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991.
酸化油是生产生物柴油的原料,其生产过程中产生的水解废水有机物含量高且具有强酸性,直接排放会严重污染环境。因此,对酸化油水解废水处理工艺进行研究有重要意义。通过对酸化油水解废水脱酸处理的条件及影响因素进行研究,并通过L9(34)正交实验确定了脱酸的最佳工艺条件。pH值为10,搅拌时间为15 min,温度为30℃是脱酸处理的最佳条件。  相似文献   
992.
进口含铅物品的固体废物属性鉴别研究   总被引:2,自引:0,他引:2  
以进口“未锻轧铅合金"物品为例,对其固体废物属性进行鉴别研究. 在分析送检物品的基本理化特征、危险特性和产生属性的基础上,对未锻轧铅合金的固体废物属性进行综合分析. 结果表明,未锻轧铅合金不是合金金属,可能属于回收废铅酸电池的简单熔炼产物,虽然金属铅得到一定程度富集,但在该物品中仍含有大量杂质成分,在进一步生产中可能会对环境造成污染. 根据《固体废物鉴别导则》的判别原则,最终判定未锻轧铅合金属于固体废物,为海关部门的监管和执法提供了技术依据.   相似文献   
993.
煤矸石风化物不同粒级中重金属镉含量及其形态变化   总被引:1,自引:0,他引:1  
对抚顺西露天矿煤矸石山表层煤矸石风化母岩进行多点取样,风化物筛分成>2 mm、2~0.25 mm和<0.25 mm等3个粒级,分析测定了矸石山表层母岩及其风化物不同粒级中Cd含量及其形态变化特征.结果表明:煤矸石母岩及其风化物中cd含量超过土壤环境质量2级标准,页岩、泥岩及其风化物pH值7.2~8.6,但燃后泥岩pH值4.9.碳质页岩2~0.25 mm粒级风化物中Cd损失最多,为73.6%;<0.25 mm细粒级Cd损失较少,为17.0%,这与细颗粒的表面吸附作用有关;泥岩及其各粒级风化物Cd元素不易损失,其Cd含量变化也相对较小;但燃后泥岩风化物中的Cd较容易损失.煤矸石风化物各样品类型中的Cd均以残渣态为主,可还原态和弱酸可提取态所占比例次之,可氧化态所占比例最小.弱酸可提取态Cd在细颗粒风化物中所占比例较高.  相似文献   
994.
为了实现SBBR工艺处理有机农药废水在生产上的应用,选择有代表性的农药厂进行生产性试验。试验结果表明:COD、BOD5、SS、TP平均去除率分别为90.1%、91%、88.8%和94.7%,出水水质达到GB8978-1996《污水综合排放标准》中的二级标准,并且运行稳定、投资省。  相似文献   
995.
液/固相单一离子吸附体系的动力学预测模型   总被引:2,自引:0,他引:2  
对四种液/固相单一离子吸附体系的动力学研究结果表明:吸附速率不仅随时间变化,也与起始离子浓度(C0)和吸附剂浓度(W0)有关;Lagergren准二级方程在给定的起始离子浓度及吸附剂浓度下具有很高的模拟精确度,但其参数随起始离子浓度和吸附剂浓度的变化而变化,且无法确定其间的函数关系;结合四组分离子吸附模型,提出了新的动力学方程,实验结果表明,新方程具有较高的模拟精确度,其参数与C0和W0具有相对稳定的函数关系,可作为液/同相单一离子吸附体系中给定C0,W0条件下吸附动力学过程的预测模型.  相似文献   
996.
为实现钻井泥浆无害化处理,提出了"酸化破胶-固液分离-催化氧化-微生物降解"的处理方法,并采用钻井现场废泥浆进行了系列试验研究。结果表明:泥浆密度调节为1.15 kg/dm3,酸化pH≤3,固液分离效果最佳;过滤分离后固相浸毒液达到国家排放标准;液相经Fenton氧化、微生物降解后,COD将降低到110 mg/L以下。该方法运行成本低,处理彻底无隐患,为进一步工业化试验奠定了基础。  相似文献   
997.
为研究某电子垃圾拆解区废渣-土壤-蔬菜中多氯联苯(PCBs)污染特征及对人体的潜在健康风险.对电子垃圾废渣样品采样3个、废渣旁的农田土壤和蔬菜分别采样10个和18个(油麦菜6个、四季豆6个和圆白菜6个).废渣、土壤和蔬菜中PCBs含量测定采用高分辨气相色谱-质谱法.结果表明,总PCBs水平:废渣(11 938ng·g-...  相似文献   
998.
