首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Contrasting effects of banana peels waste and its biochar on greenhouse gas emissions and soil biochemical properties
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Contrasting effects of banana peels waste and its biochar on greenhouse gas emissions and soil biochemical properties

机译:香蕉剥落废物及其生物炭对对比效应对温室气体排放及土壤生化特性的影响

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摘要

The huge quantity of banana peels waste from juice industries and fruit markets every day is indicating a potential bio-resource which is major task for environment safety. It can be converted into useful material instead of being dumped in landfill site, and reduce the environment and economic problems. In this study, we compared the influence of banana peels waste and its biochar on greenhouse gas emissions, soil enzyme activities and chemical properties of soil at 90 days incubation period. There were five treatments of amendments: no amendment (Control), banana peel 1% (P1), banana peel 2% (P2), biochar 1% (B1) and biochar 2% (B2). Results indicated that biochar amendment significantly decreased cumulative nitrous oxide (N2O) emissions (37.1%-54.8%), whereas banana peels amendment did not significantly decrease cumulative N2O emissions (1.3%-5.3%) as compared to control. Biochar application decreased the soil ammonium nitrogen (NH4+-N) and nitrate nitrogen (NO3--N) with an increasing rate. Cumulative carbon dioxide (CO2) emissions for B1 and B2 treatments decreased 20.0% and 24.0% in comparison to the banana peel amendment, respectively. Cumulative methane (CH4) emissions were higher in peel waste than biochar amendment. Soil enzyme activities (urease, invertase and alkaline phosphatase) were significantly increased by biochar amendment. In contrast, banana peel amendment increased soil ammonium nitrogen, soil microbial biomass carbon (MBC) and microbial biomass nitrogen (MBN), beta-glucosidase and urease activities. We concluded that banana peels waste conversion to biochar should be an alternate method of disposal since its application resulted in the reduced greenhouse gas emissions and improved the soil biochemical properties. This biochar should be further tested under field conditions to confirm the potential for mitigating of GHG emissions and soil biochemical properties. (C) 2019 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:每天都表明环境安全的主要任务是潜在的生物资源,巨大的香蕉剥离了果汁行业和水果市场的浪费。它可以转换为有用的材料而不是倾倒在垃圾填埋场,并降低环境和经济问题。在这项研究中,我们将香蕉皮废物及其生物炭的影响与90天孵育期间土壤的温室气体排放,土壤酶活性和化学性质进行了比较。有五项修正案治疗方法:无修改(对照),香蕉皮1%(P1),香蕉皮2%(P2),生物炭1%(B1)和生物炭2%(B2)。结果表明,与对照相比,Biochar修正案显着降低了累积的氧化亚氮(N2O)排放量(37.1%-54.8%),而香蕉皮果肉修正案没有显着降低累积的N2O排放(1.3%-5.3%)。生物炭施用随着速度的增加而降低土壤氮氮(NH4 + -N)和硝酸氮(NO3 - N)。与香蕉剥离修正案分别相比,B1和B2治疗的累积二氧化碳(CO2)排放分别降低了20.0%和24.0%。剥落垃圾累积甲烷(CH4)排放比生物炭修正更高。通过生物炭修正,土壤酶活性(脲酶,转化酶和碱性磷酸酶)显着增加。相比之下,香蕉剥离修正案增加了土壤氮,土壤微生物碳(MBC)和微生物生物量氮(MBN),β-葡糖苷酶和脲酶活性。我们得出结论,香蕉对生物炭的废物转化应该是替代的处理方法,因为它的应用导致温室气体排放减少并改善了土壤生化特性。该生物炭应在现场条件下进一步测试,以确认缓解温室气体排放和土壤生化特性的可能性。 (c)2019化学工程师机构。 elsevier b.v出版。保留所有权利。

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