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21.
中水已成为热电厂的重要水源,其深度处理是影响电厂水处理系统的关键。为评估双膜法在电厂深度处理中的潜力与稳定性,考察了山东某热电厂石灰混凝-超滤(UF)-反渗透(RO)系统不同季节的处理效果及污染物去除特征与各工段贡献率。研究表明:双膜法对浊度、色度、电导、碱度、COD和TOC的去除率分别达95.82%、96.62%、96.73%、98.22%、96.42%和89.13%,在夏季严重膜污堵的条件下,也可保障产水达标,是一种有效的中水深度处理技术。预处理仅去除某些大分子腐殖酸类有机物、硬度类物质、悬浮物,富里酸类有机物、氮等其他溶解性物质主要由RO去除(去除率均60%),因此,存在膜结垢和污堵的风险。不同季节污染物浓度变化不显著,但夏季高温条件下微生物代谢和繁殖速率较高,荧光指数(fluorescence index, FI)大于2,生物指数(biological index, BIX)为1.2左右,这是夏季膜污堵爆发的关键原因。 相似文献
22.
为了解决常规污水处理技术无法进行完整的硝化反硝化过程,污水厂出水中氨氮、总氮、总磷偏高以及运行成本较高的问题,以某污水厂排水为研究对象,通过物化与生化耦合,构建化学催化生物耦合床(CCBF)脱氮系统,研究CCBF系统对污水厂排水中氨氮、总氮、总磷和COD的去除效能。结果表明:当DO为5.5~6.0 mg·L−1、RT为8 h、C/N为1.5∶1时,CCBF可将${\rm{NH}}_4^{+} $ -N从48.5 mg·L−1降至4.58 mg·L−1、TN从51.2 mg·L−1降至6.5 mg·L−1、TP从6.6 mg·L−1降至0.48 mg·L−1、COD从78.5 mg·L−1降至33 mg·L−1,去除率分别达到89.5%、85.7%、92.5%和57.9%;污水经处理后,氨氮、总氮、总磷、COD均达到城镇污水处理厂污染物排放标准(GB 18918-2002)一级A排放标准。利用Eckenfelder方程对系统脱氮过程进行模拟,求得${n_{{\rm{NH}}_4^ +{\text{-}} {\rm{N}}}} $ =0.314 76,nTN=0.282 21,${K_{{\rm{NH}}_4^ +{\text{-}} {\rm{N}}}} $ =0.128 02,KTN=0.218 59,与水力负荷为0.000 8~0.007 m3·(m2·min)−1的常规生物处理相比,系统内部生物量充足、活性高,物化与生物耦合强化效果明显。 相似文献
23.
应用Materials Studio软件,采用巨正则系综蒙特卡洛方法,依据电厂烟气注入采空区防火与封存实际,对煤吸附CO2、O2和N2的能力与竞争性差异进行分析。由计算结果可知,相比于吸附O2、N2,煤吸附单组分CO2除了范德华能起主要作用,还有很强的静电作用能。由相互作用能和等量吸附热计算结果可知,煤容易吸附CO2,而不容易吸附O2和N2。298.15 K时,CO2对N2和O2吸附选择性及O2对N2的吸附选择性分别为42.396、32.357和1.310,揭示了竞争能力大小为CO2 > O2 > N2。分压分别为CO2 16.5 kPa+N2 79 kPa+O2 4.5 kPa内系统竞争吸附时,受吸附能力、竞争性和分压影响,CO2被大量吸附,而O2吸附抑制。 相似文献
24.
垃圾填埋场渗滤液污染土壤具有重金属-有机物复合污染的特性。研究了观赏植物广东万年青、白掌、孔雀竹芋和经垃圾渗滤液驯化的污泥对该污染土壤的修复效果,结果表明:采用单一植物修复时,广东万年青较白掌和孔雀竹芋对土壤污染物具有更强耐性,能在污染土壤中生长良好,对重金属Cd和Pb的富集能力也更强;驯化污泥能明显提高污染土壤中有机污染物的降解率,并使重金属Cd和Pb稳定态比例分别提高了34.7%和36.6%,降低了重金属的生物有效性。当采用广东万年青和驯化污泥联合修复时,污泥能促进植物的生长,且当污泥添加量为480 mg·kg-1时,联合修复对土壤中Cd、Pb及有机污染物的去除率分别较不加污泥的对照提高了51.7%、25.5%和40.2%。 相似文献
25.
Coleman JO Frova C Schroder P Tissut M 《Environmental science and pollution research international》2002,9(1):18-28
Weed control by herbicides has helped us to create the green revolution and to provide food for at least the majority of human beings living today. However, some herbicides remain in the environment and pose an ecological problem. The present review describes the properties and fate of four representative herbicides known to be presistent in ecosystems. Metabolic networks are depicted and it is concluded that removal of these compounds by the ecologically friendly technique of phytoremediation is possible. The largest problem is seen in the uptake of the compounds into suitable plants and the time needed for such an approach. 相似文献
26.
Background Worldwide, large amounts of sediments have to be dredged annually from waterways and harbours. These sediments are sometimes
polluted with a variety of toxic compounds. In some countries, including Belgium, the load with the biocide tributyltin (TBT)
from ship coatings prohibits the dumping of harbour sludge into the sea. Land-based dumping is a commonly used alternative.