The use of organic municipal wastes as soil amendments is an increasing practice that can divert significant amounts of waste from landfill, and provides a potential source of nutrients and organic matter to ameliorate degraded soils. Due to the high heterogeneity of organic municipal waste streams, it is difficult to rapidly and cost-effectively establish their suitability as soil amendments using a single method. Thermal analysis has been proposed as an evolving technique to assess the stability and composition of the organic matter present in these wastes. In this study, three different organic municipal waste streams (i.e., a municipal waste compost (MC), a composted sewage sludge (CS) and a thermally dried sewage sludge (TS)) were characterized using conventional and thermal methods. The conventional methods used to test organic matter stability included laboratory incubation with measurement of respired C, and spectroscopic methods to characterize chemical composition. Carbon mineralization was measured during a 90-day incubation, and samples before and after incubation were analyzed by chemical (elemental analysis) and spectroscopic (infrared and nuclear magnetic resonance) methods. Results were compared with those obtained by thermogravimetry (TG) and differential scanning calorimetry (DSC) techniques. Total amounts of CO2 respired indicated that the organic matter in the TS was the least stable, while that in the CS was the most stable. This was confirmed by changes detected with the spectroscopic methods in the composition of the organic wastes due to C mineralization. Differences were especially pronounced for TS, which showed a remarkable loss of aliphatic and proteinaceous compounds during the incubation process. TG, and especially DSC analysis, clearly reflected these differences between the three organic wastes before and after the incubation. Furthermore, the calculated energy density, which represents the energy available per unit of organic matter, showed a strong correlation with cumulative respiration. Results obtained support the hypothesis of a potential link between the thermal and biological stability of the studied organic materials, and consequently the ability of thermal analysis to characterize the maturity of municipal organic wastes and composts.  相似文献   
999.
Hydrothermal treatments using subcritical water (HTSW) such as that at 234 °C and 3 MPa (LT condition) and 295 °C and 8 MPa (HT condition) were investigated to recover solid fuel from municipal solid waste (MSW). Printing paper, dog food (DF), wooden chopsticks, and mixed plastic film and sheets of polyethylene, polypropylene, and polystyrene were prepared as model MSW components, in which polyvinylchloride (PVC) powder and sodium chloride were used to simulate Cl sources.While more than 75% of carbon in paper, DF, and wood was recovered as char under both LT and HT conditions, plastics did not degrade under either LT or HT conditions. The heating value (HV) of obtained char was 13,886-27,544 kJ/kg and was comparable to that of brown coal and lignite. Higher formation of fixed carbon and greater oxygen dissociation during HTSW were thought to improve the HV of char.Cl atoms added as PVC powder and sodium chloride to raw material remained in char after HTSW. However, most Cl originating from PVC was found to converse into soluble Cl compounds during HTSW under the HT condition and could be removed by washing.From these results, the merit of HTSW as a method of recovering solid fuel from MSW is considered to produce char with minimal carbon loss without a drying process prior to HTSW. In addition, Cl originating from PVC decomposes into soluble Cl compound under the HT condition. The combination of HTSW under the HT condition and char washing might improve the quality of char as alternative fuel.  相似文献   
1000.
Three alternative condensing mode power and combined heat and power (CHP) waste-to-energy concepts were compared in terms of their impacts on the greenhouse gas (GHG) emissions from a heat and power generation system. The concepts included (i) grate, (ii) bubbling fluidised bed (BFB) and (iii) circulating fluidised bed (CFB) combustion of waste. The BFB and CFB take advantage of advanced combustion technology which enabled them to reach electric efficiency up to 35% and 41% in condensing mode, respectively, whereas 28% (based on the lower heating value) was applied for the grate fired unit. A simple energy system model was applied in calculating the GHG emissions in different scenarios where coal or natural gas was substituted in power generation and mix of fuel oil and natural gas in heat generation by waste combustion. Landfilling and waste transportation were not considered in the model. GHG emissions were reduced significantly in all of the considered scenarios where the waste combustion concepts substituted coal based power generation. With the exception of condensing mode grate incinerator the different waste combustion scenarios resulted approximately in 1 Mton of fossil CO2-eq. emission reduction per 1 Mton of municipal solid waste (MSW) incinerated. When natural gas based power generation was substituted by electricity from the waste combustion significant GHG emission reductions were not achieved.  相似文献   
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