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        1. 產(chan)品(pin)展(zhan)示(shi)PRODUCTS

          您當(dang)前(qian)的(de)位(wei)置(zhi):首(shou)頁 > 產品(pin)展(zhan)示(shi) > 水(shui)生態(tai)與藻(zao)類 > 水(shui)質分(fen)析(xi)與監(jian)測(ce) > 水(shui)環(huan)境(jing)自動控制(zhi)系(xi)統(tong)
          水(shui)環(huan)境(jing)自動控制(zhi)系(xi)統(tong)
          更新時(shi)間:2025-07-02
          訪問次(ci)數(shu):2704
          水(shui)環(huan)境(jing)自動控制(zhi)系(xi)統(tong)能(neng)夠(gou)對(dui)水(shui)溫(wen)、溶解(jie)氧(yang)、pH/CO2、鹽度(du)等(deng)環(huan)境(jing)參數(shu)進(jin)行監(jian)測(ce)、記(ji)錄和(he)調節(jie)。僅(jin)需壹臺(tai)電腦,即可同時對(dui)多(duo)個魚缸、水(shui)族(zu)箱的(de)壹個(ge)或(huo)者(zhe)多個(ge)參數(shu)進(jin)行同(tong)步(bu)、自(zi)動調控(kong),使(shi)之(zhi)達(da)到預設(she)值或(huo)者(zhe)運行(xing)自定義(yi)程(cheng)序(xu)。
          品(pin)牌(pai)其他(ta)品(pin)牌(pai)產(chan)地(di)類別進(jin)口(kou)
          儀(yi)器種類在線(xian)型(xing)應(ying)用領域環(huan)保(bao),綜合(he)

          水(shui)環(huan)境(jing)自動控制(zhi)系(xi)統(tong)能(neng)夠(gou)對(dui)水(shui)溫(wen)、溶解(jie)氧(yang)、pH/CO2、鹽(yan)度(du)等(deng)環(huan)境(jing)參數(shu)進(jin)行監(jian)測(ce)、記(ji)錄和(he)調節(jie)。僅(jin)需壹臺(tai)電腦,即可同時對(dui)多(duo)個魚缸、水(shui)族(zu)箱的(de)壹個(ge)或(huo)者(zhe)多個(ge)參數(shu)進(jin)行同(tong)步(bu)、自(zi)動調控(kong),使(shi)之(zhi)達(da)到預設(she)值或(huo)者(zhe)運行(xing)自定義(yi)程(cheng)序(xu)。

          61.png


          工(gong)作(zuo)時,多臺測(ce)量(liang)設(she)備(bei)連接(jie)到壹部(bu)電腦,軟件(jian)通(tong)過(guo)藍牙(無(wu)線(xian))或(huo)者(zhe)以太(tai)網(有線(xian))控(kong)制水(shui)泵或者(zhe)電磁閥,響應(ying)測量(liang)數(shu)據進(jin)行實時調控(kong)。

          軟件(jian)支(zhi)持(chi)Win10/11系(xi)統(tong),簡單易用,對於(yu)四(si)個(ge)環(huan)境(jing)參數(shu)的(de)任(ren)意(yi)壹個(ge),它(ta)使數(shu)據記(ji)錄、傳感器校(xiao)準(zhun)、測量(liang)單位(wei)的(de)更改(gai)、自動程(cheng)序(xu)的(de)設(she)定等(deng)步驟變(bian)得(de)輕(qing)松(song)友好(hao)。使(shi)用者(zhe)可根(gen)據具體的(de)研(yan)究(jiu)應(ying)用自定義(yi)運(yun)行程(cheng)序(xu),包括分(fen)級(ji)調節(jie)或(huo)者(zhe)正弦(xian)模(mo)式,以(yi)模(mo)擬(ni)日(ri)變(bian)化(hua)等(deng)自然(ran)波動。而且程(cheng)序(xu)能(neng)夠(gou)被(bei)保(bao)存和(he)加(jia)載,以(yi)便進(jin)行快(kuai)速(su)、壹致性的(de)設(she)置。

           

          功能(neng)特(te)點

          1.新穎(ying)直觀(guan)的(de)軟件(jian)界(jie)面,適用於Win10和(he)Win11

          2.僅(jin)需壹臺(tai)電腦,通(tong)過(guo)多種傳輸(shu)方式(shi)(藍牙、以(yi)太網和(he)USB)和(he)多臺(tai)設(she)備(bei)相連

