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排序方式: 共有235条查询结果,搜索用时 15 毫秒
1.
探讨了水质测定中酸性法高锰酸盐指数的影响因素:加热时间、加热温度、溶液浓度、滴定速度、水样酸度,掌握了最佳试验条件,使测定结果更准确。 相似文献
2.
固相萃取和高效液相色谱联用测定污水中的五氯苯酚 总被引:4,自引:1,他引:3
采用固相萃取和高效液相色谱相结合的方法对污水中五氯苯酚的含量进行定量检测。结果表明,污水的pH值为4,流速控制在4mL/L以内,C18固相萃取柱对五氯苯酚有良好的吸附保留性能,以2mL的甲醇洗脱,洗脱效率在85%~95%之间。与传统的液液萃取相比,固相萃取的优势在于操作时间缩短、有机溶剂的使用量减少。 相似文献
3.
Balaji Panchal Shrikant Dhoot Sanjay Deshmukh Munish Sharma 《International Journal of Green Energy》2016,13(15):1634-1639
Thespesia populnea oil was new source of biodiesel. Crude Thespesia populnea oil was used as feedstock for biodiesel production by alkali-catalyzed methanolysis. The reaction in the presence of NaOH as catalyst was carried out to investigate the optimum conditions and to study the effects of variables on the reaction. A methanol to oil ratio of 6:1, sodium methoxide catalyst concentration of 1.5%, mixing intensity of 250 rpm and reaction temperature of 60°C offered the best Thespesia populnea seed oil methyl esters (biodiesel) yield (92.6%). The methyl ester content under these optimum conditions was 92.6% w/w, and all of the measured properties of the Thespesia populnea biodiesel (TPME) met the international standards ASTM D 6751-02. The results reveal that all of the reaction variables in this study had positive effects on the reaction. The results of the present study indicated that TPME could be a potential alternative to petrodiesel 相似文献
4.
5.
微好氧颗粒污泥工艺降解五氯酚的实验研究 总被引:1,自引:0,他引:1
微好氧颗粒污泥工艺能够同时进行好氧氧化和厌氧还原过程,是处理五氯酚(PCP)的理想方法。对影响好氧颗粒污泥降解PCP的因素水力学上升流速、碱加入量以及水力停留时间进行考察。结果表明,水力学上升流速为4.58m/h,进水NaHCO3浓度为900mg/L,水力停留时间为24h时,处理效果比较好。 相似文献
6.
次氯酸钠处理终冷水中氰化物硫化物的研究 总被引:1,自引:0,他引:1
以次氯酸钠为氧化剂,用正交实验研究了次氯酸钠处理终冷水中氰化物和硫化物,得出正交实验中各因素的主次关系及对除氰除硫的影响。研究结果表明,反应体系的pH是影响脱氰脱硫的重要因素。在最佳处理条件,即pH为10.0,反应温度为25℃,投氯量系数为1.4,反应时间为45min.能使氰化物的质量浓度降至0.267mg/L,脱氰率高达99.8%,硫化物的质量浓度降到0.387mg/L,脱硫率达92.0%,达到≤0.5mg/L的国家排放标准。文章还对工业化提出了一些设想。 相似文献
7.
应用T-RFLP技术研究五氯酚对好氧颗粒污泥中细菌组成的影响 总被引:6,自引:2,他引:6
研究了五氯酚(PCP)对好氧颗粒污泥处理生活污水的影响,借助末端限制性酶切片段长度多态性(T-RFLP)技术考察了PCP存在时好氧颗粒污泥细菌组成的变化.结果表明,PCP对氨氮去除率的影响大于对COD去除率的影响,好氧颗粒污泥中微生物的种群数量随着PCP浓度的增加而逐渐减少,氨氮和COD去除率的变化与微生物种群数量变化相吻合.根据对PCP的敏感程度,好氧颗粒污泥中的微生物可分以下几类:①对PCP高度敏感的微生物,可能是Microbacterium或Streptococcus等以及2种未被报道的菌种;②对PCP中度敏感的微生物,可能是Corynebacterium或Nevskia等以及1种未被报道的菌种;③对PCP低度敏感的微生物,可能是Mycoplasma或Exiguobacterium等以及1种未被报道的菌种;④对PCP耐受性强的微生物,这类微生物主要是13个末端限制性片段(69、71、82、175、198、241、229、232、233、240、245、269、449bp)所代表的微生物,PCP浓度为30mg/L时,长度为82bp和175bp的片段的相对面积分别22.7%和13%,所代表的微生物已经演替为优势菌群. 相似文献
8.
