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小麦谷朊粉加工过程中镉的脱除技术研究
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作者 谢彬 凌莉 何蓉 《粮食加工》 2019年第2期20-24,共5页
2016年夏,河南新乡小麦被曝出重金属镉含量超标高达34倍的事件,引起人们的广泛关注。在探明小麦谷朊粉加工过程中镉的迁移规律的基础上,采用酸洗面筋工艺进行除镉,考察了该工艺中酸液pH值对除镉率和谷朊粉理化功能性质的影响。结果表明... 2016年夏,河南新乡小麦被曝出重金属镉含量超标高达34倍的事件,引起人们的广泛关注。在探明小麦谷朊粉加工过程中镉的迁移规律的基础上,采用酸洗面筋工艺进行除镉,考察了该工艺中酸液pH值对除镉率和谷朊粉理化功能性质的影响。结果表明:面粉深加工过程中,68.2%的镉迁移至谷朊粉中;该工艺具有良好的除镉效果,在酸液pH为3.0时,除镉率达到66.7%,对谷朊粉的蛋白质含量几乎没有影响,除镉后样品与对照样品蛋白含量均稳定在74.6%~78.1%之间;该工艺对谷朊粉的溶解度无显著影响,持水性略有升高,乳化性显著降低但乳化稳定性有所改善;此外,除镉处理对谷朊粉的起泡性略有提高、对泡沫稳定性影响不大。 展开更多
关键词 小麦 谷朊粉 除镉率 理化功能性质
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Removal of Cd(II) by Nanometer AIO(OH) Loaded on Fiberglass with Activated Carbon Fiber Felt as Carrier 被引量:5
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作者 刘光辉 王培培 +1 位作者 刘琼 韩炜 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2008年第5期805-811,共7页
A new nanometer material, nanometer AlO(OH) loaded on the fiberglass with activated carbon fibers felt(ACF) as the carrier, was prepared by hydrolytic reaction for the removal of Cd(II) from aqueous solution usi... A new nanometer material, nanometer AlO(OH) loaded on the fiberglass with activated carbon fibers felt(ACF) as the carrier, was prepared by hydrolytic reaction for the removal of Cd(II) from aqueous solution using column adsorption experiment. As was confirmed by XRD determination, the hydrolysis production loaded on fiberglass was similar to the orthorhombic phase AlO(OH). SEM images showed that AlO(OH) particles were in the form of small aggregated clusters. The Thomas model was applied for estimating the kinetic parameters and the saturated adsorption ability of Cd(II) adsorption on the new adsorbent. The results showed that the maximum adsorption capacity of Cd(II) was 128.50 mg·g^-1 and 117.86 mg·g^-1 for the adsorbent mass of 0.3289 g and the adsorbent mass of 0.2867 g, respectively. The elution experiment result indicated that the adsorbed Cd ions was easily desorbed from the material with 0.1 mol·L^-1 HCl solution. Adsorption-desorption cycles showed the feasibility of repealed uses of the composited material. The adsorption capacities were influenced by pH and the initial Cd(II) concentration. The amount adsorbed was greatest at pH 6.5 and the initial Cd(II) concentration of 0.07 mg·L^-1, respectively. Nanometer AlO(OH) played a major role in the adsorption process, whereas the fiberglass and ACF were assistants in the process of removing Cd(II). In addition, the adsorption capacities for Cd(II) were obviously reduced from 128.50 mg·L^-1 to 64.28 mg·L^-1 when Pb ions were present because Pb ions took up more adsorption sites. 展开更多
关键词 REMOVAL Cd(II) nanometer AlO(OH) adsorption and elution mechanism
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