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Synthesis, characterization of a multi-component metal oxide (Al<sub>0.88</sub>Fe<sub>0.67</sub>Zn<sub>0.28</sub>O<sub>3</sub>) and elimination of As (III) from aqueous solution.
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作者 m. a. Subhan S. a. monim +3 位作者 m. B. R. Bhuiyan a. N. Chowdhury m. Islam m. a. hoque 《Open Journal of Inorganic Chemistry》 2011年第2期9-15,共7页
The multi-component oxide (Al0.88Fe0.67Zn0.28O3)) surface (abbreviated as MCOS) was prepared to optimize the effectiveness of the elimination of As (III) from aqueous solution. The oxide surface was synthe-sized by co... The multi-component oxide (Al0.88Fe0.67Zn0.28O3)) surface (abbreviated as MCOS) was prepared to optimize the effectiveness of the elimination of As (III) from aqueous solution. The oxide surface was synthe-sized by co-precipitation method using corresponding metal carbonates. It was characterized by XRD, TGA and DSC. The surface morphology of MCOS was observed in SEM and the elemental analysis was accomplished by EDX. The composition of Al2O3, Fe2O3 & ZnO was 23.6, 39.9 and 20.6 wt% respectively in XRF analysis. The specific surface area was found 389.85 m2 g-1. Batch experiments were performed to remove As (III) from aqueous solution considering various parameters such as effect of pH, contact time, initial arsenic concentration, temperature and sor-bent dosage. The maximum sorption capacity of the surface was almost steady from pH 4 to pH 9. Kinetic study shows that As (III) sorption is following second order rate equation with the rate constant of 80×10-2 g mg-1 min-1 at room temperature and this rate was increased with increasing temperature which indicates the sorption was endothermic process. The free energy change, ΔGo was negative which proves that the sorption was spontaneous and thermodynamically favorable. Sorption isotherm was interpreted by Langmuir equation and the maximum sorption capacity of oxide monolayer was 13×10-2 mg g-1. 展开更多
关键词 AS (III) MULTI-COMPONENT Oxide Surface Sorption SORBENT DOSAGE
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对剩余采食量和生长性状进行7个世代选择的遗传参数估计
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作者 楼平儿 杜秉华 +1 位作者 陈琳 m. a. hoque 《国外畜牧学(猪与禽)》 2014年第9期24-28,共5页
剩余饲料量(Residual Feed Intake,RFI)是动物实际的饲料摄入量减去预期动物用于生长的饲料消耗量后得到的一个差值。利用1 642头(380头公猪、868头后备母猪和394头阉猪)并历经7代杜洛克猪测试所得到的数据,对剩余采食量(RFI)、采食量利... 剩余饲料量(Residual Feed Intake,RFI)是动物实际的饲料摄入量减去预期动物用于生长的饲料消耗量后得到的一个差值。利用1 642头(380头公猪、868头后备母猪和394头阉猪)并历经7代杜洛克猪测试所得到的数据,对剩余采食量(RFI)、采食量利用(RFI)、采食量(Feed Intake,FI)、日增重(Average Daily Gain,ADG)、背膘(Back Fat,BF)和眼肌面积(Loin Eye Area,LEA)进行遗传参数的估(Feed Intake,FI)、日增重进行遗传参数的估计和相关计算。采用4种模型评估RFI。RFI1:包括了入试期、体重和ADG;RFI2:包括了入试期、体重、ADG和BF;RFI3:计和相关计算。采用BF;RFI3:包括了入试期、体重、ADG和LEA;RFI4:包括了入试期、体重、ADG、BF和LEA。然后再用最大似然法(REML法)对上述包括了入试期、体重、ADG对上述的动物模型进行遗传参数的估计。RFI的遗传力处于中等(范围在0.22~0.38)。相应对于FI,ADG和LEA的遗传力也处于中等(范围在0.45~0.49),但BF的遗传力较高(0.72)。FI与ADG的遗传相关较高,为0.84;FI与BF的遗传相关也较高,为0.67。LEA围在0.67。LEA与FI的遗传相关-0.42,LEA与ADG的遗传相关为-0.11,LEA与BF的遗传相关为-0.44。当BF没有包含在RFI的模型中时,BF与RFI的遗传相关较高(BF与RFI1的遗传相关为0.77,与RFI3的遗传相关为0.76);而相比之下,BF与RFI2的遗传相关为0.11;与RFI4的遗传相关为0.07。LEA与RFI的遗传相关都为负(范围为-0.30到-0.60)。与-0.60)。对ADG、LEA和肌内脂肪含量进行选择,当对RFI进行评估时,会得到比较小但与意愿相符合的遗传进展。4个RFI之间对之间的表型相关为0,遗传相关较低(0.17~0.23)。FI与所有的RFI都存在强相关,不管是遗传相关(0.56~0.77)还是表型相关的表型相关为还是表型相关(0.56~0.66)。结果显示:对RFI进行选择也许会导致FI的降低,BF也会变薄,LEA会增加。至于BF或LEA的改变量将相对(0.56的改变量将相对取决于RFI是否对BF进行校正。取决于进行校正。 展开更多
关键词 剩余饲料量 采食量 日增重 背膘 杜洛克
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