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短肽螯合钙的制备工艺优化及其理化性质分析 被引量:3
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作者 贾维宝 刘良忠 +3 位作者 黄婷 曹宇翔 朱哲 李文杰 《食品科技》 CAS 北大核心 2016年第3期275-280,共6页
为了满足国内补钙产品市场的需要,研发出安全性好、吸收率高的新一代补钙产品。分别以白鲢鱼鱼肉,白鲢鱼鱼皮,大豆分离蛋白,鸡蛋清,酪蛋白为原料制备出不同的短肽螯合钙。以螯合率为参考指标,考察螯合质量比、温度、p H值、时间等单因... 为了满足国内补钙产品市场的需要,研发出安全性好、吸收率高的新一代补钙产品。分别以白鲢鱼鱼肉,白鲢鱼鱼皮,大豆分离蛋白,鸡蛋清,酪蛋白为原料制备出不同的短肽螯合钙。以螯合率为参考指标,考察螯合质量比、温度、p H值、时间等单因素对螯合反应的影响,并根据单因素实验结果,对螯合工艺进行四因子二次正交旋转设计优化,确定最优螯合工艺参数,最后对其相关理化性质进行测定。结果分析表明:鸡蛋清短肽最适合制备蛋白质短肽螯合钙,其最佳的螯合参数为蛋清短肽与氯化钙的质量比为1.05:1、p H6.92、时间48.11 min、温度60℃,螯合率达到了87.03%,螯合物中含钙量达到了24.54%,螯合物中总氨基酸含量为61.877%;其对羟自由基(·OH)清除能力的IC50为12.39 mg/m L。 展开更多
关键词 不同短肽螯合 螯合工艺优化 理化性质分析
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Optimization of High-Gravity Chelated Iron Process for Removing H_2S Based on Response Surface Methodology 被引量:3
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作者 Luo Ying Zhang Zhongzhe +3 位作者 Qi Jibing Li Gang Qi Guisheng Liu Youzhi 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2015年第3期87-93,共7页
By using a mixture of N2 and H2S as the simulated APG(associated petroleum gas), the desulfurization experiment was performed in a cross-flow rotating packed bed(RPB) based on the chelated iron oxidation-reduction met... By using a mixture of N2 and H2S as the simulated APG(associated petroleum gas), the desulfurization experiment was performed in a cross-flow rotating packed bed(RPB) based on the chelated iron oxidation-reduction method. In order to determine the operating conditions of the system, the effects of the concentration of Fe3+ ions(ranging from 0.1 to 0.2 mol/L), the liquid-gas volume ratio(ranging from 15 to 25 L/m3) and the high gravity factor(ranging from 36 to 126) on the removal of H2 S were studied by means of the Box-Behnken design(BBD) under response surface methodology(RSM). The overall results have demonstrated that the BBD with an experimental design can be used effectively in the optimization of the desulfurization process. The optimal conditions based on both individualized and combined responses(at a Fe3+ ion concentration of 0.16 mol/L, a liquid-gas volume ratio of 20.67 L/m3 and a high gravity factor of 87) were found. Under this optimum condition, the desulfurization efficiency could reach 98.81% when the H2 S concentration was 7 g/m3 in APG. In this work, the sulfur product was analyzed by X-ray diffraction(XRD), scanning electron microscopy(SEM) and the energy dispersive X-ray spectrometer(EDX). The results of analysis show that the sulfur is made of the high-purity orthorhombic crystals, which are advantageous to environmental conservation. 展开更多
关键词 hydrogen sulfide chelated iron high gravity technology response surface methodology Box-Behnken design
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