2018年6月17日 星期日

协鑫新能源申报的光伏上网电价已低于火电价格-香港王建中

2018年4月22日,青海德令哈光伏发电应用领跑者基地推荐投资企业评优结果公布。利用黑硅+PERC多晶技术,协鑫新能源申报的光伏上网电价仅为每千瓦时0.32元,已低于火电价格。当前,协鑫正在自主研发复合纳米等高效电池技术,未来通过技术叠加,光电转换效率将进一步提升,并降低光伏发电成本。

轉載自:    https://www.china5e.com/news/news-1031795-1.html
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0.23元/千瓦时:印度太阳能招标价格再创新低

2018-07-05  电缆网  轉載自:  https://www.china5e.com/news/news-1033419-1.html
据印度经济时报最新报道,印度的太阳能公司(SECI)2-GW太阳能招标中,印度的太阳能电价降至每千瓦时2.44卢比(约合人民币0.235元),刷新历史最低水平。
上一次创造的太阳能电价纪录在2017年5月在拉贾斯坦邦的Bhadla太阳能公园的500兆瓦招标中,也是由SECI进行的。
自那以后,该国的太阳能电价一直在上涨。 据印度经济时报称,电价下降可能是由于中国的政策变化以及模块价格的预期下降,因为中国制造商寻求出口以应对国内需求下降。
据悉,这次2 GW国际输电系统(ISTS)相关项目招标的最低出价来自Acme Solar,后者中标600兆瓦的太阳能容量。其他中标价格从每千瓦时2.52卢比到2.54卢比不等。Shapoorji Pallonji,Hero Solar,Mahindra Susten各赢得250兆瓦,Azure Power(纽约证券交易所代码:AZRE)获得600兆瓦,而Mahoba Solar获得50兆瓦。
本文采用实时汇率 1印度卢比=0.09646人民币

2018年6月16日 星期六

英國日本的海灘撿拾無煙煤,海帶-香港王建中

 墨西哥灣流的演變圖 Source: https://zh.wikipedia.org/wiki/%E5%A2%A8%E8%A5%BF%E5%93%A5%E7%81%A3%E6%9A%96%E6%B5%81

beachcomber 海灘撿漂浮物的拾荒者(或尋寶人). 英國(特別是左邊海岸)受墨西哥灣暖流影響 https://zh.wikipedia.org/wiki/墨西哥灣暖流  , 氣候温和潮溼, 海流更不時將遠方的枯枝朽木, 及一切大海的無償饋贈,包括漁產及海菜, 遺在海灘, 在無人撿拾的情况下, 下次大潮又會將一切捲走, 漂流到更遠的天邊.  


接近北極的斯瓦爾巴群島, 與及英倫三島(愛爾蘭不產煤), 均蘊藏豐富煤礦, 暴露在大氣中的煤層(可以是高地), 不時有煤塊滑落海邊, 潮水捲走遠方.  拾荒者出時間和力量, 收獲往往出人意表.

Source: https://en.wikipedia.org/wiki/Coal_mining_in_the_United_Kingdom

在海灘上, 古代英國人捨棄了海菜(當垃圾燒了取暖), 拾海煤回家煮粥而導致工業革命, 故其民族歷史稱煤為海煤 - sea coal.  近海煤礦礦穴滲水而發明了蒸汽抽水機, 蒸汽發動機等等 (参考https://zh.wikipedia.org/wiki/蒸汽机).  荷蘭則利用風車抽走低地雨水.

英國, 中東海灘有人偶然拾得龍涎香而發了點小財.  詳見以下維基百科資料: Ambergris is primarily found in the Atlantic Ocean and on the coasts of South Africa, Brazil, Madagascar, the East Indies, The Maldives, China, Japan, India, Australia, New Zealand, and the Molucca Islands. Most commercially collected ambergris comes from the Bahamas in the Caribbean, particularly New Providence. Fossilised ambergris from 1.75 million years ago has also been found. A 1.1-kilogram (2.4 lb) lump of ambergris, found on a beach at Anglesey, Wales, was sold to a French buyer for £11,000 at an auction in Macclesfield, England, on 25 September 2015. A 13-kilogram (29 lb) piece of ambergris was found by two Omanis, washed up on a beach on the Fooshi shores of Sadah province in southern Oman, in November 2015.


日本列島近海海流   Source: https://zh.wikipedia.org/wiki/%E9%BB%91%E6%BD%AE
1. 黑潮 2.黑潮續流 3.黑潮再循環流 4.對馬暖流 5.津輕暖流 6.宗谷暖流 7.親潮 8.リマン(Liman)寒流


日本人拾海帶海菜(日本不產煤,進口的煤比中國還多https://zh.wikipedia.org/wiki/煤  ), 除了用作湯底外, 110年前, 還利用海帶提煉出了味之素 ( 池田菊苗(1864年10月8日-1936年5月3日),日本化學家。
1864年出生於京都,曾留學歐洲,東京帝國大學教授。1908年,他發現海帶的味道源自穀氨酸鈉,谷氨酸鹽能產生鮮味的感覺。其後他取得味精的專利,成立「味之素」。1913年任日本化學學會會長。來源出處為 Wikipedia 池田菊苗條目). 

