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    题名 作者 年代 出处 被引量
1Banana Fusarium Wilt(Fusarium oxysporum f. sp. cubense)Control and Resistance, in the Context of Developing Wilt-resistant Bananas Within Sustainable Production Systems显示文摘Banana(Musa spp.) is seriously threatened by the soil-borne fungus Fusarium oxysporum f. sp. cubense(Foc), also known as Panama disease.Attempts to control Fusarium wilt with fungicides damage soil health and have limited efficiency due to pathogenic variability. Elucidating the mechanism of infection and molecular basis of host defense through banana genome sequencing, genome editing and proteomic profile analysis will help formulate strategies to develop resistant cultivars. This will include research to better understand the functions of Fusarium wilt-resistance proteins. Transgenic approaches and protoplast fusion could be employed as tools for transferring resistance genes from wild relatives to commercial banana varieties, and may serve as a new strategy in solving the problems faced by banana breeding programmes.Evaluation of banana germplasm for resistance to Fusarium wilt using in vitro mutation and selection, along with somaclonal variation and somatic hybridization, could improve banana breeding efficiency for resistance against Foc. Plant hormones could also play an important role in regulating plant growth and defense by mediating developmental processes and signaling networks involved in banana responses to Foc. A complementary approach for managing Fusarium wilt, such as exclusion, surveillance and biological control as important components of integrated disease management programs must be considered to prevent and contain contagion. This includes studies on banana plant-microbe interactions, embracing both plant growth promoting rhizobacteria(PGPR) to induce Foc resistance, and exploring Foc-derived elicitors for inducing defense-related enzymes in bananas. The role of Silicon and crop and livestock integration must also be included in the Fusarium control toolbox. The current review also gathers knowledge of the biotechnological approaches along with biological control of Fusarium wilt of banana that will provide researchers insights and criteria to develop future studies.SIAMAK Shirani Bidabadi ZHENG Sijun 2018Horticultural Plant Journal2018,4,5:16
2Investigation of effective dimensionless numbers on initiation of instability in combustion of moisty organic dust显示文摘In this work,the effect of various effective dimensionless numbers and moisture contents on initiation of instability in combustion of moisty organic dust is calculated.To have reliable model,effect of thermal radiation is taken into account.One- dimensional flame structure is divided into three zones: preheat zone,reaction zone and post-flame zone.To investigate pulsating characteristics of flame,governing equations are rewritten in dimensionless space-time(ξ,η,τ) coordinates.By solving these newly achieved governing equations and combining them,which is completely discussed in body of article,a new expression is obtained.By solving this equation,it is possible to predict initiation of instability in organic dust flame.According to the obtained results by increasing Lewis number,threshold of instability happens sooner.On the other hand,pulsating is postponed by increasing Damk?hler number,pyrolysis temperature or moisture content.Also,by considering thermal radiation effect,burning velocity predicted by our model is closer to experimental results.Mehdi Bidabadi Farzad Faraji Dizaji Hossein Beidaghy Dizaji Moslem Safari Ghahsareh 2014Journal of Central South University2014,21,1:4
3An analytical model for pyrolysis of a single biomass particle显示文摘Decreasing in emissions of greenhouse gases to confront the global warming needs to replace fossil fuels as the main doer of the world climate changes by renewable and clean fuels produced from biomass like wood waste which is neutral on the amount of CO2. An analytical and engineering model for pyrolysis process of a single biomass particle has been presented. Using a two-stage semi global kinetic model which includes both primary and secondary reactions, the effects of parameters like shape and size of particle as well as porosity on the particle temperature profile and product yields have been investigated. Comparison of the obtained results with experimental data shows that our results are in a reasonable agreement with previous researchers' works. Finally, a sensitivity analysis is done to determine the importance of each parameter on pyrolysis of a single biomass particle which is affected by many constant parameters.Mehdi Bidabadi Mohammad Rastegar Moghaddam Seyed Alireza Mostafavi Farzad Faraji Dizaji Hossein Beidaghy Dizaji 2015Journal of Central South University2015,22,1:3
