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41.
为研究玉米淀粉粉尘爆炸危险性,采用哈特曼管式爆炸测试装置和20 L球爆炸测试装置对200目(<75μm)以下的玉米淀粉粉尘爆炸危险性进行评估,基于静电火花和粉尘质量浓度对粉尘爆炸的影响,对玉米淀粉的静电火花最小点火能量、爆炸下限质量浓度、最大爆炸压力和爆炸指数进行了研究,根据试验结果对玉米淀粉爆炸危险性进行分级。试验结果表明:温度在25℃,喷粉压力为0.80 MPa,粉尘质量浓度在250~750 g/m3范围内,粉尘的最小点火能量随着粉尘质量浓度增加而降低,其最小点火能量在40~80 mJ之间;在点火能量为10 kJ时,粉尘爆炸下限质量浓度在50~60 g/m3之间;在粉尘质量浓度为750 g/m3时,爆炸压力达到最大,为0.66 MPa;在粉尘质量浓度为500 g/m3时,爆炸指数达到最大,为17.21 MPa.m/s,其粉尘爆炸危险性分级为Ⅰ级。  相似文献   
42.
以草木樨(Melilotus officinalis)种子为研究对象,将其暴露于0、20、40和60 mg·L-1浓度的氯化汞中进行萌发,并对存活的幼苗利用水平淀粉凝胶电泳进行等位酶分析.结果表明,草木樨在Me和Pgi基因座具有多态性,其平均的等位基因数为3.0基因座-1,杂合性为0.332 - 0.342,草木樨符合...  相似文献   
43.
Soil retrieval, processing and storage procedures can have a profound effect on soil microorganisms. In particular, changes in soil microbial populations may adversely affect the biological activity of a soil and drastically alter the soil's potential to mineralize added substrates. The effects of cold storage on the biodegradation of a series of test polymers was investigated using two soils—a synthetic soil mix (SM-L8) and a field soil (Bridgehampton silt loam) from Rhode Island (RI-1). Biodegradation tests were conducted using freshly prepared/collected soil and again following storage at 4°C for 3 to 8 months. Prior to each biodegradation test, the soils were incubated at 60% water-holding capacity (WHC) and 25°C to rejuvenate the microbial populations; the soils were incubated for periods of 48 h (freshly collected soil) or 25 days (soils stored at 4°C). Soil microbial populations were assessed by enumerating different segments of the population on agar plates containing different selective media. Mineralization of the test polymers (cellulose, poly-3-hydroxybutyrate, and starch acetate, d.s. 1.5) was monitored using standard respirometric techniques. Our results demonstrated that cold storage had a generally negative effect on the soil microbial populations themselves but that its effect on the capacity of the soil microorganisms to degrade the test polymers varied between soils and polymer type. Whereas cold storage resulted in dramatic shifts in the community structure of the soil microbial populations, substantial restoration of these populations was possible by first conditioning the soils at 60% WHC and ambient temperatures for 25 days. Likewise, although the effects of cold storage on polymer mineralization varied with the test polymer and soil, these effects could be largely offset by including an initial 25-day stabilization period in the test.  相似文献   
44.
The biodegradability of oxidized starch and inulin has been studied in relation to the degree of periodate oxidation to dialdehyde derivatives, by measuring oxygen consumption and mineralization to carbon dioxide. A higher degree of oxidation of dialdehyde starch and dialdchyde inulin results in a lower rate at which the polymers are biodegraded. It is demonstrated that the biodegradation rate of dialdehyde inulin derivatives decreases more than that of equivalent starch derivatives. The differences in biodegradation behavior between dialdehyde starch and dialdehyde inulin, resulting from comparable modifications, are discussed in terms of conformational structure.  相似文献   
45.
李丽  沈德富 《四川环境》2013,(5):102-107
本文研究了传统米淀粉生产工艺物质流失及其生产过程控制与管理的内容,评价了米淀粉产品技改前与技改后的经济绩效和环境绩效.结果表明,开展清洁生产绩效评价研究,对于优化产品结构、实施工艺技术改造、提高资源能源利用率与节能减排效果具有重要意义.  相似文献   
46.
产α-淀粉酶菌株液体培养条件的探讨   总被引:1,自引:0,他引:1  
目的是探讨在液体培养条件下枯草芽胞杆菌(B.subtilis HY-02)降解淀粉的影响因素。方法是设0、0.5%、1%、1.75%四种淀粉浓度的培养基,接种细菌后,在32℃的温箱、水浴、振荡三种条件下培养,连续检测α-淀粉酶活性及淀粉浓度。结果为温箱、水浴培养:96h后,1%淀粉瓶α-淀粉酶活性、分解淀粉最明显,1.75%淀粉瓶存在抑制酶活性的现象。振荡培养:1.75%淀粉瓶优于其他组。结论是初始淀粉浓度、培养方式对枯草芽胞杆菌α-淀粉酶活性影响较大,也直接影响了淀粉的分解。  相似文献   
47.