古希臘哲學提出了四種味覺(鹹、酸、甜、苦). 第五種 - 鮮味的味覺科學最終吃,懂吃的東方日本提出, 打破了中華傳統烹調智慧 "知其然, 不知其所以然" 的迷津. 日式料理以水為基底(菜籽油未普及, 油貴, 鐵鍋不耐高温), 中華烹調則以油為基底(宮崎正勝<<你不可不知的世界飲食史>>, 遠足文化事業股份, 2013, p.166).   延伸閱讀 儘管食材稀缺,但日本還是把和食做成了世界非物質文化遺產  https://kknews.cc/society/4yq8g.html

儘管食材稀缺,但日本還是把和食做成了世界非物質文化遺產



原文網址:https://kknews.cc/society/4yq8g.html

儘管食材稀缺,但日本還是把和食做成了世界非物質文化遺產



原文網址:https://kknews.cc/society/4yq8g.html

鹹、酸、甜、苦和鮮味五種味覺.  日本湯底喜用乾海帶取其鮮味, 但沸騰前必需撈出全部海帶, 否則日本人認為海帶騰後其氣味轉差.  泡過湯的海帶可以再泡, 或加入調味料食用之. 中國人和韓國人則將海帶煮軟而服食之. 福島和烏黑蘭人重視海帶的放射性食療功用. 延伸閱讀  https://read01.com/zh-hk/M0LPOO.html   白血病的剋星飲食「海帶蘿蔔湯」 https://kknews.cc/zh-hk/health/rran9a4.html


甘露醇是乾海帶上的白粉末:

物化性质:干海带表面有一层粉术状白霜,在阳光下呈针状结晶,略带甜味,这是海带析出的一种具有医疗价值的物质一一甘露醇,在海带中的含量高达17%。甘露醇是医院的常备药物,具有良好的利尿作用,是一种渗透性利尿剂,用于治疗肾功能衰竭、药物中毒、浮肿和腹水等。经常使用的是20%的甘露醇注射液。其作用原理是甘露醇不易从毛细血管渗入组织,从而增加了血液中的渗透压,组织中的水分迅速进入到血液中,经肾脏排出体外故能降低颅内压、减轻脑水肿等。資料來源: 百度百科海带多糖條目. 

A loanword from Japanese meaning "good flavor" or "good taste", umami (旨味) is considered fundamental to many Eastern cuisines; and other cuisines have long operated under principles that sought to combine foods to produce savory flavors, such as in the emphasis on veal stock by Auguste Escoffier, the pre-eminent chef of 19th century French cuisine, and in the Romans' deliberate use of fermented fish sauce. However, it was only recently recognized in modern science as a basic taste; well after the other basic tastes have been recognized by scientists, in part due to their correspondence with the four tastes of ancient Greek philosophy. Umami, or “scrumptiousness”, was first studied with the scientific method and identified by Kikunae Ikeda, who began to analyze kombu in 1907, attempting to isolate its dashi taste. He isolated a substance he called ajinomoto, Japanese for “at the origin of flavor”. Later identified as the chemical monosodium glutamate (MSG), and increasingly used independently as a food additive, it is a sodium salt that produces a strong savory taste, especially combined with foods rich in nucleotides such as meats, fish, nuts, and mushrooms. 來源為 Wikipedia taste條目

延伸閱讀: 

<<鮮味的祕密 : 大腦與舌尖聯合探索神祕第五味!收錄39道天然鮮味食譜 = Umami : unlocking the secrets of the fifth taste >>歐雷.G.莫西森(Ole G. Mouritsen), 克拉夫斯.史帝貝克(Klavs Styrbæk)著 ; 羅亞琪譯, 臺北市, 麥浩斯出版, 2015


維基百科:   https://zh.wikipedia.org/wiki/鮮味




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以下轉載自:




Sea Coal 愛丁堡海灘揀無煙煤的童年


In our household I was always the one to be first out of bed in the mornings. In my teen years this was usually about four o'clock or so.  Being first up it became my job to clean out the fireplace from the remnants of the previous evening's fire then set and light a new fire to heat the house in the morning.  For fuel we used almost entirely sea coal. Not many people know what sea coal is. It's coal that washes up on the beaches. There must be exposed beds of coal on the sea floor out in the Firth of Forth 福斯河的入海口(北海),愛丁堡為沿岸城市. After storms at sea, coal washes in and is to be found  along the high tide line. There was never a lot of it at any one time or place on the beach but enough to supply the needs of those in the village who appreciated sea coal. It was common practice to always carry a bag with you when you walked the beaches to carry home your black gold 拾黑金.



