REN800A型中子、X、γ輻射周圍劑量當(dāng)量(率)儀內(nèi)置一個(gè)進(jìn)口He-3管和一個(gè)GM管作為探測(cè)器,能同時(shí)檢測(cè)中子和X、γ射線。該儀器使用方便;靈敏度高、抗γ性能好、能量響應(yīng)特性好。此外通過(guò)配套的RenRiRate輻射劑量管理軟件可將存儲(chǔ)的數(shù)據(jù)讀出后分析。該儀器適用于環(huán)保、化工、石油、醫(yī)療、進(jìn)出口商檢
REN系列智能化輻射探頭均可和REN300、REN300A、REN300B系列主機(jī)配套使用,也可以單獨(dú)配套R(shí)enRiArea輻射區(qū)域監(jiān)測(cè)軟件使用。且具有RS485/RS232的通訊能力。所有探頭均可單獨(dú)外接報(bào)警燈,在超閾值的情況下就地給出聲光報(bào)警。 1、測(cè)量射線類型:X、γ射線2、探測(cè)器:GM管探
單聯(lián)移動(dòng)式防護(hù)屏風(fēng) 1、規(guī)格尺寸: H×W:1800×900 (mm)2、商品描述: 上部鉛有機(jī)玻璃的高度為 H×W:240×240 (mm)3、鉛當(dāng)量: 鉛玻璃0.5mmPb, 下部分鉛當(dāng)量為0.5mmpb4、外飾材料:碳素鋼板噴
RenRiArea 輻射監(jiān)控信息系統(tǒng)
為了加強(qiáng)對(duì)放射源和射線裝置安全運(yùn)行的監(jiān)督管理,保障人體健康、保護(hù)環(huán)境,根據(jù)輻射防護(hù)三原則與國(guó)家相關(guān)標(biāo)準(zhǔn)的要求,考慮人為操作失誤、射線裝置和放射源意外故障等原因可能引發(fā)的放射性危害,有必要建設(shè)一套在線xγ射線監(jiān)測(cè)報(bào)警系統(tǒng)。 在線式xγ射線監(jiān)測(cè)報(bào)警系統(tǒng)通過(guò)計(jì)算機(jī)遠(yuǎn)程集中監(jiān)測(cè),完成對(duì)放射性
REN600A型α、β、γ射線表面污染檢測(cè)儀即可檢測(cè)α、β、γ射線,也能檢測(cè)到X射線,它采用高速嵌入式微處器作為數(shù)據(jù)處理單元,點(diǎn)陣式大屏幕LCD液晶顯示,讀數(shù)清晰、操作方便,具有400條超大容量數(shù)據(jù)存儲(chǔ)。儀器采用進(jìn)口的大面積MICA蓋革探測(cè)器,具有較高探測(cè)效率,可進(jìn)行α、β輻射表面污染檢測(cè)和X、γ輻
REN500H輻射防護(hù)用X、γ輻射劑量當(dāng)量(率)儀是監(jiān)測(cè)各種高劑量放射性工作場(chǎng)所的輻射劑量率專用儀器。儀器滿足《環(huán)境地表γ輻射劑量率測(cè)定規(guī)范》中高劑量部分的要求。該儀器除能測(cè)高能γ射線外,還能對(duì)低能X射線進(jìn)行準(zhǔn)確的測(cè)量,具有良好的能量響應(yīng)特性。此外通過(guò)配套的RenRiRate輻射劑量管理軟件可將存儲(chǔ)
2006/9/9 10:05:00
氡從何處來(lái)?