Jan Bernd Barhorst Roland Kubiak 《Environmental science and pollution research international》2009,16(5):582-589
Background, aim and scope The use of sodium hypochlorite (HYP) in viticulture results in effluents which are contaminated with halogenated substances.
These disinfection by-products (DBPs) can be quantified as group parameter ‘adsorbable organic halogens’ (AOX) and have not
been determined in effluents of viticulture yet. The substances that are detected as AOX are unknown. The AOX can be composed
of harmless substances, but even toxic contaminants. Thus, it is impossible to assess ecological impacts. The aim of this
study is to determine the quantification of AOX and DBPs after the use of HYP. This will be helpful to reduce environmental
pollution by AOX.
Materials and methods The potential of HYP to generate AOX was determined in laboratory-scale experiments. Different model solutions were treated
with HYP according to disinfection processes in viticulture and conditions of AOX formation in effluents were simulated. AOX
were quantified using the flask-shaking method and identified DBPs were investigated by gas chromatography–mass spectrometry.
Results Treatment with HYP resulted in the formation of AOX. The percentage conversion of HYP to AOX was up to 11%. Most important
identified DBPs in viticulture are chloroform, dichloroacetic acid and trichloroacetaldehyde. In addition, the formation of
carbon tetrachloride (CT), 1,1,1-trichloropropanone, 2,4-dichlorobenzoic acid and 2-chloro-/2,4-dichlorophenylacetic acid
was investigated. It was demonstrated that reaction temperature, concentration of HYP and type of organic matter have important
influence on the formation of chlorinated DBPs.
Discussion The percentage conversion of HYP to AOX was similar to other published studies. Although a correlation of single compounds
and AOX is difficult, chloroform was the predominant AOX. Generation of the volatile chloroform should be avoided due to possible
adverse effects. The generation of dichloroacetic acid is of minor importance on account of biodegradation. Trichloroacetaldehyde
and 1,1,1-trichloropropanone are weak mutagens and their formation should be avoided.
Conclusions The generation of AOX and chlorinated DBPs can be minimised by reducing the concentrations of the organic materials in the
effluents. The removal of organic matter before disinfection results in a decreased formation of AOX. HYP is an effective
disinfectant; therefore, it should be used at low temperatures and concentrations to reduce the amount of AOX. If possible,
disinfection should be accomplished by the use of no chlorine-containing agents. By this means, negative influences of HYP
on the quality of wine can also be avoided.
Recommendations and perspectives Our results indicate that HYP has a high potential to form AOX in effluents of viticulture. The predominant by-products are
chloroform, dichloroacetic acid and trichloroacetaldehyde. In further research, wastewaters from a winery and the in- and
outflows of two sewage treatment plants were sampled during vintage and analysed. These results will be discussed in a following
paper. 相似文献
9.
选用氯化钠为基体制备金属火灾超细干粉灭火剂。应用反溶剂法对其改性,使纳米疏水二氧化硅吸附在氯化钠晶体表面,其中分散剂为PEG-1000。结果表明,纳米疏水二氧化硅的添加有利于细化氯化钠颗粒,但过量的添加会起反作用,最佳用量为3 wt%左右,平均粒径为2.18μm。镁片灭火实验证明超细复合干粉的灭火性能明显好于传统氯化钠灭火剂(商用D类灭火剂),纳米疏水二氧化硅最佳添加量为3 wt%,此时灭火时间仅需传统灭火剂的一半。最后利用FDS5.0模拟干粉颗粒与燃烧火焰作用过程,模拟结果表明干粉覆盖对火焰具有一定的抑制效果,并分析了复合干粉灭火机理。 相似文献
10.
试验选取乙酸钠为外加碳源,采用SBBR工艺处理低C/N比城市生活污水。当外加碳源后的C/N比值增加至7.0左右时,对原水NH_4~+-N去除率最高为89.31%,外加碳源后的C/N为7.12时,TN的去除率最好,去除率为71.27%。结果表明,外加乙酸钠碳源后的SBBR工艺对于低C/N生活污水脱氮性能良好。出水水质指标均达到了《城镇污水处理厂污染物排放标准》(GB18918—2002)中的"一级标准A标准",出水可作为回用水。 相似文献