安徽省畜禽养殖粪污土地承载力的时空分布特征
作者:
中图分类号:

X713

基金项目:

安徽省重点研发计划项目“农村规模化畜禽养殖水污染防治技术研究”(1804b06020346);安徽省水利科技项目“乡村水生态综合治理关键技术研究”(slkj2021-02);安徽省·水利部淮委水科院科技创新资助项目(KY201908)


Spatial and Temporal Distribution Characteristics of Land Carrying Capacity of Livestock and Poultry Manure in Anhui Province
Author:
  • 摘要
  • | |
  • 访问统计
  • |
  • 参考文献 [39]
  • |
  • 相似文献
  • |
  • 引证文献
  • | |
  • 文章评论
    摘要:

    [目的] 探明畜禽粪便资源对农田土壤和环境造成的潜在污染风险,为防治面源污染、畜禽粪污资源利用提供科学依据。[方法] 以安徽省为研究区域,依据2009—2018年畜禽养殖、作物产量等数据资料,量化分析区域作物粪污养分需求量、畜禽粪污养分供应量,并结合已有研究成果,开展畜禽粪污土地承载力时空演化特征的分析研究。[结果] 安徽省粪、尿排放量由2009年的6.19×107 t上升至2015年的7.09×107 t,后下降至2018年的5.00×107 t,其中猪尿排放量最大,牛尿排放量最小。全省畜禽粪污排放总量与氮磷养分供给量均呈现北高南低的特点,不同畜禽粪尿在氮素的养分供给中所占比例均衡,而在磷素中差异较大。全省农田畜禽污染风险主要集中在安徽中部和南部地区的合肥、黄山和宣城等地,2018年全省土地承载力指数有所下降,农田对畜禽粪便仍具有一定的消纳空间。[结论] 安徽省农田畜禽养殖在局部地区存在着污染风险,需加强重点地区的化肥施用规划和畜禽养殖结构调整,推动农业可持续发展。

    Abstract:

    [Objective] The potential pollution risks from livestock and poultry manure on farmland soil and the environment were analyzed in order to provide a scientific basis for non-point source pollution control and resource utilization. [Methods] Livestock and poultry breeding data and crop yield from Anhui Province from 2009 to 2018 were quantitatively analyzed in conjunction with regional crop nutrient demand and nutrient supply from livestock and poultry manure. Combined with existing research results, the spatial and temporal evolution characteristics of the land carrying capacity of livestock and poultry were studied. [Results] The quantity of livestock manure increased from 6.19×107 tons in 2009 to 7.09×107 tons in 2015, and then decreased to 5.00×107 tons in 2018. Pig urine emissions were the largest and cattle urine emissions were the smallest. The discharge of livestock and poultry manure and the supply of nitrogen and phosphorus in the entire province were both higher in the north and lower in the south. The proportion of different livestock manure in the nitrogen supply was balanced, but there was a large difference in phosphorus. The risk of livestock and poultry pollution over the entire province was mainly concentrated in Hefei, Huangshan, and Xuancheng cities located in the central and southern areas of Anhui Province. The land carrying capacity index of the entire province decreased in 2018, and there was still a certain accommodation space for livestock and poultry manure. [Conclusion] Due to pollution risks associated with livestock and poultry breeding in some areas in Anhui Province, it is necessary to strengthen fertilizer application planning and structure adjustment in key areas in order to promote sustainable agricultural development.

