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不同脲醛缓释肥料对小麦生长发育及产量的影响
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作者 张志伟 魏秀华 +6 位作者 昝瑞丽 李祖义 王洪生 李启芳 王同芹 郎文培 王宁 《大麦与谷类科学》 2023年第3期36-40,共5页
为明确不同类型脲醛缓释肥料在小麦上的应用效果,加快该类肥料的推广应用,选取4种不同脲醛缓释肥料作底肥,测定对比不同脲醛缓释肥料对济麦44不同生育期生长发育指标和产量的影响。结果表明,施用添加了黄腐酸和有益微生物菌群的脲醛缓... 为明确不同类型脲醛缓释肥料在小麦上的应用效果,加快该类肥料的推广应用,选取4种不同脲醛缓释肥料作底肥,测定对比不同脲醛缓释肥料对济麦44不同生育期生长发育指标和产量的影响。结果表明,施用添加了黄腐酸和有益微生物菌群的脲醛缓释复合肥料24-16-6[w(N)≥24%,w(P2O5)≥16%,w(K_(2)O)≥6%],小麦灌浆期旗叶叶面积、叶绿素含量、千粒质量和产量均较高,产量达到8904.6 kg/hm^(2);施用普通脲醛复合肥料25-14-6[w(N)≥25%,w(P_(2)O_(5))≥14%,w(K2O)≥6%],小麦拔节后单株分蘖数、单株干物质质量和株高较高,产量为8858.6 kg/hm^(2);添加了黄腐酸和海藻酸的脲醛复合肥料24-16-6[w(N)≥24%,w(P_(2)O_(5))≥16%,w(K_(2)O)≥6%],越冬期小麦单株分蘖数、次生根条数、单株干物质质量均较高,但后期生长减缓,产量为8739.3 kg/hm^(2);施用掺混肥料18-20-5[w(N)≥18%,w(P_(2)O_(5))≥20%,w(K_(2)O)≥5%]的小麦不同生育期生长发育指标和产量均最低,产量为8418.9 kg/hm^(2)。因此,脲醛缓释肥料添加部分黄腐酸和有益活菌,对小麦施用效果较好。 展开更多
关键词 脲醛肥料 黄腐酸 海藻酸 微生物 小麦 产量
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A Stable Isotope Mass Marker for On-line Isotope Separator
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作者 Zhao Jinhua wang tongqin Guo Bin and Fan Hongmei 《IMP & HIRFL Annual Report》 1996年第1期52-52,共1页
AStableIsotopeMassMarkerforOn-lineIsotopeSeparator¥ZhaoJinhua;WangTongqin;GuoBinandFanHongmeiSofarattheHIR,F... AStableIsotopeMassMarkerforOn-lineIsotopeSeparator¥ZhaoJinhua;WangTongqin;GuoBinandFanHongmeiSofarattheHIR,FLon-lilleisotopes... 展开更多
关键词 ISOTOPE MARKER STABLE
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A kinematic model describing particle movement near a surface as effected by Brownian motion and electrostatic and Van der Waals forces
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作者 MEI HeGeng ZHAO DeWen +2 位作者 wang tongqin CHENG Jie LU XinChun 《Science China(Technological Sciences)》 SCIE EI CAS 2014年第11期2144-2152,共9页
Nanoparticle movement near a surface is greatly influenced by electrostatic and Van der Waals forces between the particle and the surface,as well as by Brownian motion.In this paper,several precise equations are deriv... Nanoparticle movement near a surface is greatly influenced by electrostatic and Van der Waals forces between the particle and the surface,as well as by Brownian motion.In this paper,several precise equations are derived to describe the Van der Waals and electrostatic forces between a particle and a surface when the particle is removed from the surface.These include an equation for particle displacement under the electrostatic force,and a numerical calculation for particle displacement under the Van der Waals force.Finally,a kinematic model is constructed to describe the particle distribution under the effects of the electrostatic and Van der Waals forces,as well as the particle’s Brownian motion.The results show that increasing the multiply of the particle and surface zeta potential values and decreasing the ionic strength of the detergent can prevent a particle from redepositing onto a surface. 展开更多
关键词 zeta potential kinematic model distribution Brownian motion Van der Waals force electrostatic force post-CMPcleaning
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