de-ammoniated water
脱氨水
being de-ammoniated
正在脱氨
de-ammoniated solution
脱氨溶液
de-ammoniated resin
脱氨树脂
fully de-ammoniated
完全脱氨
de-ammoniated product
脱氨产品
de-ammoniated form
脱氨形式
de-ammoniated state
脱氨状态
de-ammoniated effluent
脱氨废水
the de-ammoniated clay was used as a catalyst in the reaction.
脱氨土被用作反应中的催化剂。
we analyzed the properties of the de-ammoniated zeolite material.
我们分析了脱氨沸石材料的特性。
the de-ammoniated aluminum oxide showed increased surface area.
脱氨氧化铝显示出更大的表面积。
de-ammoniated silica gel is an effective desiccant.
脱氨二氧化硅是一种有效的干燥剂。
the process involved heating the material to remove ammonia and create de-ammoniated structures.
该过程涉及加热材料以去除氨并创建脱氨结构。
de-ammoniated iron oxide is a promising material for catalysis.
脱氨氧化铁是一种有前途的催化材料。
we observed a significant change in porosity after de-ammoniation.
在脱氨后,我们观察到孔隙率发生了显著变化。
the de-ammoniated support enhanced the catalyst's performance.
脱氨载体增强了催化剂的性能。
the de-ammoniated form of the material was more reactive.
材料的脱氨形式更具反应性。
we studied the thermal stability of the de-ammoniated product.
我们研究了脱氨产物的热稳定性。
de-ammoniated phosphate supported the metal nanoparticles effectively.
脱氨磷酸盐有效地支撑了金属纳米颗粒。
de-ammoniated water
脱氨水
being de-ammoniated
正在脱氨
de-ammoniated solution
脱氨溶液
de-ammoniated resin
脱氨树脂
fully de-ammoniated
完全脱氨
de-ammoniated product
脱氨产品
de-ammoniated form
脱氨形式
de-ammoniated state
脱氨状态
de-ammoniated effluent
脱氨废水
the de-ammoniated clay was used as a catalyst in the reaction.
脱氨土被用作反应中的催化剂。
we analyzed the properties of the de-ammoniated zeolite material.
我们分析了脱氨沸石材料的特性。
the de-ammoniated aluminum oxide showed increased surface area.
脱氨氧化铝显示出更大的表面积。
de-ammoniated silica gel is an effective desiccant.
脱氨二氧化硅是一种有效的干燥剂。
the process involved heating the material to remove ammonia and create de-ammoniated structures.
该过程涉及加热材料以去除氨并创建脱氨结构。
de-ammoniated iron oxide is a promising material for catalysis.
脱氨氧化铁是一种有前途的催化材料。
we observed a significant change in porosity after de-ammoniation.
在脱氨后,我们观察到孔隙率发生了显著变化。
the de-ammoniated support enhanced the catalyst's performance.
脱氨载体增强了催化剂的性能。
the de-ammoniated form of the material was more reactive.
材料的脱氨形式更具反应性。
we studied the thermal stability of the de-ammoniated product.
我们研究了脱氨产物的热稳定性。
de-ammoniated phosphate supported the metal nanoparticles effectively.
脱氨磷酸盐有效地支撑了金属纳米颗粒。
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