Sea coal is like no other type of coal. In appearance it's sparkling clean and shining jet black.   Fist size chunks are like large black diamonds. In the fireplace it can be ignited by heating with the very minimum amount of kindling. Mined coal, which we also bought for heating the house, came from the Wellesley coal mine at Buckhaven (上圖) and was delivered to us by a horse drawn coal lorry. The coal seams of the Wellesley coal mine extended out under the Firth of Forth and although it was very good coal it did not have the properties of sea coal. Mined coal must first be heated to a relatively high temperature before it will give off gas that will ignite.  When mined coal is completely spent there will be a fair amount of residual ash. The process of combustion of mined coal also generates a considerable amount of smoke and soot. Hence the nickname of Auld Reekie (the smoke covered Old Town, 舊城暱稱) bestowed on the town of Edinburgh before the days of North Sea oil. Sea coal has quite different properties. As sea coal is first heated it enters a semi liquid stage and bubbles as it's gases ignite. It burns with an extremely hot flame and produces a clean flame that gives off a far greater amount of heat than mined coal. Burning so cleanly there is very little residual ash or chimney soot or smoke 無煙煤. When the fire has finally burned itself out, what's left in the fireplace is only a very small amount of powder.


In the long dark winter nights when the sea was loud, Earlsferry boys of an age group spent some of their  evenings in caves such as the one that Jimmy Linton and I made that was just above the high tide mark at the east end of the Dome Park.  The back half of the cave that we made was the natural rock face of the rising shoreline. On the seaward side, to complete the surrounding walls of the cave, we built up a rock wall from nearby boulders. To roof our cave we covered over the top  with bits of driftwood planking. To make our creation wind and water proof we chinked the spaces between the sidewall boulders with seaweeds. The back of the rising rock wall became the place where we formed our sea coal fireplace. To cover the narrow doorway we used a piece of canvas that was supported by iron rods which at one time had been part of the iron fence  that separated the Lilburn field from the West Sea Road. At times, along with sea coal, we burned driftwood and sun dried aromatic sea weeds that we gleaned from the high tide line. Yes, there were times that we did smell like smoked kippers. With the flickering flames we needed no other light. Without a doubt we must have looked like sea gypsy creatures that crawled up out of the sea. Now, thinking back to the 1930's when Jems and I were about ten years old, in spending our evenings like this we must have instinctively been going back to the ways of our ancient primeval ancestors.

At times, along with sea coal, we burned driftwood and sun dried aromatic sea weeds 焚燒海帶紫菜取暖that we gleaned 苦心搜集 from the high tide line.


2018年6月11日 星期一

孙亚飞: 棕榈空果串炼酒精-香港王建中


cctv2 《创业英雄汇》 20180525

央视网2018年05月25日  http://tv.cctv.com/2018/05/25/VIDEI9Wc94qdQIMOSA99vLOh180525.shtml

生物质新能源——孙亚飞:   棕榈树下焕新生,空果串堆炼酒精


Source:  http://www.sohu.com/a/232597659_114960


                                               Source:  http://www.sohu.com/a/232597659_114960



                              Source:  http://tv.cctv.com/2018/05/25/VIDEI9Wc94qdQIMOSA99vLOh180525.shtml


                         Source:  http://tv.cctv.com/2018/05/25/VIDEI9Wc94qdQIMOSA99vLOh180525.shtml
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                          Source:  http://tv.cctv.com/2018/05/25/VIDEI9Wc94qdQIMOSA99vLOh180525.shtml

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轉載自:   https://www.zhihu.com/lives/737699260451028992

我是孙亚飞,就是那个最喜欢在知乎,果壳上叨叨塑料话题的分子美食家。 我目前是清华大学化学系的在读博士,主要课题方向是纳米高分子生物材料的实际应用,已经完成工业化的技术有液体橡胶和无苯增塑剂。研习橡胶塑料十年有余,吃喝淀粉蛋白质更是已有三十多载。如今,各类新材料填充了我们的生活,它们让生活更便利了,但也让我们越来越闹心。要想活得明白,了解一些基本的化学知识总还是好的。 


本次 Live 主要包括以下内容 *塑料究竟是个什么样的材料,又是怎么生产加工的? *塑料的成分有哪些,为什么会有「塑料味儿」? *塑化剂、双酚 A 、重金属、全氟辛酸……塑料为什么让我们这么心塞? *我们生活中最常用到哪些塑料,它们的安全性如何? *特殊人群如妊娠期妇女、儿童与老人应该如何选择塑料制品? *塑料正在让我们的生活变得越来越廉价,这行业还有希望吗? 当然如果细分,关于塑料的小问题真是不胜枚举,比如很多人关心的,吃早餐、外卖、方便面这些情境几乎都会遭遇到塑料,再比如很多人担心不粘锅的一些问题,以及很多人不知道的易拉罐塑料等等。 

延伸閱讀:  锈蚀的过程远比我们想象的复杂  https://www.jianshu.com/p/9efaee717714

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2017-03-22  轉載自:  http://www.sinchew.com.my/node/1626221

