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干旱条件下氮磷添加对羊草干草产量及饲用品质的影响 被引量:11
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作者 李文晶 王俊锋 +2 位作者 高晓荻 石玉杰 穆春生 《草地学报》 CAS CSCD 北大核心 2021年第4期743-748,共6页
本研究以松嫩平原单优种羊草(Leymus chinensis)为研究对象,分析营养添加对其产量及饲用品质的影响。试验采用全因子随机区组设计,设置降雨量(对照、减雨30%)以及氮(0、纯氮100 kg·ha^(-1)·a^(-1))、磷(0、纯磷100 kg·ha... 本研究以松嫩平原单优种羊草(Leymus chinensis)为研究对象,分析营养添加对其产量及饲用品质的影响。试验采用全因子随机区组设计,设置降雨量(对照、减雨30%)以及氮(0、纯氮100 kg·ha^(-1)·a^(-1))、磷(0、纯磷100 kg·ha^(-1)·a^(-1))添加3个因素。结果表明:对照降雨条件下,氮添加和氮磷同时添加处理分别使羊草干草产量、粗蛋白含量、粗脂肪含量显著增加79.9%和97.1%,3.2%和2.5%,0.8%和1.0%,但酸性洗涤木质素含量显著降低4.3%和10.1%;减雨30%条件下,所有处理中性洗涤纤维和酸性洗涤纤维含量不变,而氮添加与氮磷同时添加时粗蛋白和粗脂肪含量有所提高,磷添加对二者均无显著影响;同时,不论降雨量如何变化,磷添加均使酸性洗涤木质素和灰分含量增加。因此,就羊草草地而言,无论降雨正常还是干旱,氮添加和氮磷同时添加均能提高羊草产量和品质,而磷添加对牧草产量和品质没有促进作用。实际生产中,推荐只施氮肥或者氮磷配施,不单独施用磷肥。 展开更多
关键词 干旱 氮/磷添加 羊草 干草产量 饲用品质
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Responses of Soil CO_2, CH_4 and N_2O Fluxes to N, P, and Acid Additions in Mixed Forest in Subtropical China 被引量:5
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作者 高文龙 杨浩 +1 位作者 李胜功 寇亮 《Journal of Resources and Ecology》 CSCD 2017年第2期154-164,共11页
Understanding how nitrogen(N) availability interacts with soil acidity and phosphorus(P) availability to affect soil-atmosphere exchanges in CO_2, CH_4 and N_2O in forest ecosystems is important for understanding ... Understanding how nitrogen(N) availability interacts with soil acidity and phosphorus(P) availability to affect soil-atmosphere exchanges in CO_2, CH_4 and N_2O in forest ecosystems is important for understanding the mechanisms driving ecosystem responses to enhanced N deposition. Here, we conducted an experiment with N, P and acid(H) addition in a mixed forest in subtropical China to investigate how acid and P addition affects CO_2, CH_4 and N_2O exchange under N addition. Our results showed that soil NH4^+-N and NO3^--N increased after N addition, but CO_2 emissions in N addition plots remained unaffected. CH_4 uptake in N–, P–, NP–, NH– and NPH–addition plots were reduced by 21.1%, 15.7%, 39.1%, 26.6%, and 28.4%, respectively. CH_4 uptake in NP–addition plots were lower compared to N–addition and P–addition plots, indicating that N and P addition had an additive effect on inhibiting CH_4 uptake. N_2O emission in N–, NP–, NH– and NPH–addition plots increased by 158.6%, 176.0%, 117.2%, and 91.8%, respectively. N_2O emissions in NPH–addition plots were lower compared to NP–addition plots while showed no difference between N–addition and NH–addition plots. This suggests that only under P rich conditions, acid addition would greatly mitigate N_2O emissions under N addition. Our results demonstrate that for N and P co-limited forest ecosystems with acidic soils, low P availability constrains the inhibition of soil CH_4 uptake by N deposition. When P availability is low, a weak soil acidation induced by N deposition may have less influence on the stimulation of N_2O emissions by N deposition. 展开更多
关键词 greenhouse gas N deposition acid addition P addition subtropical forest
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