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Nitrogen transformation in maize soil after application of different organic manures 被引量:1
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作者 DONGYu-hong OUYANGZhu LIUShi-liang 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2005年第2期340-343,共4页
The nitrogen transformation in maize soil after application of different organic manure was studied. The nitrogen mineralization in surface soil, NO - 3-N dynamics and distribution in soil profile, and N 2O emissio... The nitrogen transformation in maize soil after application of different organic manure was studied. The nitrogen mineralization in surface soil, NO - 3-N dynamics and distribution in soil profile, and N 2O emission were investigated. Eight treatments were laid out randomizing with three replications in 24 plots: maize plantation without fertilizer(CK1), bare soil without maize plantation and fertilization(CK2), swine manure(S1, S2), poultry manure(P1, P2), and cattle manure(C1, C2). Three manures were applied at two application levels(15 t/hm 2 and 30 t/hm 2). The results indicated that NH + 4-N in surface soil showed the same temporal pattern without much variation among different treatments. But NO - 3-N in the same layer exhibited large temporal pattern in all treatments, which was mainly due to its easy eluviations of NO - 3-N in soil, its transformation to N 2O and the influence of precipitation. The distribution of NO - 3-N in the soil profile during maize growing season showed the leaching tendency from surface soil to subsoil, which was different among the treatments. The poultry treatments showed the largest leaching tendency. The study also revealed that the emissions of N 2O were affected by the application of organic manures in the order of P2>S2>C2>P1>S1>C1>CK1>CK2. All these results showed that organic manure applications significantly affect nitrogen transformation and distribution in maize soil. Considering N 2O emission and NO - 3-N leaching, the management of organic manure in the agriculture needs further studies. 展开更多
关键词 organic manure MAIZE nh + 4-n nO - 3-n n 2O
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硫酸盐/氨的厌氧生物转化试验研究 被引量:21
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作者 张丽 黄勇 +2 位作者 袁怡 李祥 刘福鑫 《环境科学》 EI CAS CSCD 北大核心 2013年第11期4356-4361,共6页
采用厌氧上流式生物膜反应器,通过控制不同的水力停留时间、进水n(NH+4-N)/n(SO2-4-S)和HCO-3浓度研究了无机营养条件下硫酸盐/氨的厌氧生物转化特性.结果表明,反应器中NH+4和SO2-4发生了同步去除,最大NH+4-N和SO2-4-S去除速率分别为47.... 采用厌氧上流式生物膜反应器,通过控制不同的水力停留时间、进水n(NH+4-N)/n(SO2-4-S)和HCO-3浓度研究了无机营养条件下硫酸盐/氨的厌氧生物转化特性.结果表明,反应器中NH+4和SO2-4发生了同步去除,最大NH+4-N和SO2-4-S去除速率分别为47.6 mg·(L·d)-1和16.9 mg·(L·d)-1,稳定去除率最高分别超过了80%和43%;反应过程中有NO-3-N的明显生成,出水NO-3-N浓度最大时为77.6 mg·L-1,整个过程中,未检测到S2-的生成,有单质硫附着在生物污泥表面;由于控制条件的不同,会产生不同的n(NH+4-N)/n(SO2-4-S)转化比,表明NH+4和SO2-4的厌氧生物反应并不是简单地接续反应,反应器中存在更为复杂的反应过程和转化途径. 展开更多
关键词 硫酸盐 厌氧氨氧化 转化特性 HCO-3浓度 n(nh+4-n)/n(so2-4-s)转化比
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