常青与厦门庚能签约合作.原料技术互补缔双赢


常青集团昨日与中国厦门庚能新材料技术有限公司签署合作意向书,以实现棕榈相关产品及其他原料的附加值提升为目标。
危岩(右二)赠送纪念品给张晓卿。(图:星洲日报)
(砂拉越.诗巫22日讯)常青集团昨日与中国厦门庚能新材料技术有限公司签署合作意向书,以实现棕榈相关产品及其他原料的附加值提升为目标。
广告
中国清华大学化学系博士暨厦门庚能新材料技术有限公司总经理孙亚飞在交流会上指出,有关合作模式的合作基础建立于原料与技术的互补,以共赢的宗旨为前提下,也接受政策利好,即中国的“一带一路”政策。在规划方面,最初以点带面,先完成一个成熟项目,再开展新的研究。
更深度合作模式待商讨
他说,建议中的具体模式是(一)双方共同开发,共同分享由技术升级带来的利润;(二)在中国国内建立一个Pilot Plant,充份利用区域科技优势;(三)技术包完成后,在马来西亚国内批量生产。
同时,日后可商讨更深度的合作模式。
孙亚飞表示,该公司创始人兼董事长危岩教授于2015年创办厦门庚能新材料技术有限公司,主要产业化项目是纳米固定化酶及其应用在生物质和燃料产业。
当中,在危岩课题组开展中的项目,包括(一)能源技术,即生物质转化为葡萄糖及燃料乙醇、(二)油水分离(纳米膜材料)、(三)海水淡化、(四)医用材料、(五)功能材料、(六)3D打印、(七)细胞成像、(八)静电纺丝、(九)生物粘合剂及(十)抗菌材料。

中国酒精市场供不应求
孙亚飞举例,该公司采用纳米膜技术实现油水分离,可以很快在棕油生产工艺中得到应用,处理含油污泥。特殊的界面结构可以使破乳与分离同步进行,耗能低、速度快,分离效率高多达99.9%,可以反复使用。针对油棕空果串(EFB)处置方案上,以酒精生产的成本估算,不采用固定酶技术,用传统技术的话,成本每公吨约3000令吉;若采用固定酶技术,成本可降至每公吨约2200令吉。至于酒精市场价位在每公吨约3900令吉,其毛利较为可观。
孙亚飞称,在研究报告显示,空果串纤维素酶至酒精转化率介于16至20%,折合土地每公顷增值,每年分别是1400令吉(用传统技术)和2600令吉(采用固定酶技术),这是非常可观增长,也可以得到实现。目前中国酒精市场供不应求,至少还有500万吨的缺口,这是个非常大的工业产品,且需求量高。
危岩2015年创办厦门庚能

中国清华大学化学系“千人计划”讲席教授兼清华前沿高分子研究中心主任危岩的理想是,将学术界研究成果做到产业化。
开拓生物质新能源市场
危岩于2015年创办厦门庚能新材料技术有限公司,计划将毕生研究成果逐步实现。
当中,主要产业化项目是纳米固定化酶及其应用。有关项目也获得厦门市重点支持,得到“双百A类计划”(引进高层次人才项目),以及总面积1600平方米免租金厂房,并已建立高标准化学实验室,可操作无菌实验如生物和医学实验。
自公司创立至今,研发团队来自中国各知名高校,公司产业项目以能源为主,由于技术方面的突出优势,已获得多家知名合作企业青睐,譬如中粮集团、中国河南天冠集团、中国节能集团和中国广核集团等,签署战略合作协议,共同开拓生物质新能源的市场。
纳米固定化纤维素是公司主要产品,也是生物质新能源产业中非常重要的一个环节。
传统的生物质能源主要是指沼气等产品,在广大农村地区得到较好发展,但与工业化尚有一定距离。自国家“十一五规划”起,以生物质乙醇为主的新能源得到长足发展,主要原材料为玉米,由于涉及到粮食安全的问题,目前也遭遇瓶颈。
因此,在最新的“十三五规划”中,已经强调“重点发展新一代非粮燃料乙醇”,即采用秸秆、木屑、蔗渣、蒿草、棕榈果渣等各类农业废弃物及城市生活垃圾作为原料生产乙醇。
由于纤维素酶制剂的价格昂贵,该技术成本目前居高不下,而采用该公司的纳米固定化技术,可以将技术成本显著降低,推动技术发展。
交流会进行中。
获世界30大学聘为教授
危岩学术成就非凡
危岩于1957年9月1日出生于江西临川。1977年初进入北京大学化学系,两年半后于1979年大学毕业考进研究生院,1981年获得北大理学硕士学位。同年赴美国纽约市立大学学习,1986年获得纽约市立大学博士学位,以及完成在麻省理工学院博士后,1987年在费城爵硕大学(Drexel)化学系任助理教授。1991年升为杜邦副教授并被授予终身教职。1995年被提升为正教授。2004年初荣升为瓦格纳讲座教授。
他也是首批国家杰出青年B基金奖获得者、中国科学院杰出海外学者基金奖获得者以及获得“教育部长江讲座教授”称号。2009年,危岩入选“千人计划”
第2批国家特聘专家,回到国内,并在清华大学化学系任教,2011年成为科技部973仿生能源项目首席科学家。
危岩的研究兴趣极广,包括导电高分子、聚合理论、有机-无机杂化材料、界孔分子筛、纳米材料、酶固化、生物催化与传感器、蛋白质折叠、干细胞与组织工程、脑神经科学等。
目前为止,发表论文805篇(SCI引用2万2000余次,H指数73),编专着两本,获或申请专利48项。他已被世界近30所大学聘为客座、讲座或荣誉教授。