4Micro-organic dust combustion considering particles thermal resistance显示文摘Organic dust flames deal with a field of science in which many complicated phenomena like pyrolysis or devolatization of solid particles and combustion of volatile particles take place. One-dimensional flame propagation in cloud of fuel mixture is analyzed in which flame structure is divided into three zones. The first zone is preheat zone in which rate of the chemical reaction is small and transfer phenomena play significant role in temperature and mass distributions. In this model, it is assumed that particles pyrolyze first to yield a gaseous fuel mixture. The second zone is reaction zone where convection and vaporization rates of the particles are small. The third zone is convection zone where diffusive terms are negligible in comparison of other terms. Non-zero Biot number is used in order to study effect of particles thermal resistance on flame characteristics. Also, effect of particle size on combustion of micro organic dust is investigated. According to obtained results, it is understood that both flame temperature and burning velocity decrease with rise in the Biot number and particle size.Mohammadamin Soltaninejad Farzad Faraji Dizaji Hossein Beidaghy Dizaji Mehdi Bidabadi 2015Journal of Central South University2015,22,7:2
5Spalling resistance of thermally grown oxide based on NiCoCrAlY(Ti) with different oxide peg sizes显示文摘NiCoCrAlY is usually used as the material to bond-coat in thermal barrier coating systems under high temperatures.Using NiCoCrAlY and adding different amounts of the active element Ti(0,0.1,0.3,and0.5;wt%),the relationship between oxide peg size and thermally grown oxide spalling resistance is ascertained by examining specimens subjected to a cyclic oxidation experiment.Oxide pegs,consisting of a Y-and Ti-rich oxide core and an outer Al_(2) O_(3) sheath,are formed by Ti and A1 successively reacting with oxygen after the rapid generation of Y-rich oxide.The size of the oxide pegs with higher Ti concentrations is on average bigger in the alloy.Severe thermally grown oxide spalling occurred in the0.5 wt% Ti specimen,but in the 0.3 wt% Ti specimen,it displayed the best adherence with the alloy due to the presence of fine pegs.Cavities existed at the interface between the inner oxide core and outer Al_(2) O_(3) sheath of larger pegs serve as microcrack sources and further induce severe scale failure combined with the initial interface crack between the scale and alloy.Liang Yang Ryutan Choi Yu Zheng Mohammad Hassan Shirani Bidabadi Abdul Rehman Chi Zhang Hao Chen Zhi-Gang Yang 2021Rare Metals2021,40,3:2
6Solidified float- ing organic drop microextraction (SFODME) for simultaneous separa- tion/preconcentration and determination of cobalt and nickel by graph- ite furnace atomic absorption spectrometry (GFAAS)显示文摘BIDABADI M S DADFARNIA S SHABANI A M 2009Hazardous Materials2009,116,1:1
7Analytical Model for Predicting the Heat Loss Effect on the Pyrolysis of Biomass Particles显示文摘This paper presents the combined influence of heat-loss and radiation on the pyrolysis of biomass particles by considering the structure of one-dimensional, laminar and steady state flame propagation in uniformly premixed wood particles. The assumed flame structure consists of a broad preheat-vaporization zone where the rate of gas-phase chemical reaction is small, a thin reaction zone composed of three regions: gas, tar and char combustion where convection and the vaporization rate of the fuel particles are small, and a broad convection zone. The analysis is performed in the asymptotic limit, where the value of the characteristic Zeldovich number is large and the equivalence ratio is larger than unity(i.e.u≥1). The principal attention is made on the determination of a non-linear burning velocity correlation. Consequently, the impacts of radiation, heat loss and particle size as the determining factors on the flame temperature and burning velocity of biomass particles are declared in this research.Alireza Rahbari Fatemeh Ebrahiminasab Mehdi Bidabadi 2013Chinese Journal of Chemical Engineering2013,21,10:1
8A novel ionic liquid/micro-volume back extraction procedure combined with flame atomic absorption spectrometry for determination of trace nickel in samples of nutritional interest显示文摘Shayesteh Dadfarnia Ali Mohammad Haji Shabani Mahboubeh Shirani Bidabadi Abbas Ali Jafari 2009Journal of Hazardous Materials2009,,1:1
9Is serum vitamin D levels associated with disability in patients with newly diagnosed multiple sclerosis 显示文摘Hatamian H Bidabadi E Seyed SSM 2013Iran J Nenro12013,12,2:1
10An axisymmetric method of creep analysis for primary and secondary creep 显示文摘Jahed H Bidabadi J 2003The International Journal of Pressure Vessels and Piping2003,80,9:1
11Association of persistent hyperglycemia with outcome of severe traumatic brain injury in pediatric population显示文摘Seyed Saadat SM Bidabadi E Seyed Saadat SN 0,,10:1
12Association of persistent hyperglycemia with outcome of severe traumatic brain injury in pediatric population显示文摘Seyed Saadat SM Bidabadi E Seyed Saadat SN 2012Childs Nerv Syst2012,28,10:1
13Modeling combustion of lycopodium particles by considering the temperature difference between the gas and the particles显示文摘Bidabadi M Rahbari A 2009Combustion Explosion and Shock Waves2009,45,3:1
14The effect of Lewis and Damkohler numbers on the flame propagation through micro organic dust particles 显示文摘Bidabadi M Haghiri A Rahbari A 2010International Journal of Thermal Sciences2010,49,3:1
