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81.
采用正交设计实验进行糖蜜发酵产乳酸的研究 .结果表明 ,在所选择的发酵温度、初始糖浓度、酵母膏用量和接种量 4个因素中 ,初始糖浓度对乳酸产量的影响最显著 .最佳发酵条件是 ,初始糖浓度 70g/L ,接种量 7% ,温度 37℃ ,酵母膏用量 3% .在此条件下 ,乳酸产量在发酵 72h时可达 4 0 g/L左右 .酵母膏作为一种辅料 ,对增加乳酸产量效果明显 ,但造价较高 .以厨房垃圾、豆渣、硫酸铵作为酵母膏的替代物 ,进行糖蜜发酵时 ,其糖底物都能被有效利用 ,乳酸转化率与酵母膏相当 ,但乳酸产量仍低于酵母膏 ,表明乳酸发酵是极为复杂的过程 ,不仅与氮源有关 ,还与维生素等营养物质有关  相似文献   
82.
本方法是用固相萃取法萃取水和废水中的多菌灵,取浓缩纯化后的有机相直接进样到高效液相色谱仪,用二极管矩阵检测器检测,根据保留时间外标法定量.  相似文献   
83.
Increased NOx emission from usage of biodiesel is a burning issue to be dealt with. Many techniques have been adopted to reduce NOx emissions from diesel engines. The present experimental study deals with the analysis of performance and emission characteristics of Cotton Seed oil biodiesel with the addition of natural antioxidant extract of clove. FTIR analysis characterized the antioxidant by the presence of hydroxyl groups denoted by the corresponding wave number. The oxidation stability of the test samples was determined in terms of induction period by means of Rancimat test. The induction periods of the test fuel samples B100, B20, B20+CL1000, and B20+CL2000 were found to be 2.20 h, 2.73 h, 10.19 h, and 11.12 h, respectively. Thus, the addition of Clove antioxidant increased the oxidation stability of the biodiesel. Results show that the addition of antioxidant to biodiesel blend has increased the Brake Thermal Efficiency to a maximum of 4.71% and decreased the Brake Specific Fuel Consumption to a maximum of 6.25% at full-load conditions compared to Cotton Seed biodiesel blend. The addition of Clove extract antioxidant at a concentration of 1000 ppm and 2000 ppm decreases the NOx emission by 23.03% and 26.7%, respectively, at full-load conditions. However, CO emissions increased by 1.12% and 4.49% with the addition of CL1000 and CL2000 to B20, respectively. Similarly, HC emissions increased by 4.19% and 7.35% by the addition of CL1000 and CL2000 to B20, respectively. The increases in smoke with the addition of CL1000 and CL2000 to B20 were 42.48% and 47.71%, respectively.  相似文献   
84.
青顶拟多孔菌是一种可以降解木质素的白腐真菌,也是具有较高的产漆酶能力的生产者.选择青顶拟多孔菌处理玉米秸秆纤维素乙醇废水,于液体培养青顶拟多孔菌中的锥形瓶中添加不同体积的废水,考察其对不同稀释比玉米秸秆纤维素乙醇废水的处理效果,并通过研究废水投加时间的调控,获得具有高木质素降解率且相对最短降解时间的工艺条件.结果表明:青顶拟多孔菌可从废水中去除50%以上的CODCr和23.8%的木质素.对不同稀释比例(1%~20%)玉米秸秆纤维素乙醇废水中木质素具有较好的去除效果,其中稀释6%废水的体系中降解木质素效果最好,在第10天木质素降解率达到73.5%.不同废水投加时间对青顶拟多孔菌处理稀释20%废水体系中木质素的降解效果影响较大,第5天投加废水可获得理想的木质素降解效果,在试验进行的第19天降解率达到68.4%;在投加废水时间不同的情况下,经青顶拟多孔菌处理后的各体系中BOD5/CODCr均有所提升,并且都提升至0.58以上,其中第9天投加废水体系经处理后BOD5/CODCr最大,达到0.64.研究结果可为青顶拟多孔菌处理玉米秸秆纤维素乙醇废水的实际应用提供参考.   相似文献   
85.
为对比研究超临界态CO_2、液态CO_2和气态N_2注入采空区的防灭火性能,自主研制了模拟采空区残煤自燃过程实验系统,开展了超临界态CO_2、液态CO_2和气态N_2注入采空区防灭火实验。实验结果表明:12 MPa、39℃超临界态CO_2对采空区自燃残煤的降氧降温能力优于6 MPa、30℃液态CO_2优于6 MPa、39℃气态N_2;12 MPa、39℃超临界态CO_2对残煤的降温能力是6 MPa、30℃液态CO_2的1.7倍,是6 MPa、39℃气态N_2的10倍,对采空区的降温能力是液态CO_2的2倍,为气态N_2的8倍;12 MPa、39℃超临界CO_2对采空区的降氧速率比6 MPa、30℃液态CO_2和6 MPa、39℃气态N_2高12.5%;12 MPa、39℃超临界CO_2的降温能力是8 MPa、39℃超临界CO_2的1.7倍,因此适当提高超临界态CO_2的注入压力,防灭火性能更佳。  相似文献   
86.