2018年6月10日 星期日

江阴润阳储能技术有限公司Solastor-香港王建中

轉載自:  http://30436.china-nengyuan.com

江阴润阳储能技术有限公司由江阴长江投资集团投资设立,是一个专业生产太阳能光热发电设备和储能设备的制造企业,也是进行太阳能塔式发电系统设计咨询、方案制定、工程总承包的公司。
  公司地处江阴临港经济开发区,目前已建成个塔式光热发电的示范项目,同时成功组建了以生产石墨储能为主的光热储能设备制造企业。
  公司生产的储能设备引进了澳大利亚Solastor公司的专利技术。该技术目前是国际领先、国内填补空白的固态内置式储能技术,公司得到外方授权,是国际上该技术设备的唯一供应商,在国内则是该技术唯一的许可证使用商。
  今后公司将致力于发展成为光热储能行业的领跑者。
  集热器是由集热孔将定日镜反射的光能集中吸收,并由储热介质石墨进行储能,通过换热管进行热交换,将水变成工作蒸汽。

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    CSP Today – First of its kind CSP plant underway in Cyprus  



The following excerpt is from an article posted in CSP Today by Heba Hashem and Sam Phipps on 18th April, 2014.

An innovative 50 MW CSP plant that is due to be built in Cyprus with EU support could pave the way for its graphite based storage system elsewhere in the world, engineers say.
The EOS project, which will be sited at Alasa, in the Limassol district of the Mediterranean island, was proposed by the Cypriot government under the EU NER300 scheme and was approved in late March this year.
Utilising Australian company Solastor’s Concentrated Solar Thermal (CST) storage system, EOS will feature three-metre high tanks atop relatively low (20 metre) towers that stand at the centre of a bank of heliostats.
The steel tanks contain high purity graphite blocks, with water pumped through embedded coils of stainless steel pipes. Heat exchangers create super heated “dry” steam, which is discharged to a turbine to produce electricity for the power grid.
The steam is converted back to water, pumped into a holding tank and then back into the tower tank in a sealed system. “Solastor and the engineering contractor have a memorandum of understanding and we are just waiting for the finalising of the EU grant,” said a source close to the project. “We expect it to be between €47m and €60m, and the total cost of the plant will be about €175m.”

Project features

The EOS 50 MW CSP project will supply about 5 per cent of Cyprus’s electricity generation, with power on demand, even after sunset.
Each heliostat will be approximately 10 sq metres, with 100 to 120 reflectors per tower. This modular design is well suited to the uneven terrain of Cyprus, enabling modules to be positioned at various levels, on separate terraces, rather than on one vast expanse of flat land.
The plant will comprise up to 600 modules, a power station with two steam turbine generators, a switch sub-station to transmit energy to the national grid, and a series of steam condensers.
The heliostats will be toroidal and made of metal, covered with a form of silver foil, rather than the more usual glass. The super-heated steam generated by the array can either produce electricity via the steam turbine – for the national grid or to power specific installations – or it can provide “thermal input”: the industrial steam for processing, heating/cooling and waste combustion such as incineration of biomass or household waste.
Much of the equipment and infrastructure for EOS will be built in Cyprus, providing local construction and engineering jobs.
Alfa Mediterranean Enterprises Ltd is developing the project on a total area of some 1.8 million sq metres.
Another application of Solastor’s CST technology is a 3 MW facility at Lake Cargellico, also in New South Wales.
Located on the outer limits of the main power grid, the town was susceptible to blackouts and power instability before the solar thermal plant, which consists of eight modules and a steam turbine, started producing electricity in May 2011.
Lloyd Energy Systems won a grant from the Australian government to support construction of the facility but sold its interests in Lake Cargellico in 2011.
The EOS 50 MW CSP project will supply about 5 per cent of Cyprus’s electricity generation, with power on demand, even after sunset.

首批光热发电CSP示范项目有望年底投运并网-香港王建中

甘肃玉门打造“光热小镇”https://www.china5e.com/news/news-1031105-1.html

—国家首批光热发电示范项目有望年底投运并网


2018-06-08  
经济日报 李琛奇 陈发明  


5月下旬的戈壁滩上阳光炽热,位于甘肃玉门市郑家沙窝的5万千瓦光热发电项目建设现场热火朝天。在茫茫戈壁上,工人们正忙着焊接安装各种设备,塔架周边数千根柱子已经安上了光亮的定日镜。
“整个项目共建设15个发电模块,即将完成的是第一个模块。”玉门鑫能光热第一电力有限公司总经理李瑞祥告诉记者,作为国家首批光热发电示范项目之一,郑家沙窝熔盐塔式5万千瓦光热发电项目的建设进度在掌控之中,有望实现年底投运并网目标。
玉门境内太阳能资源非常丰富,是国家一类太阳能资源区,可开发太阳能发电项目面积近3000平方公里,是建设太阳能光伏发电的理想区域,也是甘肃省太阳能总辐射量最高区域之一。
记者了解到,2016年9月份,国家能源局确定了第一批太阳能热发电示范项目共20个、总装机容量134.9万千瓦,其中玉门市共入选示范项目4个、总装机容量25万千瓦。玉门成为此次国家光热项目获批数量最多、装机规模最大、技术路线最全的县市。