室內(nèi)氡的來(lái)源是多途徑的,但主要是:
1、巖石(土壤)是室內(nèi)氡積累的普遍而直接的來(lái)源,而且是主要的來(lái)源(當(dāng)居室中各類建材的放射性符合國(guó)家標(biāo)準(zhǔn)時(shí))。
2、構(gòu)造帶。構(gòu)造帶不是直接的氡來(lái)源,但它是地下氡匯集和遷移的通道,有時(shí)比巖石因素更重要。例如某地房屋建在裂隙不很發(fā)育的花崗巖上,在相同的其他建材條件下,室內(nèi)的氡往往要比房屋建在放射性較低,而裂隙發(fā)育又相當(dāng)厲害的砂巖上為低。
3、水源有時(shí)也是室內(nèi)氡的重要來(lái)源,直接來(lái)自地下的、鈾礦區(qū)或油氣田區(qū)的水往往有較高的氡濃度。
4、在房屋基底經(jīng)完好密封時(shí),墻地磚的放射性就成了室內(nèi)氡的主要來(lái)源。
5、煤氣通常稱液化氣或天然氣,往往有著相對(duì)高的氡濃度。
氡對(duì)人體的主要傷害是什么?
專家們把氡稱為“導(dǎo)致人類肺癌的第二大‘殺手’”,是除吸煙以外引起肺癌的第二大因素。世界衛(wèi)生組織把氡列為使人致癌的19種物質(zhì)之一。
如何降低居室中的氡?
1、不要購(gòu)買建筑在富鈾區(qū)、伽瑪高值區(qū)、斷裂構(gòu)造區(qū)的樓宇。要知道室內(nèi)的氡含量是否超標(biāo),最有效的方法就是進(jìn)行室內(nèi)氡濃底的檢測(cè),個(gè)人購(gòu)買住房時(shí),也應(yīng)考慮這個(gè)因素。
2、在裝飾裝修時(shí),要盡量按照國(guó)家標(biāo)準(zhǔn)選用放射性含量低的建筑和裝飾材料。
3、室內(nèi)裝飾中,要注意填平、密封地板和墻上的所有裂縫,特別是地下室、一層和平房的住戶更要如此。
4、做好室內(nèi)通風(fēng)換氣,這是最簡(jiǎn)便、最省錢的方法。門窗關(guān)閉的房屋內(nèi),氡的濃度往往比敞開(kāi)門窗時(shí)高數(shù)倍到數(shù)十倍。專家曾做過(guò)試驗(yàn),一間氡濃度在151貝可/m3 房間,開(kāi)窗1小時(shí)后,室內(nèi)氡濃度可降為48貝可/m3。如果配備優(yōu)質(zhì)的室內(nèi)空氣凈化器更好。
5、孩子與婦女比成年男性更易受氡侵害,應(yīng)盡量減少或禁止在室內(nèi)吸煙。
國(guó)外相關(guān)報(bào)道:
美國(guó)環(huán)保署:http://www.epa.gov/radon/healthrisks.html
Lung cancer kills thousands of Americans every year. The untimely deaths of Peter Jennings and Dana Reeve have raised public awareness about lung cancer, especially among people who have never smoked. Smoking, radon, and secondhand smoke are the leading causes of lung cancer. Although lung cancer can be treated, the survival rate is one of the lowest for those with cancer. From the time of diagnosis, between 11 and 15 percent of those afflicted will live beyond five years, depending upon demographic factors. In many cases lung cancer can be prevented; this is especially true for radon.
Smoking is the leading cause of lung cancer. Smoking causes an estimated 160,000* deaths in the U.S. every year (American Cancer Society, 2004). And the rate among women is rising. On January 11, 1964, Dr. Luther L. Terry, then U.S. Surgeon General, issued the first warning on the link between smoking and lung cancer. Lung cancer now surpasses breast cancer as the number one cause of death among women. A smoker who is also exposed to radon has a much higher risk of lung cancer.
Radon is the number one cause of lung cancer among non-smokers, according to EPA estimates. Overall, radon is the second leading cause of lung cancer. Radon is responsible for about 21,000 lung cancer deaths every year. About 2,900 of these deaths occur among people who have never smoked. On January 13, 2005, Dr. Richard H. Carmona, the U.S. Surgeon General, issued a national health advisory on radon. Visit www.cheec.uiowa.edu/misc/radon.html7 for more on a study by Dr. William Field on radon-related lung cancer in women.
