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161.
湖北省油菜测土配方施肥下N2O减排潜力估算   总被引:1,自引:0,他引:1  
以油菜种植大省-湖北省为案例地,在分析农田氮肥施用与油菜籽产量的基础上,依据氮肥利用率变化,估算测土配方施肥技术在湖北省全面推广的情况下,带来的N2O减排潜力.结果表明,在湖北省油菜种植中,测土配方施肥技术的推广将带来646.32ktCO2-eq的理论减排.以2012年湖北省油菜测土配方推广情况为基础,进一步全面实施该项技术,将产生173.91ktCO2-eq的减排量,占油菜种植因氮肥使用而产生的N2O排放总量的13.98%.测土配方施肥通过优化营养元素配比,提高油菜氮肥利用效率,是一项控制与减少农业N2O排放、减少氮素在环境中盈余量的有效措施.  相似文献   
162.
采用营养液培养方法,研究Cu~(2+)胁迫下外源一氧化氮(nitric oxide,NO)介导的番茄幼苗活性氧及NO代谢途径。结果表明:在Cu~(2+)胁迫下,番茄叶片和根系氧自由基含量增加,NO释放量以及硝酸还原酶(nitrate reductase,NR)和一氧化氮合酶(nitric oxide synthase,NOS)活性降低。外源NO能提高Cu~(2+)胁迫下番茄叶片NR和NOS活性,促进NO的产生,根系NOS活性及NO产量也同时上升。外源NO使精氨酸含量显著增加,而Hb(牛血红蛋白,NO清除剂)可部分抵消NO的促进作用,使Cu~(2+)+SNP+Hb处理下番茄精氨酸含量显著下降。可见,外源NO的加入可通过酶促和非酶促途径促进Cu~(2+)胁迫下NO的合成,介导NO信号调控网络,调节内源NO、精氮酸和活性氧代谢途径,从而缓解过多Cu~(2+)引起的氧化伤害。  相似文献   
163.
Nitrous oxide (N2O) is a greenhouse gas that can be released during biological nitrogen removal from wastewater. N2O emission from a sequencing batch reactor (SBR) for biological nitrogen and phosphorus removal from wastewater was investigated, and the aims were to examine which process, nitrification or denitrification, would contribute more to N2Oemission and to study the effects of heterotrophic activities on N2O emission during nitrification. The results showed that N2O emission was mainly attributed to nitrification rather than to denitrification. N2O emission during denitrification mainly occurred with stored organic carbon as the electron donor. During nitrification, NaO emission was increased with increasing initial ammonium or nitrite concentrations. The ratio of N2O emission to the removed ammonium nitrogen (N2O- N/NH4-N) was 2.5% in the SBR system with high heterotrophic activities, while this ratio was in the range from 0.14% to 1.06% in batch nitrification experiments with limited heterotrophic activities.  相似文献   
164.
环氧乙烷生产装置的安全分析与评价   总被引:6,自引:0,他引:6  
综合运用道化学公司火灾、爆炸危险指数评价法,事故树分析以及事件树分析对环氧乙烷生产装置进行安全评价,定量地得出装置的危险程度,定性地分析了各危险因素的大小以及系统中各元件的故障率对事故发生概率的影响程度,并提出了改进措施.结果表明,该装置的危险程度很大,必须加强安全生产管理,采取有效措施控制氧气的浓度,从而降低危险性等级,保证生产安全.  相似文献   
165.
轧钢污泥综合利用的技术研究   总被引:1,自引:0,他引:1  
阐述了一种轧钢污泥的回收处理技术,该技术可把轧钢污泥有效地分离成氧化铁粉和混合油,实现综合利用,减少铁素资源浪费,有良好的经济效益和环境效益.  相似文献   
166.
Biomaterial industry is a widely growing field that is closely related to advanced materials. With development in fabrication techniques new materials are being created by researchers daily. The currently used biomaterials for biomedical applications have some limitations. This review examines those limitations such as corrosion, short fatigue life, less wear resistance, and inadequate mechanical properties. These limitations may lead to adverse effects. To overcome these limitations carbon-based nanomaterials may be incorporated such that these biomaterials reach the level of ideal biomaterials. Upgrade of biomaterials with graphene and carbon nanotubes (CNTs) needs to be done only after checking the safety profile of these materials. Biocompatibility of functionalized graphene and CNT is found to be adequate for the use in many applications such as drug delivery, biosensing and imaging, cancer therapeutics, and tissue regeneration whereas pristine graphene and CNT may produce adverse effects. The potential of carbon-based nanomaterials and graphene (and its derivatives) in overcoming those limitations and enhancing biological activities of ongoing biomaterials by acting as composites and coating material is examined. In addition, nanomaterials employ new techniques in biomedical application such as cancer therapy for more efficient results.  相似文献   
167.
A simple solvothermal method was used to prepare monodisperse magnetite (Fe3O4) nanoparticles attached onto graphene oxide (GO) sheets as adsorbents to remove tetrabromobisphenol A (TBBPA) from an aqueous solution. These Fe3O4/GO (MGO) nanocomposites were characterized by transmission electron microscopy. The adsorption capacity at different initial pH, contact duration, and temperature were evaluated. The kinetics of adsorption was found to fit the pseudo-second-order model perfectly. The adsorption isotherm well fitted the Langmuir model, and the theoretical maximum of adsorption capacity calculated by the Langmuir model was 27.26 mg?g-1. The adsorption thermodynamics of TBBPA on the MGO nanocomposites was determined at 303 K, 313 K, and 323 K, respectively. The results indicated that the adsorption was spontaneous and endothermic. The MGO nanocomposites were conveniently separated from the media by an external magnetic field within several seconds, and then regenerated in 0.2 M NaOH solution. Thus, the MGO nanocomposites are a promising candidate for TBBPA removal from wastewater.  相似文献   
168.