On December 7, 2009, a 50-foot-tall high-pressure vessel ruptured in the Nihon Dempa Kogyo Crystal, Inc. facility in Belvidere, Illinois. Several projectiles rapidly traveled outward from the facility, killing a truck driver 650 feet away and injuring an employee in another building 435 feet away. This paper summarizes the lessons learned from this incident both on causal and consequential aspects. Stress corrosion cracking was identified as the failure mechanism by the U.S. Chemical Safety and Hazard Investigation Board. After analyzing the operating conditions and the aftermath, this incident has been identified as a Boiling Liquid Expanding Vapor Explosion (BLEVE) under a supercritical pressure. A consequence analysis of the incident is performed where overpressure and fragment distance are calculated, together with safety distance estimation. Additionally, other safety-related problems, such as safety culture, management inside the corporation, and communication between this facility and the government are discussed.  相似文献   
87.
This paper examines the historic development of the Brazilian sugarcane ethanol sector and the largely successful attempt to create a sustainable, renewable fuel for the transport sector. The policy that resulted from this process is an example of meeting the need for sustainable transport through the consideration of location‐specific characteristics and appropriate policy. The paper then questions the current and expected trajectory of the sugarcane ethanol sector with the focus on one key question: can sustainability be exported? In this analysis, the paper identifies new threats to the sustainability of Brazilian sugarcane ethanol and potential “opportunity costs” incurred in further development and internationalization of the sector. The paper concludes that exporting sugarcane ethanol may bring unanticipated deleterious consequences, which in turn means that both policy and theory need to be more precise about how sustainable transport is defined and bounded by time and space.  相似文献   
88.
Environment-friendly treatment of sewage sludge has become tremendously important. Conversion of sewage sludge into energy products by environment-friendly conversion process, with its energy recovery and environmental benefits, is being paid significant attention. Direct liquefaction of sewage sludge into bio-oils with supercritical water (SCW) was therefore put forward in this study, as de-water usually requiring intensive energy input is not necessary in this direct liquefaction. Supercritical water may act as a strong solvent and also a reactant, as well as catalyst promoting reaction process. Experiments were carried out in a self designed high-pressure reaction system with varying operating conditions. Through orthogonal experiments, it was found that temperature and residence time dominated on bio-oil yield compared with other operating parameters. Temperature from 350 to 500 °C and reaction residence time of 0, 30, 60 min were accordingly investigated in details, respectively. Under supercritical conversion, the maximum bio-oil yield could achieve 39.73%, which was performed at 375 °C and 0 min reaction residence time. Meanwhile, function of supercritical water was concluded. Fuel property analysis showed the potential of bio-oil application as crude fuel.  相似文献   
89.
方治国 《环境科学》2010,31(4):1059-1065
以高温厌氧细菌热纤维梭菌(Clostridium thermocellum LQRI)和嗜热厌氧乙醇菌(Thermoanaerobacter ethanolicus X514和Thermoanaerobacter pseudoethanolicus39E)为对象,以纤维素为微生物利用的底物,分析了LQRI纯培养和LQRI+Thermoanaerobacter混合培养对纤维素降解、酒精生产及终产物分布的影响.结果表明,LQRI+Thermoanaerobacter混合培养的酒精生产能力和纤维素降解率明显高于LQRI纯培养.在混合培养体系中,LQRI+X514的酒精生产能力明显高于LQRI+39E.培养基中无外源酵母粉条件下,LQRI纯培养酒精最高浓度约为11.5mmol/L,LQRI+X514和LQRI+39E混合培养最高酒精浓度分别约为71mmol/L和36.5mmol/L,相同的底物纤维素浓度条件LQRI+X514和LQRI+39E混合培养酒精浓度分别约为LQRI纯培养的5~11倍和3~5倍,纤维素降解率分别都约为LQRI纯培养的1.5~5.0倍;培养基中0.6%外源酵母粉存在条件下,LQRI纯培养酒精最高浓度约为12.9mmol/L,LQRI+X514和LQRI+39E混合培养最高酒精浓度分别约为263.5mmol/L和143.5mmol/L,相同的底物纤维素浓度条件LQRI+X514和LQRI+39E混合培养酒精浓度分别约为LQRI纯培养的8~22倍和8~12倍,纤维素降解率均约为LQRI纯培养的1.1倍.在5%Solka Floc为底物和0.6%外源酵母粉的条件下,LQRI+X514混合培养酒精浓度最高可达到263.5mmol/L,相当于1.2%(质量浓度)的酒精,LQRI+39E约为143mmol/L.  相似文献   
90.
Contemporary reports on the energy and environmental benefits of bioethanol have suggested that the cellulosic ethanol is significantly more efficient. To understand the development potential of energy crops in Taiwan, the present study has assessed the resources and cost inputs for the planning, harvesting, transporting, and storing procedures of the first generation energy crops during 2007–2010 with the perspective of LCA. In addition, a field investigation focusing on rice straw, the largest agricultural waste in Taiwan, has been conducted since 2010 to obtain fundamental data.This study further analyzes the first and second-generation feedstocks from the perspective of LCA based on field investigated data. Taiwan has not yet established an ethanol plant; therefore, this study established production data by simulating the production efficiency of an economical scale using parameters obtained through production trials, and proposed an evaluation model for the energy input, GHG, and production costs of bioethanol in Taiwan. The results of this study were cross-compared with foreign literature to explore the development potential of bioethanol in Taiwan. The results indicate that based on the current cellulosic ethanol technology in Taiwan, regarding the energy balance, GHG, and production costs, is less efficient than that of the first generation bioethanol.  相似文献   
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