Secondhand smoke is the third leading cause of lung cancer and responsible for an estimated 3,000 lung cancer deaths every year. About 1,000 of these are people that never smoked, and about 2,000 are former smokers. Smoking affects non-smokers by exposing them to secondhand smoke. Exposure to secondhand smoke can have serious consequences for children’s health, including asthma attacks, affecting the respiratory tract (bronchitis, pneumonia), and may cause ear infections.
Learning more about lung cancer. The following sources provide a wide range of good information about lung cancer, prevention, and treatment.
Why is radon the public health risk that it is?
EPA estimates that about 20,000 lung cancer deaths each year in the U.S. are radon-related. Exposure to radon is the second leading cause of lung cancer after smoking. Radon is an odorless, tasteless and invisible gas produced by the decay of naturally occurring uranium in soil and water. Radon is a form of ionizing radiation and a proven carcinogen. Lung cancer is the only known effect on human health from exposure to radon in air. Thus far, there is no evidence that children are at greater risk of lung cancer than are adults.
Radon in air is ubiquitous. Radon is found in outdoor air and in the indoor air of buildings of all kinds. EPA recommends homes be fixed if the radon level is 4 pCi/L (pico Curies per Liter) or more. Because there is no known safe level of exposure to radon, EPA also recommends that Americans consider fixing their home for radon levels between 2 pCi/L and 4 pCi/L. The average radon concentration in the indoor air of America’s homes is about 1.3 pCi/L. It is upon this level that EPA based its estimate of 20,000 radon-related lung cancers a year upon. It is for this simple reason that EPA recommends that Americans consider fixing their homes when the radon level is between 2 pCi/L and 4 pCi/L. The average concentration of radon in outdoor air is .4 pCi/L or 1/10th of EPA’s 4 pCi/L action level.
For smokers the risk of lung cancer is significant due to the synergistic effects of radon and smoking. For this population about 62 people in a 1,000 will die of lung-cancer, compared to 7.3 people in a 1,000 for never smokers. Put another way, a person who never smoked (never smoker) who is exposed to 1.3 pCi/L has a 2 in 1,000 chance of lung cancer; while a smoker has a 20 in 1,000 chance of dying from lung cancer. Figure A compares the risks between smokers and never smokers; smokers are at a much higher risk than never smokers, e.g., at 8 pCi/L the risk to smokers is six times the risk to never smokers.
The radon health risk is underscored by the fact that in 1988 Congress added Title III on Indoor Radon Abatement to the Toxic Substances Control Act. It codified and funded EPA’s then fledgling radon program. Also that year, the Office of the U.S. Surgeon General issued a warning about radon urging Americans to test their homes and to reduce the radon level when necessary (U.S. Surgeon General).
Unfortunately, many Americans presume that because the action level is 4 pCi/L, a radon level of less than 4 pCi/L is ‘safe’. This perception is altogether too common in the residential real estate market. In managing any risk, we should be concerned with the greatest risk. For most Americans, their greatest exposure to radon is in their homes; especially in rooms that are below grade (e.g., basements), rooms that are in contact with the ground and those rooms immediately above them.
