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41.
开发沸石矿用于农业的经济评价   总被引:2,自引:0,他引:2  
我国沸石矿资源丰富。开发利用沸石矿于农业,可增产粮食400亿公斤,加上节约化肥和用作饲料添加剂等方面,年经济效益为496.25亿元。因此,开发利用沸石矿于农业具有重大的经济意义,从促进我国粮食生产上新台阶的角度考虑,则具有重大的战略意义。  相似文献   
42.
首次探索了一种破坏式造孔与有机复合相结合的新方法以制备介孔复合水环境净化材料,使最终产品成为一种具有广谱孔结构分布的复合环境材料。详细介绍了该方法的第二步工艺即添加剂升温烧蚀法,在优化后的最佳条件下,产品的孔径得到了进一步扩大,其中部分孔道直径可达至介孔级,同时材料的表面得到了进一步活化。经此步工艺后,所制备的中间产品染料吸附量是原材料的194倍,是酸洗刻蚀后产品的122倍;24h吸湿率是原材料的38倍,是酸洗刻蚀后产品的19倍。  相似文献   
43.
When adding sufficient chlorine to achieve breakpoint chlorination to source water containing high concentration of ammonia during drinking water treatment, high concentrations of disinfection by-products(DBPs) may form. If N-nitrosamine precursors are present, highly toxic N-nitrosamines, primarily N-nitrosodimethylamine(NDMA), may also form. Removing their precursors before disinfection should be a more effective way to minimize these DBPs formation. In this study, zeolites and activated carbon were examined for ammonia and N-nitrosamine precursor removal when incorporated into drinking water treatment processes.The test results indicate that Mordenite zeolite can remove ammonia and five of seven N-nitrosamine precursors efficiently by single step adsorption test. The practical applicability was evaluated by simulation of typical drinking water treatment processes using six-gang stirring system. The Mordenite zeolite was applied at the steps of lime softening, alum coagulation, and alum coagulation with powdered activated carbon(PAC) sorption. While the lime softening process resulted in poor zeolite performance, alum coagulation did not impact ammonia and N-nitrosamine precursor removal. During alum coagulation, more than67% ammonia and 70%–100% N-nitrosamine precursors were removed by Mordenite zeolite(except 3-(dimethylaminomethyl)indole(DMAI) and 4-dimethylaminoantipyrine(DMAP)). PAC effectively removed DMAI and DMAP when added during alum coagulation. A combination of the zeolite and PAC selected efficiently removed ammonia and all tested seven N-nitrosamine precursors(dimethylamine(DMA), ethylmethylamine(EMA), diethylamine(DEA), dipropylamine(DPA), trimethylamine(TMA), DMAP, and DMAI) during the alum coagulation process.  相似文献   
44.
粉煤灰提铝中间产物合成4A分子筛对氨氮的吸附行为研究   总被引:2,自引:0,他引:2  
采用粉煤灰提铝中间产物合成4A分子筛,利用XRD、SEM、热重分析、化学成分分析、阳离子交换容量对4A分子筛进行表征.考察吸附时间、pH、分子筛投加量、氨氮初始浓度、共存阳离子对其吸附性能的影响,研究其对模拟废水中氨氮的吸附效果,并结合准二级动力学方程、吸附等温线研究吸附性能和机理.结果表明,初始浓度为50 mg·L~(-1)、4A分子筛投加量为5 g·L~(-1)、pH值为6~9、吸附时间为80 min时氨氮去除率可达71.34%;随着氨氮初始浓度升高,其去除率降低,吸附容量增加;共存阳离子Na~+、K~+、Ca~(2+)对NH_4~+有强烈的竞争吸附,Mg~(2+)无明显竞争作用.吸附过程符合准二级动力学方程和Freundlich模型.Langmuir吸附等温线显示最大吸附容量为20 mg·g~(-1).  相似文献   
45.
文章主要研究模拟高放废液加入沸石预处理经碱矿渣水泥固化后Cs+的浸出性能。实验结果表明,处理含Cs+高放废液固化体中加入沸石,能使Cs+浸出率降低";两步法"掺入沸石固化体抗Cs+浸出性能更有所提高;pH值升高Cs+的吸附比增大。  相似文献   
46.
水热条件对粉煤灰沸石离子交换性能的影响   总被引:1,自引:0,他引:1  
沸石的离子交换性能是决定其应用价值的一个重要指标。为衡量粉煤灰沸石的应用性能,本研究主要考察了反应温度、反应时间以及添加剂等水热反应条件对合成粉煤灰沸石产品离子交换性能(CEC,Cation Exchange Capacity)的影响。结果表明,产品的CEC值随着反应温度和反应时间增加而增大,至120℃、6h达到最大。添加剂十六烷基三甲基溴化铵和95%乙醇有效促进了NaP1沸石的结晶过程,均可使产品CEC值提高10%以上。合成NaP1型粉煤灰沸石的最佳水热反应条件为:反应温度120℃,反应时间6h,液固比(mL/g)为8,氢氧化钠浓度为2mol/L,95%乙醇作为添加剂。所得粉煤灰沸石产品CEC值达到最大值198.31cmol/kg。  相似文献   
47.
天然沸石吸附低浓度氨氮废水的研究   总被引:3,自引:0,他引:3  
采用浙江某地天然沸石吸附废水中低浓度氨氮,研究了pH、天然沸石投加量对吸附的影响,分析了吸附等温线和吸附动力学,并进行了动态吸附和脱附研究。结果表明,pH对天然沸石吸附有较大影响,吸附的最佳pH为8.0;随着天然沸石投加量的增加,氨氮的去除率逐渐增大,但吸附量随之减小。Freundlich方程比Langmuir方程更好地描述氨氮在天然沸石上的吸附行为,且此吸附是优惠吸附。假二级方程很好地拟合吸附动力学实验数据,吸附速率常数k2随着天然沸石投加量的增大而增大。装填105g天然沸石吸附柱处理含氨氮20mg/L废水的水量为15L,出水氨氮浓度小于5mg/L。用含氯化钠和氢氧化钠的溶液作为脱附剂,脱附率为95.5%。  相似文献   
48.