          3.內(nei)置(zhi)程(cheng)序(xu)編輯(ji)功能(neng)—可保(bao)存和(he)加(jia)載自(zi)定義(yi)程(cheng)序(xu)文件(jian)

          4.溫(wen)度(du)、鹽度(du)、壓強(qiang)實時補償

          5.具備(bei)長期(qi)監(jian)測(ce)/記(ji)錄(lu)/調節(jie)的(de)性能(neng)

          6.數(shu)據帶(dai)時間戳(chuo),以(yi).csvExcel)文件(jian)格(ge)式(shi)保(bao)存

           

          具體配置

          1.OmniCTRL軟件(jian)

          軟件(jian)既能(neng)夠(gou)和(he)監(jian)測(ce)水(shui)環(huan)境(jing)參數(shu)的(de)設(she)備(bei)無(wu)縫通(tong)信,也(ye)能(neng)夠(gou)通(tong)過(guo)控制水(shui)泵/電磁閥對水(shui)環(huan)境(jing)參數(shu)進(jin)行調節(jie)。配合(he)相應(ying)的(de)硬件(jian),可(ke)同(tong)步(bu)調控(kong)不(bu)同的(de)參數(shu),如水(shui)溫(wen)和(he)溶解(jie)氧(yang);既能(neng)單向(xiang)調控(kong)(參(can)數(shu)調高(gao)或(huo)調低(di)),又(you)能(neng)雙(shuang)向(xiang)調控(kong)(參(can)數(shu)調高(gao)和(he)調低(di))。軟件(jian)實時顯示實驗(yan)過(guo)程(cheng)中的(de)每個(ge)水(shui)環(huan)境(jing)參數(shu)。所(suo)有圖表(biao)都(dou)能(neng)夠(gou)按(an)照(zhao)喜好進(jin)行編(bian)輯(ji),導出(chu)至Excel或(huo)保(bao)存成圖像(xiang)。所有記錄數(shu)據也(ye)能(neng)夠(gou)被(bei)保(bao)存和(he)導出(chu)成(cheng).csv文件(jian),以(yi)便(bian)於(yu)在Excel中進(jin)壹步(bu)分(fen)析(xi)。

             

          62.png


          2.PowerX4工(gong)業(ye)級(ji)四(si)位(wei)插(cha)座及遠距(ju)離藍牙適(shi)配器

          PowerX4四(si)位(wei)插(cha)座能(neng)夠(gou)實現基於軟件(jian)驅(qu)動的(de)控制(zhi),通(tong)過(guo)以太網或藍牙的(de)方式(shi)對水(shui)泵或電磁閥的(de)開(kai)閉進(jin)行控(kong)制(zhi)。每個(ge)延(yan)時(shi)控制的(de)電參數(shu)(例(li)如輸(shu)入(ru)電壓和(he)功耗等(deng))能(neng)夠(gou)被(bei)軟件(jian)監(jian)測(ce)和(he)記錄(lu),以(yi)便於對所(suo)連接(jie)的(de)設(she)備(bei)進(jin)行診(zhen)斷(duan)。遠距(ju)離藍牙適(shi)配器包括1類藍牙適(shi)配器和(he)外接(jie)天線(xian),能(neng)夠(gou)將常(chang)規PC2類藍牙)的(de)無(wu)線(xian)距(ju)離翻倍。

           

          63.png


          3.水(shui)環(huan)境(jing)監(jian)測(ce)和(he)控制(zhi)單元

          可(ke)分(fen)為(wei)溫(wen)度(du)、溶解(jie)氧(yang)、鹽度(du)、pH/CO2、溶(rong)解(jie)氧(yang)&溫(wen)度(du)、鹽度(du)&溫(wen)度(du)、pH/CO2&溫(wen)度(du)共計7種配置。每種配置包括相(xiang)應(ying)的(de)監(jian)測(ce)單元(溶解氧(yang)測量(liang)儀、pH測(ce)量(liang)儀、鹽(yan)度(du)測量(liang)儀等(deng))和(he)控制(zhi)單元(水(shui)泵、電磁閥、管路等(deng))。如下(xia)圖(tu)為(wei)pH/CO2自(zi)動控制(zhi)系(xi)統(tong)組(zu)成如下(xia)圖(tu)(分別為(wei)單向(xiang)調控(kong)和(he)雙(shuang)向(xiang)調控(kong)):

           

          64.png


           

          應(ying)用案例

           


           

          參(can)考(kao)文獻(xian)

          1.Cline, A.J., Hamilton, S.L., and Logan, C.A. (2020). Effects of multiple climate change stressors on gene expression in blue rockfish (Sebastes mystinus). Comparative Biochemistry and Physiology Part A: Molecular & Integrative Physiology 239, 110580.

