中国血吸虫病防治杂志 ›› 2019, Vol. 31 ›› Issue (2): 126-133.

• 论著 • 上一篇    下一篇

东洞庭湖区钉螺自然消亡与水体化学性质关系分析

杨宇1,李文斌2,程婉婷1,杨亚1,董淑容1,李林瀚1,姜杰3,王英鉴1,杨东见1,蔡斌3,游加边4,江峰1,姜庆五1,周艺彪1*   

  1. 1 复旦大学公共卫生学院流行病学教研室、公共卫生安全教育部重点实验室、复旦大学热带病研究中心(上海200032);2 湖南省岳阳市君山区疾病预防控制中心;3 湖南省岳阳市君山区血吸虫病防治站;4 湖南省岳阳市钱粮湖血吸虫病防治站
  • 出版日期:2019-05-24 发布日期:2019-05-26
  • 通讯作者: 周艺彪
  • 作者简介:杨宇,女,硕士研究生。研究方向:感染性疾病流行病学
  • 基金资助:
    国家自然科学基金(81673236);上海市第四轮公共卫生三年行动计划重点学科建设项目(15GWZK0101)

Relationship between natural extinction of Oncomelania hupensis snails and water chemical properties in Eastern Dongting Lake areas

YANG Yu1, LI Wen-Bin2, CHENG Wan-Ting1, YANG Ya1, DONG Shu-Rong1, LI Lin-Han1, JIANG Jie3, WANG Ying-Jian1, YANG Dong-Jian1, CAI Bin3, YOU Jia-Bian4, JIANG Feng1, JIANG Qing-Wu1, ZHOU Yi-Biao1*   

  1. 1 Key Laboratory of Public Health Safety, Ministry of Education, Tropical Disease Research Center, Department of Epidemiology, School of Public Health, Fudan University, Shanghai 200032, China; 2 Junshan District Center for Disease Control and Prevention, Hunan Province, China; 3 Station for Schistosomiasis Prevention of Junshan County, Hunan Province, China; 4 Qianlianghu Station for Schistosomiasis Control, Hunan Province, China
  • Online:2019-05-24 Published:2019-05-26
  • Contact: ZHOU Yi?Biao

摘要: 目的 比较东洞庭湖区钉螺自然消亡洲滩和有螺洲滩水体化学性质差异,探究钉螺自然消亡的原因。方法 选取东洞庭湖区钱粮湖钉螺自然消亡洲滩、君山公园有钉螺孳生洲滩,以及两者交界地带建兴农场洲滩作为研究现场。在涨水期、丰水期以及退水期,分别采用系统随机抽样法(200 m × 200 m网格法)采集距水底0.5 m处的底层水样,其中在丰水期还同时采集水面以下0.5 m处的表层水样,检测水体中的一般理化指标。结果 以《地表水环境质量标准》(GB 3838–2002)为参考,3次采样水样检测含量都小于检出限的指标有铬(Cr)、铅(Cd)、锌(Zn)、汞(Hg)、铜(Cu)、硫化物(S?)及氰化物(CN?);含量略高于Ⅲ类标准但低于Ⅳ类水质标准的污染物有Hg和总磷(TP);低于Ⅲ类水质标准限值的污染物有砷(As)和氟化物(F?);常规指标中,水温和pH值都在Ⅲ类水质标准范围。耗氧量指标溶解氧(DO)、化学耗氧量(COD)和生化耗氧量(BOD)在涨水期和丰水位期都处于Ⅲ类水质标准范围,但退水期BOD值超出了Ⅲ类标准范围,处于Ⅳ类(≤ 6 mg/L)与Ⅴ类水质标准(≤ 10 mg/L)之间。有螺洲滩与无螺洲滩涨水期F?含量、As含量、pH值差异均有统计学意义(P均 < 0.05),丰水期表层水pH值、BOD值、F?含量差异均有统计学意义(P均 < 0.05),丰水期底层水F?含量差异有统计学意义(P < 0.05),退水期TP和F?含量差异均有统计学意义(P均 < 0.05)。其中每次采集的水样检测差异均有统计学意义的指标仅有F?含量;在涨水期无螺洲滩pH值超出了适合钉螺生长的pH值范围(6.8~7.8)。结论 在东洞庭湖,水体酸碱度以及水体中F?含量偏高可能与钉螺自然消亡有关,但仍待进一步研究。  

关键词: 钉螺, 化学污染物, 自然消亡, 洞庭湖区

Abstract: Objective To investigate the reasons of natural extinction of Oncomelania hupensis snails by comparing the difference of the water chemical properties between the snail?breeding marshland and non?snail marshland in Eastern Dongting Lake areas. Methods Three adjoining marshlands in Eastern Dongting Lake areas were selected, one was a snail?breeding marshland, the second was a non?snail marshland, and the third was a boundary zone between them. During the periods of water?rising season, wet season and water?falling season, the water samples from the bottom of 0.5 m were collected by the systematic random sampling method (200 m × 200 m grid method). In addition, the water samples below the surface of 0.5 m were also collected in the wet season. The physicochemical indexes of the sampling water were detected. Results According to the Surface Water Environmental Quality Standard (GB 3838–2002), the water quality indicators which were less than the detection limit were Cr, Cd, Zn, Hg, Cu, S? and CN? during the three sampling seasons. The pollutants which were slightly higher than Grade III but lower than Grade IV (Hg ≤ 1 μg/L, TP ≤ 0.1 mg/L) were Hg and TP. The pollutants below the Grade III included As and F?. The temperature and pH values were within the Grade III. The oxygen consumption indicators covering DO, COD and BOD in the water?rising season and wet season were within the Grade III, while the value of BOD was beyond the scope of Grade III but was between Grade Ⅳ (≤ 6 mg/L) and Grade V (≤ 10 mg/L) in the water?falling season. The differences of the water pollution indexes between the snail?breeding marshland and non?snail marshland were statistically significant, and these indexes included F?, As and pH in the water?rising season (P < 0.05); pH, BOD and F? at the surface layer in the wet season (P < 0.05); F? at the bottom in the wet season (P < 0.05); TP and F? in the water?falling season. Moreover, the above?mentioned indexes in the non?snail marshland of Qianliang Lake were higher than those in the snail?breeding marshland of Junshan Park. Thus, F? was the only index which had statistical differences in every sampling season, and the concentration of F? at the non?snail marshland was also higher than that at the snail?breeding marshland. In the water?rising season, the pH value at the non?snail marshland exceeded the suitable range for the growth of snails (6.8 to 7.8). Conclusion In the Eastern Dongting Lake area, the high concentration of F? and pH of water may be responsible for the natural extinction of O. hupensis snails.

Key words: Oncomelania snail, Chemical contaminant, Natural extinction, Dongting Lake area

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