The Use of Biofertilizers Increased Plant Growth with No Trade-Off Effect on GreenHouse Gas Emission

A. Hadi, Udiantoro, H. Nur, Muhlis
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引用次数: 4

Abstract

Several experiments have been carried out to elucidate the reduction in greenhouse gas emissions as effect of replacement of chemical fertilizer by biofertilizers on alluvial soils in Indonesia.  Biofertilizers “Biotara” and “Biosure” were applied along with NPK fertilizer on alluvial soil cultivated with rice.  Emissions of nitrous oxide (N 2 O), methane (CH 4 ) and carbon dioxide (CO 2 ) were monitored in biweekly basis up to the maximum vegetative growth of the rice plant. Oil palm empty fruit bunch (OP EFB) as well as grasses were composted with Bacillus brevis and Bacillus megaterium as activator. The composts were incorporated into alluvial soils cultivated to oil palm and the emissions of N 2 O, CH 4 and CO 2 were monitored in biweekly basis. The results showed that biofertilizer “Biotara” or “Biosure” combined with NPK fertilizer (¾ recommendation dose) could increase paddy growth with no significant effect on N 2 O, CH 4 and CO 2 emissions.  The emissions of N 2 O,  CH 4 and CO 2 exhibited seasonal changes as affected by inclusion of either OP EFB and weed compost along with NPK fertilizer.  Global warming potentials of each treatment for NPK, OP EFB compost and weed compost were 5.6, -5.2 and -4.9 ton CO 2 equ m - 2 year -1 , respectively. It could be concluded that the replacements of synthetic fertilizer with biofertilizer or compost did not have negative impact on the environment which could be promoted.
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生物肥料的使用促进了植物生长,但对温室气体排放没有权衡效应
在印度尼西亚的冲积土壤上进行了几项实验,以阐明生物肥料代替化学肥料对减少温室气体排放的影响。在水稻冲积土上施用生物肥料“Biotara”和“Biosure”和氮磷钾肥。每两周监测一氧化二氮(n2o)、甲烷(ch4)和二氧化碳(CO 2)的排放,直至水稻植株营养生长高峰期。以短芽孢杆菌和巨芽孢杆菌为活化剂,对油棕空果串和禾草进行堆肥。将堆肥放入种植油棕的冲积土中,每两周监测N 2o、CH 4和CO 2的排放。结果表明,生物肥“Biotara”或“Biosure”与氮磷钾(推荐用量的3 / 4)配施均能促进水稻生长,对氮氧化物、甲烷和二氧化碳排放无显著影响。氮磷钾与有机肥、杂草堆肥对氮磷钾土壤氮氧化物、甲烷和二氧化碳的排放均有显著的季节变化。NPK、OP - EFB堆肥和杂草堆肥各处理的全球增温潜势分别为5.6、-5.2和-4.9吨co2当量m - 2年-1。综上所述,生物肥料或堆肥替代合成肥料对环境没有负面影响,可以推广使用。
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