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1)  protein-bearing wastewater
蛋白废水
1.
Research on flocculation of protein-bearing wastewater by a new natural alga flocculant;
大量试验结果显示,用该絮凝剂处理COD初始质量浓度为3000~13000mg/L的蛋白废水,存在一个适宜的投加量和pH范围,投加质量浓度为12。
2)  soy protein wastewater
大豆蛋白废水
1.
Based on the characteristics of high concentration organic wastewater produced from a soy protein process, a few yeasts and the optimal culture conditions were selected to produce Single Cell Protein (SCP) by soy protein wastewater fermentation.
针对大豆蛋白生产废水的水质特性,选择了产朊假丝酵母(Candida utilis)、热带假丝酵母(Candida tropicalis)、白地霉(Geotrichum candidum link)、解脂假丝酵母解脂变种(Candida lipolytica)和扣囊拟内孢霉(Endomycopsis fiburiger)等5种工业生产酵母,作为以大豆蛋白废水生产单细胞蛋白(Single Cell Protein,SCP)的菌种,并通过摇瓶培养实验,对其培养生长条件进行了研究。
2.
This pilot study on investigating the soy protein wastewater treatment and resource reclamation with ultrafiltration involved the pretreatment strategies, effect of membrane molecular weight cut off (MWCO) and operating parameters as well as membrane cleaning technology.
为净化大豆蛋白废水并回收有用资源,通过超滤中试研究,探讨了预处理方法、超滤膜截留分子量(MWCO)和各种操作参数的影响以及超滤膜的清洗效果,指出采用MWCO为1 kDa的聚砜膜可保证>90%的蛋白去除率和低于10%的低聚糖损失率,从而通过回收蛋白和低聚糖实现资源的回收。
3.
To investigate the hydrodynamic flushing technology in the process of soy protein wastewater ultrafiltration, this paper studied the permeate flux recovery rates of various flushing water, as well as the influences of dynamic flushing duration, temperature, pressure, flushing mode and periods on the flushing efficiencies.
对大豆蛋白废水超滤中膜的水力冲洗进行了中试试验研究。
3)  soybean protein wastewater
大豆蛋白废水
1.
Effects of different kinds of sludge on start-up of IC reactor in treatment of soybean protein wastewater;
不同种泥对IC反应器处理大豆蛋白废水启动的影响
2.
This paper briefly introduced the features of soybean protein wastewater,analyzed the process design and the running of two engineering.
介绍了两公司大豆蛋白废水的水质水量和性质特征,分析工程的工艺设计和调试运行状况。
3.
For soybean protein wastewater with the speciality of high concentration,protein and total nitrogen,nutrition singularity etc,it was selected a treating process including a new type of internal circulation reactor.
对有机质浓度高,成分单一,蛋白质、总氮浓度较高,易酸化,且已酸化程度较高的大豆蛋白废水,确定以新型内循环厌氧反应池为主的处理工艺,在原废水ρ(COD)为11809~15040mg/L时,总出水浓度192~350mg/L,去除率达到96。
4)  albumen wastewater treatment
蛋白废水处理
5)  waste water from production of soybean isolated proteins
蛋白工艺废水
6)  waste water of peanut protein processing
花生蛋白废水
1.
The use of a liquid-solid two-step fermentative technology conversion waste water of peanut protein processing into SCP was studied, with as pergillus oryzae SU_(64) and tri-chosporon Behred ST_(851) on mixed culture.
研究了以花生蛋白废水为原料,用米曲霉变异株(SU_(64))和丝孢酵母(ST_(851))混合培养,液、固两步发酵。
补充资料:普通免疫球蛋白 ,人血丙种球蛋白,丙种球蛋白
药物名称:丙种球蛋白

英文名:γ-Globulin

别名: 免疫血清球蛋白;普通免疫球蛋白 ,人血丙种球蛋白,丙种球蛋白
外文名:γ-Globulin
适应症: 含有健康人群血清所具有的各种抗体,因而有增强机体抵抗力以预防感染的作用。主要用于免疫缺陷病以及传染性肝炎、麻疹、水痘、腮腺炎、带状皰疹等病毒感染和细菌感染的防治,也可用于哮喘、过敏性鼻炎、湿疹等内源性过敏性疾病。
用量用法:
肌注:每次2~5ml,3周1次,用于内源性过敏性疾病,每次10ml(含量10%者),3周内注射2次。胎盘球蛋白每次6~9ml。
注意事项:
1.按球蛋白来源可分为两种,一为健康人静脉血来源的丙种球蛋白制剂,按蛋白质含量有10%、16%、16.5%等数种(国内制品浓度在10%以上),其中丙种球蛋白占95%以上。另一种为胎盘血来源的丙种球蛋白(人胎盘血丙种球蛋白),即胎盘球蛋白,含蛋白质5%,其中丙种球蛋白占90%以上。胎盘球蛋白因丙种球蛋白含量以及纯度均较低,其用量应相应增大。 2.除专供静注用的制剂外,一般制剂不可静注。 3.注射大量时,可见局部疼痛和暂时性体温升高。
注:参见:“丙种球蛋白注射液”.



类别:免疫增强剂(免疫反应调节剂)
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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