利用60Co-γ辐射,以共辐照接枝技术制备出淀粉-丙烯酰胺接枝共聚物。研究了各种反应条件对丙烯酰胺(Acrylamide,AM)接枝率和单体利用率的影响规律,利用傅里叶红外光谱对接枝产物进行了表征。结果表明,其最佳合成条件为:辐射剂量15 kGy,淀粉与AM质量配比0.5∶1,阻聚剂添加量0.02%AM,单体浓度5%,产品接枝率达244%,单体利用率达171%。接枝产物通过Mannich反应阳离子化后考察其对剩余污泥絮凝性能,试验结果表明:改性絮凝剂(CSPAM)对剩余污泥的絮凝效果优于市售PAM,且CSPAM最佳用量小于PAM。  相似文献   
48.
镉对桐花树幼苗生长及渗透调节的影响   总被引:22,自引:0,他引:22  
吴桂容  严重玲 《生态环境》2006,15(5):1003-1008
采用土培方法研究不同质量分数Cd(0.5~50mg·kg-1)对桐花树Aegicerascorniculatum幼苗的生长及渗透调节的影响。结果表明:低质量分数Cd(0.5mg·kg-1)处理条件下,桐花树幼苗株高、植株鲜物质量均显著高于对照,根长、叶绿素质量分数则没有显著增加;高质量分数Cd(50mg·kg-1)条件下,这些参数均显著降低,说明高质量分数Cd胁迫下,植株正常生长受到抑制。除了0.5mg·kg-1条件外,叶片淀粉质量分数变化趋势总体上是随着Cd的增加而下降。在5~50mg·kg-1Cd处理下,渗透调节物质可溶性糖、可溶性蛋白质及脯氨酸均显著增加,与Cd质量分数存在正相关性。Cd胁迫下,渗透调节物质的积累作用是桐花树对Cd胁迫的主要响应过程,可溶性糖、可溶性蛋白及脯氨酸与可作为Cd对桐花树污染的检测指标。  相似文献   
49.
响应曲面法优化絮凝处理木薯淀粉废水   总被引:4,自引:1,他引:4  
采用中心复合实验设计和响应面分析法研究复合絮凝剂聚合氯化铝锌(PAZC)和聚合氯化铝(PAC)混凝处理木薯淀粉废水,进行设计和分析,以溶液pH值和絮凝剂用量为考察因素,分别以COD、浊度去除率为考察指标,选用最佳优化数学模型描述考察指标和考察因素之间的数学关系,并以设定PAZC和PAC对COD去除率(65%),浊度去除率(90%)和SS去除率(90%)的目标值,通过等高线叠加图预测最优实验条件,得到PAZC投量为6.5 mg/L,pH为7.7时,COD去除率和浊度去除率分别达到最大为76.6%和99.9%;PAC投量为19.2 mg/L,pH为7.8时,COD去除率和浊度去除率最大值分别为64.4%和97.1%。经对最优条件进行验证,预测值与验证实验平均值接近。  相似文献   
50.
The biodegradation behavior of insoluble crystalline polymers depends on both chemical structure and physical state. The physical state is strongly affected by the molding conditions; moreover the presence of natural hydrophylic substances such as starch can further influence the biodegradation process. This paper examines the biotic and abiotic degradation of thick injection-molded parts, made of pure poly--caprolactone (PCL) at different molecular weights, and of PCL in the presence of starch in the case of a commercial grade of Mater-Bi, produced by Novamont. The abiotic degradation was studied at 25 and 50°C, whereas the biotic degradation was followed in conditions of SCAS (semicontinuous activated sludges) at 25 and 50°C, soil burial, and controlled composting. The physical-chemical modifications provoked at the surface and in the bulk of the samples by the different types of degradation were determined by differential scanning calorimetry, viscometric and gravimetric analysis, scanning electron microscopy, and dynamic mechanical analysis. The mechanical modifications induced by the different environments were followed by tensile tests. It was demonstrated that the presence of starch significantly increases the apparent biodegradation rate of PCL, making even thick parts of ZI01U compatible with the composting process.Paper presented at the Bio/Environmentally Degradable Polymer Society—Third National Meeting, June 6–8, 1994, Boston, Massachusetts.  相似文献   
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