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水解酸化-CASS工艺在红霉素废水处理中的应用 被引量:12
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作者 周健 张会展 方春玉 《水处理技术》 CAS CSCD 北大核心 2006年第12期90-92,共3页
本文介绍了水解酸化-CASS工艺在红霉素废水处理中的应用,系统经调试试运后出水基本上达到了国家关于制药废水排放的二级标准。为抗生素废水的治理提供了技术改造经验。
关键词 红霉素废 水水解酸化 CASS
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水解酸化-缺氧法处理采油废水的污染物迁移降解试验研究 被引量:5
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作者 裘湛 闻岳 +1 位作者 黄翔峰 章非娟 《环境污染治理技术与设备》 CAS CSCD 北大核心 2006年第2期89-92,共4页
水解酸化.缺氧法对采油废水有较好的处理效果,采用GC/MS技术对水解酸化-缺氧法处理采油废水过程中污染物的迁移降解进行的研究表明:水解酸化段和缺氧段对采油废水中碳原子为C6-C9、分子量为100—140的有机物均有较好的降解能力。其... 水解酸化.缺氧法对采油废水有较好的处理效果,采用GC/MS技术对水解酸化-缺氧法处理采油废水过程中污染物的迁移降解进行的研究表明:水解酸化段和缺氧段对采油废水中碳原子为C6-C9、分子量为100—140的有机物均有较好的降解能力。其中,在水解酸化段中酮类、芳烃得到较好的降解,缺氧段中酚类和醚类化合物降解明显。水解酸化-缺氧工艺对于采油废水中的甲苯和二甲苯具有较好的降解能力。 展开更多
关键词 采油废 水水解酸化-缺氧法 GC/MS
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UBF--CASS与物化组合工艺在制药废水处理中的应用
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作者 刘彩红 田永 《环境》 2005年第z1期120-121,共2页
应用厌氧复合床(UBF)--连续进水周期循环曝气活性污泥法(CASS)工艺加混凝气浮物化组合系统在处理废水组分复杂、污染物浓度高、含有大量有毒有害物质、属于难治理之列的深圳某药业有限公司制药厂的应用;运行结果表明,当进水COD浓度在250... 应用厌氧复合床(UBF)--连续进水周期循环曝气活性污泥法(CASS)工艺加混凝气浮物化组合系统在处理废水组分复杂、污染物浓度高、含有大量有毒有害物质、属于难治理之列的深圳某药业有限公司制药厂的应用;运行结果表明,当进水COD浓度在25000mg/l时,采用该工艺后出水100%达标并可全部回用,有机物去除率高,且稳定性好,易于管理和运行费用低等优点.在制药综合废水处理领域有广阔的应用前景. 展开更多
关键词 制药废 水水解酸化 UBF CASS工艺 混凝气浮 过滤吸附
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Kinetics of non-catalyzed hydrolysis of tannin in high temperature liquid water 被引量:2
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作者 Li-li LU Xiu-yang LU Nan MA 《Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)》 SCIE CAS CSCD 2008年第5期401-406,共6页
High temperature liquid water(HTLW) has drawn increasing attention as an environmentally benign medium for organic chemical reactions,especially acid-/base-catalyzed reactions. Non-catalyzed hydrolyses of gallotannin ... High temperature liquid water(HTLW) has drawn increasing attention as an environmentally benign medium for organic chemical reactions,especially acid-/base-catalyzed reactions. Non-catalyzed hydrolyses of gallotannin and tara tannin in HTLW for the simultaneous preparation of gallic acid(GA) and pyrogallol(PY) are under investigation in our laboratory. In this study,the hydrolysis kinetics of gallotannin and tara tannin were determined. The reaction is indicated to be a typical consecutive first-order one in which GA has formed as a main intermediate and PY as the final product. Selective decomposition of tannin in HTLW was proved to be possible by adjusting reaction temperature and time. The present results provide an important basic data and reference for the green preparation of GA and PY. 展开更多
关键词 High temperature liquid water GALLOTANNIN Tara tannin Non-catalyzed hydrolysis KINETICS
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A Combined System for Biological Removal of Nitrogen and Carbon from Nylon-6 Production Wastewater
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作者 刘芳 刘国华 +2 位作者 田晴 张曼 陈季华 《Journal of Donghua University(English Edition)》 EI CAS 2007年第6期700-706,共7页
A combined system consisting of hydrolysis acidification, denitrification and nitrification reactors was used to remove carbon and nitrogen from the nylon - 6 production wastewater, which was characterized by good bio... A combined system consisting of hydrolysis acidification, denitrification and nitrification reactors was used to remove carbon and nitrogen from the nylon - 6 production wastewater, which was characterized by good biodegradability and high nitrogen concentration. The influences of Chemical Oxygen Demand (COD) in the influent, recirculation ratio, Hydraulic Residence Time (HRT) and Dissolved Oxygen (DO) concentration on the system performances were investigated. From results it could be seen that good performances have been achieved during the overall experiments periods, and COD, Total Nitrogen (TN), NH^+ -N and Suspended Solids (SS) in the effluent were 53, 16, 2 and 24 mg· L^-1, respectively, which has satisfied the first standard of wastewater discharge established by Environmental Protection Agency (EPA) of China. Furthermore, results showed that operation factors, viz. COD in the influent, recirculation ratio, HRT and DO concentration, all had important influences on the system performances. 展开更多