    参考文献
    [1] Zheng Chaohui, Liu Yi, Bluemling B, et al. Modeling the environmental behavior and performance of livestock farmers in China:An ABM approach[J]. Agricultural Systems, 2013,122(12):60-72.
    [2] 贾伟,李宇虹,陈清,等.京郊畜禽粪肥资源现状及其替代化肥潜力分析[J].农业工程学报,2014,30(8):156-167.
    [3] Whitehead T R, Cotta M A. Stored swine manure and swine feces as reservoirs of antibiotic resistance genes[J]. Letters in Applied Microbiology, 2013,56(4):264-267.
    [4] Li H, Huang G, Meng Q, et al. Integrated soil and plant phosphorus management for crop and environment in China. A review[J]. Plant and Soil, 2013,349(1):157-167.
    [5] Cambra-lópez M, Aarnink A J, Zhao Yang, et al. Airborne particulate matter from livestock production systems:A review of an air pollution problem[J]. Environmental Pollution, 2010,158(1):1-17.
    [6] 董红敏,朱志平,黄宏坤,等.畜禽养殖业产污系数和排污系数计算方法[J].农业工程学报,2011,27(1):303-308.
    [7] 刘亚琼,杨玉林,李法虎.基于输出系数模型的北京地区农业面源污染负荷估算[J].农业工程学报,2011,27(7):7-12.
    [8] 耿维,胡林,崔建宇,等.中国区域畜禽粪便能源潜力及总量控制研究[J].农业工程学报,2013,29(1):171-179.
    [9] Keener H M, Zhao L. A modified mass balance method for predicting NH3 emissions from manure N for livestock and storage facilities[J]. Biosystems Engineering, 2008,99(1):81-87.
    [10] Coelho B B, Murray R, Lapen D, et al. Phosphorus and sediment loading to surface waters from liquid swine manure application under different drainage and tillage practices[J]. Agricultural Water Management, 2012,104(2):51-61.
    [11] 王辉,董元华,张绪美,等.江苏省集约化养殖畜禽粪便盐分含量及分布特征分析[J].农业工程学报,2007,23(11):229-233.
    [12] Mallin M A, Cahoon L B. Industrialized animal production:A major source of nutrient and microbial pollution to aquatic ecosystems[J]. Population & Environment, 2003,24(5):369-385.
    [13] 李艳霞,李帷,韩伟,等.基于GIS的东北农田畜禽粪便施用适宜性分析[J].环境科学,2010,31(4):1092-1100.
    [14] Mishima S I, Shirato Y. Estimation of the amounts of livestock manure, rice straw, and rice straw compost applied to crops in Japan:A bottom-up analysis based on national survey data and comparison with the results from a top-down approach[J]. Soil Science and Plant Nutrition, 2012,58(1):83-90.
    [15] 冯倩,刘聚涛,付莎莎,等.江西省畜禽粪便污染物产生量及其耕地负荷分析[J].安全与环境学报,2014,14(6):316-319.
    [16] 张建杰,郭彩霞,覃伟,等.山西省畜禽业发展及粪尿养分时空变异[J].应用生态学报,2016,27(1):207-214.
    [17] 宋大平,庄大方,陈巍.安徽省畜禽粪便污染耕地、水体现状及其风险评价[J].环境科学,2012,35(1):110-116.
    [18] 王雪蕾,吴传庆,冯爱萍,等.利用DPeRS模型估算巢湖流域氨氮和化学需氧量的面源污染负荷[J].环境科学学报,2015,35(9):2883-2891.
    [19] 阎波杰,潘瑜春,闫静杰.安徽省县域耕地畜禽养殖废弃物养分负荷时空演变特征[J].生态与农村环境学报,2016,32(3):466-472.
    [20] 安徽省统计局.安徽省统计年鉴(2009-2018)[M].北京:中国统计出版社,2017.
    [21] 国家畜牧养殖废弃物资源化利用科技创新联盟.土地承载力测算技术指南[M].北京:中国农业出版社,2017.
    [22] 王晓燕,张雅帆,欧洋.北京密云水库上游太师屯镇非点源污染损失估算[J].生态与农村环境学报,2009,25(4):37-41.
    [23] Richard Arthur, Martina Baidoo. Harnessing methane generated from livestock manure in Ghana, Nigeria, Mali and Burkina Faso[J]. Biomass & Bioenergy, 2011,35(11):4648-4656.
    [24] 刘晓永,李书田.中国畜禽粪尿养分资源及其还田的时空分布特征[J].农业工程学报,2018,34(4):1-14,316.
    [25] 国家环境保护总局自然生态保护司.全国规模化畜禽养殖业污染情况调查及防治对策[M].北京:中国环境科学出版社,2002:14-103.
    [26] 李书田,刘荣乐,陕红.我国主要畜禽粪便养分含量及变化分析[J].农业环境科学学报,2009,28(1):179-184.
    [27] Choi Hong L, Sudiarto S I A, Renggaman A. Prediction of livestock manure and mixture higher heating value based on fundamental analysis[J]. Fuel, 2014,116:772-780.
    [28] Cantrell K B, Hunt P G, Uchimiya M, et al. Impact of pyrolysis temperature and manure source on physicochemical characteristics of biochar[J]. Bioresource Technology, 2012,107:419-428.
    [29] 宣梦,许振成,吴根义,等.我国规模化畜禽养殖粪污资源化利用分析[J].农业资源与环境学报,2018,35(2):126-132.
    [30] 贾伟.我国粪污养分资源现状及其合理利用分析[D].北京:中国农业大学,2014.
    [31] 刘雪刚.安徽省畜禽养殖污染状况调查与治理技术适用性分析[D].安徽合肥:合肥工业大学,2015.
    [32] 朱建春,张增强,樊志民,等.中国畜禽粪便的能源潜力与氮磷耕地负荷及总量控制[J].农业环境科学学报,2014,33(3):435-445.
    [33] Anjum R, Grohmann E, Krakat N. Anaerobic digestion of nitrogen rich poultry manure:Impact of thermophilic biogas process on metal release and microbial resistances[J]. Chemosphere, 2017,168:1637-1647.
    [34] 阎波杰,潘瑜春,闫静杰.基于GIS的安徽省耕地畜禽养殖废弃物氮负荷估算及污染潜势研究[J].地球与环境,2016,44(5):566-571.
    [35] 肖琴,周振亚,罗其友.长江中下游地区畜禽承载力评估与预警分析[J].长江流域资源与环境,2019,28(9):2050-2058.
    [36] 王奇,陈海丹,王会.基于土地氮磷承载力的区域畜禽养殖总量控制研究[J].中国农学通报,2011,27(3):279-284.
    [37] 曾悦,洪华生,田燕,等.南方山地丘陵区规模畜禽养殖对水环境影响及评价[J].水资源保护,2010,26(5):45-49.
    [38] Li Shutian, Liu Xiaoyong, Ding Wencheng. Estimation of organic nutrient sources and availability for land application[J]. Better Crops with Plant Food, 2016,100(3):4-6.
    [39] 易秀,陈生婧,田浩.陕西省养殖业畜禽粪便氮磷耕地负荷的时空分布[J].水土保持通报,2016,36(3):235-240.
    相似文献
    引证文献
引用本文

张靖雨,汪邦稳,夏小林,龙昶宇.安徽省畜禽养殖粪污土地承载力的时空分布特征[J].水土保持通报,2021,41(3):357-364

复制
分享
文章指标
  • 点击次数:
  • 下载次数:
  • HTML阅读次数:
  • 引用次数:
历史
  • 收稿日期:2021-02-24
  • 最后修改日期:2021-03-30
  • 在线发布日期: 2021-07-08