望对广大环评工作者有所裨益。  相似文献   
356.
Disposal of sewage sludge from waste water treatment plants is a serious environmental problem of increasing magnitude. Waste water treatment generates as much as 70 g of dry solids per capita per day. Although one of the disposal solutions for this waste is through incineration, still almost 30% of sludge solids remain as ash. This paper presents results related to reuse of sewage sludge ash in concrete. The sludge was characterised for chemical composition (X-ray flourescence analysis), crystalline phases (X-ray diffraction analysis) and pozzolanic activity. The effects of incineration on crystal phases of the dry sludge were investigated. Two water/cement (W/C) ratios (0.55 and 0.45) and three sludge ash percentages (5%, 10% and 20%) per cement mass were used as filler. The mechanical performance of sewage sludge ash concrete (SSAC) at different curing ages (3, 7, 28 and 90 days) was assessed by means of mechanical tests and capillary water absorption. Results show that sewage sludge ash leads to a reduction in density and mechanical strength and to an increase in capillary water absorption. Results also show that SSAC with 20% of sewage sludge ash and W/C = 0.45 has a 28 day compressive strength of almost 30 MPa. SSAC with a sludge ash contents of 5% and 10% has the same capillary water absorption coefficient as the control concrete; as for the concrete mixtures with 20% sludge ash content, the capillary water absorption is higher but in line with C20/25 strength class concretes performance.  相似文献   
357.
饮用水快速砂滤池优势微生物群落的代谢功能解析   总被引:2,自引:2,他引:0  
快速砂滤池广泛应用于饮用水处理中,其净水效能一直被认为是物理化学作用,而对滤池表面附着微生物的净水作用仍不明晰.为了解析滤池中微生物的群落构成和功能特征,研究对国内8个城市的11座饮用水快滤池的进出水和滤料进行采样分析.进出水水质分析结果表明经过滤池处理,溶解性有机碳(DOC)有少量去除,氨氮(NH_4~+-N)显著降低,硝酸盐氮(NO_3~--N)显著增加,总氮(TN)未发生明显变化.利用宏基因组技术获得了滤池中微生物群落的构成和功能信息,滤池优势菌属(相对丰度占前10%)共14种,包括两类氨氧化细菌Nitrospira和Nitrosomonas.对优势菌属的功能基因信息进行分析,发现优势微生物菌群具有更高的碳水化合物、氮、硫和异生物质代谢功能丰度. Aeromonas的碳水化合物代谢基因相对丰度最高,Bradyrhizobium的氮、硫及异生物质代谢基因的相对丰度最高,说明这两种菌是影响饮用水水质的重要菌属.通过评价各个优势菌属对异生物质的代谢潜能,发现Bradyrhizobium、Sphingomonas、Methyloglobulus、Sphingopyxis和Klebsiella是饮用水快速砂滤池中降解微量有机污染物的关键菌.  相似文献   
358.
Characterization of MSWI fly ash through mineralogy and water extraction   总被引:1,自引:0,他引:1  
This paper investigates the mineralogical characteristics of fresh, aged and hot water extracted MSWI fly ash for providing the baseline information of minerals stability which controls the released heavy metals into the environment. Quantitative determination of bulk phase abundance in the fresh fly ash by the XRD Rietveld refinement method provided composition levels for amorphous and crystalline phases such as potassium tetrachlorozincate (K2ZnCl4), gehlenite, halite, quartz, anhydrite, and feldspar. The minerals association in the fly ash is clearly unstable and subject to mineralogical reactions. The phases of K2ZnCl4, halite and anhydrite in the fresh fly ash were involved in hydration and dissolution/precipitation processes to form new minerals such as the Zn-bearing mineral gordaite, syngenite, gypsum and hydrocalumite. The solubility-controlling phases and extractability of heavy metals were examined in a Soxhlet hot water-extractor. Here the soluble salts were simply removed from fly ash while Ca-, Al-, Si- and SO42−-bearing hydrate minerals were precipitated from the extraction solution. Furthermore, a low release of heavy metals Zn, Pb and Cd in hot water was noticed, indicating a strong retention of the trace metals in the mineral phases remaining in the insoluble fly ash residues.  相似文献   
359.
The recovery of ferrous and non ferrous metals from the bottom ashes is a common practice in the most part of Europe, both for the environmental advantages of their recycle and to avoid problems of swelling and expansion that metals can cause when bottom ashes are reused in concrete production or in road construction. This paper focuses on metal recovery from bottom ashes produced in Municipal Solid Waste (MSW) incinerators, with a particular focus on aluminium. A forecasting model was developed in order to evaluate the quantity of aluminium scraps recoverable from the bottom ashes. The model was applied to the Italian situation but its validity can be extended to other countries. Focusing on Italy, by applying conventional technologies for the separation of non-ferrous metals, the amount of aluminium potentially recoverable from bottom ashes is estimated in the range from 16,500 to 21,000 tonnes at the year 2015, and from 19,000 to 28,500 tonnes at 2020.  相似文献   
360.
This paper investigated the effect of various amounts of low-grade recycled aggregates in concrete containing mineral admixtures at three different water-binder ratios on mechanical and environmental performance. The balance between durability and environmental impact for a given strength level similar to normal-use concrete was also examined using analytic hierarchy process. Results showed that increasing the water-binder ratio and volume of recycled aggregates reduced compressive strength and increased air permeability and drying shrinkage relative to normal aggregates. However, compared to normal-use concrete similar or better performance could be achieved, which was attributed to improvement of low-grade recycled aggregate performance when combined with fly ash. Similarly, CO2 emissions and volume of raw materials were lower than the normal-use concrete for all mixes. Concrete mixes with low air permeability and low CO2 footprint had the best balance of durability and environmental impact, as decreasing raw material volume tended to more greatly reduce durability.  相似文献   
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