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36篇 您的检索式:作者名="Gradziel"
    题名 作者 年代 出处 被引量
1Influence of Biomass Co-combustion on Heating Surfaces Thermal Efficiency显示文摘Pulverized coal-fired(PCF) boilers were first and foremost intended to fire pulverized hard or brown coal. However, biomass co-firing has become a fairly common practice in the Polish power generation system and many existing boilers have been modernized to serve this purpose. This paper presents calculations of the coefficient of thermal efficiency of the boiler heating surfaces and of the time needed for complete reconstruction of deposits on the second-stage steam reheater(RHII) of an OP-380 boiler with the output of 380×10~3 kg/h. The boiler was equipped with a purpose-designed installation of direct feeding of biomass. The main co-fired fuels were wood and sunflower husk pellets. Intense formation of deposits on the steam reheater tubes and problems related to a reduction in the diameters of the tubes were identified during the power unit operation.GRADZIEL Slawomir WITKOWSKI Karol 2018Journal of Thermal Science2018,27,5:4
2Discriminating ability of molecular markers and morphological characterization in the establishment of genetic relationships in cultivated genotypes of almond and related wild species显示文摘A 总数 23 词法特点, 19 AFLP教材联合, 80 份 RAPD 教材和 32 SSR 教材配对被用来比较随机的放大多态的 DNA ( RAPD )的增进知识的海角和效率,在在 29 杏仁栽培变种和三相关的野种之中建立基因关系放大了碎片长度多型性( AFLP )和简单顺序重复( SSR )标记。SSR 与 AFLP 和 RAPD 相比介绍了多型性和更大的信息内容的高水平,由期望的 hetrozygosity 估计了。期望的 hetrozygosity 的最低价值为 AFLP 被获得;然而, AFLP 显示出最高的效率,由于他们揭示每反应的大量乐队的能力,它为差异的索引的各种各样的类型导致了高价值。所有三种技术很有效地区别了杏仁遗传型,除了 SSR 没能在‘ M 之间区别 onagha' 和‘ S efied' 杏仁遗传型之外。类似的关联系数为所有三个标记系统是统计上重要的,但是比为 RAPD 和 AFLP 为 SSR 数据是更低的。为所有标记, dendrogram 拓扑学的高类似被获得,尽管一些差别被观察。所有 dendrograms 包括由所有标记数据的联合使用获得了那,根据他们的地理散开为大多数栽培变种反映关系。AMOVA 检测了更多的变化在之中在每个地理组以内栽培了并且联系杏仁的野种类。自举分析表明使用的标记的数字为基因类似的可靠评价并且为标记类型的有意义的比较是足够的。Karim Sorkheh Behrouz Shiran Soghra Kiani Nazanin Amirbakhtiar Sadegh Mousavi Vahid Rouhi Shahram Mohammady-D Thomas M. Gradziel Lyudmyla V. Malysheva-Otto Pedro Martinez-Gomez 2009Journal of Forestry Research2009,20,3:2
3Identification of self-incompatibility genotypes of almond by allele-specific PCR analysis显示文摘M. Tamura K. Ushijima H. Sassa H. Hirano R. Tao T. M. Gradziel A. M. Dandekar 2000TAG Theoretical and Applied Genetics2000,,3:1
4Structual and transcriptional analysis of the self-incompatibility locus of almond :identification of a pollen-expressed F-box gene with haplotype-specific polymorphism显示文摘USHIJIMA K SASSA H DANDEKAR A M GRADZIEL T M 2003Plant Cell2003,15,3:1
5low tem- perature storage of almond pollen 显示文摘Martinez -G6mez Pedro Gradziel Thomas M 2002Hortscience2002,37,4:1
6Low temperature storage of almond pollen显示文摘Martinez Gomez P Gradziel T M Ortega E 2002The American Society for Horticultural Science2002,7,4:1
7The use of molecular genetics to improve peach and nectarine post-storage quality显示文摘Peace C P Ahmad R Gradziel T M 2005Acta Horticulturae2005,682,:1
8A fruit quality gene map of Prunus 显示文摘Ogundiwin E A Peace C P Gradziel T M 2009BMC Genomics2009,10,:1
9Structural and transcriptional analysis of the self-incompatibility locus of almond: identification of a pollen-ex- pression F-box gene with haplotype-specific polymorphism显示文摘USHIJIMA K SASSA H DANDEKAR A M GRADZIEL T M TAO R HIRANO H 2003Plant Cell2003,15,:1
10Clonjng and characterization of cDNAs encoding S-RNases from almond (Prunus dulcis):primary structural features and sequence diversitv of the S-RNases in Rosaceae显示文摘USHIJMA K SASSA H TAO R YAMANE H DANDEKAR A M GRADZIEL T M HIRANO H 1998Mol Gen Genet1998,260,:1
11The use of molecu-lar genetics to improve peach and nectarine post-storage quality显示文摘Peace CP Ahmad R Gradziel TM 2004Acta Horticulturae2004,682,:1
12Structural and transcriptional- analysis of the self- incompatibility Locus of Almond: identification of a pollen-expressed F-Box gene with haplotype-specific polymorphism显示文摘USHIJIMA K SASSA H DANDEKAR A M GRADZIEL T M TAO R HIRANO H 2003The Plant Cell2003,15,:1
13Low temperature storage of almond pollen显示文摘Martinez-gomez E Gradziel T M Ortega E 0,,04:1
14A fruit quality gene map of Prunus 显示文摘Ogundiwin EA Peace CP Gradziel TM Parfitt DE Bliss FA Crisosto CH 2009BMC Genomics2009,10,1:1
15Development of ChillPeach genomic tools and identification of cold-responsive genes in peach fruit显示文摘OGUNDIWIN E A MARTI C FORMENT J PONS C GRANELL A GRADZIEL T M PEACE C P CRISOSTO C H 2008Plant Molecular Biology2008,68,45:1
16Oil Content and Fatty Acid Composition of Almond Kernels from Different Genotypes and California Production Regions显示文摘Abdallah A Ahumada M H Gradziel T M 1998Journal of the American Society for Horticultural Science American Society for Horticultural Science1998,123,6:1
17Low temperature storage of almond pollen 显示文摘MARTINEEZ-GOMEZ P GRADZIEL T M 2002HortScience2002,37,4:1
18The use of molecular genetics to improve peach and nectarine post-storage quality显示文摘PEACE C P AHMAD R GRADZIEL T M DANDEKAR A M CRISOSTO C H 2005Acta Horticulturae2005,82,1:1
19Amplified fragment length polymorphism as a tool for molecular characterization of almond germplasm:genetic diversity among cultivated genotypes and related wild species of almond,and its relationships with agronomic traits显示文摘Karim S Behrouz S Gradziel T M 2007Euphytica2007,156,3:1
20Factors influencing gene delivery into Zea mays cells by high velocity microprojectiles显示文摘Klein TM Fromn ME Gradziel T 1988Bio/Technology1988,,6:1
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