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Investigations of water supply and water quality issues related to inland shrimp farming in western Alabama.

机译:与阿拉巴马州西部内陆虾养殖有关的供水和水质问题的调查。

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摘要

Examination of data on chloride concentrations in well waters revealed that an area in Greene, Sumter, Hale, Marengo, and Wilcox Counties had the greatest potential for inland culture of marine shrimp. A few places in Tuscaloosa and Lowndes Counties also have access to groundwater of adequate salinity. Highly saline groundwater in Washington, Clarke, and Choctaw Counties did not appear as acceptable for shrimp culture.; Studies conducted at an existing inland shrimp farm in Greene County showed that potassium applied to ponds as fertilizer to correct a potassium deficiency in pond waters was lost from ponds by bottom soil adsorption, seepage, and discharge of water for harvest. Estimates of potassium adsorption by bottom soil revealed that the capacity of the soil to exchange other ions for potassium in the water was mostly filled during a single shrimp crop. However, the bottom soils contained 2:1 type clay minerals with high capacity to fix potassium through noncationic exchange processes. Pond soils likely will remove added potassium from water for several years, and the only reliable way to determine when potassium fertilizer should be applied to inland shrimp ponds in Alabama is to monitor potassium concentrations in the water.; The salt input to the shrimp farm in Greene County was saline well water, fertilizer, feed, rainfall, and runoff was 1,980.8 tonnes of salt over a 5-year period. A total of 1,588 tonnes of the added salt was lost to the environment with almost equal amounts lost exiting ponds in seepage and effluent (overflow and draining). The salinity of water in a small creek flowing through the farm and in the shallow aquifer beneath the pond area was elevated by saline water discharged from the ponds. However, chloride concentration in the receiving stream, Needham Creek, only exceeded the Alabama Department of Environmental Management "in stream" standard of 230 mg/L when water was discharged from ponds to facilitate shrimp harvest in the fall. Greater water reuse or more gradual release of pond effluents during harvest would reduce the peak in chloride concentration in Needham Creek during shrimp harvest.
机译:对井水中氯化物浓度数据的检查表明,格林,萨姆特,黑尔,马伦戈和威尔科克斯县的地区对内陆养殖海虾的潜力最大。塔斯卡卢萨(Tuscaloosa)和朗兹县(Lowndes County)的一些地方也可以使用足够盐度的地下水。华盛顿,克拉克和乔克托县的高盐分地下水似乎不适合虾类养殖。在格林县一个现有的内陆虾场进行的研究表明,由于底层土壤的吸附,渗漏和排水以供收获,池塘中的钾作为肥料施用以纠正池塘水中的钾缺乏而流失。对底层土壤对钾的吸附的估算表明,在单只虾类作物中,土壤中其他钾离子交换其他离子的能力大部分被填充。但是,底部土壤含有2:1型粘土矿物,具有通过非阳离子交换过程固定钾的高能力。池塘土壤可能会在几年内从水中去除添加的钾,而确定何时应在阿拉巴马州的内陆虾塘中施用钾肥的唯一可靠方法是监测水中的钾浓度。在5年中,向格林县虾场输入的盐是盐井水,肥料,饲料,降雨和径流,共计1,980.8吨盐。总共有1,588吨添加的盐流失到环境中,与从池塘流出的渗漏和废水(溢流和排水)损失的量几乎相等。从池塘流出的一条小河和池塘下方的浅层含水层中的盐度被池塘排出的咸水提高了。但是,当从池塘中排出水以促进秋天的虾类收获时,接收流Needham Creek中的氯化物浓度仅超过了阿拉巴马州环境管理部的“流中”标准230 mg / L。捕捞期间更多的水再利用或池塘污水的逐步释放将减少虾捕捞期间Needham Creek氯化物浓度的峰值。

著录项

  • 作者

    Boyd, Christopher Andrew.;

  • 作者单位

    Auburn University.;

  • 授予单位 Auburn University.;
  • 学科 Agriculture Fisheries and Aquaculture.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 138 p.
  • 总页数 138
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水产、渔业;
  • 关键词

  • 入库时间 2022-08-17 11:40:54

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