关键词 Nylon-6 production wastewater hydrolysis acidification submerged biofilm reactor biological nitrogen removal
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Treatment of methanol wastewater with two-stage and two-phase anaerobic process
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作者 韩洪军 马文成 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2010年第1期65-69,共5页
The two-stage and two-phase anaerobic process (TSTP) composed of hydrolytic acidification reactor,first-order and second-order external circulation anaerobic reactors (EC) was taken to treat methanol wastewater. Test ... The two-stage and two-phase anaerobic process (TSTP) composed of hydrolytic acidification reactor,first-order and second-order external circulation anaerobic reactors (EC) was taken to treat methanol wastewater. Test results show that TSTP process is quick start-up in 51 d, and the maximum VFA of hydrolytic acidification reactor effluent reaches 876 mg/L. Under the condition of volume loading of 6.56 kgCOD/m3·d, COD removal rate of the first-order EC reactor is about 85%, and under the condition of volume loading of 1.02 kgCOD/m3·d, COD removal rate of the second-order EC reactor is about 50%. When the inflow COD of TSTP process is between 7000-11000 mg/L, its effluent COD is lower than 600 mg/L. In the biological conversion process of methanol into methane,the production of acetic acids as an intermediate product can be ignored and the direct production of methane from methanol is predominant. 展开更多
关键词 methanol wastewater two-stage and two-phase anaerobic process (TSTP) external circulation anaerobic reactor (EC) hydrolytic acidification reactor
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Pyrolysis of Banana and Coffee Residues after Acid Hydrolysis
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作者 Magale Karine Diel Rambo Etelvino Henrique Novotny +3 位作者 Luciano Pasqualoto Canellas Natalia de Oliveira Aguiar Rubens Auccaise Michele Cristiane Diel Rambo 《Journal of Chemistry and Chemical Engineering》 2014年第10期960-970,共11页
The use of the residues from renewable feedstock, besides the production of fuels, but also for the generation of other chemicals products, has become a priority. Superior plants have considerable potential as carbohy... The use of the residues from renewable feedstock, besides the production of fuels, but also for the generation of other chemicals products, has become a priority. Superior plants have considerable potential as carbohydrate, aryl and fatty acids sources. However, the separation of the main constituents of the samples is necessary for several purposes in the biorefinery concept. The acid hydrolysis and pyrolysis processes are very promising technology, however, some adjustments in the conditions of pyrolysis are needed for different biomasses since carbohydrates were detected (14%-17%) in the residues after the conventional acid hydrolysis of these uncommon biomasses (coffee husk and banana stem and stalk). On the other hand, it was showed that, by pyrolysis, it is possible to obtain from the solid residue after acid hydrolysis: pyrogenic carbon (charcoal with a yield of 48.5%-52.7%) for agriculture use (biochar) and valuable chemicals in the pyrolysis oil biooil fraction (that accounted by 26.4%-29.0%, free of water), such as lignin monomers (32.6%-56.4% of the bio-oil) and fatty acids (30%-52.5%). 展开更多
关键词 Lignocellulosic biomass BIOREFINERY acid hydrolysis analytical pyrolysis ~3C NMR (nuclear magnetic resonance).
