材料工程
材料工程
재료공정
JOURNAL OF MATERIALS ENGINEERING
2010年
3期
84-88
,共5页
PAAM%保水能力%吸水倍率%土壤%高吸水树脂
PAAM%保水能力%吸水倍率%土壤%高吸水樹脂
PAAM%보수능력%흡수배솔%토양%고흡수수지
poly(acrylic acid-acrylamaide)%water holding capability%absorbency%soil%superabsorbent
以不同河砂/泥土比例混配不同质地土壤,研究了聚(丙烯酸-丙烯酰胺)高吸水树脂(PAAM)用量在自来水和0.9%NaCl溶液中对土壤保水能力的影响.发现自然蒸发条件下,PAAM树脂施用量为5g/kg时,使河砂/泥土=10:0,5:5,3:7,0:10四种质地土壤在自来水中保水率降至30%的时间与对照组相(无PAAM)比分别延长了560,445,360,350h;使河砂/泥土=10:0,7:3,5:5,3:7,0:10五种质地土壤在自来水中饱和含水率分别提高4.5,2.6,2.2,1.6,1.2倍.该树脂临界用量为5g/kg能显著改善土壤团粒结构,满足实际使用要求;在0.9%NaCl溶液中吸液倍率明显降低,在盐碱地区施用后对土壤保水和蓄水能力提高不大,更适合施用于砂质土壤中而不适用于在高盐碱地区使用.
以不同河砂/泥土比例混配不同質地土壤,研究瞭聚(丙烯痠-丙烯酰胺)高吸水樹脂(PAAM)用量在自來水和0.9%NaCl溶液中對土壤保水能力的影響.髮現自然蒸髮條件下,PAAM樹脂施用量為5g/kg時,使河砂/泥土=10:0,5:5,3:7,0:10四種質地土壤在自來水中保水率降至30%的時間與對照組相(無PAAM)比分彆延長瞭560,445,360,350h;使河砂/泥土=10:0,7:3,5:5,3:7,0:10五種質地土壤在自來水中飽和含水率分彆提高4.5,2.6,2.2,1.6,1.2倍.該樹脂臨界用量為5g/kg能顯著改善土壤糰粒結構,滿足實際使用要求;在0.9%NaCl溶液中吸液倍率明顯降低,在鹽堿地區施用後對土壤保水和蓄水能力提高不大,更適閤施用于砂質土壤中而不適用于在高鹽堿地區使用.
이불동하사/니토비례혼배불동질지토양,연구료취(병희산-병희선알)고흡수수지(PAAM)용량재자래수화0.9%NaCl용액중대토양보수능력적영향.발현자연증발조건하,PAAM수지시용량위5g/kg시,사하사/니토=10:0,5:5,3:7,0:10사충질지토양재자래수중보수솔강지30%적시간여대조조상(무PAAM)비분별연장료560,445,360,350h;사하사/니토=10:0,7:3,5:5,3:7,0:10오충질지토양재자래수중포화함수솔분별제고4.5,2.6,2.2,1.6,1.2배.해수지림계용량위5g/kg능현저개선토양단립결구,만족실제사용요구;재0.9%NaCl용액중흡액배솔명현강저,재염감지구시용후대토양보수화축수능력제고불대,경괄합시용우사질토양중이불괄용우재고염감지구사용.
The effect of different mass of poly (acrylic acid-acrylamide) superabsorbent (PAAM) on water retention capacity of soil in tap water and 0.9%NaCl aqueous solution was investigated at different ratios of river sand/soil. The results have shown that the times of decreasing the water retention ratios by 30% relative to the comparative experiments (no PAAM) in tape water have prolonged for another 560 h, 445h, 360h and 350h for four different ratios of the river sand and soil: 10:0, 5:5, 3:7 and 0:10, when the using mass of PAAM is 5g per kg soil under the natural evaporation conditions. The equilibrium absorbencies of soil in tap water are increased by 4.5, 2.6, 2.2, 1.6and 1.2 multiple for five different ratios of the river sand and soil: 10:0, 7:3, 5:5, 3:7 and 0:10. When the critical using mass of the PAAM is 5g per kg soil, the granular structure of the soil can be improved obviously and the applying require can be satisfied. However, the absorbency of PAAM in 0.9% NaCl solution is greatly reduced and the increasing water retention capacities are small when PAAM is used in the areas of saline-alkali soil. And the PAAM is suit for use in the areas of the sandy soil while it is not suit for use in the areas of high saline-alkali soil.