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钠沸石

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And this year we also added a 4A zeolite, solid, liquid sodium aluminate, etc. Partial products.

并且今年我们还新增了4A沸石、固体、液体偏铝酸钠等项目的产品。

Huadian City, the special geological structure there are very rich in mineral resources, including non-metallic mineral clay, potash feldspar, sodium feldspar, kaolinite, calcite, wollastonite, silica, perlite, bentonite and other ceramic production The main raw materials are widely distributed in the territory, plus the surrounding counties and cities have adequate zeolite, bauxite, talc, and other supplementary materials, has become China's ceramic industry to develop the "New World" for building a building "Northern porcelain" lay a solid foundation.

桦甸市,特殊的地质结构有非常丰富的矿产资源,包括非金属矿物粘土,钾长石,钠长石,高岭石,方解石,硅灰石,硅石,珍珠岩,膨润土等陶瓷生产的主要原料,广泛分布在本港,加上周边县市有足够的沸石,铝土矿,滑石,以及其他辅助材料,已成为中国的陶瓷产业发展的"新世界"的建设,为建设"北方瓷"奠定了坚实的基础。

Determine the number of bridging O atoms in the framework of a single sodalite cage.

13.11。确定单个钠沸石笼的骨架中的桥氧原子个数;描述图13.5中的A 型沸石的

The diameter of secondary pore is 2.64nm, which is twice of the diameter of supercage, therefore we suggested that secondary pore was formed by connecting two adjacent supercages resulted from breakdown of the sodalite between them.

我们以〓Xe NMR方法,首次得到超稳Y型沸石中二次孔的大小为264nm,该直径约为超笼直径的二倍,因此我们认为二次孔的形成是方钠石笼被破坏后,两个相邻超笼相连的结果。

The results have shown that P-RE-USY has good hydrothermal stability owing to the migration of hydroxy rare earth cation from the super cages to the sodalite cages enhanced by phosphorus addition, inhibiting the frame...

结果表明,由于磷促进了稀土离子由超笼向方钠石笼中的迁移,阻止了沸石在水热条件下的脱铝作用,从而改善了P RE USY沸石的水热稳定性;P RE USY沸石酸性分布更集中在中强酸范围,有利于发生氢转移反应,而强酸数量的降低有利于减少焦炭形成,改善了焦炭选择性。

The problem from sodium tripolyphosphate,4A zeolite,sodium metasilicate and phosphorous prohibition was summarized and the various performances and effect of δ-layered crystal disodium silicate as detergent were analyzed.

分析了现用助洗剂三聚磷酸钠、4A沸石、偏硅酸钠存在的问题及禁磷的重要性,重点论述了δ-层状结晶二硅酸钠用作助洗剂的各种性能及效果,认为δ-层状结晶二硅酸钠是一种良好的无磷助洗剂,它具有其他助洗剂所不具备的优良性能;对δ-层状结晶二硅酸钠的制备工艺作了简要介绍,并作了市场及在国内工业化生产的可性行分析。

It is pointed out that the biodegradability of modified sodium polyacrylate can be improved by introducing vinyl alcohol to its molecular chain.

综述了无磷洗涤助剂的开发进展,并对 4A沸石、偏硅酸钠、聚丙烯酸钠、沸石P、顺丁烯二酸酐丙烯酸共聚物钠盐、层状结晶二硅酸钠等助剂的性能作了评述;指出在改性聚丙烯酸钠分子链中引入乙烯醇能改善其生物降解

Cacoxenite, beryllonite, viseite, beraunite, alluaudite, rhabdophane and apatite are non-silicon channel structural minerals.

黄磷铁矿、磷钠铍石、磷方沸石、簇磷铁矿、磷锰钠石、水磷铈石和磷灰石是非硅元素的孔道结构矿物。

The invention discloses a dielectric hole-microhole composite material and synthesizing method in the inorganic porous material, adsorbing material and catalytic material technical domain, which comprises the following steps: adopting zeolite molecular sieve as raw material; reacting with sodium bisilicate solution under 30-60 deg.c for 10-300 min; disintegrating particle part of zeolite molecular sieve into piece with microhole structure; adding cetyl trimethyl ammonium bromide as molder; adjusting pH value of mother liquid to 10-12; aging 1-8h; adding in the high-pressure autoclave to do water heat synthesizing reaction at 80-130 deg.c for 24-72h; separating solid; washing; drying; sintering under 500-600 deg.c for 5-10h; obtaining the Si-Al porous material with dielectric hole and microhole composite structure.

本发明属于无机多孔材料、吸附材料和催化材料技术领域,涉及具有介孔-微孔复合材料及其合成方法。其特征是以沸石分子筛为原料,用偏硅酸钠的水溶液在30~60℃反应10~300分钟,使沸石分子筛的颗粒部分解离形成具有微孔结构的碎片,加入模板剂十六烷基三甲基溴化铵,然后调节母液pH值为10~12,老化1~8小时,然后加入高压釜于80~130℃进行水热合成反应。反应24~72小时后,分离出固体,水洗、干燥,然后于500~600℃焙烧5~10小时,得到具有介孔和微孔复合结构的硅铝多孔材料。本发明的效果和益处是所发明的合成方法可用于合成多种沸石结构和介孔结构的复合材料,所合成的材料经过质子交换可以具有较强的酸性,在吸附和催化领域具有广泛应用前景。

The thermodynamic and kinetics of the natural clinoptilolite ion-exchange process for ammonia removal from wastewater was studied in this dissertation, the intensification of mass-transfer process was studied as well.

测定了国内三种有代表性的天然斜发沸石样品的总铵离子交换容量和常温下铵离子在钠型沸石上的平衡等温线,并与澳大利亚的同类样品作了比较。

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The split between the two groups can hardly be papered over.

这两个团体间的分歧难以掩饰。

This approach not only encourages a greater number of responses, but minimizes the likelihood of stale groupthink.

这种做法不仅鼓励了更多的反应,而且减少跟风的可能性。

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