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161.
以丙酮酸乙酯为底物,从成都某化工厂污水池及其附近土壤中分离到36株可将丙酮酸乙酯不对称还原成(S)-乳酸乙酯的菌株.经过多次复筛,最终获得了一株具有较高催化活性的酵母菌BTY18-6.在以该菌株静息细胞为催化剂,催化不对称还原丙酮酸乙酯合成(S)-乳酸乙酯的反应中,底物浓度为60 mmol/L时,底物转化率为86.9%,产物(S)-乳酸乙酯的ee值为88.7%.通过对其形态学、生理生化特征及其26S rDNA Dl/D2区域的分析表明,BTY18-6为胶红酵母.  相似文献   
162.
The reduction of hexavalent chromium by scrap iron was investigated in continuous long-term fixed bed system. The effects of pH, empty bed contact time (EBCT), and initial Cr(VI) concentration on Cr(VI) reduction were studied. The results showed that the pH, EBCT, and initial Cr(VI) concentration significantly affected the reduction capacity of scrap iron. The reduction capacity of scrap iron were 4.56, 1.51, and 0.57 mg Cr(VI)·g-1 Fe0 at pH 3, 5, and 7 (initial Cr(VI) concentration 4 mg·L-1, EBCT 2 min, and temperature 25°C), 0.51, 1.51, and 2.85 mg Cr(VI)·g-1 Fe0 at EBCTs of 0.5, 2.0, and 6.0 min (initial Cr(VI) concentration 4 mg·L-1, pH 5, and temperature 25°C), and 2.99, 1.51, and 1.01 mg Cr(VI)·g-1 Fe0 at influent concentrations of 1, 4, and 8 mg·L-1 (EBCT 2 min, pH 5, and temperature 25°C), respectively. Fe(total) concentration in the column effluent continuously decreased in time, due to a decrease in time of the iron corrosion rate. The fixed bed reactor can be readily used for the treatment of drinking water containing low amounts of Cr(VI) ions, although the hardness and humic acid in water may shorten the lifetime of the reactor, the reduction capacity of scrap iron still achieved 1.98 mg Cr6+·g-1 Fe. Scanning electron microscope equipped with energy dispersion spectrometer and X-ray diffraction were conducted to examine the surface species of the scrap iron before and after its use. In addition to iron oxides and hydroxide species, iron-chromium complex was also observed on the reacted scrap iron.  相似文献   
163.
Gaseous NO was photocatalytically reduced at room temperature by photo-assisted selective catalytic reduction (photo-SCR) with ammonia over TiO2 in this study. NO reduction efficiency and N2 selectivity were determined from gases composition at the outlet stream of photoreactor. Effect of operating conditions, e.g. light intensity and inlet concentrations of ammonia and oxygen, on the NO reduction efficiency and N2 selectivity were discussed to determine the feasible operating condition for photocatalytic reduction of NO. Experimental results showed that selective catalytic reduction of NO with ammonia over TiO2 in the presence of oxygen was a spontaneous reaction in dark. The photoirradiation on the TiO2 surface caused remarkable photocatalytic reduction of NO to form N2, NO2, and N2O under 254 nm UV illuminations, while almost 90% of N2 selectivity was achieved in this study. The ammonia and oxygen molecules played the roles of reductant and oxidant for NO reduction and active sites regeneration, respectively. The reduction of NO was found to be increased with the increase of inlet ammonia and oxygen concentrations until specific concentrations because of the limited active sites on the surface of TiO2. The kinetic model proposed in this study can be used to reasonably describe the reaction mechanism of photo-SCR.  相似文献   
164.
To investigate the feasibility of detoxifying chromium slag by sewage sludge,synthetic chromium slag containing 3% of Cr(VI) was mixed with sewage sludge followed by thermal treatment in nitrogen gas for stabilizing chromium.The effects of slag to sludge ratio(0.5,1 and 2) and temperature(200,300,500,700 and 900°C) on treatment efficiency were investigated.During the mixing process before thermal treatment,59.8%-99.7% of Cr(VI) was reduced,but Cr could be easily leached from the reduction product.Increasing heating temperature and decreasing slag to sludge ratio strengthened the reduction and stabilization of Cr(VI).When the slag to sludge ratio was 0.5 and thermal treatment temperature was 300°C,the total leached Cr and Cr(VI) declined to 0.55 mg/L and 0.17 mg/L respectively,and 45.5% of Cr in the thermally treated residue existed as residual fraction.A two-stage mechanism was proposed for the reduction and stabilization of Cr.  相似文献   
165.
为解决露天煤矿顺倾层状软岩边坡稳定性这一技术难题,基于连续介质离散元数值模拟方法,从理论上探讨了降深与清帮至不同位置对顺倾软岩边坡稳定性的影响。结合白音华一号矿南帮工程实例,针对各煤层降深及清帮方案,基于CDEM数值算法对边坡稳定性进行计算,对比分析了坡体位移、应力分布及演化特征,进而阐明多个弱层对复合边坡产生的叠加效应,以及清帮减载对边坡稳定性的影响。结果表明,白音华一号矿首采区南帮边坡变形不会对南排土场稳定性造成影响,揭露多个弱层对边坡变形与稳定性下降有一定的叠加效应,清帮不能显著提高边坡稳定性,但可减小作用在弱层上的法向应力和剪切应力,进而减缓滑坡发生的过程,提高边坡动态发展过程中的安全性。  相似文献   
166.
