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小麦杂交育种F_(1)代多目标性状灰色综合评判 被引量:1
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作者 关立 杨春玲 +5 位作者 韩勇 宋志均 薛志伟 侯军红 薛鑫 张凡 《湖南农业科学》 2022年第5期12-17,共6页
为了提高育种效率,采用灰色综合评判法对2020—2021年度安阳市农业科学院小麦研究所育种过程中的50个F;代小麦杂交组合进行了多性状优势的综合评估。根据灰色综合评判值评出一等组合19个,二等组合22个,三等组合9个。其中,最优组合为7号... 为了提高育种效率,采用灰色综合评判法对2020—2021年度安阳市农业科学院小麦研究所育种过程中的50个F;代小麦杂交组合进行了多性状优势的综合评估。根据灰色综合评判值评出一等组合19个,二等组合22个,三等组合9个。其中,最优组合为7号组合,灰色综合评判值为0.7925,其单株产量、结实性和粒质均已达到育种目标,达标指数均为1.0000;株高和千粒重比较接近育种目标性状,达标指数分别为0.8511和0.7692;而饱满度和单株穗数则距育种目标性状较远,达标指数分别为0.4444和0.5222。因此,在随后的选育过程中,该组合应当在保证其他性状稳定遗传的前提下,加强对饱满度和单株穗数的重点选择。其他组合也可以通过类似的分析获得最佳的处理方式。该方法可以让育种工作者在育种早期确定重点组合,然后在其后代有针对性地进行选择,节省人力、物力、地力和财力,极大地提高了育种效率,建议在杂交育种工作中广泛推广。 展开更多
关键词 小麦 杂交育种 f_(1)代选择 灰色综合评判
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Surface engineering of 1D nanocatalysts for value-added selective electrooxidation of organic chemicals
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作者 Yongping Yang Chuhao Liu +2 位作者 Tinglu Song Mufan Li Zipeng Zhao 《Nano Research》 SCIE EI CSCD 2024年第3期1327-1336,共10页
Electrolytic water splitting by renewable energy is a technology with great potential for producing hydrogen(H_(2))without carbon emission,but this technical route is hindered by its huge energy(electricity)cost,which... Electrolytic water splitting by renewable energy is a technology with great potential for producing hydrogen(H_(2))without carbon emission,but this technical route is hindered by its huge energy(electricity)cost,which is mainly wasted by the anode oxygen evolution reaction(OER)while the value of the anode product(oxygen)is very limited.Replacing the high-energy-cost OER with a selective organic compound electrooxidation carried out at a relatively lower potential can reduce the electricity cost while producing value-added chemicals.Currently,H_(2) generation coupled with synthesis of value-added organic compounds faces the challenge of low selectivity and slow generation rate of the anodic products.One-dimensional(1D)nanocatalysts with a unique morphology,well-defined active sites,and good electron conductivity have shown excellent performance in many electrocatalytic reactions.The rational design and regulation of 1D nanocatalysts through surface engineering can optimize the adsorption energy of intermediate molecules and improve the selectivity of organic electrooxidation reactions.Herein,we summarized the recent research progress of 1D nanocatalysts applied in different organic electrooxidation reactions and introduced several different fabrication strategies for surface engineering of 1D nanocatalysts.Then,we focused on the relationship between surface engineering and the selectivity of organic electrooxidation reaction products.Finally,future challenges and development prospects of 1D nanocatalysts in the coupled system consisting of organic electrooxidation and hydrogen evolution reactions are briefly outlined. 展开更多
关键词 hydrogen generation organic compound electrooxidation one-dimensional(1D)nanocatalysts surface engineering SELECTIVITY
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