小龙虾扰动下水稻秸秆腐解及养分释放和表面结构变化特征
CSTR:
作者:
作者单位:

1.湖北省农业科学院植保土肥研究所/国家土壤质量洪山观测实验站, 武汉 430064;2.麻城市黄土岗镇农业服务中心,麻城 438302

作者简介:

彭成林,E-mail:chlpeng@163.com

通讯作者:

徐大兵,E-mail:117823809@qq.com

中图分类号:

S141.2

基金项目:

湖北省重点研发计划项目(2022BBA0044,2021BBA075);国家重点研发计划项目(2021YFD1901204)


Characteristics of straw decomposition, nutrient release and structural changes of rice under disturbance from crayfish
Author:
Affiliation:

1.Institute of Plant Protection and Soil Fertilizers, Hubei Academy of Agricultural Sciences/ National Observation and Experiment Station for Soil Quality, Hongshan, Wuhan 430064, China;2.Agricultural Technology Service Center of Huangtugang Town, Macheng City,Hubei Province, Macheng 438302, China

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    摘要:

    为探究持续泡水条件下小龙虾参与水稻秸秆腐解过程与特征,完善稻虾模式水稻秸秆还田技术、实现秸秆资源的高效利用及农田可持续发展,采用自制尼龙网箱法,在稻虾环沟模式的养殖沟内,以不养虾为对照,模拟研究小龙虾扰动下水稻秸秆的腐解特性、养分释放特征及其表面微观结构变化特点。结果显示,无论是否有小龙虾参与,水稻秸秆各时段平均腐解率表现出快—慢—快—慢—快的特点;150 d及以前,有虾处理与无虾处理各时段腐解量、累计腐解率和各时段平均腐解率差异均不显著,180 d及以后各指标均表现为有虾处理显著高于无虾处理,至210 d时,有虾处理水稻秸秆累计腐解率达85.67%,比无虾处理高出12.35百分点。秸秆养分累积释放率均表现为 K>P>N;150 d及以后,有虾处理N累积释放率表现出高于无虾处理的趋势,180 d及以上,有虾处理P累积释放率和总养分累积释放率表现出高于无虾处理的趋势,至210 d,有虾处理K累积释放率表现出高于无虾处理的趋势。120 d 及以后,有虾处理的秸秆表面结构受破坏程度明显大于无虾处理。结果表明,稻虾环沟模式下,小龙虾扰动能增加中后期水稻秸秆表面微观结构的受破坏程度,促进后期水稻秸秆腐解和养分释放。

    Abstract:

    The nylon net cages self-made were used to study the characteristics of straw decomposition, nutrient release characteristics, and surface microstructure changes of rice under the disturbance from crayfish simulated in a trenche for aquaculture with rice-crayfish model and with no crayfish as a control in order to investigate the process and characteristics of straw decomposition of rice participated by crayfish under continuous soaking conditions, improve the technology for returning rice straw to the field in the rice-crayfish model, and realize the efficient utilization of straw resources and sustainable development of farmland. The results showed that the average decomposition rate of rice straw in each stage showed a characteristic of fast-slow-fast-slow-fast regardless of whether crayfish participated or not. There was no significant difference in the amount of decomposition, cumulative decomposition rate, and average decomposition rate between the treatment with crayfish and the treatment without crayfish before 150 days. All indexes of the treatment with crayfish were significantly higher than those of the treatment without crayfish after 180 days. The cumulative decomposition rate of rice straw in the treatment with crayfish reached 85.67%, which was 12.35 percentage points higher than that in the treatment without crayfish at 210 days. The cumulative release rate of straw nutrients was in the decreasing order of K>P>N. The cumulative release rate of N in the treatment with crayfish was higher than that in the treatment without crayfish after 150 days. The cumulative release rate of P and the cumulative release rate of total nutrient in the treatment with crayfish were higher trend than those in the treatment without crayfish after 180 days. The cumulative release rate of K in the treatment with crayfish was higher than that in the treatment without crayfish at 210 days. The surface structure of straw treated with crayfish was significantly more damaged than that treated without crayfish after 120 days. It is indicated that the disturbance from crayfish can increase the degree of damage to the surface microstructure of rice straw at the middle and late stages, promote the decomposition and nutrient release of rice straw at the late stage in a trenche for aquaculture with rice-crayfish model.