Natural zeolite was modified by loading cetylpyridinium bromide (CPB) to create more e cient sites for humic acid (HA) adsorption. The natural and CPB modified zeolites were characterized with X-ray di raction, field emission scanning electron microscopy, Fourier transform infrared spectroscopy and elemental analysis. The e ects of various experimental parameters such as contact time, initial HA concentration, solution pH and coexistent Ca2+, upon HA adsorption onto CPB modified zeolites were evaluated. The results showed that natural zeolite had negligible a nity for HA in aqueous solutions, but CPB modified zeolites exhibited high adsorption e ciency for HA. A higher CPB loading on natural zeolites exhibited a larger HA adsorption capacity. Acidic pH and coexistent Ca2+ were proved to be favorable for HA adsorption onto CPB modified zeolite. The kinetic process was well described by pseudo second-order model. The experimental isotherm data fitted well to Langmuir and Sips models. The maximum monolayer adsorption capacity of CPB modified zeolite with surfactant bilayer coverage was found to be 92.0 mg/g.  相似文献   
49.
焦化废水处理中预处理蒸氨工艺不稳定容易引起生物处理出水NH+4-N的波动,为了在有机物去除的同时提高生物系统对NH+4-N的去除效果和稳定性,采用对NH+4-N有良好吸附性能的天然斜发沸石为生物填料构建沸石床多级生物膜系统,考察了进水负荷对系统运行稳定性的影响、抗冲击负荷能力以及系统的功能分区和污染物迁移转化规律.结果表明,当系统进水NH+4-N负荷≤0.21 kg/(m3·d)、COD负荷≤1.35 kg/(m3·d)时,出水NH+4-N和COD的平均浓度分别为(2.2±1.2)mg/L和(228±60)mg/L,平均去除率分别达(99.1±0.5)%和(86.0±2.6)%.在低、高两次NH+4-N冲击负荷[0.03 kg/(m3·d)和0.06 kg/(m3·d)]条件下,系统对NH+4-N的平均去除率仍然分别高达99.0%和92.9%,高于对比系统的96.8%和89.3%,表现出良好的抗NH+4-N冲击负荷性能与处理稳定性.系统好氧单元反应器沿程出现脱碳/硝化功能区(C/N区)和硝化功能区(N区),其中N区的NH+4-N 降解速率为C/N区的2~8倍.系统进水中相对分子质量<1×103、 1×103~1×104、>1×104的TOC浓度分别为227.6、104.8和35.0 mg/L,处理出水中的TOC浓度分别为31.2、 22.9和31.5 mg/L,其中相对分子质量<1×103和1×103~1×104这2个范围的有机物降解良好,出水残余物质主要为相对分子质量>1×103的有机物.  相似文献   
50.
With the increase of urbanization, municipal solid waste has also increased. Therefore, the need for solid waste management is also increasing compared with earlier decades. Composting is a good option for the recycling of solid waste; however, it produces leachate, which requires proper treatment systems to prevent environmental degradation. Due to high chemical oxygen demand (COD) concentrations in compost leachate, anaerobic treatment is the best option for handling the effluent, and an anaerobic baffled reactor (ABR) is one such anaerobic reactor that can be used for its treatment. Because of high ammonia and heavy metal concentrations, as well as the possibility of sludge washout in ABRs, it is important to use proper media, such as zeolite, which can reduce inhibition effects and sludge washout from the reactor. Anaerobic treatment, especially during the methanogenesis phase, is sensitive, and pH and alkalinity are parameters that influence the treatment. Therefore, adjusting these parameters within a normal range is very important to the proper functioning of anaerobic systems. In this study, a pilot‐scale ABR was used, and the last 4 of the 8 ABR compartments were filled with zeolite. The bioreactor was operated at hydraulic retention times (HRT) of 3, 4, and 5 days, with zeolite filling ratios of 10%, 20%, and 30%, and influent COD concentrations of 10,000, 20,000, and 30,000 milligrams per liter (mg/L). In this study, pH value was 6.43 ± 0.1, 6.96 ± 0.3, and 6.96 ± 0.25 at filling ratios of 10%, 20%, and 30%, respectively. According to the results, in all filling ratios, no significant changes were observed in the pH value when the organic loading rate increased and its amount was within a constant range. Influent alkalinity was equal to 2015 ± 510, 2884 ± 505, and 4154 ± 233 milligrams of calcium carbonate per liter (mg CaCO3/L) at influent COD concentrations of 10,000, 20,000, and 30,000 mg/L, respectively, and in effluent, they were 2536 ± 336, 3379 ± 639, and 4377 ± 325 mg CaCO3/L, respectively. The amount of alkalinity in the effluent increased compared with the alkalinity in the influent. The results show that the amount of alkalinity in the influent and effluent was similar, and the alkalinity enhancement was lower when the filling ratio was increased from 10% to 20%, and 20% to 30%. Comparisons of the results from zeolite with and without biofilm showed that, in cases of zeolite with biofilm, the amounts of silica and oxygen decreased and the amount of carbon increased, and it showed the formation of biofilm on the surface of zeolite. In addition, the absence of sodium in the zeolite with the biofilm indicated that sodium was exchanged with ammonium ions. According to the results, zeolite can be used in anaerobic reactors as a medium, and it also reduces fluctuations in pH and alkalinity at different organic loading rates, providing a normal range for anaerobic treatment.  相似文献   
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