                                                 Source: http://www.xinchen-csp.com/about.php?class_id=101


李瑞祥说,郑家沙窝熔盐塔式5万千瓦光热发电项目由上海晶电新能源有限公司和江苏鑫晨光热技术有限公司负责建设,系统转换效率达18.5%,储热时长由6小时优化为12小时。项目建成后,年平均发电量可达2.2亿千瓦时,年可实现销售收入1.43亿元,可节约标煤7.7万吨、减排二氧化碳23万吨,经济效益和节能减排效益非常显著。
随着4个国家首批光热发电示范项目陆续开工建设,玉门市已经开始布局相关产业,打造光热产业小镇。玉门市能源局有关负责人介绍,玉门光热小镇核心区位于玉门市花海镇,规划面积500平方公里。规划形成“一客厅四基地”的主体功能结构:“一客厅”即光热小镇,“四基地”分别为光热发电基地、装备制造基地、技术验证基地和人才培养基地。
项目建成后,玉门光热小镇将把光热发电及装备制造、光热产业研发、检测、人才培养等产业链条完全整合起来,形成强大的产业集聚效应,成为光热技术大规模商业运营的产业高地。
 Source: https://kuaibao.qq.com/s/20180505B15JD200?refer=spider

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http://www.cspplaza.com/article-10289-1.html



光热特色小镇核心区位于玉门市花海镇,规划面积4011平方公里,计划建设四大专项园区:光热发电产业园区、光热装备制造产业园区、乡村旅游示范区、绿色农产品加工生产园区,以期尽快形成光热产业基地的产业集群效应。

  光热发电产业园区已经获批的国家首批光热示范项目神华国华10万千瓦塔式熔岩光热发电项目已落户基地,浙江中控、浙江盾安、中国联合工程公司、宁波能源等光热发电项目已与玉门市签约,并启动可研编制工作,正在积极准备项目申报工作。

  鲁强介绍,目前国内较为成熟的光热发电类型主要有塔式熔岩发电、线性菲涅尔式发电、槽式导热油发电、蝶式反射发电等四种类型,园区这四种类型的发电技术路线都已占全,也是国内光热发电展示的一个窗口,玉门力争要把小镇建成全国重要的光热发电技术领跑者。

  光热装备制造产业园区则重点发展光热支架、光热板、储热设备、定日镜等光热发电配套装备设备。目前,小镇已与北京首航、江苏联储、杭州帷盛等公司达成了合作协议,届时,将与光热发电园区形成配套完善的装备制造基地,形成辐射新疆、内蒙、青海等全国光热发电主要区域的装备制造基地。