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Spatiotemporal variation of dissolved carbohydrates and amino acids in Jiaozhou Bay,China
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作者 时迪 杨桂朋 +1 位作者 孙岩 吴冠伟 《Chinese Journal of Oceanology and Limnology》 SCIE CAS CSCD 2017年第2期383-399,共17页
Surface seawater samples were collected from Jiaozhou Bay,China,during six cruises(MarchMay 2010,September-November 2010) to study the distribution of dissolved organic matter including dissolved organic carbon(DOC),t... Surface seawater samples were collected from Jiaozhou Bay,China,during six cruises(MarchMay 2010,September-November 2010) to study the distribution of dissolved organic matter including dissolved organic carbon(DOC),total dissolved carbohydrates,namely monosaccharides(MCHO) and polysaccharides(PCHO) and total hydrolysable amino acids.These included dissolved free amino acids(DFAA) and combined amino acids(DCAA).The goal was to investigate possible relationships between these dissolved organic compounds and environmental parameters.During spring,the concentrations of MCHO and PCHO were 9.6(2.8-22.6) and 11.0(2.9-42.5) μmol C/L,respectively.In autumn,MCHO and PCHO were 9.1(2.6-27.0) and 10.8(2.4-25.6) μmol C/L,respectively.The spring concentrations of DFAA and DCAA were 1.7(1.1-4.1) and 7.6(1.1-31.0) μmol C/L,respectively,while in autumn,DFAA and DCAA were 2.3(1.1-8.0) and 3.3(0.6-7.2) μmol C/L,respectively.Among these compounds,the concentrations of PCHO were the highest,accounting for nearly a quarter of the DOC,followed by MCHO,DCAA and DFAA.The concentrations of the organic compounds exhibited a decreasing trend from the coastal to the central regions of the bay.A negative correlation between concentrations of DOC and salinity in each cruise suggested that riverine inputs around the bay have an important impact on the distribution of DOC in the surface water.A significant positive correlation was found between DOC and total bacteria count in spring and autumn,suggesting bacteria play an important role in the marine carbon cycle. 展开更多
关键词 carbohydrates amino acids CONCENTRATION seasonal variation biological parameter Jiaozhou Bay
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Study on the catalyst in the decomposition reaction for BI organic waste water to adipic acid
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作者 ZHANG Xiao-juan TANG Li-hua JIA Chang-ying 《Journal of Environmental Science and Engineering》 2007年第1期78-80,81,共4页
The influences of kinds and level of catalyst, time of decomposition reaction on the distribution of dibasic acid and apparent yield of adipic acid were researched; the acidic washing waste water (BI waste water) pr... The influences of kinds and level of catalyst, time of decomposition reaction on the distribution of dibasic acid and apparent yield of adipic acid were researched; the acidic washing waste water (BI waste water) producing from the equipment of cyclohexane oxidation by air was as stuff, the component of products by decomposed and oxidated in different conditions were analysed. It indicated that in the presence of cobalt salt the apparent yield of adipic acid was upto 10%-12% for the total BI waste water after the concentrated BI waste water refluxed for two hours, and then oxidated by nitric acid. 展开更多
关键词 BI waste water adipic acid hydrogen peroxide caproic acid (HPOCaP) decomposition OXIDATION
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