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果树枝条掩埋发酵最佳模式研究 被引量:4
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作者 李祥 王永平 +6 位作者 柯希恒 孙喜军 郭学军 褚春年 王耀凤 胡月莉 曾桥 《广东农业科学》 CAS 2021年第8期83-89,共7页
【目的】为了减少果树枝条肥料化过程中枝条的捡拾、搬运、粉碎、堆肥、施肥环节的劳动力消耗,降低枝条肥料化成本,探索农村劳动力缺乏大背景下省时、省力的枝条肥料化技术。【方法】采用开沟机在苹果园作业行内开宽30~35 cm、深35~40 c... 【目的】为了减少果树枝条肥料化过程中枝条的捡拾、搬运、粉碎、堆肥、施肥环节的劳动力消耗,降低枝条肥料化成本,探索农村劳动力缺乏大背景下省时、省力的枝条肥料化技术。【方法】采用开沟机在苹果园作业行内开宽30~35 cm、深35~40 cm的深沟,将果树枝条、落叶、枯草填入沟内,添加微生物菌剂、尿素、土壤调理剂后覆土回填技术(回填深度8~10 cm),研究枝条掩埋发酵模式对枝条腐解率、果树腐烂病、轮纹病发病率、果园CO2浓度、土壤温度、水分含量的影响。【结果】(1)枝条掩埋发酵枝条腐解率随时间推移呈由小变大再变小的趋势,按75 kg/hm^(2)自带营养的微生物菌剂、50 kg/hm^(2)尿素及20 kg/hm^(2)土壤调理剂的比例(处理2),周年腐解率最高、为40.1%。(2)处理组果树腐烂病、轮纹病的发病率低于对照,以处理2果树腐烂病、轮纹病的发病率最低,分别为0和15.2%。(3)处理组近气层CO2浓度显著高于对照,以处理2近气层CO2的浓度最高、为550μmol/mol。(4)各处理寒冷时土壤温度高于地表温度,炎热时土壤温度低于地表温度,以处理2较为显著;处理组土壤的水分含量高于对照组。【结论】微生物菌剂、尿素、土壤调理剂处理可加速果树枝条腐解,增加近气层CO2的浓度;枝条掩埋发酵技术能降低苹果腐烂病、轮纹病的发病率;果树枝条掩埋发酵具有缓和土壤温度、蓄水保墒的作用。处理2为最佳果树枝条掩埋发酵方式。 展开更多
关键词 果树枝条 掩埋发酵方式 枝条腐解率 果园co2浓度 土壤温度 水分含量
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Soil Organic Carbon Sequestration Potential in Nectarine Orchards under Different Reclamation Systems
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作者 Yixiang WANG Boqi WENG +3 位作者 Jing YE Chengji WANG Cenwei LIU Yanchun LI 《Agricultural Science & Technology》 CAS 2017年第7期1192-1195,1207,共5页
The Red Soil Hilly Region in South China, where there is a high capacity of carbon(C), and the land use and vegetation cover change greatly, is an important ecological area in the world, and has an important impact on... The Red Soil Hilly Region in South China, where there is a high capacity of carbon(C), and the land use and vegetation cover change greatly, is an important ecological area in the world, and has an important impact on the global carbon cycle and the seasonal fluctuation of atmospheric CO_2. To better evaluate the effects of reclamation systems in orchards converted from grasslands on soil carbon sequestration, we investigated soil organic carbon(SOC) content and stable C isotope(δ^(13)C)composition in three nectarine orchards at Yuchi Experimental Station in South China. Compared with the sloping clean tillage orchard and terraced clean tillage orchard, SOC content in the terraced orchard with grass cover was increased by 14.90% to 38.49%, and 7.40% to 15.33%, respectively. During the 14 years after orchard establishment, the soil organic matter sources influenced both δ^(13)C distribution with depth and carbon replacement. SOC turnover of the upper soil layer in the terraced orchard with grass cover(a mean 63.05% of replacement in the 20 cm after 14 years) was 1.59 and 1.41 times larger than that of the sloping clean tillage orchard and terraced clean tillage orchard under subtropical conditions, respectively. The equilibrium value of soil organic carbon in the three treatments ranged from 16.067 to 25.608 g/kg under the experimental conditions. The equilibrium value of soil organic carbon in the surface layer under grass cover was 54.801 t/hm^2, and the carbon sequestration potential was 24.695 1 t/hm^2. 展开更多
关键词 ORCHARD Soil organic carbon Carbon sequestration potential δ13C
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