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31.
PM2.5由于其较小的粒径、巨大的比表面积、较大的危害等特点受到世界各国的广泛研究。对此从亚微米粒子的来源、性质、危害等方面进行阐述,对比和总结国内外目前常用的控制技术,详细叙述了静电和其他除尘器相结合以及交流凝并技术脱出超细颗粒物的原理。交流凝并是一种适合收集亚微米粒子的有效方法,这种方法收集效果好,经济实用,适用于去除炼钢、焊接、煤炭燃烧后产生的悬浮性粉尘粒子等方面。研究粒子的荷电、凝并对继续完善荷电凝并理论,提高亚微米粒子的收集效果是十分必要的。  相似文献   
32.
• Physical, chemical and biological methods are explored for MPs removal. • Physical methods based on adsorption/filtration are mostly used for MPs removal. • Chemical methods of MPs removal work on coagulation and flocculation mechanism. • MBR technology has also shown the removal of MPs from water. • Global policy on plastic control is lacking. Microplastics are an emerging threat and a big challenge for the environment. The presence of microplastics (MPs) in water is life-threatening to diverse organisms of aquatic ecosystems. Hence, the scientific community is exploring deeper to find treatment and removal options of MPs. Various physical, chemical and biological methods are researched for MPs removal, among which few have shown good efficiency in the laboratory. These methods also have a few limitations in environmental conditions. Other than finding a suitable method, the creation of legal restrictions at a governmental level by imposing policies against MPs is still a daunting task in many countries. This review is an effort to place all effectual MP removal methods in one document to compare the mechanisms, efficiency, advantages, and disadvantages and find the best solution. Further, it also discusses the policies and regulations available in different countries to design an effective global policy. Efforts are also made to discuss the research gaps, recent advancements, and insights in the field.  相似文献   
33.
• 23 available research articles on MPs in drinking water treatment are reviewed. • The effects of treatment conditions and MP properties on MP removal are discussed. • DWTPs with more steps generally are more effective in removing MPs. • Smaller MPs (e.g.,<10 μm) are more challenging in drinking water treatment. Microplastics (MPs) have been widely detected in drinking water sources and tap water, raising the concern of the effectiveness of drinking water treatment plants (DWTPs) in protecting the public from exposure to MPs through drinking water. We collected and analyzed the available research articles up to August 2021 on MPs in drinking water treatment (DWT), including laboratory- and full-scale studies. This article summarizes the major MP compositions (materials, sizes, shapes, and concentrations) in drinking water sources, and critically reviews the removal efficiency and impacts of MPs in various drinking water treatment processes. The discussed drinking water treatment processes include coagulation-flocculation (CF), membrane filtration, sand filtration, and granular activated carbon (GAC) filtration. Current DWT processes that are purposed for particle removal are generally effective in reducing MPs in water. Various influential factors to MP removal are discussed, such as coagulant type and dose, MP material, shape and size, and water quality. It is anticipated that better MP removal can be achieved by optimizing the treatment conditions. Moreover, the article framed the major challenges and future research directions on MPs and nanoplastics (NPs) in DWT.  相似文献   
34.
焦化厂A/O出水中的有机污染物分析   总被引:3,自引:0,他引:3  
采用色谱-质谱(GC/MS)联用仪分析和鉴定了上海宝钢焦化厂A/O生化阶段出水的有机污染物组成,共检出各类有机污染物70多种。结合焦化废水专用混凝剂的混凝处理实验结果,指出了各类有机污染物的去除情况。  相似文献   
35.
洗车废水混凝剂的选择   总被引:1,自引:0,他引:1  
曾斌  关卫省  张艳 《环境科技》2006,19(Z2):3-4
实验采用混凝工艺对洗车水进行预处理,选用4种无机混凝剂和1种有机混凝剂进行对比试验研究,通过实验结果分析确定了最佳药剂及其最佳投药量。  相似文献   
36.
