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首页> 外文期刊>Journal of Pollution >Influence of Temperatures Rise over 48-years on Sulaimaniyah Agroecosystem structure and Nematodes Distribution, Creation of a 48-Year Database Map
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Influence of Temperatures Rise over 48-years on Sulaimaniyah Agroecosystem structure and Nematodes Distribution, Creation of a 48-Year Database Map

机译:48年来的温度上升对Sulaimaniyah Agroecosystem结构和线虫分布的影响,创建了48年的数据库地图

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From a studied to collect data’s for temperature degrees during 1973 until 2018 there is clear evidence that show climate change is happening in our region. Data’s show that the average annual temperature rat has raised by almost 1°C, the average of warmest year for this period was recorded in 2010and it was (21.55 OC). In 2016 average temperature degree was high (20.3 OC) as the global worm rising the lowest temperature in this period was (16.2 OC) recorded in 1992. Since 1973 until 1985 average worm was (18.39 OC) and since 1986 until 1998 worm average raised to (18.79 OC) then since 1999 until 2010 worm average raised again to (19.93 OC) but in period 2011 to 2018 worm average raised to (20.09 OC). The difference between warmest monthly average temperatures and the coldest month of the year or annual range in 1988 was the highest (31.9 OC) while in year 1973 was lowest (19.6 OC) but the rate for the period 1973 to 2018 was (27.9 OC). The absolute annual temperature range or differences between the maximum absolute temperature and the minimum absolute temperature during a year was wide like in 1973 was highest (53 OC) and in 1987 was the lowest (35 OC). Diurnal temperature variation or the daily difference between the maximum and minimum temperatures was limited in winter months almost (6 - 9 OC) but in summer months the ranges is bigger almost (15 - 18 OC). Over these years spatially from (2008 -2019) soils that affected with plant pathogenic nematodes increased dramatically by %50 in the study area 10km2 because of rising temperatures degrees and need to use greenhouses instead of open field cultivation these greenhouses numbers influencing on agroecosystem structure for a long a terms. From the investigation farmers to control plant pathogenic nematodes in the effected soils greenhouses use kinds of chemical pesticides that cause damages to the soils and the yields as well as changing agroecosystem stricture.?????? Agroecosystem structure for the study area has been changed relatively because of increasing the numbers of greenhouses that got almost 7000 greenhouse causing imbalance in acuaecosystem by using a huge amount of water (125m3 / greenhouse).
机译:从研究到2017年期间,在1973年之前收集数据的温度度,有明确的证据表明我们的地区正在发生气候变化。数据表明,平均年度温度大鼠升高了近1°C,这一时期的最温暖年份的平均值被记录在2010年(21.55℃)。 2016年,平均气度高(20.3℃),因为全球蠕虫在这一时期的最低温度上升的是(16.2 oc)于1992年录得的。自1973年以来,直到1985年的平均蠕虫是(18.39 oc),自1986年以来,直到1998年左右提出到(18.79 oc)然后自1999年以来,2010年蠕虫平均水平再次提出(19.93℃),但2011年至2018年至2018年蠕虫平均值筹集为(20.09 oC)。最热的月平均气温和今年年度最低的月份或年度范围的差异是1973年的最高(31.9℃),而1973年是最低的(19.6℃),但是1973年至2018年的比率是(27.9 oC) 。绝对的年度温度范围或最大绝对温度和最小绝对温度之间的差异在1973年的宽度最高(53℃),1987年是最低(35℃)。昼夜温度变化或最大和最低温度之间的日常差异在冬季几乎有限(6 - 9 oc),但夏季,范围差不多(15-18 oc)。在这些年来从(2008 -2019)的土壤中,由于温度下升,在研究面积10km2中受到植物致病线虫影响的较大增加,并且需要使用温室而不是开放的现场培养这些温室数量影响农业体系结构一个漫长的条款。从调查农民控制植物致病内膜的植物致病线虫,绿色窝场使用各种化学农药,这导致土壤和产量损害以及变化的农业体系狭窄。??????研究区域的农业系统结构已经发生变化相对,因为增加了近7000个温室的温室的数量,通过使用大量的水(125m3 /温室)导致AcuaeCosystem中的不平衡。

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