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通过RT-PCR技术克隆了簇毛麦(Dasypyrum villosum)赤霉素生物合成关键酶GA20ox基因的全长序列,命名为DvGA20ox,GenBank登录号为EU142949.该基因全长1 080 bp,推测编码359个氨基酸的蛋白质,具有植物GA20ox基因的典型保守结构域LPWKET和NYYPXCQKP.该基因推导编码蛋白质与小麦、大麦和黑麦草GA20ox蛋白的同源性分别为98%、97%和91%.该序列重组到原核表达载体pET-32a(+)获得的重组子pET-32a(+)-DvGA20ox转化大肠杆菌BL21pLysS后,IPTG诱导表达,SDS-PAGE分析表明,DvGA20ox基因在大肠杆菌中获得了高效表达,融合蛋白相对分子质量为55×103h,与理论值相符.结果为深入研究DvGA20ox蛋白的结构与功能以及该基因与株高发育的关系奠定了基础.图3参19 相似文献
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超临界水无害化共处理PVC和医疗垃圾焚烧飞灰的可行性探讨 总被引:1,自引:0,他引:1
采用超临界水氧化降解PVC同时无害化处理医疗垃圾焚烧飞灰,利用PVC脱氯形成的中间产物盐酸提取医疗垃圾焚烧飞灰中的重金属,达到飞灰无害化的目的。结果显示,超临界水可以将飞灰颗粒打碎,从而提高盐酸提取重金属的速率和效果,但是在超临界水中还存在重金属的固定过程,过长的反应时间和过高的反应温度都会降低重金属的提取效率。在提取过程中,Cu和Zn优先于Pb被盐酸浸出,而Pb被浸出后很容易被超临界水进一步固定。综合考虑重金属在超临界水中的变化特性,总结出超临界水处理飞灰和PVC的最佳条件为:PVC与飞灰质量比0.5:1,温度400℃,提取时间90 min。处理后的飞灰再次经过水洗后,其重金属浸出浓度低于USEPA规定的限制值。本研究为飞灰的无害化处理提供一条新的思路。 相似文献
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徐州电厂超超临界1000MW机组投产后及时采用了给水加氧处理技术,介绍了1号机组给水加氧转换过程、水汽指标的变化情况。加氧处理技术实施后水汽系统含铁量显著降低,精处理混床运行周期延长,加药量减少,效果显著,提高了机组运行的经济性和安全性。 相似文献
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海绵铁还原耦合活性炭吸附-微波再生技术降解甲基橙 总被引:1,自引:0,他引:1
采用海绵铁(s-Fe0)还原耦合活性炭(GAC)吸附-微波(MW)再生技术降解甲基橙(MO)溶液,重点考察了s-Fe0投加量、粒径、微波功率等因素对MO去除效果的影响。结果表明,s-Fe0投加剂量为15.0 g/L、粒径为3~5 mm、超声波功率为200 W,反应1 h,MO的去除率为94.2%。其次,采用GAC吸附-MW再生技术(800 W,照射1 min)循环处理上述脱色后的MO废水。结果表明,GAC吸附可有效降低废水的生物毒性及残留的染料、TOC和总铁离子浓度,且MW辐射可有效再生吸附饱和的GAC颗粒。因此,s-Fe0还原耦合GAC吸附-MW再生技术可以有效降解MO染料,具有处理效果好、实现资源循环利用等优点。 相似文献
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It is well known that soluble microbial products (SMP) derived from biological systems found in wastewater treatment plant effluent are responsible for chemical oxygen demand (COD). Aerobic granular sludge (AGS) is recognized as an efficient and innovative approach for wastewater treatment. Acetate and propionate as two dominant organic substances in wastewater need to be effectively removed before discharge. The aim of this study was to investigate the effectiveness of acetate and propionate to interfere with the accumulation, molecular weight (MW) distribution and composition of SMP in aerobic granular sludge (AGS) system using two identical sequencing batch reactors (SBR) named R1 and R2, respectively, thus reducing the COD. The results demonstrated that more SMP accumulated in R1 in presence of acetate compared to R2 treated with propionate. A positive correlation for SMP formation was detected as evidenced by aeration rates, but a negative correlation with hydraulic retention time (HRT). The MW distribution analysis suggested that small molecules (MW <3?kDa) were the dominant fraction of SMP in R1 and R2, accounting for 57–79% and 39–61%, respectively. In addition, gas chromatography-mass spectrometry (GC-MS) demonstrated that esters, alkanes, alkenes and alcohols were the predominant low-MW SMP in R1 and R2. More peaks were present in R2 (61) than R1 (46). Esters were the predominant SMP (39%) in R1, while alkanes were the predominant SMP (31%) in R2. Further, microbial community analysis indicated that more α- and γ-Proteobacteria groups which readily utilize low-MW SMP were found in R2 compared to R1-granules which may have contributed to less SMP accumulated in R2. The abundant genera in the granules were Zoogloea and Azoarcus, in particular, a greater quantity of Azoarcus was detected in R2 than R1-granules, which may be associated with higher degradation of aromatics in SMP. 相似文献