实验使用混凝-氧化法对印染废水进行处理,采用混凝-氧化法不仅能有效地去除废水中的固体悬浮物和颜色,而且也能去除大部分的CODCr,去除率在60%~70%左右。本研究采用混凝沉淀与氧化的组合工艺对其进行处理实验,着重研究了有关工艺条件与CODCr去除率的关系。用混凝-氧化法处理印染废水,确定最佳混凝和氧化条件。实验中考察了pH值、混凝剂加入量、沉降时间、氧化剂加入量和氧化时间等对CODCr去除率的影响。  相似文献   
37.
In this study, a high-efficiency cationic flocculant, P(DAC-MAPTAC-AM), was successfully prepared using UV-induced polymerization technology. The monomer Acrylamide (AM): Acryloxyethyl Trimethyl ammonium chloride (DAC): methacrylamido propyl trimethyl ammonium chloride (MAPTAC) ratio, monomer concentration, photoinitiator concentration, urea content, and cationic monomer DAC:MAPTAC ratio, light time, and power of high-pressure mercury lamp were studied. The characteristic groups, characteristic diffraction peaks, and characteristic proton peaks of P(DAC-MAPTAC-AM) were confirmed by fourier transform infrared spectroscopy (FTIR), X-Ray diffraction (XRD), 1H nuclear magnetic resonance spectrometer (1H NMR), and scanning electron microscopy (SEM). The effects of dosage, pH value, and velocity gradient (G) value on the removal efficiencies of turbidity, COD, ammonia nitrogen, and total phenol by poly aluminum ferric chloride (PAFC), P(DAC-MAPTAC-AM), and PAFC/P(DAC-MAPTAC-AM) in the flocculation treatment of coal chemical wastewater were investigated. Results showed that the optimal conditions for the flocculation of coal chemical wastewater using P(DAC-MAPTAC-AM) alone are as follows: dosage of 8–12 mg/L, G value of 100–250 s ? 1, and pH value of 4–8. The optimal dosage of PAFC is 90–150 mg/L with a pH of 2–12. The optimal dosage for PAFC/P(DAC-MAPTAC-AM) is as follows: PAFC dosage of 90–150 mg/L, P(DAC-MAPTAC-AM) dosage of 8–12 mg/L, and pH range of 2–6. When P(DAC-MAPTAC-AM) was used alone, the optimal removal efficiencies of turbidity, COD, ammonia nitrogen, and total phenol were 81.0%, 35.0%, 75.0%, and 80.3%, respectively. PAFC has good tolerance to wastewater pH and good pH buffering. Thus, the flocculation treatment of coal chemical wastewater using the PAFC/P(DAC-MAPTAC-AM) compound also exhibits excellent resistance and buffering capacity.  相似文献   
38.
本研究根据二沉池出水特点,指出了以260nm紫外光(E260)评价处理二沉池出水的理论依据,然后确定了E260与COD的关系式为:E260=0.008COD 0.083,最后以E260为评价指标,比较了三种无机混凝剂在不同pH值条件下对城市二沉池出水的COD去除效果。并确定了最佳混凝剂为三氯化铁(FC)及混凝条件:pH4.5,投药量32mg(Fe^3 )/1。  相似文献   
39.
纤维板厂废水处理实验   总被引:2,自引:0,他引:2  
用明矾作混凝剂,生石灰为助凝剂剂对纤维板厂生产废水进行混凝处理,COD去除率达67%,其上清液用延时生化法,曝气12h后,出水COD,SS,PH,色度均达到行业排放标准,沉淀用低速离心脱水,效果显著,泥饼可作为燃料综合利用。  相似文献   
40.
氯化钙对聚合氯化铝混凝去除腐植酸的影响作用研究   总被引:3,自引:0,他引:3  
研究了CaCl2对PAC混凝去除腐植酸的影响作用,发现CaCl2可以改善混凝效果和沉淀性能。探讨了pH值、投加量、温度等因素的影响,对药剂费用进行了经济分析,为今后的实际应用提供了基本数据。  相似文献   
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