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Combined effects of nitrogen fertilizer and biochar on greenhouse gas emissions and net ecosystem economic budget from a coastal saline rice field in southeastern China

机译:氮肥和生物炭对中国东南沿海盐渍稻田温室气体排放及净生态系统经济预算的综合影响

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Biochar amendment has complex impacts on greenhouse gas emissions, crop production and economic benefit. However, few studies have comprehensively investigated the effects of biochar amendment in coastal saline rice fields. Thus, a biochar amendment field experiment was established in a coastal saline rice field in China to estimate the CH4 and N2O emissions, global warming potential (GWP), greenhouse gas intensity (GHGI), and net ecosystem economic budget (NEEB) of the biochar amendment during the rice growing season in 2017. There were six treatments (N0B0, N0B1, N0B2, N1B0, N1B1, N1B2) with different N fertilizer levels of 0 and 300 kg N ha(-1) and biochar rates of 0, 20, and 40 t ha(-1). The results showed that the application of N fertilizer increased N2O emissions and rice yield by 128.3% (p<0.001) and 44.4% (p<0.001), respectively, while decreased the GHGI by 20.5% (p<0.01); additionally, there were no significant effects on the CH4 emissions and GWP compared with the treatments without N fertilizer. Although biochar amendment significantly increased the N2O emissions and rice yield by 13.7-38.1% and 31.5-34.9%, respectively, biochar amendment had no significant effects on CH4 emissions, GWP, and GHGI relative to the treatments without biochar amendment. From an economic perspective, N fertilizer significantly increased the NEEB by 135.5%, relative to the treatments without N fertilizer. Due to the high price of biochar and the large quantity applied, biochar amendment significantly reduced the NEEB by 99.8-229.3% compared with the treatments without biochar amendment. Considering the different characters between field-aged biochar and fresh biochar. Thus, long-term observations are needed to evaluate the environmental and economic profits affected by biochar and N fertilizer.
机译:生物炭修正案对温室气体排放,作物生产和经济效益具有复杂的影响。然而,很少有研究过度调查了沿海盐水稻田生物炭修正的影响。因此,在中国的沿海盐水稻田中建立了生物炭修正场实验,以估计生物炭的CH4和N2O排放,全球变暖潜力(GWP),温室气体强度(GHGI)和净生态系统经济预算(NEEB)在2017年稻米生长季节的修正案。具有六种治疗(N0B0,NO 3,N0B2,N1B0,N1B1,N1B1,N1B0,N1B1,N1B2),不同的氮肥水平为0和300kg N(-1)和0,20的BioChOR率,和40 t ha(-1)。结果表明,氮肥的施用增加了N2O排放量和水稻产量128.3%(P <0.001)和44.4%(P <0.001),同时将GHGI降低20.5%(P <0.01);此外,与没有N肥料的治疗,对CH4排放和GWP没有显着影响。虽然生物炭修正案显着提高了N2O排放量和水稻产量,分别为13.7-38.1%和31.5-34.9%,生物炭修正对CH4排放,GWP和GHGI相对于没有生物炭修正案的治疗没有显着影响。从经济的角度来看,氮肥的NEEB显着增加135.5%,相对于没有N肥料的治疗。由于BioChar的高价格和应用的大量,Biochar修正案与没有生物炭修正案的治疗相比,NEEB明显减少了99.8-229.3%。考虑到现场生物炭和新鲜BioChar之间的不同特征。因此,需要长期观察来评估受生物炭和氮肥的影响的环境和经济利润。

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