Spherical TiO2 nanoparticles (npTiO2) were prepared by controlled hydrolysis of tetraethoxy orthotitanate under a nitrogen atmosphere. ZnO nanoparticles (npZnO) were prepared using hydrothermal methods. The crystal structure, chemical, thermal and morphological properties of npZnO and npTiO2 were characterised using Fourier Transform Infrared Spectrometer, enery-dispersive X-ray spectroscopy, X-ray diffraction, and scanning electron microscope techniques. The short- and long-term experiments were started with neonates taken from the same culture and laboratory condition. In the acute experiments, npTiO2, npZnO, and cocktail concentrations were applied. 96h-LC50 values were 1.8, 0.7, and 0.1?mg?L?1, respectively (p?<?.05). For the chronic experiments, different npTiO2 concentrations were performed. 21d-LC50 value was 1.0?mgL?1 (p?<?.05). Morphometry became progressively worse in concentrations of more than 1?mgL?1 npTiO2. Neonate and young individuals were more sensitive to death because of their low tolerance. This result was affected by population progeny and growth rates (p?<?.05). While control and 0.5?mgL?1 npTiO2 groups were determined as growing population, 1.5 and 2?mgL?1 npTiO2 groups had decreased population size as R0 values. Consequently, the relationships between nanoparticle accumulation within Daphnia magna and its population structure and body morphometry for each concentration were important indicators. Its tolerance level to nanoparticles under laboratory conditions reflected its replacement and behaviour in the ecosystem.  相似文献   
169.
在受重金属污染的土壤中,天然有机质(NOM)和重金属通常会同时参与铁氧化物的转化.但关于这一重要的环境反应过程中重金属释放动力学的研究目前还比较少.为阐明NOM对铁氧化物转化过程中Cu释放行为的影响,本研究使用两种代表性NOM:富里酸(FA)和胡敏酸(HA),开展了二者存在下的"铁氧化物-重金属-NOM"转化研究,并对转化不同时间点的铁氧化物进行了Cu释放动力学实验.动力学实验中采用了一个流动搅拌装置模拟pH=5.5环境条件下Cu的释放过程.结果表明,Cu的释放量随着铁氧化物的转化而降低,NOM的存在增加了Cu在流动搅拌实验中的释放量.球差校正扫描透射电子显微镜(Cs-STEM)结果显示,铜可以掺入铁氧化物纳米颗粒中,可以有效固定Cu,而FA和HA处理均产生了具有疏松结构的椭球形颗粒,为Cu的吸附提供了丰富的位点.这种疏松的结构导致了更多吸附态Cu的存在,阻碍了铜的掺入,与Cu释放结果一致.因此,Cu释放能力的差异性主要是铁氧化物老化的结果,与Cu和NOM的络合关系不大.这项研究的结果将有助于更好地理解在NOM存在下铁氧化物转化过程中Cu的环境行为,同时在纳米尺度上阐明Cu和C与赤铁矿相互作用的机理.  相似文献   
170.
两种铁基材料对污染农田土壤砷、铅、镉的钝化修复   总被引:7,自引:6,他引:1  
制备得到了铁钙(FeCa)和铁锰(FMBO)两种铁基材料,用于钝化修复As、Pb和Cd污染土壤.研究采集了来自绍兴上虞(SY)、广东佛山(FS)、广东韶关(SG)、湖南浏阳(LY)、江西赣州(GZ)、贵州独山(DS)和安徽马鞍山(MAS)的7种重金属污染水稻土(潮泥土),通过土壤培养试验,研究铁钙材料(FeCa)和铁锰材料(FMBO)对各类土壤溶液中As、Pb和Cd浓度动态变化的影响,对土壤中有效态As、Pb和Cd钝化效果的影响,以及在不同种类土壤中有效态As、Pb和Cd钝化效果差异及影响因素.结果表明,培养过程中,铁基材料处理下土壤溶液中As、Pb和Cd浓度均低于对照处理.研究发现,两铁基材料均能对土壤中As、Pb和Cd起到较好的钝化作用,相同添加量下,铁钙材料对土壤As的钝化效率优于铁锰材料,而材料之间对土壤Pb和Cd钝化效率无显著差异.铁钙材料处理下各种土壤As钝化效果表现为GZ > SG > DS和MAS,土壤铅钝化效果表现为FS>SY、LY和SG>MAS,土壤镉钝化效果表现为SY、GZ和DS>MAS;铁锰材料处理下各种土壤As钝化效果表现为SY、LY和GZ > DS > FS,土壤Pb钝化效果表现为FS > GZ > SY,土壤Cd钝化效果表现为DS > LY > MAS.各种土壤As钝化效率在两铁基材料处理下均与土壤黏土含量呈显著负相关,各种土壤Pb钝化效率在两铁基材料处理下均与土壤pH呈显著正相关,各种土壤Cd钝化效率在铁钙材料处理下与土壤黏土含量显著负相关.总体来看,两铁基材料均适用于各不同种类As、Pb和Cd污染土壤的治理.  相似文献   
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