                                              Source: https://kuaibao.qq.com/s/20180505B15JD200?refer=spider

延伸閱讀: https://kuaibao.qq.com/s/20180505B15JD200?refer=spider



2018年6月2日 星期六

糖替代抗生素治癒傷口-香港王建中

糖的隱藏力量:替代抗生素治癒傷口

在津巴布韋東部高地農村地區長大的窮孩子穆蘭多(Moses Murandu),從小習慣摔跤受傷或有割傷時,用鹽來擦拭創面。不過有時走運的話,他父親多花些錢能買對傷口刺激小得多的東西——糖。
穆蘭多一直留意到,傷口上用糖時比什麼都不用時癒合得較快。因此,1997年當他受僱在英國國民醫療服務體系(NHS)機構當護理師時,他很驚訝糖並沒有被用作任何官方醫療手段,他有了改變這一現狀的念頭。
如今,穆蘭多的想法終於受到到重視了。穆蘭多現是伍爾弗漢普頓大學(University of Wolverhampton)成人護理系的高級講師,他完成了一項初步試驗性研究。該研究主要聚焦於糖在傷口癒合中的應用,並在2018年3月獲得了《傷口護理雜誌》(Journal of Wound Care)的獎項。
在世界上一些地方,這種治療手段可能非常關鍵,因為那兒很多人買不起抗生素。在英國,這種方法也同樣引發了關注。因為一旦傷口感染,抗生素有時並不起作用。
穆蘭多說,用糖來治療傷口就是把糖灑在傷口上,再纏上繃帶。糖分顆粒會吸走傷口上的水分,而細菌需要水分才能繁殖。沒有了細菌,傷口便能更快癒合。穆蘭多在實驗室的研究為此提供了依據,而越來越多來自全球各地的案例研究也支持他的發現,其中也包括許多用糖治癒抗生素耐藥性傷口的成功案例。即便如此,穆蘭多仍面臨著艱巨的挑戰——獲得後續研究的資金支持以實現終極目標,說服英國國民醫療服務體系使用糖作為抗生素的替代方案。然而,大部分的醫學研究由製藥公司提供贊助。穆蘭多認為,這些公司通常不會贊助他們無法獲得藥物專利權的研究,因為無利可圖。
穆蘭多的研究中所使用的糖就是最普通的顆粒狀砂糖,人們日常喝茶調味的那種。他也發現,體外試驗時使用甘蔗糖或甜菜糖,本質上差別不大,而使用金砂糖(紅糖的一種)效用則不顯著。
實驗性研究表明,菌株可以在低純度糖環境中繁殖,但高純度糖會抑制菌株生長。穆蘭多記錄了在津巴布韋、博茲瓦訥、萊索托(他最初接受護理訓練的地方)等國家的多個臨牀案例。其中的一個案例中,患者是一名住在哈拉雷(津巴布韋首都)的女性。
他介紹說,「我外甥給我打電話時,這位女患者已經做了殘端測量,要進行截肢手術了。她的傷口非常嚴重,長達五年之久。醫生建議截肢。我指導她先清洗傷口,然後在上面敷糖,留置一段時間,再重覆。」
「這名患者的腿最終保住了。」
他說,這個案例也反映出為何「糖療法」會在很多地方備受關注,特別是一些人們買不起抗生素的國家和地區。穆蘭多在英國地區共開展了41宗臨牀案例研究。目前他還沒發表試驗結果,但已在一些英國或國際會議上做了相關分享。研究中,他無法規避的一個問題是,這種"糖療法"是否也適用於糖尿病患者?糖尿病患者常患有腿部或足部潰爛,但他們又需要控制血糖值。表面上看,這種方法對糖尿病患者並不適用。
但穆蘭多發現,糖尿病患者也可以使用"糖療法"且血糖水平不會升高。他說,「治療中使用的糖是蔗糖(一種雙糖),在酵素的催化才會轉化為葡萄糖(單糖)。」而蔗糖酵素是人體體內才有的,糖被人體吸收後才會轉化。將糖外用在傷口上,並不會產生同樣的轉化。
穆蘭多在英國繼續其人類患者臨牀試驗之時,在大西洋彼岸的美國一位獸醫麥克邁克爾(Maureen McMichael)已用這種方法治療動物好多年。
在伊利諾大學獸醫學院附屬醫院工作的麥克邁克爾,於2002年首次在動物傷口上使用糖和蜂蜜。她說,這種療法方法簡單且價格低廉。對於付不起常規治療方法的診療費與鎮定劑等藥物費用的寵物主人,非常有吸引力。
麥克邁克爾談到,他們一直在手術中使用糖和蜂蜜,經常用於貓、狗等寵物的治療,偶爾也以此治療農場牲畜。蜂蜜的治癒效用與糖相似。有一項研究表明蜂蜜比糖更能抑制傷口細菌繁殖,只是蜂蜜價格較貴。麥克邁克爾介紹道,「這種療法的成功案例非常之多!」其中一個臨牀案例是一條被治癒的流浪狗。它是一種訓練比特鬥牛犬的誘餌犬,身子被吊起來,讓一隻受訓的比特鬥牛犬攻擊。它被送來時,每條腿上多達四十處咬傷,但八周後它就痊癒了。
麥克邁克爾說: 「因為它是一隻流浪狗,沒有主人付錢治療。我們用蜂蜜和糖幫它敷傷口,它的恢復能力驚人,現在都已經痊癒了。」
除了價格低廉外,「糖療法」區別於抗生素治療的另一個好處是,使用抗生素次數越多,人體產生的抗藥性越強。
麥克尼爾(Sheila MacNeil)是英國謝菲爾德大學的一名人體組織工程學的專家。她的研究方向之一是人體自然產生的糖分如何促進血管再生。這個研究來自於她對腫瘤的研究。她發現某種從DNA分解提取出來的特殊糖分(2-脫氧-d-核糖)會不斷再生。據麥克尼爾發現,團隊實驗人員將這種單糖放置於雞胚胎薄膜中,它促進了血管細胞的再生,細胞數量比沒有糖分的對照組要高出一倍。
當然,我們身體中自然產生的這些糖與穆蘭多研究中日常使用的糖的類型完全不同。麥克尼爾說,「最理想的結果」當然是能夠找到一種既能治癒傷口又能促進細胞再生的糖。她認為這是下一步研究的目標。
目前在伍爾弗漢普頓大學的穆蘭多計劃開一家使用這種「糖療法」的私人診所。他希望未來糖作為傷口癒合劑不僅在英國國民醫療服務體系的機構裏廣泛使用,在他工作過的其他一些國家的公立醫院也能得到應用。如今的他常常收到來自世界各地的郵件,徵求診療意見。他也會通過郵件或短信的形式遠程指導患者。遠在其他地區的患者會在痊癒後發來療癒的照片,並對他表示感激之情。
用糖治癒傷口是一種古老的療法,也是許多發展中國家窮人非正式使用的方法。但對穆蘭多來說,他到了英國才意識到糖在醫學界的意義。他把這視作是他將故鄉津巴布韋的「土智慧」與英國現代研究設施的一種結合。
他說,「就像糖一樣,這些知識是原在津巴布韋土生土長,但在英國『提純』,再回到非洲去幫助那裏的人們。」

As a child growing up in poverty in the rural Eastern Highlands of Zimbabwe, Moses Murandu was used to having salt literally rubbed in his wounds when he fell and cut himself. On lucky days, though, his father had enough money to buy something which stung the boy much less than salt: sugar.
Murandu always noticed that sugar seemed to help heal wounds more quickly than no treatment at all. So he was surprised when, having been recruited to come to work as a nurse for the UK’s National Health System (NHS) in 1997, he found that sugar wasn’t being used in any official capacity. He decided to try to change that.
Now, Murandu’s idea finally is being taken seriously. A senior lecturer in adult nursing at the University of Wolverhampton, Murandu completed an initial pilot study focussed on sugar’s applications in wound healing and won an award from the Journal of Wound Care in March 2018 for his work.In some parts of the world, this procedure could be key because people cannot afford antibiotics. But there is interest in the UK, too, since once a wound is infected, it sometimes won’t respond to antibiotics.
To treat a wound with sugar, all you do, Murandu says, is pour the sugar on the wound and apply a bandage on top. The granules soak up any moisture that allows bacteria to thrive. Without the bacteria, the wound heals more quickly.

