Science. 1982 Sep 17;217(4565):1140-2. doi: 10.1126/science.217.4565.1140.
Cyanobacteria of the genus Oscillatoria (Trichodesmium) account for annual inputs of nitrogen to the world's oceans of about 4.8 x 10(12) grams while benthic environments contribute 15 x 10(12) grams. The sum of these inputs is one-fifth of current estimates of nitrogen fixation in terrestrial environments and one-half of the present rate of industrial synthesis of ammonia. When the total of all nitrogen inputs to the sea is compared with estimated losses through denitrification, the marine nitrogen cycle approximates a steady state. Oceanic nitrogen fixation can supply less than 0.3 percent of the calculated demand of marine phytoplankton. The minor contribution by nitrogen fixation to the overall nitrogen economy of the sea is not consistent with the supposition that nitrogen is the primary limiting nutrient and suggests that factors other than nitrogen availability limit phytoplankton growth rates.
束丝藻属(鱼腥藻属)蓝藻每年向海洋输入的氮约为 4.8×10(12)克,而底栖环境贡献的氮为 1.5×10(12)克。这些输入的氮加起来,占陆地环境固氮当前估计值的五分之一,占目前工业合成氨速率的一半。当海洋中所有氮输入总量与通过反硝化作用估计的损失进行比较时,海洋氮循环接近一个稳定状态。海洋固氮作用只能满足海洋浮游植物计算需求量的不到 0.3%。氮固定对海洋整体氮经济的少量贡献与氮是主要限制营养物的假设不一致,这表明除了氮的可利用性外,还有其他因素限制浮游植物的生长速率。