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“非洲猪瘟+饲料无抗”后对猪只营养体系的创新思考 被引量:1
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作者 朱秋凤 康瑞芬 马秋刚 《猪业科学》 2020年第11期54-58,共5页
“非洲猪瘟和饲料禁抗”后,猪场对生物安全、猪只免疫营养、肠道健康等的需求进一步加强。文章从猪场需求转变着手,着重从配方设计理念、添加剂筛选、发酵饲料的应用、饲料加工体系和猪场饲喂体系等方面系统阐述对行业变化的应对思考,... “非洲猪瘟和饲料禁抗”后,猪场对生物安全、猪只免疫营养、肠道健康等的需求进一步加强。文章从猪场需求转变着手,着重从配方设计理念、添加剂筛选、发酵饲料的应用、饲料加工体系和猪场饲喂体系等方面系统阐述对行业变化的应对思考,以期为生猪高效养殖提供实践依据。 展开更多
关键词 非洲猪瘟 饲料无抗 配方设计 饲料加工 饲喂体系
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TiO_2-modified nano-egg-shell Pd catalyst for selective hydrogenation of acetylene 被引量:3
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作者 Jin Gao qiufeng zhu Lixiong Wen 《Particuology》 SCIE EI CAS CSCD 2010年第3期251-256,共6页
Pd-based egg-shell nano-catalysts were prepared using porous hollow silica nanoparticles (PHSNs) as support, and the as-prepared catalysts were modified with TiO2 to promote their selectivity for hydro-genation of a... Pd-based egg-shell nano-catalysts were prepared using porous hollow silica nanoparticles (PHSNs) as support, and the as-prepared catalysts were modified with TiO2 to promote their selectivity for hydro-genation of acetylene. Pd nanoparticles were loaded evenly on PHSNs and TiO2 was loaded on the active Pd particles. The effects of reduction time and temperature and the amount of TiO2 added on catalytic per-formances were investigated by using a fixed-bed micro-reactor. It was found that the catalysts showed better performance when reduced at 300 ℃ than at 500℃, and if reduced for 1 h than 3 h. When the amount of Ti added was 6 times that of Pd, the catalyst showed the highest ethylene selectivity. 展开更多
关键词 Egg-shell nano-catalyst Porous hollow silica nanoparticles Modification Selective hydrogenation Acetylene
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