    表 1 水稻秸秆腐解情况Table 1 Decomposing rates and amounts of rice straw
    图1 不同处理N、P、K及总养分累积释放率Fig.1 N,P,K and total cumulative release rates
    图2 腐解进程中有虾与无虾处理水稻秸秆表面结构扫描电镜观察Fig.2 SEM images of rice straw surface structure at different days of decomposition under
    参考文献
    [1] 倪进治,徐建民,谢正苗.有机肥料施用后潮土中活性有机质组分的动态变化[J].农业环境科学学报,2003,22(4):416-419.NI J Z,XU J M,XIE Z M.Dynamic of active organic matter fractions in fluvio-aquic soil after application of organic fertilizers[J].Journal of agro-environmental science,2003,22(4):416-419 (in Chinese with English abstract).
    [2] 李逢雨,孙锡发,冯文强,等.麦秆、油菜秆还田腐解速率及养分释放规律研究[J].植物营养与肥料学报,2009,15(2):374-380.LI F Y,SUN X F,FENG W Q,et al.Nutrient release patterns and decomposing rates of wheat and rapeseed straw[J].Journal of plant nutrition and fertilizer,2009,15(2):374-380 (in Chinese with English abstract).
    [3] 于秀娟,郝向举,党子乔,等.中国小龙虾产业发展报告(2022)[J].中国水产,2022(6):47-54.YU X J,HAO X J,DANG Z Q,et al.China crayfish industry development report (2022)[J].China fisheries,2022(6):47-54 (in Chinese).
    [4] 彭成林,袁家富,马朝红,等.湖北省稻虾共作典型区域水稻施肥现状评价[J].湖北农业科学,2021,60(7):30-33.PENG C L,YUAN J F,MA C H,et al.Evaluation of rice fertilization status in typical areas of integrated rice-crayfish mode in Hubei Province[J].Hubei agricultural sciences,2021,60(7):30-33 (in Chinese with English abstract).
    [5] 佀国涵,袁家富,彭成林,等.稻虾共作模式氮和磷循环特征及平衡状况[J].中国生态农业学报(中英文),2019,27(9):1309-1318.SI G H,YUAN J F,PENG C L,et al.Nitrogen and phosphorus cycling characteristics and balance of the integrated rice-crayfish system[J].Chinese journal of eco-agriculture,2019,27(9):1309-1318 (in Chinese with English abstract).
    [6] 彭成林,袁家富,贾平安,等.长期稻虾共作模式对不同施氮量下直播水稻产量和氮肥利用效率的影响[J].河南农业科学,2020,49(4):15-21.PENG C L,YUAN J F,JIA P A,et al.Effects of long-term integrated rice-crayfish model on yield and nitrogen use efficiency of direct-seeding rice under different nitrogen application rates[J].Journal of Henan agricultural sciences,2020,49(4):15-21 (in Chinese with English abstract).
    [7] 彭成林,袁家富,佀国涵,等.长期稻虾共作模式下稻田钾素平衡状况及合理施钾量研究[J].中国土壤与肥料,2021(4):135-141.PENG C L,YUAN J F,SI G H,et al.Study of potassium balance and potassium application rate in long-term integrated rice-crayfish mode[J].Soil and fertilizer sciences in China,2021(4):135-141 (in Chinese with English abstract).
    [8] 李逢雨.秸秆还田养分释放规律及稻草化感作用研究[D].雅安:四川农业大学,2007.LI F Y.Patterns of nutrient release from straws returned to the field and the allelopathic effect of rice straw[D].Yaan:Sichuan Agricultural University,2007 (in Chinese with English abstract).
    [9] 郑丹.不同条件下作物秸秆养分释放规律的研究[D].哈尔滨:东北农业大学,2012.ZHENG D.The nutrient releasing regularity of crop stalks under different conditions[D].Harbin:Northeast Agricultural University,2012 (in Chinese with English abstract).
    [10] 车玉萍,林心雄,程励励,等.用14C示踪法研究植物残体在田间的分解速率[J].土壤,1993,25(3):159-161.CHE Y P,LIN X X,CHENG L L,et al.Study on decomposition rate of plant residues in field by 14C tracer method[J].Soils,1993,25(3):159-161(in Chinese).
    [11] 王景,陈曦,张雅洁,等.好气和厌氧条件下小麦秸秆的腐解特征研究[J].中国农业大学学报,2015,20(3):161-168.WANG J,CHEN X,ZHANG Y J,et al.Characteristic of wheat straw decomposition under aerobic and anaerobic condition in soil[J].Journal of China Agricultural University,2015,20(3):161-168 (in Chinese with English abstract).
    [12] 王景,魏俊岭,章力干,等.厌氧和好气条件下油菜秸秆腐解的红外光谱特征研究[J].中国生态农业学报,2015,23(7):892-899.WANG J,WEI J L,ZHANG L G,et al.FTIR characteristic of rapeseed straw decomposition under anaerobic and aerobic conditions[J].Chinese journal of eco-agriculture,2015,23(7):892-899 (in Chinese with English abstract).
    [13] 戴志刚,鲁剑巍,李小坤,等.不同作物还田秸秆的养分释放特征试验[J].农业工程学报,2010,26(6):272-276.DAI Z G,LU J W,LI X K,et al.Nutrient release characteristic of different crop straws manure[J].Transactions of the CSAE,2010,26(6):272-276 (in Chinese with English abstract).
    [14] 王景,陈曦,魏俊岭.水稻秸秆和玉米秸秆在好气和厌氧条件下的腐解规律[J].农业资源与环境学报,2017,34(1):59-65.WANG J,CHEN X,WEI J L.Decomposition of rice straw and corn straw under aerobic and anaerobic conditions[J].Journal of agricultural resources and environment,2017,34(1):59-65 (in Chinese with English abstract).
    [15] 王允青,郭熙盛.不同还田方式作物秸秆腐解特征研究[J].中国生态农业学报(中英文),2008,16(3):607-610.WANG Y Q,GUO X S.Decomposition characteristics of crop-stalk under different incorporation methods[J].Chinese journal of eco-agriculture,2008,16(3):607-610 (in Chinese with English abstract).
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彭成林,徐大兵,周勇,佀国涵,赵书军,刘威,周剑雄.小龙虾扰动下水稻秸秆腐解及养分释放和表面结构变化特征[J].华中农业大学学报,2024,43(3):214-219

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  • 收稿日期:2023-07-11
  • 在线发布日期: 2024-06-06
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