土壤
土壤
토양
SOILS
2009年
5期
764-771
,共8页
植物物料%茶园土壤%酸度改良%土壤pH%交换性铝%可溶性铝
植物物料%茶園土壤%痠度改良%土壤pH%交換性鋁%可溶性鋁
식물물료%다완토양%산도개량%토양pH%교환성려%가용성려
Plant materials%Tea garden soil%Amelioration of soil acidity%Soil pH%Exchangeable Al%Soluble Al
用室内培养实验研究了稻草、花生秸秆和紫云英在 5、10 和 20 g/kg 的加入量水平下对茶园黄棕壤和茶园红壤酸度的改良效果.结果表明:除了黄棕壤加入紫云英处理会降低土壤的 pH 外,其余所有加入植物物料的处理均使土壤 pH 有不同程度的增加,使土壤交换性酸和交换性Al的数量减小,使土壤交换性盐基阳离子和盐基饱和度增加.有机物料对土壤酸度的改良效果与有机物料灰化碱和N含量有关,灰化碱和有机N的矿化使土壤 pH 升高,NH_4~+-N的硝化使土壤 pH 降低.3种植物物料中花生秸秆对土壤酸度的改良效果优于紫云英和稻草.加入植物物料使红壤中有毒形态Al的浓度显著减小,说明植物物料能够缓解红壤中Al对植物的毒害.
用室內培養實驗研究瞭稻草、花生秸稈和紫雲英在 5、10 和 20 g/kg 的加入量水平下對茶園黃棕壤和茶園紅壤痠度的改良效果.結果錶明:除瞭黃棕壤加入紫雲英處理會降低土壤的 pH 外,其餘所有加入植物物料的處理均使土壤 pH 有不同程度的增加,使土壤交換性痠和交換性Al的數量減小,使土壤交換性鹽基暘離子和鹽基飽和度增加.有機物料對土壤痠度的改良效果與有機物料灰化堿和N含量有關,灰化堿和有機N的礦化使土壤 pH 升高,NH_4~+-N的硝化使土壤 pH 降低.3種植物物料中花生秸稈對土壤痠度的改良效果優于紫雲英和稻草.加入植物物料使紅壤中有毒形態Al的濃度顯著減小,說明植物物料能夠緩解紅壤中Al對植物的毒害.
용실내배양실험연구료도초、화생갈간화자운영재 5、10 화 20 g/kg 적가입량수평하대다완황종양화다완홍양산도적개량효과.결과표명:제료황종양가입자운영처리회강저토양적 pH 외,기여소유가입식물물료적처리균사토양 pH 유불동정도적증가,사토양교환성산화교환성Al적수량감소,사토양교환성염기양리자화염기포화도증가.유궤물료대토양산도적개량효과여유궤물료회화감화N함량유관,회화감화유궤N적광화사토양 pH 승고,NH_4~+-N적초화사토양 pH 강저.3충식물물료중화생갈간대토양산도적개량효과우우자운영화도초.가입식물물료사홍양중유독형태Al적농도현저감소,설명식물물료능구완해홍양중Al대식물적독해.
The amelioration effects of rice straw, peanut straw and Chinese milk vetch shoot on the acidity of red soil and yellow brown soil from tea gardens were examined with the incubation experiments at three levels of plant materials, i.e., 5, 10 and 20 g/kg added. After the soils incubated with plant materials, soil exchangeable acid and exchangeable Al decreased while exchangeable base cations and base cation saturation increased. For yellow brown soil added with Chinese milk vetch, soil pH increased to some extent compared with control. The amelioration effects of plant materials on soil acidity depend on the ash alkalinity and N content in plant materials. The ash alkalinity and mineralization of organic N increased soil pH, while nitrification of NH_4~+-N decreased soil pH. The amelioration effect of peanut straw on soil acidity was greater than Chinese milk vetch shoot and rice straw. The incorporation of plant materials into soils resulted in the decline of toxic species of Al obviously in soils, which suggest that the addition of plant materials could alleviate aluminum toxicity to plants in acid soils.