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1)  Phosphate solubilization capacity
溶磷量
1.
The phosphate solubilization capacity of Bmp5 in calcium orthophosphate,ferric phosphate and lecithin were significantly higher than that of Pseudomonas fluorescens As1.
867,对磷酸氢钙的溶磷量是巨大芽孢杆菌Bacillus m egaterium As1。
2)  phosphate solubilization
溶磷
1.
However the strains P66 and P39 had the highest phosphate solubilization activities with fructose and mal.
通过液体培养法 ,对 3种溶磷真菌利用葡萄糖、果糖、蔗糖、麦芽糖、淀粉和纤维素等碳源溶解宜昌产磷矿粉的试验 ,结果表明 ,菌株P2 3在供给葡萄糖时的溶磷能力最高 ,并在一定程度上能够利用长链碳源淀粉和纤维素为营养而溶磷 ;而高效溶磷菌株P6 6和P39溶磷的最佳碳源是果糖和麦芽糖 ,该两菌株利用淀粉和纤维素的溶磷效果很小 ,甚至不溶磷。
3)  phosphorus dissolving
溶磷
1.
In this study the kinetics properties of phosphorus dissolving by the phosphorus bacteria 9320 SD was reported using the powdered rock phosphate as reactive material.
以磷矿粉为底物研究了磷细菌溶磷的动力学 。
2.
The phosphorus dissolving action of phosphorus bacteria cultured in liquid medium was studied by the instant phosphorus assay, the whole phosphorus assay and the observation of SEM.
本文采用速效磷和全磷测定及扫描电镜观察的方法,对液体法培养的用于制备微生物肥料的磷细菌的溶磷作用进行了研究。
3.
With the deepening research of nitrogen fixation bio-organisms, their growth-improving effects have been shown from nitrogen fixation, phosphorus dissolving and growth hormone secret (Hendry G S, 1983).
随着联合固氮微生物研究的深入,促生菌研究已从固氮范畴扩展到固氮、溶磷和分泌生长激素等多功能范畴(Hendry GS 1983),共生固氮微生物—根瘤菌是非常重要的一类促生菌,按照促生微生物存在多功能促进生长的特点,开辟根瘤菌其它促生功能的研究,进一步研究根瘤菌的促生机理和影响根瘤菌结瘤与促生功能影响因子,筛选优质高效多功能促生根瘤菌株尤为重要。
4)  lysophospholipids
溶血磷脂
1.
Study on application of lysophospholipids in noodles;
溶血磷脂在面条中应用的探讨
2.
Preparation of lysophospholipids catalyzed by lipase from soybean phospholipid;
脂肪酶催化大豆磷脂制备溶血磷脂的研究
5)  soluble phosphate
可溶性磷
1.
Bioleaching of soluble phosphate from phosphate rock with acidithiobacillus ferrooxidans mutated with microwave;
微波诱变氧化亚铁硫杆菌浸出磷矿粉中可溶性磷
2.
The function parameters of cyanobacterium were measured including growth curve, total phosphorus contents, polyphosphate contents, and soluble phosphate contents in M.
将铜绿微囊藻(Microcystisaeruginosa)接入不同磷浓度的培养基中进行光照培养,在分析水中溶解性磷浓度的同时,测定铜绿微囊藻的生长曲线和微囊藻中总磷、聚磷、可溶性磷以及糖原含量的变化过程,了解不同外源性磷浓度下铜绿微囊藻的生长和磷代谢过程。
6)  insoluble phosphate
难溶性磷
1.
Effects of municipal solid waste composting on solubilization of insoluble phosphate and soil phosphorus sorption characteristics;
垃圾堆肥对难溶性磷转化及土壤磷素吸附特性影响
2.
Study on the mechanism of transformation and utilization of insoluble phosphate by soil algae;
土壤藻类转化利用难溶性磷的机理研究
补充资料:固溶量
分子式:
CAS号:

性质: 有限固溶体中某组分的溶解度。通常利用X射线衍射仪测定晶胞常数的变化及是否出现第2晶相来研究溶解的极限量。固溶量大小与两物质的离子半径大小、价数、配位数及温度等因素有关例如,CaO和MgO都是NaCl型立方晶体,在高温下可以相互固溶成两种有限固溶体,当MgO溶入CaO晶格中因Mg2+离子半径较小,因此随MgO溶入量增加CaO固溶体晶胞不断变小,到极限溶解量后,晶格就不再变化,从而测得MgO在CaO中的固溶量约为17%。进一步添加MgO,将出现CaO固溶体和MgO的X射线衍射的特征线条。

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