Objective This research investigated the feasibility to use land-deposited harbour sludge for plant production. In a field trial, the
growth of 38 more or less salt-tolerant plant species on low and high TBT-contaminated sediments was studied. The elimination
of TBT from sludge with and without vegetation was compared. The uptake of TBT and its degradation products di- and monobutyltin
(DBT and MBT) into harvest products under field conditions was determined.
- Experimental Set-up. Sediments dredged in May 2003 from the brackish waters of the port of Antwerp were analysed in the laboratory
for soil texture, pH, electroconductivity, sodium, magnesium, potassium, calcium, ammonium, nitrate, total nitrogen, chloride,
sulphur and the organotins TBT, DBT and MBT. The sediments were lagooned for one year to dewater, desalinate and improve their
structure. Salt-tolerant domestic and wild plants were selected and sown in May 2004. In August 2004, plants were harvested
and the produced biomass was determined. Samples were taken from vegetated and non-vegetated top and bottom sediments and
from plants growing above soil and analysed for TBT, DBT and MBT.
Results The fresh sediments showed a good supply with nutrients and a neutral pH, but were rather saline (EC 14 mS cm-1 of the saturated
paste extract). The salinity decreased to 3.7 mS cm-1 during lagoonation. The high and the low contaminated sediment had initially
43 and 1.6 mg TBT kg-1 dry weight, respectively. Besides TBT, several other contaminants were present in the sediments at
critical levels. The biomass production of the plant species from the field trial ranged from 0.2 to 13 tons dry mass per
hectare. Plants performing excellently were barley, sorghum, rape seed, a clover/grass mix and reed. If at all, a positive
influence of TBT on plant growth was seen. TBT was degraded significantly faster (>40%) below barley. The uptake of TBT, DBT
and MBT into stem and leaves of reed, grass and clover was very low, but measurable and not related to concentrations in soil.
No uptake of TBT or its metabolites into corn of barley was found.
Discussion This study confirmed former results: the toxicity of TBT to higher plants is low, and even high levels in soils would not
be a hindrance for crop production. The removal of TBT seemed to be increased by both lagooning and plant growth, although
the target values for sea dumping in use in certain European countries were not reached. A plausible explanation for the faster
degradation of TBT under vegetation is that oxygen is a limiting factor, and plants dewater the soil, thus aerating it. The
uptake of the organotins TBT, DBT and MBT into harvest products is probably due to attached soil particles.
Conclusions To summarize, barley was the optimal species: it grew very well despite the salinity of the dredged sediments, it had a significantly
positive effect on TBT removal; it showed no measurable uptake of TBT or the other butyltins into the harvested product; and
it is a cash crop well established in European agriculture.
Outlook The amounts of dredged sediments are high, and good soils are becoming increasingly rare. The feasibility of using dredged
sediments for non-food production, such as energy crops, should be investigated by a critical risk assessment. 相似文献
27.
宁波市城市污水处理厂污泥处置方案探讨 总被引:2,自引:0,他引:2
随着城市污水处理率提高导致的污水污泥产量的增长趋势也使得污水污泥的处理问题更为突出。在总结国内外城市污泥处置技术发展趋势的基础上,结合宁波市的实际情况,根据无害化、减量化和资源化的原则,提出城市污泥近远期处置方案,并对处置方案作出可行性分析。 相似文献
28.
陕南化龙山珍稀濒危植物的保护和利用 总被引:6,自引:0,他引:6
傅志军 《长江流域资源与环境》1999,8(1):44-49
化龙山是大巴山系在川陕境内的最高山峰,海拔2917.2m,植物资源丰富,有野生维管植物1977种,隶属186科815属。化龙山是陕西省珍稀濒危植物资源最丰富的地区,共有国家保护的珍稀濒危植物22科30属33种,其中属一级保护1种,二级保护11种,三级保护21种,属濒危2种,稀有14各,渐危17种,珍稀濒危植物古老成分较多,并以第三纪孑遗成分为主单少型属和中国特有属分别是16属和10属。这些珍稀濒危 相似文献
29.
定量评估重金属有效态含量是明确农田土壤修复过程中重金属生态环境风险的重要步骤。针对硫化物矿区重金属污染土壤开展添加蚕沙-铁粉及蚕沙-伊蒙土-铁粉调理剂条件下油葵、孔雀草、香茅草和桑树4种经济作物的盆栽试验,并测定经济作物与调理剂共同作用下土壤中pH、有机质及镉砷铅锌铜有效态的含量。结果显示作物栽培与调理剂共同作用下,土壤pH值在两季中均有增加,土壤有机质在第一季中增加。第一季种植4种经济作物添加蚕沙-铁粉可显著降低土壤中多种重金属有效态含量,各重金属的最高钝化效率分别为Cd 30.3%、As 49.5%、Pb33.6%、Zn 52.1%、Cu 45.7%,优于蚕沙-伊蒙土-铁粉的调理效果。第二季种植时调理剂的钝化效率普遍降低。两季综合来看,蚕沙-铁粉联合香茅草时有效态镉、砷、铅、锌、铜的降低幅度最大。因此,添加蚕沙-铁粉调理剂的四种作物单季种植时能同时降低镉、砷、铅、锌、铜有效态的含量,香茅草两季种植时能同时降低以上5种重金属有效态含量,具有潜在应用价值。 相似文献
30.