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不同生态修复手段对硝态氮和铵态氮脱除机制的影响 被引量:2
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作者 王昱 王浩 《环境科技》 2017年第5期1-5,共5页
采集入贡湖亲水河原位底泥柱芯、上覆水及伊乐藻样品,搭建室内模拟实验,探究不同生态修复手段下硝氮和铵氮的脱除机制。采用^(15)N同位素配对技术,测定分析了裸泥组A、脱氮微生物(INCB)组B、伊乐藻组C和INCB^+伊乐藻组(D)中反硝化速率... 采集入贡湖亲水河原位底泥柱芯、上覆水及伊乐藻样品,搭建室内模拟实验,探究不同生态修复手段下硝氮和铵氮的脱除机制。采用^(15)N同位素配对技术,测定分析了裸泥组A、脱氮微生物(INCB)组B、伊乐藻组C和INCB^+伊乐藻组(D)中反硝化速率及植物吸收速率。结果表明,处理组D中反硝化速率最高,在添加^(15)NO_3^-和^(15)NH_4^+的处理组分别为258.6和156.49μmol/(m^2·h)。对比添加^(15)NO_3^-的处理组,添加^(15)NH_4^+的处理组中伊乐藻吸收速率大约是^(15)NO_3^-的2倍,而添加^(15)NO_3^-处理组中反硝化速率约是添加^(15)NH_4^+的处理组1.5倍。沉水植物在吸收氮素的同时促进了微生物脱氮作用,与植物吸收相比,反硝化脱氮是氮素脱除的主要途径。INCB和沉水植物的联合应用,提高了河道水体氮素的去除速率,促进河道水体净化。 展开更多
关键词 河道 ^15NO3^- ^15NH4^+ 稳定^15N同位素配对 反硝化速率 植物吸收速率
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Characteristics of Nutrient Salt Uptake Associated with Water Use of Corn as a Catch Crop at Different Plant Densities in a Greenhouse 被引量:2
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作者 D.YASUTAKE C.KIYOKAWA +7 位作者 K.KONDO R.NOMIYAMA M.KITANO M.MORI S.YAMANE M.MAEDA H.NAGARE T.FUJIWARA 《Pedosphere》 SCIE CAS CSCD 2014年第3期339-348,共10页
Dent corn, as a catch crop used for salt removal, was cultivated at different densities, i.e., 7.3 (low density), 59.7 (normal density), and 119.5 plants m-2 (high density), during a 50 d fallow period after cul... Dent corn, as a catch crop used for salt removal, was cultivated at different densities, i.e., 7.3 (low density), 59.7 (normal density), and 119.5 plants m-2 (high density), during a 50 d fallow period after cultivation of a commercial crop in a greenhouse, to analyze the characteristics of nutrient salt (N, K, Mg, and Ca) uptake by roots and to study the effect of plant density on the characteristics associated with crop water use. Leaf area index for the high and normal density treatments reached extremely high values of 24.3 and 14.9, respectively. These values induced higher transpiration rates that were estimated using the Penman-Monteith model with the incorporation of specific parameters for crop and greenhouse conditions. The total N, K, Mg, and Ca contents in the crop canopy at harvest were 26.8, 13.0, 1.0, and 1.7 g m-S, respectively, under the high density treatment. The dynamics of salt uptake rates for high, normal, and low density treatments were evaluated by assessing weekly changes in salt content, and were subsequently compared against the transpiration rate. A positive linear relationship was obtained between these 2 parameters for all 3 density treatments and all tested salts. Hence, higher transpiration rates caused higher salt uptake rates through water absorption. On the other hand, salt uptake efficiency per unit water use by cultivation was lower in the low density treatment. Therefore, management procedures with dense planting that induce higher transpiration rates and lower evaporation rate are extremely important for the effective cultivation of corn catch crops. 展开更多
关键词 EVAPOTRANSPIRATION root uptake salt removal TRANSPIRATION
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