中国集成电路制造行业VOCs排放特征及控制对策   总被引:2,自引:0,他引:2  
中国电子信息产业发展迅速,集成电路等电子器件产量不断增加.在集成电路制造的过程中,大量有机溶剂的使用导致VOCs的产生和排放,从而对大气环境造成影响.为掌握集成电路制造行业VOCs的排放特征,系统分析了其工艺流程和产排污环节,分析了行业废气收集和治理现状,通过对典型企业VOCs的排放监测,获得VOCs排放水平;采用排放因子法核算行业VOCs历史排放量,并基于行业排放特征及减排潜力分析,提出了相应的污染防治对策.结果表明:在集成电路制造中,VOCs排放环节主要集中在光刻、清洗、去胶等过程,1 m2集成电路产量约使用87 g有机溶剂,VOCs产生量较大;通过采取高效的VOCs治理技术,集成电路制造行业有组织排放水平较低,平均浓度为2.1 mg·m-3,但厂界无组织排放浓度相对较高,平均浓度为0.78 mg·m-3,接近国家标准的排放限值.根据排放量核算结果,2011—2016年中国集成电路制造行业VOCs排放量呈逐年上升的趋势,主要受产量增加而相应污染控制技术水平提升有限的影响,无组织排放量比重大,占排放总量的38.1%~45.1%.  相似文献   
167.
水稻秸秆生物炭对耕地土壤有机碳及其CO2释放的影响   总被引:11,自引:5,他引:11  
为探究生物炭自身稳定性及其输入土壤后对于土壤本体有机碳的影响,本研究模拟自然条件,分别将500℃和700℃裂解的水稻秸秆生物炭(RBC500和RBC700)以0%(空白土壤)、3%、6%和100%(纯生物炭)的比例添加至耕地土壤进行室内培养实验,观测总有机碳(TOC)与易氧化态碳(EOC)含量的变化及CO2排放特征.结果表明,与空白土壤处理相比,土壤TOC、EOC含量均随水稻秸秆生物炭添加量的增加而升高;相同添加量条件下,RBC500对土壤TOC与EOC增加的贡献均高于RBC700.各处理土壤TOC含量在前30 d内均降低(最大降幅为15.8%),并于培养后期趋于稳定;土壤EOC含量在培养初30 d内均降低,当生物炭添加比例为3%和6%时,RBC500使土壤的EOC含量降幅分别为72.4%和81.7%,大于RBC700的61.3%和69.8%;培养结束时,添加相同裂解温度生物炭的土壤EOC值相近.培养前期土壤中EOC含量的下降可能与生物炭中易分解组分引起的矿化作用有关.在130 d培养期内,CO2累计排放量大小顺序为:土壤+生物炭混合处理<纯土壤处理<纯生物炭处理,可见,生物炭的土壤处理可以减少土壤CO2的排放,最大减排率可达41.05%.在一个长的时间尺度内,生物炭的土壤处理有利于土壤碳的固定.生物炭施用于土壤可作为碳储存载体.  相似文献   
168.
红斑顠体虫的污泥减量效果   总被引:1,自引:0,他引:1  
为了实现红斑顠体虫捕食污泥减量化,对不同条件下红斑顠体虫的污泥减量效果进行实验研究。实验结果表明:红斑顠体虫的污泥减量速率随初始MLSS及温度的增大而增大,初始MLSS越高,污泥减量速率越大。污泥减量速率随红斑顠体虫密度变化率的增大而逐渐增大,当红斑顠体虫的密度增长率出现下降时,污泥减量速率也呈下降趋势。采用间歇曝气(12 h曝气,12 h停曝)方式,红斑顠体虫的污泥减量速率会显著下降。在污泥好氧消化时,红斑顠体虫能捕食污泥中的有机碎片和细菌,达到污泥稳定化的指标要求。  相似文献   
169.
剩余污泥减量化工艺条件优化研究   总被引:1,自引:1,他引:1  
运用超声处理连续流活性污泥系统中不同种类的污泥,并将其回流至原系统中,研究其剩余污泥减量化效果。按正交实验设计并进行试验,确定最优工艺条件。结果表明:当声能密度为0.6 W/mL,作用时间为5 min,超声污泥为混合污泥,回流比为7∶120时,减量效果最佳。且在该条件下经一周期的运行,污泥减量效果达到96.24%,COD由进水的830 mg/L降至44 mg/L,NH4+-N和TN分别由进水的62.43 mg/L和103.19 mg/L,降解到2.31 mg/L和6.52 mg/L,达到《城镇污水处理厂污染物排放标准》(GB18918-2002)一级排放标准。  相似文献   
170.
The present paper analyzes historically the relationship between carbon emission and economic development by different stages through adopting elastic decoupling methods and Tapio evaluation criteria along with a comparison with the national Five Year Plans. The analysis shows that the influencing factors to the relationship between carbon emission and economy in China are different, and economic development and carbon emission have less connection in the recent 30 years of reform and opening-up in China. It is a difficult task to realize the promise that we will reduce carbon emission by 40%-50% in 2020 based on the data from historical experience and different expectations for economic development from economists. Through constructing the calcula- tion model of carbon emission intensity gap according to different development scenarios, the analysis shows that economic growth, infrastructure investment and further development of industrial-ization are the main drivers to the increase of carbon emission, technological progress, and particularly, the reduction of energy consumption is the primary means to reduce carbon emission in China. It is imperative to transform the economic growth pattern, and it is a grand task to perform and there is a long way to go for China to maintain economic growth and reduce carbon intensity.  相似文献   
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