Evidence for all of this was found in Murandu’s trials in the lab. And a growing collection of case studies from around the world has supported Murandu’s findings, including examples of successful sugar treatments on wounds containing bacteria resistant to antibiotics. Even so, Murandu faces an uphill battle. Funding for further research would help him reach his ultimate goal – to convince the NHS to use sugar as an alternative to antibiotics. But a great deal of medical research is funded by pharmaceutical companies. And these companies, he points out, have little to gain from paying for research into something they can’t patent.
The sugar Murandu uses is the plain, granulated type you might use to sweeten your tea. In the same in vitro trials, he found that there was no difference between using cane or beet sugar. Demerara, however, wasn’t as effective.
The pilot showed that strains of bacteria grew in low concentrations of sugar but were completely inhibited in higher concentrations. Murandu started recording case studies in Zimbabwe, Botswana, and Lesotho (where he first trained in nursing). Included among them is a woman living in Harare.
“The woman’s foot had been measured, ready to be amputated, when my nephew called me,” Murandu says. “She had had a terrible wound for five years, and the doctor wanted to amputate. I told her to wash the wound, apply sugar, leave it and repeat.
“The woman still has her leg.”
This, he says, is one example of why there is so much interest in his methods, particularly from parts of the world where people can’t afford antibiotics.
In total, Murandu has now carried out clinical studies on 41 patients in the UK. He hasn’t yet published the trial results but has presented them at national and international conferences. One question he had to answer during his research was whether sugar could be used on diabetic patients, who commonly have leg and foot ulcers. Diabetics need to control the level of glucose in their blood so this isn’t an obvious healing method to use on them.
But he found that it worked for diabetics without sending their glucose levels soaring. “Sugar is sucrose – you need the enzyme sucrase to convert that into glucose,” he says. As sucrase is found within the body, it is only when the sugar is absorbed that it is converted. Applying it to the outside of the wound isn’t going to affect it in the same way.
While Murandu continues his research on human patients, across the Atlantic US veterinarian Maureen McMichael has been using this healing method on animals for years.
McMichael, who works at the University of Illinois Veterinary Teaching Hospital, first started using both sugar and honey on pets back in 2002. She said it was a combination of the simplicity of the method and the low cost that attracted her – especially for pet owners who couldn’t afford the usual methods of bringing the animal to the hospital and using sedation.


McMichael says that they keep both sugar and honey in their surgery and often used it on dogs and cats (and occasionally on farm animals). Honey has similar healing properties to sugar (one study found it to be even more effective at inhibiting bacterial growth), though it is more expensive.
“We have had some really great successes with this,” McMichael says. She gave an example of a stray dog that had come to them after being used as “pitbull bait”, hung from a harness and attacked by pitbulls being trained for fighting. The dog came in with up to 40 bite wounds on each limb – and was healed within eight weeks.
“She was a stray so there was no money for her. We treated her with both honey and sugar and she did fabulously,” McMichael says. “She’s all healed now.”
As well as being cheaper, sugar has another upside: as more and more antibiotics are used, we are becoming resistant to them.
As well as being cheaper, sugar has another upside: as more and more antibiotics are used, we are becoming resistant to them
Back in the UK, tissue engineering specialist Sheila MacNeil of the University of Sheffeld has researched how naturally occurring sugars can be used to stimulate the re-growth of blood vessels. Her research stemmed from from her work on tumours, when she noticed that one particular small sugar derived from the breakdown of DNA (2-deoxy-D-ribose) kept cropping up. MacNeil’s team experimented by applying this sugar to the membrane surrounding chick embryos. According to MacNeil, the sugar stimulated double the number of blood vessels than would grow without it.
But of course these types of naturally occurring sugars found in our bodies are a long way from the type of everyday sugar used by Murandu in his experiments. The “dream ticket”, MacNeil says, would be to find a sugar that could be used in both ways. She believes this is the next step research should take.
Meanwhile in Wolverhampton, Murandu’s plan is to set up a private clinic using his sugar method. He hopes that one day sugar will be commonly used, not only by the NHS but also at public hospitals in some of the other countries where he has been working. He continues to get regular emails from around the world, asking for his advice – and guides patients remotely over email and texting. His far-away clients send him photos of their results along with their gratitude when they are healed.
It is an ancient method and one used unofficially by many poor people in developing countries, but for Murandu it was only by coming to the UK that he realised the significance sugar could have in the medical world. He sees it as a blending of his local knowledge with the modern research facilities in Britain.
“Like sugar, the knowledge came raw from Zimbabwe, was refined here – and is now going back to help people in Africa,” he says.