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931.
932.
聚硅酸锌铝的制备及其性能研究 总被引:1,自引:1,他引:0
以硅酸钠、硫酸锌、硫酸铝为原料,通过共聚法制备了无机高分子絮凝剂聚硅酸锌铝(PSZAS),研究了Na2SiO3的摩尔浓度、活化时间、Al/Si、Zn/Si 配比及絮凝剂的投加量对絮凝效果的影响,用X-射线衍射(XRD)和电子扫描电镜(SEM)对该絮凝剂的结构及形貌进行了表征。结果表明:当硅酸钠的浓度为0.4 mol/L,硅酸活化时间为2 h,Si∶Al∶Zn=1∶1∶1.5,絮凝剂投加量为20 mL/L废水时,絮凝剂的电中和能力和吸附架桥能力最强,絮凝剂对含H-酸染料模拟废水的絮凝效果最好。 相似文献
933.
A method for quality screening is suggested to detect volatile impurities in inorganic coagulants that are used for drinking water treatment. Static headspace gas chromatography with mass spectrometry detection (HS–GCMS) is sensitive and selective to detect volatiles in low concentrations. This study has discovered that volatile organic impurities are detectable in ferric and aluminium-based coagulants which are used for drinking water treatment. For ferric chloride, 2-propanol was detected at a level of 17–24 μg ml−1, acetone at 0.7–1.7 μg ml−1, 1,1,1-trichloroacetone at 0.02–0.04 μg ml−1, trichloromethane at 0.01–0.02 μg ml−1 and toluene at 0.01–0.12 μg ml−1. For ferric chloride sulfate, acetone was detected at a level of 0.12 μg ml−1, 1,1,1-trichloroacetone at 0.06–0.08 μg ml−1, trichloromethane at 0.13–0.23 μg ml−1, bromodichloromethane at 0.04–0.06 μg ml−1 and dibromochloromethane at 0.04–0.05 μg ml−1. For aluminium hydroxide chloride, only trichloromethane was detectable, but below the method detection limits (MDL). Although the concentrations of these impurities in commercial coagulants are low, this observation is important and should have impact on water industries for them to pay attention to the chemicals they are using for drinking water production. 相似文献
934.
A number of studies on the oxidation of various organic/inorganic contaminants by ferrate(VI) were reported in the 1980s and 1990s. The exploration of the use of ferrate(VI) for water and wastewater treatment has been well addressed recently. However, challenges have existed for the implementation of ferrate(VI) technology in practice due to the instability of a ferrate solution or high production cost of solid ferrate products. The research has been carried out aiming at the generation and application of ferrate(VI) in situ. This paper thus reviews ferrate chemistry and its overall performance as a water treatment chemical, discusses the factors affecting the ferrate yield efficiency using the electrochemical method, and finally, summarises the work on the production and use of ferrate in situ which is currently under study. 相似文献
935.
Papadopoulos F Parissopoulos G Papadopoulos A Zdragas A Ntanos D Prochaska C Metaxa I 《Environmental management》2009,43(1):135-143
Field research was carried out to assess the effects of the application of reclaimed municipal wastewater on rice cultivation
in Thessaloniki, Greece during a 2-year period (1999–2000). Effects on production cost, soil composition, and health risk
were examined. A randomized complete block design was used for the paddy field with three treatments and four replicates.
The treatments were (1) river irrigation water with N–P fertilization, (2) reclaimed wastewater irrigation with surface N
fertilization, and (3) reclaimed wastewater irrigation without fertilization. The results showed that the total production
cost decreased 8.8% and 11.9% by applying the second and third treatments, respectively, compared to the first treatment,
without significant differences in the agronomic and rice quality traits. Soil composition showed discrepancies between the
2 years and the three treatments, whereas the pathogens of the reclaimed wastewater and rice tissues posed a low human risk
when taking the needed precautions. 相似文献
936.
纳米级聚合氯化铝处理石化废水絮凝效果研究 总被引:1,自引:0,他引:1
采用自制的纳米级聚合氯化铝絮凝荆处理石大科技股份公司胜华炼油厂隔油池出水,以处理后水样的透光率作为混凝沉降效果的评价指标,并对絮凝剂投加量、搅拌速度、搅拌时间等影响混凝效果的因素进行了研究。试验表明,聚合氯化铝对石化废水的处理达到较为理想的效果,聚合氯化铝混凝处理石化废水的最佳条件为:纳米级聚合氯化铝投加量为15mg/L左右,慢速搅拌的搅拌速度为50~60rpm,快速搅拌的搅拌速度为190—225rpm,快速搅拌时间90s。慢速搅时间10min时效果最佳。使用Al-Ferron逐时络合比色法及XRD对絮凝荆进行了表征,结果证实样品中Alb含量可达到85%左右。 相似文献
937.
废水中环氧丙烷降解菌株的培育及降解效果研究 总被引:1,自引:0,他引:1
本文通过对污泥的驯化筛选得到4株降解环氧丙烷废水的优势茵A、B、C、D,并对降解效果最好的一个菌株A进行研究,得到其最佳降解条件是温度为30℃、pH为5、废水浓度为20%、反应时间为9h,其COD去除率可达到63.24%左右。 相似文献
938.
939.
940.