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The potential effect of greenwater technology on water quality in the pond culture of Penaeus monodon Fabricius

机译:绿水技术对斑节对虾池塘养殖水质的潜在影响

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Whitespot syndrome virus (WSSV) has caused severe production drops in the shrimp industry. Numerous scientific manuscripts deal with WSSV epidemiology, but reports on minimizing disease outbreaks through ecological means are rare. Industry stakeholders resorted to various innovative techniques to recover from heavy economic losses. Some shrimp farmers in the Philippines claimed that greenwater' (GW) technology could prevent disease outbreaks due to WSSV. The efficiency of the GW technology was evaluated by comparing three ponds using the GW culture technique with three ponds not using it. WSSV was detected only in one of the GW ponds and not in the non-GW ponds. No WSSV disease outbreak occurred, and no conclusion could be reached. In GW ponds, available soil sulphur content was lower; and in water, the observed counts of luminous bacteria were lower and counts of Chlorophyceae were higher. Chlorophyceae, i.e. algae, enhanced nutrient uptake in effluent streams resulting in improved water quality in Penaeus monodon Fabricius culture ponds. This suggests that the use of the GW technique to culture P. monodon improved water quality.
机译:白斑综合症病毒(WSSV)已导致虾类行业严重减产。关于WSSV流行病学的科学论文很多,但是很少有通过生态学手段将疾病暴发降至最低的报道。行业利益相关者诉诸各种创新技术以从沉重的经济损失中恢复过来。菲律宾的一些虾农声称,绿水(GW)技术可以预防由于WSSV引起的疾病暴发。通过比较使用GW养殖技术的三个池塘与不使用GW养殖技术的三个池塘来评估GW技术的效率。仅在其中一个GW池中检测到WSSV,而在非GW池中未检测到WSSV。没有发生WSSV疾病暴发,也无法得出结论。在GW池塘中,有效土壤硫含量较低;在水中,观察到的发光细菌数量较低,而绿藻科的数量较高。绿藻科,即藻类,增加了污水流中养分的吸收,从而改善了斑节对虾Fabricius养殖池的水质。这表明使用GW技术培养斑节对虾可以改善水质。

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