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首页> 外文期刊>Indian Journal of Soil Conservation >Fruit production and carbon sequestration potential of rainfed apple (Mains x domestica Borkh) under various moisture conservation techniques
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Fruit production and carbon sequestration potential of rainfed apple (Mains x domestica Borkh) under various moisture conservation techniques

机译:各种水分保护技术下雨量苹果(MAINS X DIMICATEA BORKH)的果实生产和碳封存电位

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摘要

An experiment was conducted during 2011-13 on the effect of in-situ moisture conservation techniques for apple productivity and carbon sequestration potential under rainfed condition. Results indicated that mean maximum fruit yield (23.64 kg tree"1 and 14.771 haJ) and productivity efficiency (0.221 kg cm"2 TCSA) were recorded in full moon water harvesting system. Among mulches, plastic mulch performed better in respect to fruit yield (20.55 kg tree"1 and 12.851 ha"1) and productivity efficiency (0.198 kg cm"2 TCSA), respectively. Maximum mean soil moisture content was estimated in full moon water harvesting system (12.92%) followed by half moon (12.71%), trench (12.12%), cup and plate (11.36%) and minimum (10.27%) was in control (without water harvesting system). Among mulches, plastic mulch conserved more moisture than organic mulch. The maximum biomass (35.34 Mg ha"1), carbon stocks (16.54 Mg C ha"1), soil carbon storage (31.59 Mg C ha"1) and C02 sequestration (176.5 Mg C02 ha"1) of apple was observed in apple established with full moon micro-catchment. Amongst mulches, maximum biomass (34.54 Mg ha"1) and carbon stocks 16.16 Mg C ha"1 were recorded with polythene mulch. Whereas, maximum carbon storage (33.66 Mg C ha"1) and C02 sequestration (178.7 Mg C02 ha _1) were recorded in organic mulch treated plots. Interaction effect of full moon water harvesting system along with plastic mulching showed significantly maximum fruit yield, productivity efficiency, biomass, soil carbon storage, carbon stocks and soil moisture content in apple as compared to other treatment combinations under rainfed conditions of Kashmir valley.
机译:2011-13期间进行了一个实验,对雨量条件下原位水分保护技术对苹果生产率和碳封存电位的影响。结果表明,平均最大果产率(23.64千克“1和14.771AHJ)和生产率效率(0.221kg cm”2 TCSA)记录在满月水收集系统中。在覆盖物中,塑料覆盖物在果产率(20.55kg树“1和12.851 HA”1)和生产率效率(0.198kg cm“2 TCSA)进行。最大平均土壤水分含量估计满月水收集系统(12.92%),其次是半月(12.71%),沟槽(12.12%),杯子和板(11.36%)和最小(10.27%)被控制(没有水收集系统)。在覆盖物中,塑料覆盖物保存更多水分比有机覆盖物。最大生物质(35.34 mg Ha“1),碳储存(16.54mg C ha”1),土碳储存(31.59mg C ha“1)和CO 2封存(176.5mg CO 2 HA”1)苹果在苹果中观察到苹果,以满月微集水区建立。在覆盖物中,用聚乙烯覆盖物记录最大生物质(34.54mg HA“1)和碳储存16.16mg c ha”1。而最大碳储存(33.66 mg c “1)和CO 2螯合(178.7mg CO 2 H HA _1)被记录在有机覆盖处理的图中。与克什米尔谷的雨量条件下的其他治疗组合相比,满月水收集系统与塑料覆盖系统以及塑料覆盖的相互作用效果显着最大的果实产量,生产率效率,生物量,土壤碳储存,碳储备和土壤水分含量。

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