Radon Level | If 1,000 people who smoked were exposed to this level over a lifetime*... | The risk of cancer from radon exposure compares to**... | WHAT TO DO: Stop smoking and... |
---|---|---|---|
20 pCi/L | About 260 people could get lung cancer | 250 times the risk of drowning | Fix your home |
10 pCi/L | About 150 people could get lung cancer | 200 times the risk of dying in a home fire | Fix your home |
8 pCi/L | About 120 people could get lung cancer | 30 times the risk of dying in a fall | Fix your home |
4 pCi/L | About 62 people could get lung cancer | 5 times the risk of dying in a car crash | Fix your home |
2 pCi/L | About 32 people could get lung cancer | 6 times the risk of dying from poison | Consider fixing between 2 and 4 pCi/L |
1.3 pCi/L | About 20 people could get lung cancer | (Average indoor radon level) | (Reducing radon levels below 2 pCi/L is difficult.) |
0.4 pCi/L | About 3 people could get lung cancer | (Average outdoor radon level) | |
Note: If you are a former smoker, your risk may be lower. pCi/L (pico Curies per Liter) * Lifetime risk of lung cancer deaths from EPA Assessment of Risks from Radon in Homes (EPA 402-R-03-003). ** Comparison data calculated using the Centers for Disease Control and Prevention''s 1999-2001 National Center for Injury Prevention and Control Reports. |
Radon Level | If 1,000 people who never smoked were exposed to this level over a lifetime*... | The risk of cancer from radon exposure compares to**... | WHAT TO DO: |
---|---|---|---|
20 pCi/L | About 36 people could get lung cancer | 35 times the risk of drowning | Fix your home |
10 pCi/L | About 18 people could get lung cancer | 20 times the risk of dying in a home fire | Fix your home |
8 pCi/L | About 15 people could get lung cancer | 4 times the risk of dying in a fall | Fix your home |
4 pCi/L | About 7 people could get lung cancer | The risk of dying in a car crash | Fix your home |
2 pCi/L | About 4 person could get lung cancer | The risk of dying from poison | Consider fixing between 2 and 4 pCi/L |
1.3 pCi/L | About 2 people could get lung cancer | (Average indoor radon level) | (Reducing radon levels below 2 pCi/L is difficult.) |
0.4 pCi/L | (Average outdoor radon level) | ||
Note: If you are a former smoker, your risk may be higher. pCi/L (pico Curies per Liter) * Lifetime risk of lung cancer deaths from EPA Assessment of Risks from Radon in Homes (EPA 402-R-03-003). ** Comparison data calculated using the Centers for Disease Control and Prevention''s 1999-2001 National Center for Injury Prevention and Control Reports. |