15Pyrolysis and combustion kinetics of lycopodium particles in thermogravimetric analysis显示文摘Biomass is a kind of renewable energy which is used increasingly in different types of combustion systems or in the production of fuels like bio-oil. Lycopodium is a cellulosic particle, with good combustion properties, of which microscopic images show that these particles have spherical shapes with identical diameters of 31 μm. The measured density of these particles is 1.0779 g/cm2. Lycopodium particles contain 64.06% carbon, 25.56% oxygen, 8.55% hydrogen and 1.83% nitrogen, and no sulfur. Thermogravimetric analysis in the nitrogen environment indicates that the maximum of particle mass reduction occurs in the temperature range of 250-550 °C where the maximum mass reduction in the DTG diagrams also occurs in. In the oxygen environment, an additional peak can also be observed in the temperature range of 500-600 °C, which points to solid phase combustion and ignition temperature of lycopodium particles. The kinetics of reactions is determined by curve fitting and minimization of error.Seyed Alireza Mostafavi Sadjad Salavati Hossein Beidaghy Dizaji Mehdi Bidabadi 2015Journal of Central South University2015,22,9:1
16Associatiou between iron deficiency anemia and first febrile convulsion: a case-control study 显示文摘Bidabadi E Mashouf M 2009Seizure2009,18,5:1
17Association of persistent hyperglycemia with outcome of severe traumatic brain injury In pediatric population显示文摘Seyed SaadatSM BidabadiE Seyed SaadatSN 2012Childs Nerv Syst2012,28,10:1
18Synthesis of amorphous manganese borohydride in the(NaBH_4–MnCl_2) system, its hydrogen generation properties and crystalline transformation during solvent extraction显示文摘The mixture of(2NaBH_4+ MnCl_2) was ball milled in a magneto-mill. No gas release was detected. The XRD patterns of the ball milled mixture exhibit only the Bragg diffraction peaks of the Na Cl-type salt which on the basis of the present X-ray diffraction results and the literature is likely to be a solid solution Na(Cl)x(BH4)(1-x), possessing a cubic Na Cl-type crystalline structure. No presence of any crystalline hydride was detected by powder X-ray diffraction which clearly shows that NaBH_4 in the initial mixture must have reacted with MnCl_2 forming a Na Cl-type by-product and another hydride that does not exhibit X-ray Bragg diffraction peaks. Mass spectrometry(MS) of gas released from the ball milled mixture during combined MS/thermogravimetric analysis(TGA)/differential scanning calorimetry(DSC) experiments, confirms mainly hydrogen(H2) with a small quantity of diborane gas, B_2H_6. The Fourier transform infra-red(FT-IR) spectrum of the ball milled(2NaBH_4+ MnCl_2) is quite similar to the FT-IR spectrum of crystalline manganese borohydride, c-Mn(BH_4)_2, synthesized by ball milling, which strongly suggests that the amorphous hydride mechano-chemically synthesized during ball milling could be an amorphous manganese borohydride. Remarkably, the process of solvent filtration and extraction at 42 °C, resulted in the transformation of mechano-chemically synthesized amorphous manganese borohydride to a nanostructured,crystalline, c-Mn(BH_4)_2hydride.Robert A.Varin Deepak K.Mattar Amirreza Shirani Bidabadi Marek Polanski 2017Journal of Energy Chemistry2017,26,1:1
19Responses of Grafted Watermelon onto Cucurbita pepo Tiana F1 Hybrid to Boron Nutritional Disorders显示文摘Sensitivity to boron stress in growing media during the early seedlings stage could severely inhibit watermelon growth and development. The aim of this study was to test if watermelon(Citrullus lanatus cv. Mahbubi) performance can be improved under different boron concentrations(0, 46.31 and 935.11 μmol·L-1 H3BO3) by grafting watermelon plants onto Cucurbita pepo Tiana F1 hybrid rootstock. Shoot dry weight of grafted watermelon was significantly higher than those of non-grafted plants under boron stress conditions(0 and 935.11 μmol·L-1). Boron concentration of the aerial organs of the grafted plants was higher than in the non-grafted ones when treated with 0 μmol·L-1 H3BO3. However, with the application of boron(935.11 μmol·L-1 H3BO3), the aerial organs of grafted plants accumulated lower boron than non-grafted ones. The Cucurbita pepo rootstock also improved the absorption of several other nutrients and leaf chlorophyll content and the Fv/Fmratio was also increased at high boron root concentration. Higher activities of several antioxidant enzymes such as catalase(CAT), superoxide dismutase(SOD) and peroxidase(POX) in grafted watermelons were associated with a significant reduction in H2O2 and malondialdehyde(MDA) generation when compared with those of non-grafted plants under boron stress conditions(0 and 935.11 μmol·L-1 H3BO3). Grafted plants reported improved growth, nutrient uptake and several other physiological parameters when compared to non-grafted watermelon plants under boron stress conditions.Shirani Bidabadi Siamak Sabbatini Paolo 2019Horticultural Plant Journal2019,5,5:1
20The effect of Lewis and Damk6hler numbers on the flame propagation through micro-organic dust particles 显示文摘BIDABADI M HAGHIRI A RAHBARI A 2010International Journal of Thermal Sciences2010,49,3:1
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