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The simulating test of the environmental capacity of biogas fertilizer utilization on wheat and corn planting system

机译:小麦和玉米种植系统沼肥利用环境容量的模拟试验。

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With the rapid development of biogas project that produce massive biogas fertilizer, it is necessary to determine the environmental capacity of biogas fertilizer utilization. In this study, the environmental capacity of biogas fertilizer application on wheat and corn planting system were investigated by soil column simulating experiments. The results showed that (1) the environmental capacity by biogas fertilizer application is higher than that by using the same amount chemical fertilizer; With the content of nitrate nitrogen <20 mg L−1 in the grade III of ground water criteria as assessment standard, biogas fertilizer application with 200 kg N hm−2 during wheat growth period would not contaminate ground water while using the same amount chemical would contaminate the ground water; (2) In wheat and corn planting system, using 275 kg N hm−2 biogas fertilizer would not contaminate ground water, however, when the biogas fertilizer application rate rise to 350 kg N hm−2, it would be risk to the ground water. Under the circumstance in this experiment, the environmental capacity of biogas fertilizer utilization on farmland is more than that of Lausanne experiment station (175 kg N hm−2) and Wang et al. (203 kg N hm−2).
机译:随着生产大量沼气的沼气工程的迅速发展,有必要确定沼气利用的环境容量。本研究通过土壤柱模拟试验研究了小麦和玉米种植系统沼气肥料的环境容量。结果表明:(1)沼气施用的环境容量高于等量化学肥料。以地下水标准Ⅲ类中硝酸盐氮<20 mg L −1 的含量为评价标准,小麦施用200 kg N hm -2 的沼肥。生长期不会污染地下水,而使用相同量的化学药品会污染地下水; (2)在小麦和玉米种植系统中,使用275 kg N hm -2 沼气肥料不会污染地下水,但是当沼气肥料施用量增加到350 kg N hm −时2 ,可能会对地下水造成危害。在此实验条件下,农田沼气利用的环境容量大于洛桑实验站的环境容量(175 kg N hm -2 ),Wang等人。 (203 kg N hm -2 )。

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