          2.Duckworth, C.G., Picariello, C.R., Thomason, R.K., Patel, K.S., and Bielmyer-Fraser, G.K. (2017). Responses of the sea anemone, Exaiptasia pallida, to ocean acidification conditions and zinc or nickel exposure. Aquatic Toxicology 182, 120–128.

          3.Hamilton, S.L., Kashef, N.S., Stafford, D.M., Mattiasen, E.G., Kapphahn, L.A., Logan, C.A., Bjorkstedt, E.P., and Sogard, S.M. (2019). Ocean acidification and hypoxia can have opposite effects on rockfish otolith growth. Journal of Experimental Marine Biology and Ecology 521, 151245.

          4.Huang, X., Jiang, X., Sun, M., Dupont, S., Huang, W., Hu, M., Li, Q., and Wang, Y. (2018). Effects of copper on hemocyte parameters in the estuarine oyster Crassostrea rivularis under low pH conditions. Aquatic Toxicology 203, 61–68.

          5.Khan, F.U., Hu, M., Kong, H., Shang, Y., Wang, T., Wang, X., Xu, R., Lu, W., and Wang, Y. (2020). Ocean acidification, hypoxia and warming impair digestive parameters of marine mussels. Chemosphere 256, 127096.

          6.Kong, H., Wu, F., Jiang, X., Wang, T., Hu, M., Chen, J., Huang, W., Bao, Y., and Wang, Y. (2019). Nano-TiO2 impairs digestive enzyme activities of marine mussels under ocean acidification. Chemosphere 237, 124561.

          7.Kraskura, K., and Nelson, J.A. (2020). Hypoxia tolerance is unrelated to swimming metabolism of wild, juvenile striped bass (Morone saxatilis). Journal of Experimental Biology 223, jeb217125.

          8.Mackey, T.E., Hasler, C.T., Durhack, T., Jeffrey, J.D., Macnaughton, C.J., Ta, K., Enders, E.C., and Jeffries, K.M. (2021). Molecular and physiological responses predict acclimation limits in juvenile brook trout (Salvelinus fontinalis). Journal of Experimental Biology 224, jeb241885.

          9.Murie, K.A., and Bourdeau, P.E. (2021). Energetic context determines the effects of multiple upwelling-associated stressors on sea urchin performance. Sci Rep 11, 1–12.

          10.Shen, Y., Zhang, Y., Xiao, Q., Gan, Y., Wang, Y., Pang, G., Huang, Z., Yu, F., Luo, X., Ke, C., et al. (2021). Distinct metabolic shifts occur during the transition between normoxia and hypoxia in the hybrid and its maternal abalone. Science of The Total Environment 794, 148698.

          11.Shrivastava, J., Ndugwa, M., Caneos, W., and De Boeck, G. (2019). Physiological trade-offs, acid-base balance and ion-osmoregulatory plasticity in European sea bass (Dicentrarchus labrax) juveniles under complex scenarios of salinity variation, ocean acidification and high ammonia challenge. Aquatic Toxicology 212, 54–69.

          12.Siddiqui, S., and Bielmyer-Fraser, G.K. (2015). Responses of the sea anemone, Exaiptasia pallida, to ocean acidification conditions and copper exposure. Aquatic Toxicology 167, 228–239.

          13.Sui, Y., Zheng, L., Chen, Y., Xue, Z., Cao, Y., Mohsen, M., Nguyen, H., Zhang, S., Lv, L., and Wang, C. (2022). Combined effects of short term exposure to seawater acidification and microplastics on the early development of the oyster Crassostrea rivularis. Aquaculture 549, 737746.

          14.Wingert, C.J., and Cochlan, W.P. (2021). Effects of ocean acidification on the growth, photosynthetic performance, and domoic acid production of the diatom Pseudo-nitzschia australis from the California Current System. Harmful Algae 107, 102030.

          15.Zrini, Z.A., Sandrelli, R.M., and Gamperl, A.K. (2021). Does hydrostatic pressure influence lumpfish (Cyclopterus lumpus) heart rate and its response to environmental challenges? Conservation Physiology 9, coab058.


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