產(chǎn)品名稱: REN500A型環(huán)境監(jiān)測(cè)用X、γ輻射空氣比釋動(dòng)能率儀
產(chǎn)品描述: REN500A型環(huán)境監(jiān)測(cè)用X、γ輻射空氣比釋動(dòng)能率儀(又叫 智能化х、γ輻射儀)采用高靈敏的閃爍晶體作為探測(cè)器,反應(yīng)速度快,該儀器具有較寬的劑量率測(cè)量范圍。 該儀器除能測(cè)高能、低能γ射線外,還能對(duì)低能X射線進(jìn)行準(zhǔn)確的測(cè)量,具有良好的能量響應(yīng)特性。此外
產(chǎn)品名稱: REN500T長(zhǎng)桿x-γ劑量率儀
產(chǎn)品描述: REN500T是手持式儀表可用來(lái)監(jiān)測(cè)X、γ輻射劑量率。用于各種γ輻射場(chǎng)或環(huán)境γ輻射的監(jiān)測(cè)工作。儀器配有伸縮長(zhǎng)桿,可用于測(cè)量人員不易到達(dá)或有較強(qiáng)放射性存在的場(chǎng)所,為使用人員提供有效保護(hù)。此外通過(guò)配套的RenRiRate輻射劑量管理軟件可將存
產(chǎn)品名稱: REN710型行人通道式γ射線安檢門
產(chǎn)品描述: REN710型行人通道式γ射線安檢門是專為行人設(shè)計(jì)的、用于檢測(cè)放射性物質(zhì)的門式檢測(cè)系統(tǒng),它為行人非法攜帶放射性物質(zhì)及特殊核材料提供快速檢測(cè)手段,能夠?yàn)楹jP(guān)、機(jī)場(chǎng)、碼頭、火車站、醫(yī)院、邊境檢查、重要會(huì)議場(chǎng)所安全檢查提供幫助。是核
產(chǎn)品名稱: REN200B型X-γ個(gè)人劑量報(bào)警儀
產(chǎn)品描述: REN200B型X、γ輻射個(gè)人劑量當(dāng)量HP(10)監(jiān)測(cè)儀(簡(jiǎn)稱:個(gè)人劑量報(bào)警儀)內(nèi)置高量程蓋格計(jì)數(shù)管為探測(cè)器,主要用來(lái)監(jiān)測(cè)各種放射性工作場(chǎng)所的X、γ以及硬β射線的輻射,具有較寬的測(cè)量范圍。能顯示工作場(chǎng)所的劑量當(dāng)量率和累積劑量,更換電池時(shí),日期及累積數(shù)據(jù)能永久保存?蛇x配RenRiPersonal個(gè)人
產(chǎn)品名稱: REN300A+REN-3He-N型固定式中子、伽瑪報(bào)警儀
產(chǎn)品描述: 本報(bào)警儀由REN300A在線輻射安全報(bào)警儀和REN-3He-N中子探頭和REN-GM-L X、伽瑪探頭組成。該輻射報(bào)警裝置是采用特殊設(shè)計(jì)的前置放大電路,具有靈敏度高、操作方便、自動(dòng)顯示、數(shù)據(jù)存儲(chǔ)和超閾值報(bào)警等特點(diǎn),能實(shí)時(shí)給出x射線、γ射線、中子射線的輻射劑量率。考慮到現(xiàn)場(chǎng)操作、應(yīng)急快速響應(yīng)的需要,主
產(chǎn)品名稱: 中子及X、γ、β外照射個(gè)人劑量監(jiān)測(cè)服務(wù)
產(chǎn)品描述: 放射工作人員個(gè)人劑量委托監(jiān)測(cè)服務(wù) 依據(jù)《GB18871-2002電離輻射防護(hù)與輻射源安全基本標(biāo)準(zhǔn)》和《GBZ128-2002職業(yè)性外照射個(gè)人監(jiān)測(cè)規(guī)范》的要求,以熱釋光個(gè)人劑量計(jì)作為監(jiān)測(cè)手段,為放射工作人員提供個(gè)人劑量委托監(jiān)測(cè)服務(wù),并為企業(yè)或衛(wèi)生行政部
產(chǎn)品名稱: REN800型中子周圍劑量當(dāng)量(率)儀
產(chǎn)品描述: REN800型中子周圍劑量當(dāng)量(率)儀 采用高靈敏的進(jìn)口He-3管作為探測(cè)器,反應(yīng)速度快。該儀器使用方便;靈敏度高、抗γ性能好、能量響應(yīng)特性好,即可用作便攜式儀器又可用作固定式中子劑量監(jiān)測(cè)儀。此外通過(guò)配套的RenRiRate輻射劑量管理軟件可將存儲(chǔ)的
產(chǎn)品名稱: REN600型α、β表面污染測(cè)量?jī)x
產(chǎn)品描述: REN600Bα、β表面污染檢測(cè)儀采用閃爍探測(cè)法,用來(lái)檢測(cè)放射性工作場(chǎng)所和實(shí)驗(yàn)室的工作臺(tái)面、地板、墻面、手、衣服、鞋等表面受α或β(γ)放射性污染的程度,也可對(duì)密封型α、β同位素泄漏水平進(jìn)行檢測(cè)。儀器具有較高的探測(cè)效率;此外通過(guò)配套的 RenRiRate輻射劑量管理軟件可將存儲(chǔ)的數(shù)據(jù)讀
,個(gè)人劑量報(bào)警器,個(gè)人射線劑量?jī)x,輻射個(gè)人計(jì)量報(bào)警儀,個(gè)人核輻射儀,個(gè)人輻射監(jiān)測(cè)儀,個(gè)人輻射劑量報(bào)警儀
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