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首页> 外文期刊>Fresenius environmental bulletin >REDUCTION OF THE GREENHOUSE GAS EMISSION AND ENERGY OPTIMIZATION FOR TOMATO PRODUCTION
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REDUCTION OF THE GREENHOUSE GAS EMISSION AND ENERGY OPTIMIZATION FOR TOMATO PRODUCTION

机译:减少番茄生产的温室气体排放和能量优化

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The aim of this study is to optimize the energy consumption and specify reduction of GHG emission from the tomato farms in Tokat Province of Turkey. The data from tomato-growers was analyzed using Data Envelopment Analysis (DEA) approach to separate the efficient and inefficient ones and to identify the wastcfiil uses of energy in tomato production. The study also helped to determine the effects of the energy optimization on reducing GHG emission. The results revealed that technical, pure technical and scale efficiencies of farmers were 0.71, 0.91 and 0.78, respectively. Also, energy saving target ratio for tomato production was calculated as 16.78%. It means that 7441.50 MJ ha*1 of total input energy could be saved while holding the constant level of tomato yield. Moreover, the highest contribution to total energy saving was made by fertilizer with 37.28% of total saving, followed by diesel fuel (35.17%) and farmyard manure (9.67%). GHG emission from tomato farmers was found as 1724.70 kg CO2eqha' l. With energy optimization, GHG emission can be reduced by 17.36%.
机译:本研究的目的是优化能源消耗,并指出了火鸡省Tokat省番茄农场的GHG排放。使用数据包络分析(DEA)方法分析来自番茄种植者的数据来分离有效和低效的方法,并识别番茄生产中的能量的使用。该研究还有助于确定能量优化对降低GHG排放的影响。结果表明,农民的技术,纯技术和规模效率分别为0.71,0.91和0.78。此外,番茄生产的节能目标比率计算为16.78%。这意味着可以节省7441.50 MJ * 1的总输入能量,同时保持番茄产量的恒定水平。此外,对全节能的最高贡献是由肥料制造的,占总节约的37.28%,其次是柴油燃料(35.17%)和野地粪便(9.67%)。番茄农民的温室气体排放被发现为1724.70千克CO2EQHA'L。通过能量优化,GHG排放可减少17.36%。

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